Showing 45 items matching "water turbines"
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Federation University Historical Collectionalbum, Water Turbines, 1958/59
... Water Turbines......water turbines...Associated with Former Ballarat School of Mines Director Graham Beanland graham beanland ballarat school of mines water turbines Blue cloth-bound album containing hand-written notes, diagrams, tables and printed material Water Turbines album ...Associated with Former Ballarat School of Mines Director Graham BeanlandBlue cloth-bound album containing hand-written notes, diagrams, tables and printed materialgraham beanland, ballarat school of mines, water turbines -
Federation University Historical CollectionReport, Report of Period with Water Turbine Manufacturers, 1959, 1958
... Report of Period with Water Turbine Manufacturers, 1959......water turbines...Includes original photographs, Water Turbine Design and Development, Hydro-Electric Installation, and manufacture...Includes original photographs, Water Turbine Design and Development, Hydro-Electric Installation, and manufacture Report of Period with Water Turbine Manufacturers, 1959 Report ...Graham Beanland is a former Principal of the Ballarat SChool of Mines. The report was prepared as the result of an overseas scholarshipTyped report by Graham H. Beanland. Includes original photographs, Water Turbine Design and Development, Hydro-Electric Installation, and manufacturegraham beanland, electricity, electricity generating, hydro-electricty, water turbines, boving and co. ltd, bulb turbines, blaenau ffestiniog, karlstada mekaniska werkstad, english electric company, bruce peebles ltf, bullers porcelain, a.s.e.a. switching station, hamra switching station, gotland cable, e.e. co., stafford -
Flagstaff Hill Maritime Museum and VillageBook, Water Turbine Plant
... Water Turbine Plant......Water Turbine Plant...Water Turbine Plant by Jens Orten-Boving Publisher Australian Publicity Council Date 1910...Warrnambool Shipwrecked-coast Flagstaff-Hill Flagstaff-Hill-Maritime-Museum Maritime-Museum Shipwreck-coast Flagstaff-Hill-Maritime-Village Shipwrecked-artefact Book Water Turbine Plant Jens Orten-Boving Water Turbine Plant by Jens Orten-Boving Publisher Australian Publicity Council Date 1910 Water Turbine Plant Book ...Water Turbine Plant by Jens Orten-Boving Publisher Australian Publicity Council Date 1910warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, shipwrecked-artefact, book, water turbine plant, jens orten-boving -
Federation University Historical CollectionBook, E.H. Lewitt, Hydraulics and the Mechanics of Fluids, 1949
... ...water turbines...hydraulics fluids rex hollioake mouthpieces weirs pipes flow channels pumps water water turbines centrifugal pumps valves aerofoil boundary layer gases fluid mechanics viscosity steam heat Blue hard covered book of 630 pages Hydraulics and the Mechanics of Fluids Book E.H. ...Blue hard covered book of 630 pagesnon-fictionhydraulics, fluids, rex hollioake, mouthpieces, weirs, pipes, flow, channels, pumps, water, water turbines, centrifugal pumps, valves, aerofoil, boundary layer, gases, fluid mechanics, viscosity, steam, heat -
Federation University Historical CollectionMagazine, ASEA magazines, 1953/58, 1953 to 1958
... electrohydraulic governor for water turbines...collected by Ballarat School of Mines Principal G.H.Beanland electrical engineering generators graham beanland power stations voltage control electrohydraulic governor for water turbines high voltage dc transmission oil-minimum contraction circuit-breakers lightening arresters air-blast circuit breakers testing circuit breakers closing mechanisms for high voltage circuit-breakers outdoor isolators series capacitors capacitor voltage transformers guide to current transformers routine testing of power tranformers generator Magazines bound in ASEA folder, blue spine and black cloth boards ASEA magazines, 1953/58 Magazine ...collected by Ballarat School of Mines Principal G.H.BeanlandMagazines bound in ASEA folder, blue spine and black cloth boardselectrical engineering, generators, graham beanland, power stations, voltage control, electrohydraulic governor for water turbines, high voltage dc transmission, oil-minimum contraction circuit-breakers, lightening arresters, air-blast circuit breakers, testing circuit breakers, closing mechanisms for high voltage circuit-breakers, outdoor isolators, series capacitors, capacitor voltage transformers, guide to current transformers, routine testing of power tranformers, generator -
Maldon Vintage Machinery Museum IncMiniature Water Turbine
... Miniature Water Turbine....machinery; water turbine; power...Miniature water turbine (pelton wheel, single jet) mounted on a wooden frame. ...machinery; water turbine; power None Miniature water turbine (pelton wheel, single jet) mounted on a wooden frame. ...Miniature water turbine (pelton wheel, single jet) mounted on a wooden frame. Undershot wheel driving a pulley at one end of the shaft. Flywheel at the other end of the shaft. Small die-cast buckets, some broken and missing. Pelton wheel and flywheel painted red, wooden frame unpainted.Nonemachinery; water turbine; power -
Moorabbin Air MuseumManual (Item) - Armstrong-Whitworth Argosy 650 Series Illustrated Parts Catalogue Volume 3, Chapters 52-91, AW. 650 Aircraft Manual
... Topics include fuselage, nacells, wings, stabilisers, windows, air, ignition, engines, propellers, power plant, engine controls, starting, oil, exhaust, engine indicators, water injection, turbines, charts and accessory gearboxes....Topics include fuselage, nacells, wings, stabilisers, windows, air, ignition, engines, propellers, power plant, engine controls, starting, oil, exhaust, engine indicators, water injection, turbines, charts and accessory gearboxes. ...Topics include fuselage, nacells, wings, stabilisers, windows, air, ignition, engines, propellers, power plant, engine controls, starting, oil, exhaust, engine indicators, water injection, turbines, charts and accessory gearboxes. -
Federation University Historical CollectionPhotograph - Black and White, James Brown, Pomona Pumps
... "Pomona" Water Lubricated Turbine Pump. Output 15,000 gal per [?]. ..."Pomona" Water Lubricated Turbine Pump. Output 15,000 gal per [?]. ...These photographs where in the collection of miner Richard Squire.Sepia images of water pumps in action. They are Pomona Pumps. The image is taken by James brown of Nhill so the pumps are probably in that location. Gift of the Squire Family, 2014On sign in photograph: Pomona Pumps. "Pomona" Water Lubricated Turbine Pump. Output 15,000 gal per [?]. Pumping Depth 330 ft. Supplied and installed by F.N. Bethune, P.O. Box 61, Nhill. Sole distributers. Pomona Pumps & Equipment. pomona pumps, richard squire, squire, nhill, pumps -
Kiewa Valley Historical SocietyPhotograph Clover Dam, Clover Dam Circa 1940, circa 1940s to 1950s
... This dam was constructed to supply water to feed four turbines (62 mega watts) at the West Kiewa Power Station. ...This dam was constructed to supply water to feed four turbines (62 mega watts) at the West Kiewa Power Station. ...As part of the push to cut electricity costs and diversify supply, the Victorian Government (circa 1930) implemented the conversion strategy from mainly brown coal supply to hydro - electricity. The Kiewa Hydroelectric Scheme became the largest scheme of its kind in the State Of Victoria and the second largest scheme in Australia. This dam was constructed to supply water to feed four turbines (62 mega watts) at the West Kiewa Power Station. This was at the forefront of sustainable "Green" energy. Costs associated with power supplies is still a major incentive of governments, however environmentally friendly alternatives such as wind and nuclear have also made inroads. The Kiewa valley and its surrounding alpine catchment were looked at(Victorian State Government), from the beginning of the twentieth century as a source of alternate power for an every increasing demand for electricity by growing population and heavy industrial ares within Melbourne City and State regions. Construction of dams, such as Clover Dam provided the large quantity holding areas of water required to turn the turbines at the various power stations to provide the electricity needed. The impact of these controls by moderating water run off from the alpine regions is beneficial in reducing flooding from thawing of snow on the alps. This by-product allows agriculture and grazing to be less vulnerable to seasonal flooding thereby resulting in a more stable annual production level.Reproduction (scanned) of a black and white photo of Clover Dam circa 1940. The paper used is KodakXtraLife II paperThe reverse side of photo " KodakXtraLife II paperdams, pondage, hydro electricity, power stations, clover dam, secv -
Kiewa Valley Historical SocietyPhotograph - Kiewa River in flood at Clover Dam
... This dam was constructed to supply water to feed four turbines (62 mega watts) at the West Kiewa Power Station. ...This dam was constructed to supply water to feed four turbines (62 mega watts) at the West Kiewa Power Station. ...As part of the push to cut electricity costs and diversify supply, the Victorian Government (circa 1930) implemented the conversion strategy from mainly brown coal supply to hydro - electricity. The Kiewa Hydroelectric Scheme became the largest scheme of its kind in the State Of Victoria and the second largest scheme in Australia. Clover Dam and Power Station were built by the State Electricity Commission of Victoria as part of the Kiewa Hydro Electric Scheme from the late 1930's to the early 1940's. This dam was constructed to supply water to feed four turbines (62 mega watts) at the West Kiewa Power Station. This was at the forefront of sustainable "Green" energy. Costs associated with power supplies is still a major incentive of governments, however environmentally friendly alternatives such as wind and nuclear have also made inroads. The Kiewa valley and its surrounding alpine catchment were looked at(Victorian State Government), from the beginning of the twentieth century as a source of alternate power for an ever-increasing demand for electricity by growing population and heavy industrial areas within Melbourne City and State regions. Construction of dams, such as Clover Dam provided the large quantity holding areas of water required to turn the turbines at the various power stations to provide the electricity needed. The impact of these controls by moderating water run-off from the alpine regions is beneficial in reducing flooding from thawing of snow on the alps. This by-product allows agriculture and grazing to be less vulnerable to seasonal flooding thereby resulting in a more stable annual production level.Black and white photograph of Clover Dam with Kiewa River in flood. .5mm white boarder on 3 sides of photo.Handwritten on back of photograph in black pen - Kiewa in flood. Clover Dam.clover dam, secv -
Kiewa Valley Historical SocietyPhotograph - Clover Dam
... This dam was constructed to supply water to feed four turbines (62 mega watts) at the West Kiewa Power Station. ...This dam was constructed to supply water to feed four turbines (62 mega watts) at the West Kiewa Power Station. ...As part of the push to cut electricity costs and diversify supply, the Victorian Government (circa 1930) implemented the conversion strategy from mainly brown coal supply to hydro - electricity. The Kiewa Hydroelectric Scheme became the largest scheme of its kind in the State Of Victoria and the second largest scheme in Australia. Clover Dam and Power Station were built by the State Electricity Commission of Victoria as part of the Kiewa Hydro Electric Scheme from the late 1930's to the early 1940's. This dam was constructed to supply water to feed four turbines (62 mega watts) at the West Kiewa Power Station. This was at the forefront of sustainable "Green" energy. Costs associated with power supplies is still a major incentive of governments, however environmentally friendly alternatives such as wind and nuclear have also made inroads. The Kiewa valley and its surrounding alpine catchment were looked at(Victorian State Government), from the beginning of the twentieth century as a source of alternate power for an ever-increasing demand for electricity by growing population and heavy industrial areas within Melbourne City and State regions. Construction of dams, such as Clover Dam provided the large quantity holding areas of water required to turn the turbines at the various power stations to provide the electricity needed. The impact of these controls by moderating water run-off from the alpine regions is beneficial in reducing flooding from thawing of snow on the alps. This by-product allows agriculture and grazing to be less vulnerable to seasonal flooding thereby resulting in a more stable annual production level.Black and white photograph of Clover Dam buildings and Kiewa River. Has a .4cm white border around photograph Printed on bottom left corner of photograph in white - Clover Flatclover dam, secv -
Kiewa Valley Historical SocietyPhotographs x 2 - Clover Dam, Circa 1940's
... This dam was constructed to supply water to feed four turbines (62 mega watts) at the West Kiewa Power Station. ...This dam was constructed to supply water to feed four turbines (62 mega watts) at the West Kiewa Power Station. ...As part of the push to cut electricity costs and diversify supply, the Victorian Government (circa 1930) implemented the conversion strategy from mainly brown coal supply to hydro - electricity. The Kiewa Hydroelectric Scheme became the largest scheme of its kind in the State Of Victoria and the second largest scheme in Australia. Clover Dam and Power Station were built by the State Electricity Commission of Victoria as part of the Kiewa Hydro Electric Scheme from the late 1930's to the early 1940's. This dam was constructed to supply water to feed four turbines (62 mega watts) at the West Kiewa Power Station. This was at the forefront of sustainable "Green" energy. Costs associated with power supplies is still a major incentive of governments, however environmentally friendly alternatives such as wind and nuclear have also made inroads. The Kiewa valley and its surrounding alpine catchment were looked at(Victorian State Government), from the beginning of the twentieth century as a source of alternate power for an ever-increasing demand for electricity by growing population and heavy industrial areas within Melbourne City and State regions. Construction of dams, such as Clover Dam provided the large quantity holding areas of water required to turn the turbines at the various power stations to provide the electricity needed. The impact of these controls by moderating water run-off from the alpine regions is beneficial in reducing flooding from thawing of snow on the alps. This by-product allows agriculture and grazing to be less vulnerable to seasonal flooding thereby resulting in a more stable annual production level. Photographs also document early engineering and building techniques used in the construction of dams and power stations during the 1940’s and 1950’s. Note the lack of safety equipment and suitable work attire worn by construction workers on the sites 1. Black and white photograph of Clover Dam under construction. Has a .5cm white border around photo 2. Black and white photograph of Clover Dam under construction showing workmen at work. Has a .5cm white border around photo Written in pencil on back of both photographs - Clover Damclover dam, secv -
Federation University Historical CollectionBook, William Ripper, Steam-Engine Theory and Practice, 1914
... water heaters...crank-shaft...flywheels...corliss engine...steam turbine...Used at Ballarat School of Mines compound engines thermodynamics of gases properties of steam temperature-entropy diagrams superheated steam steam-jacket feed-water heaters crank-shaft flywheels corliss engine steam turbine condensers friction of engines steam-engine william ripper steam On the inside cover it is stamped with The School of Mines Ballarat and written in pencil is 1914 and E K. ...Used at Ballarat School of MinesThe cover is a red brown colour with the title on the spine and the publisher Longmans & Co printed near base of the spine. The book has 496 illustrations throughout with some pull out plates. Pages 514.On the inside cover it is stamped with The School of Mines Ballarat and written in pencil is 1914 and E K.compound engines, thermodynamics of gases, properties of steam, temperature-entropy diagrams, superheated steam, steam-jacket, feed-water heaters, crank-shaft, flywheels, corliss engine, steam turbine, condensers, friction of engines, steam-engine, william ripper, steam -
Federation University Historical CollectionBook, Machinery for Metalliferous Mines, 1894, 1894
... Chapters include Water as a motive power, Wind engines and ventilating machinery, Steam boilers/engines and oil engines, hoisting machinery, draining of Mines, pumping engines, rock drilling machinery, boring machinery, concentration machinery, sizing and classifications trommels, joggers and jigging, fine concentration, milling of gold ores, milling of silver ores, amalgamation plates and machinery, dry and roasting machinery, chlorination and cyandide processes for the extraction of gold, electricity as a motive power for mining, electric lighting and blasting, aerial wire ropeways, transport by rail and road. There a a number of lovely line illustrations in the book including: Poncelot's undershot waterwheel; Fromont furnace;Victor turbine...Chapters include Water as a motive power, Wind engines and ventilating machinery, Steam boilers/engines and oil engines, hoisting machinery, draining of Mines, pumping engines, rock drilling machinery, boring machinery, concentration machinery, sizing and classifications trommels, joggers and jigging, fine concentration, milling of gold ores, milling of silver ores, amalgamation plates and machinery, dry and roasting machinery, chlorination and cyandide processes for the extraction of gold, electricity as a motive power for mining, electric lighting and blasting, aerial wire ropeways, transport by rail and road. There a a number of lovely line illustrations in the book including: Poncelot's undershot waterwheel; Fromont furnace;Victor turbine ...The 1st edition of this famous work, giving an excellent account of the machinery used in late 19th century metal mining in the UK and overseas is very rare. It covers a wide range of equipment - pumps, steam engines, drills, winding engines, stamps & concentration mills, aerial ropeways, tramways and early uses of electricity etc. Brown hard cloth covered book. xvi 564 pages with additional advertisements, with over 300 illustrations and drawings, some fold out. Chapters include Water as a motive power, Wind engines and ventilating machinery, Steam boilers/engines and oil engines, hoisting machinery, draining of Mines, pumping engines, rock drilling machinery, boring machinery, concentration machinery, sizing and classifications trommels, joggers and jigging, fine concentration, milling of gold ores, milling of silver ores, amalgamation plates and machinery, dry and roasting machinery, chlorination and cyandide processes for the extraction of gold, electricity as a motive power for mining, electric lighting and blasting, aerial wire ropeways, transport by rail and road. There a a number of lovely line illustrations in the book including: Poncelot's undershot waterwheel; Fromont furnace;Victor turbine; Pelton waterwheel; Root's positive blower;Cross section and front elevation of Lancashire boiler; Robey's Compound Mill Engine; Portable Winding Plant; Iron Pit Head Gear ; Loading Arrangement in an Incline Shaft; kibble; Worthington Pump; California Pump; Scram's Air Compressor; Rock drill Bits; Special Sharpening tools; Boring tools;Rotating Picking table; Ore Feeder; roller crusher; stamp battery; round buddle; slime table; vanner; amalgamating plant; belt elevator;roasting furnace;splicing wire rope; capel; tipping waggon;mining, cornish pump, linkenbach table, water wheel, ventilation, oil engine, california, america, water, steam boilers, steam engines, oil engines, pumpimg, rock drilling, boring, jiggers, milling, silver, gold, drying and roasting, chlorination, cyaniding, lead, zinc, copper, electricity, electric lighting, wire ropes, transport, wind engine, poppet head -
The Beechworth Burke MuseumGeological specimen - Brown coal
... water content. It is brownish-black in colour. Brown Coal has a high moisture content, between 50 and 75 percent, and a low carbon content. Some Brown Coals may be stratified, with layers of plant matter, which means little coalification has occurred beyond the peat natural processing stage. When Brown Coal is submerged in dilute nitric acid or boiling potassium hydroxide solution, it reacts to produce a reddish solution, of which higher-ranked coals do not. When brown coal is pulverised and burned in boilers, the steam is used to drive turbines...water content. It is brownish-black in colour. Brown Coal has a high moisture content, between 50 and 75 percent, and a low carbon content. Some Brown Coals may be stratified, with layers of plant matter, which means little coalification has occurred beyond the peat natural processing stage. When Brown Coal is submerged in dilute nitric acid or boiling potassium hydroxide solution, it reacts to produce a reddish solution, of which higher-ranked coals do not. When brown coal is pulverised and burned in boilers, the steam is used to drive turbines ...This particular specimen was recovered from the Lal Lal Coal and Iron Mine in Victoria, 19km from Ballarat. Brown Coal was discovered here in 1857, just alongside the Geelong to Ballarat Railway line. This discovery of lignite (brown coal) was the first in Victoria, which would bring important benefits to the region and state, both of which had previously been reliant on coal imports. In the 1860s, iron ore was found just 5km from Lal Lal, and the area was converted into an Iron Ore Mine. The Lal Lal Iron Mining Company took over operations in 1874, who then peaked iron production in 1884. This mine continued operations until June 1884, when the blast furnace was extinguished and never recommenced. The blast furnace at Lal Lal is considered one of the most important and highly significant sites ion early industrial history in Australia, as it is the only remaining best furnace from the nineteenth century in the Southern Hemisphere. The furnace ruins are 17 metres high, and are clearly visible today on Iron Mine Road, Lal Lal, near the Bungal Dam. This specimen of Lignite (brown coal) is significant, as it was mined from the area where brown coal was first discovered in Victoria, leading to an important and controversial future of the mining and use of brown coal in this State. The Victorian Heritage Database has listed the Lal Lal Coal Mine with local significance, with their Statement of Significance stating: "The Lal Lal coal mine is historically significant as the site of the first discovery of lignite (brown coal) in Victoria, and one that promised important benefits to regional and state industries that were reliant on coal imports at the time. The significance of the stie is reduced by the poor state of preservation of the coal mining and processing fabric". This specimen is part of a larger collection of geological and mineral specimens collected from around Australia (and some parts of the world) and donated to the Burke Museum between 1868-1880. A large percentage of these specimens were collected in Victoria as part of the Geological Survey of Victoria that begun in 1852 (in response to the Gold Rush) to study and map the geology of Victoria. Collecting geological specimens was an important part of mapping and understanding the scientific makeup of the earth. Many of these specimens were sent to research and collecting organisations across Australia, including the Burke Museum, to educate and encourage further study.A hand-sized light-weight, soft and combustable sedimentary rock specimen, that is dark brown in colour. The specimen has jagged edges, as though parts of the rock have crumbled away. Brown coal, or Lignite, is formed naturally from compressed peat, and is typically found in natural basins. The stages to the formation of coal ('coalification') begin with plant material and wood, which will decay if it is not subjected to deep burial or heating, and turn into Peat. Peat, when sufficiently compressed naturally, will turn into Brown Coal (Lignite), and finally into Black Coal (sub-bituminous, bituminous and anthracite). Each successive stage has a higher energy content and lower water content. It is brownish-black in colour. Brown Coal has a high moisture content, between 50 and 75 percent, and a low carbon content. Some Brown Coals may be stratified, with layers of plant matter, which means little coalification has occurred beyond the peat natural processing stage. When Brown Coal is submerged in dilute nitric acid or boiling potassium hydroxide solution, it reacts to produce a reddish solution, of which higher-ranked coals do not. When brown coal is pulverised and burned in boilers, the steam is used to drive turbines, which generates electricity. It is the lowest rank of coal, as when burned, it creates a relatively low heat content, which in turn does not create a great output of steam. burke museum, beechworth, indigo shire, beechworth museum, geological, geological specimen, mineralogy, brown coal, brown coal specimen, lignite, lal lal, lal lal coal mine, lal lal iron mine, ballarat, blast furnace -
Federation University Historical CollectionBook, McGraw Hill Book Company Inc, Hydraulics by R.L. Daugherty, 1919
... ...water power plants...reaction turbine...hydraulics hydrokinetics impulse wheel water power plants reaction turbine turbines centrifugal pump bookshop plate Tait Book Co Blue hard covered book Hydraulics by R.L. ...Blue hard covered bookhydraulics, hydrokinetics, impulse wheel, water power plants, reaction turbine, turbines, centrifugal pump, bookshop plate, tait book co -
Federation University Historical CollectionPhotograph - Photograph - Black and White, Fitting Petton Wheel to Water Turbine, Lower Rubicon Station, Rubicon Hydro Electric Scheme
... Fitting Petton Wheel to Water Turbine, Lower Rubicon Station, Rubicon Hydro Electric Scheme...rubicon hydro electric station rubicon hydroelectricity engineers Fitting Petton Wheel to Water Turbine, Lower Rubicon Station, Rubicon Hydro Electric Scheme Photograph Photograph - Black and White ...rubicon hydro electric station, rubicon, hydroelectricity, engineers -
Flagstaff Hill Maritime Museum and VillageEquipment - Boiler, T & F Johnson, boilermakers, late 19th century
... When the water boils the steam rises to the top, and as it escapes from the boiler the steam pressure builds up in the steam space to later be released to do work; drive machinery such as ship and train engines, turbines, presses, wheels, and driving belts to operate looms and saws. ...When the water boils the steam rises to the top, and as it escapes from the boiler the steam pressure builds up in the steam space to later be released to do work; drive machinery such as ship and train engines, turbines, presses, wheels, and driving belts to operate looms and saws. ...A steam boiler like this late 18th century boiler, is often called a colonial boiler. Steam boilers were used in factories throughout Australia, mounted over similar designs of brick furnaces. This heat from the fire travels through the tubes in this fire tube boiler and the water heats as it circulates around them. Another kind of boiler is a water tube boiler, in which the water is inside the tubes and the heat of the combustion surrounds the tubes. The boiler in our collection burned wood as fuel but others of this design could also burn coal, coke, gas and liquid fuels. The boiler was made by T & F Johnson, boilermakers. In 1922 their factory was located at Coventry Street, South Melbourne. They were still advertising their 'Colonial, multi, vertical boilers, all sizes' at the same address in 1934. The connected pressure gauge, made in London by Dewrance, measures 0 to 400 pounds per square inch. John Dewrance is renowned as a pioneer of the steam locomotive in the early 19th century. He founded John Dewrance & Co. in South London in 1844. His son Sir John Dewrance took over in 1879. In 1939 the company became a subsidiary of Babcock & Wilcox, and was eventually owned by Emerson. How the boiler works: - A boiler is about two-thirds filled with water and heat is applied, in this case in the form of burning wood. The heat is transferred through the metal of the boiler to the water. When the water boils the steam rises to the top, and as it escapes from the boiler the steam pressure builds up in the steam space to later be released to do work; drive machinery such as ship and train engines, turbines, presses, wheels, and driving belts to operate looms and saws. The heat associated with the boiler can be used for preserving food, sterilising, factory manufacturing processes, and steaming wood for shipbuilding. Every boiler has several components fitted for safe operation: - - Safety valves - Gauge glass - Pressure gauge - Main steam stop valve - Water check valve - Blowdown valve - Manhole doorThe boiler is a significant item that gives us a snapshot of early Melbourne's industrial history. It is an example of the technological advancement during the Industrial Revolution where steam-driven machinery and motors could perform tasks more efficiently than manual labour. The makers were one of many boilermaker businesses in Melbourne during the early late-19th andearly 20th centuries. The maritime trade and skills of boilermaking are still learned and applied today. The Dewrance steam pressure gauge connected to the boiler was made by the London firms foundered by John Dewrance. He was renowned for developing the steam locomotive in the early 19th century.Boiler; a horizontal cylindrical underfired steam boiler. It is a multi-tubular design and is timber plank-clad, with brass fittings and pressure gauges. The boiler has an iron door at one end with a metal chimney above it. It is installed over a brick-enclosed solid fuel furnace. Two large, wood-mounted pressure gauges are connected to the boiler and have inscriptions. An inscription is on a red, cast iron plaque above the boiler door. The boiler's maker is T & F Johnson, South Melbourne. One of the pressure gauges was made by Dewrance, London..Maker's plate: "T & F JOHNSON / BOILERMAKERS / SOUTH MELBOURNE" Pressure gauge: "POUNDS PRESSURE / PER [square] INCH / DEWRANCE LONDON"flagstaff hill, warrnambool, maritime museum, shipwreck coast, flagstaff hill maritime village, great ocean road, boiler, multi tube boiler, steam boiler, steam technology, underfired boiler, horizontal boiler, timber clad boiler, steam power, industrialisation, boilermakers, south melbourne, dewrance, john dewrance, pressure gauge, dewrance pressure gauge, t & f johnson, london, steam engine, steam locomotive, pounds per square inch, 19th century, steam machine, johnson tyne foundry, colonial boiler, fire tube boiler -
Kiewa Valley Historical SocietyPhotos: SECV Construction
... turbines - large pipes and workman (double pipe) bifurcate pipes. 7. Installing a generator - seven workmen with hard hats (assembling). 8. V3536 number plate - fire fighting truck - filling up with water. 9. 1939 after bushfire. 10. ...turbines - large pipes and workman (double pipe) bifurcate pipes. 7. Installing a generator - seven workmen with hard hats (assembling). 8. V3536 number plate - fire fighting truck - filling up with water. 9. 1939 after bushfire. 10. ...The SECV constructed the Kiewa Hydro Electric Scheme from the late 1940s to the early 1960s. Dams, Power Stations, towns, etc. were built during this timeThese photos show a lot of detail of the work involved in constructing large structures eg. power stations, dams etc. Also they give an insight into safety eg. clothing etc. at the time. These photos were displayed on the walls of the hotel when the building was the SEC Workmans Club x12 Most of them framed. Large black and white photos of construction of the Kiewa Hydro Electric Scheme: 1. Clover Dam Construction 2. Clover Dam Construction suspended on a crane 3. Power Station Clover Dam 4. Hauling tunnel muck. Tunnel "Ruston" locomotive on rail entrance.5. McKay Power Station 6. Connecting the headrace pipe to turbo turbines - large pipes and workman (double pipe) bifurcate pipes. 7. Installing a generator - seven workmen with hard hats (assembling). 8. V3536 number plate - fire fighting truck - filling up with water. 9. 1939 after bushfire. 10. West Kiewa Power Station - labelled. 11. Lining the portal of a tunnel 12. Camp and offices on left, tunnel entrance on right.khes, construction of khes -
Kiewa Valley Historical SocietyPostcard - Mt Beauty and the Kiewa Hydro Electric Scheme
... Turbines, No. 4 Power Station, Kiewa 6. junction Dam, Bogong 7. Mt Beauty Village Shopping Centre 8. Switchyard, No. 4 Power Station, Kiewa 9. Control Room, No. 4 Power Station, Kiewa 10. Winter Scene at Rocky Valley on the Bogong High Plains 11. Water...Turbines, No. 4 Power Station, Kiewa 6. junction Dam, Bogong 7. Mt Beauty Village Shopping Centre 8. Switchyard, No. 4 Power Station, Kiewa 9. Control Room, No. 4 Power Station, Kiewa 10. Winter Scene at Rocky Valley on the Bogong High Plains 11. Water ...SECV constructed the Kiewa Hydro Electric Scheme including the township of Mt Beauty. The area became a popular tourist destination.Tourism in the Kiewa Valley especially at Mt Beauty and the Bogong High Plains along with the Kiewa Hydro Electric Scheme became very popular and an important industry.Fold out b & w postcard with 12 photos back to back. All with a title. Kate 1950s 1. High Voltage Transmission Line, showing Mount Beauty Township 2. Clover Dam Reservoir, Kiewa 3. No. 3 Power Station, Kiewa 4. Generators, No. 3 Power Station 5. Turbines, No. 4 Power Station, Kiewa 6. junction Dam, Bogong 7. Mt Beauty Village Shopping Centre 8. Switchyard, No. 4 Power Station, Kiewa 9. Control Room, No. 4 Power Station, Kiewa 10. Winter Scene at Rocky Valley on the Bogong High Plains 11. Water Channel, Mt Bogong in Background 12. Mt Beauty Township, Kiewa Valleytransmission line, power station, generators, mt beauty, turbines, junction dam, switchyard, rocky valley, control room -
Kiewa Valley Historical SocietyPhotograph from Lake Guy, Bogong Village, Scene from shores of Lake Guy to Mountain range, 1930s to 1950s
... The lake is one of the many water storage storage reservoirs used to supply the power stations their main power to run the huge turbines generating the final product, electricity bogong village circa 1930 to 1950 kiewa hydro-electricity scheme victorian alpine region mid 1900s This black and white photograph shot from the shores of Lake Guy toward the mountain range of the Victorian Alps details the early construction of the construction worker's accommodation of the Bogong Village. ...In 1940 Field Headquarters for the Kiewa Scheme were established at Bogong with office, workshop facilities and accommodation for workmen, staff and some families constructed. (There had been a 'tent camp' on this site in 1939 but was destroyed by bushfires) Construction of accommodation continued until 1947. A total of 40 houses plus a hostel for single staff, post office, police station, medical centre and primary school all with water and sewerage and electricity supply. The staff hostel was known as Kiewa House and is now occupied by the Education Department. Lake Guy was named after Mr. L.T. Guy who was the Resident Engineer in charge of construction work and associated activities on the Kiewa area. He held this position from 1939 to November 1946 when he was transferred to Head Office.The Bogong Township was developed firstly as an accommodation centre (base camp) for construction workers employed under the Kiewa Hydroelectric Scheme. Due to the influx of European workers into the Township the beautification of the immediate surrounds(gardens etc.) had a distinct European flavour. This environment has been very beneficial for tourism in later years. Strict environmental control has not allowed for any extensive redevelopment in tourist accommodation and basically restricted it to the accommodation initially built for the construction workers. Activities such a bike riding, snow skiing, restricted horse riding and bush walking on the Alpine plains and mountains are now a viable part of the Kiewa Valley Tourist Industry. The lake is one of the many water storage storage reservoirs used to supply the power stations their main power to run the huge turbines generating the final product, electricityThis black and white photograph shot from the shores of Lake Guy toward the mountain range of the Victorian Alps details the early construction of the construction worker's accommodation of the Bogong Village. The paper is of 200gms and is not photographic paper and can be assumed to be a reproduction of an original photobogong village circa 1930 to 1950, kiewa hydro-electricity scheme, victorian alpine region mid 1900s -
Bendigo Historical Society Inc.Tool - BILL ASHMAN COLLECTION: MULTIPLE SCALEBUOY
... turbine arrangement on top. An electromagnetic apparatus containing mercury, promoted for its ability to convert ordinary tap water in the home into therapeutic bathing and drinking water with healing powers related to a wide range of medical conditions. ...turbine arrangement on top. An electromagnetic apparatus containing mercury, promoted for its ability to convert ordinary tap water in the home into therapeutic bathing and drinking water with healing powers related to a wide range of medical conditions. ...Four scalebuoys stacked above each other in a metal frame one with a copper turbine arrangement on top. An electromagnetic apparatus containing mercury, promoted for its ability to convert ordinary tap water in the home into therapeutic bathing and drinking water with healing powers related to a wide range of medical conditions. The scalebuoy was also sold for a remarkably diverse list of other uses and benefits. Invented by Richard Hartley Smith Abbott, a well known Bendigo businessman following World War 1.Bendigo Electronic Coy Patd A.C. Scalebuoysciences, instruments - general, scalebuoy, bendigo-history-inventions-business-abbott -
Kiewa Valley Historical SocietyPhoto - Bogong Township, March 1944
... The lake is one of the many water storage reservoirs used to supply the power stations their main power to run the huge turbines generating the final product, electricity Bogong Village SECV Handwritten on the back of photo - Township March '44 Black and white photograph of Bogong Township taken March 1944 Photo - Bogong Township ...In 1940 Field Headquarters for the Kiewa Scheme were established at Bogong with office, workshop facilities and accommodation for workmen, staff and some families constructed. (There had been a 'tent camp' on this site in 1939 but was destroyed by bushfires) Construction of accommodation continued until 1947. A total of 40 houses plus a hostel for single staff, post office, police station, medical centre and primary school all with water and sewerage and electricity supply. The staff hostel was known as Kiewa House and is now occupied by the Education Department. Lake Guy was named after Mr. L.T. Guy who was the Resident Engineer in charge of construction work and associated activities on the Kiewa area. He held this position from 1939 to November 1946 when he was transferred to Head Office. The Bogong Township was developed firstly as an accommodation centre (base camp) for construction workers employed under the Kiewa Hydroelectric Scheme. Due to the influx of European workers into the Township the beautification of the immediate surrounds (gardens etc.) had a distinct European flavour. This environment has been very beneficial for tourism in later years. At the completion of the scheme, in the 1960's, the village was opened to public/tourism use. Strict environmental control has not allowed for any extensive redevelopment in tourist accommodation and basically restricted it to the accommodation initially built for the construction workers. Activities such a bike riding, snow skiing, restricted horse riding and bush walking on the Alpine plains and mountains are now a viable part of the Kiewa Valley Tourist Industry. The lake is one of the many water storage reservoirs used to supply the power stations their main power to run the huge turbines generating the final product, electricityBlack and white photograph of Bogong Township taken March 1944Handwritten on the back of photo - Township March '44bogong village, secv -
Kiewa Valley Historical SocietyPhotograph - Bogong Village (7 copies), Approx 1940
... The lake is one of the many water storage reservoirs used to supply the power stations their main power to run the huge turbines generating the final product, electricity. ...In 1940 Field Headquarters for the Kiewa Scheme were established at Bogong with office, workshop facilities and accommodation for workmen, staff and some families constructed. (There had been a 'tent camp' on this site in 1939 but was destroyed by bushfires) Construction of accommodation continued until 1947. A total of 40 houses plus a hostel for single staff, post office, police station, medical centre and primary school all with water and sewerage and electricity supply. The staff hostel was known as Kiewa House and is now occupied by the Education Department. Lake Guy was named after Mr. L.T. Guy who was the Resident Engineer in charge of construction work and associated activities on the Kiewa area. He held this position from 1939 to November 1946 when he was transferred to Head Office. The Bogong Township was developed firstly as an accommodation centre (base camp) for construction workers employed under the Kiewa Hydroelectric Scheme. Due to the influx of European workers into the Township the beautification of the immediate surrounds (gardens etc.) had a distinct European flavour. This environment has been very beneficial for tourism in later years. At the completion of the scheme, in the 1960's, the village was opened to public/tourism use. Strict environmental control has not allowed for any extensive redevelopment in tourist accommodation and basically restricted it to the accommodation initially built for the construction workers. Activities such a bike riding, snow skiing, restricted horse riding and bush walking on the Alpine plains and mountains are now a viable part of the Kiewa Valley Tourist Industry. The lake is one of the many water storage reservoirs used to supply the power stations their main power to run the huge turbines generating the final product, electricity. Evidence can be seen of the 1939 bushfires.Set of 7 identical black and white photographs of Bogong Village after 1939 bush firesHandwritten on the back of one photo - Bogong Village approx. 1940, after 1939 bush fires. Staff residences to left. Kiewa House, General offices and test lab to the right. Hand drawn map on the back of one photo.bogong village, secv -
Kiewa Valley Historical SocietyPhoto - Bogong Village Township, October 8, 1946
... The lake is one of the many water storage reservoirs used to supply the power stations their main power to run the huge turbines generating the final product, electricity Bogong Village; Lake Guy; Kiewa Hydro Electric Scheme Handwritten on the back - Town of Bogong on a rugged mountain slope above Lake Guy. ...In 1940 Field Headquarters for the Kiewa Scheme were established at Bogong with office, workshop facilities and accommodation for workmen, staff and some families constructed. (There had been a 'tent camp' on this site in 1939 but was destroyed by bushfires) Construction of accommodation continued until 1947. A total of 40 houses plus a hostel for single staff, post office, police station, medical centre and primary school all with water and sewerage and electricity supply. The staff hostel was known as Kiewa House and is now occupied by the Education Department. Lake Guy was named after Mr. L.T. Guy who was the Resident Engineer in charge of construction work and associated activities on the Kiewa area. He held this position from 1939 to November 1946 when he was transferred to Head Office. The Bogong Township was developed firstly as an accommodation centre (base camp) for construction workers employed under the Kiewa Hydroelectric Scheme. Due to the influx of European workers into the Township the beautification of the immediate surrounds (gardens etc.) had a distinct European flavour. This environment has been very beneficial for tourism in later years. At the completion of the scheme, in the 1960's, the village was opened to public/tourism use. Strict environmental control has not allowed for any extensive redevelopment in tourist accommodation and basically restricted it to the accommodation initially built for the construction workers. Activities such a bike riding, snow skiing, restricted horse riding and bush walking on the Alpine plains and mountains are now a viable part of the Kiewa Valley Tourist Industry. The lake is one of the many water storage reservoirs used to supply the power stations their main power to run the huge turbines generating the final product, electricityBlack and white photograph of Bogong Village which appeared in the Herald Sun newspaper on October 8, 1946. Page 13Handwritten on the back - Town of Bogong on a rugged mountain slope above Lake Guy. State Electricity Committee workers on the Kiewa Hydro Electric scheme live here in all electric homes. Stamped on the back - Copyright Not for reproduction Herald Sun Feature Service Melbourne Australiabogong village; lake guy; kiewa hydro electric scheme -
Kiewa Valley Historical SocietyPostcard - Lake Guy and Bogong Village
... The lake is one of the many water storage reservoirs used to supply the power stations their main power to run the huge turbines generating the final product, electricity Lake Guy Bogong village SECV Handwritten on the back of postcard ' Like most of our camps, this looks like something from the Canadian Rockies' Stamped on the back - Valentine's Post Card A genuine photograph Black and white photographic postcard of Lake Guy and Bogong Village. ...In 1940 Field Headquarters for the Kiewa Scheme were established at Bogong with office, workshop facilities and accommodation for workmen, staff and some families constructed. (There had been a 'tent camp' on this site in 1939 but was destroyed by bushfires) Construction of accommodation continued until 1947. A total of 40 houses plus a hostel for single staff, post office, police station, medical centre and primary school all with water and sewerage and electricity supply. The staff hostel was known as Kiewa House and is now occupied by the Education Department. Lake Guy was named after Mr. L.T. Guy who was the Resident Engineer in charge of construction work and associated activities on the Kiewa area. He held this position from 1939 to November 1946 when he was transferred to Head Office. The Bogong Township was developed firstly as an accommodation centre (base camp) for construction workers employed under the Kiewa Hydroelectric Scheme. Due to the influx of European workers into the Township the beautification of the immediate surrounds (gardens etc.) had a distinct European flavour. This environment has been very beneficial for tourism in later years. At the completion of the scheme, in the 1960's, the village was opened to public/tourism use. Strict environmental control has not allowed for any extensive redevelopment in tourist accommodation and basically restricted it to the accommodation initially built for the construction workers. Activities such a bike riding, snow skiing, restricted horse riding and bush walking on the Alpine plains and mountains are now a viable part of the Kiewa Valley Tourist Industry. The lake is one of the many water storage reservoirs used to supply the power stations their main power to run the huge turbines generating the final product, electricityBlack and white photographic postcard of Lake Guy and Bogong Village. Kiewa Hydro electric Project (showing Junction Dam in front)Handwritten on the back of postcard ' Like most of our camps, this looks like something from the Canadian Rockies' Stamped on the back - Valentine's Post Card A genuine photographlake guy, bogong village, secv -
Kiewa Valley Historical SocietyPhoto - Bogong Township, September 1953
... The lake is one of the many water storage reservoirs used to supply the power stations their main power to run the huge turbines generating the final product, electricity Bogong Village SECV Faded handwritten inscription on back - Bogong Township taken from Little Arthur fire track. ...In 1940 Field Headquarters for the Kiewa Scheme were established at Bogong with office, workshop facilities and accommodation for workmen, staff and some families constructed. (There had been a 'tent camp' on this site in 1939 but was destroyed by bushfires) Construction of accommodation continued until 1947. A total of 40 houses plus a hostel for single staff, post office, police station, medical centre and primary school all with water and sewerage and electricity supply. The staff hostel was known as Kiewa House and is now occupied by the Education Department. Lake Guy was named after Mr. L.T. Guy who was the Resident Engineer in charge of construction work and associated activities on the Kiewa area. He held this position from 1939 to November 1946 when he was transferred to Head Office. The Bogong Township was developed firstly as an accommodation centre (base camp) for construction workers employed under the Kiewa Hydroelectric Scheme. Due to the influx of European workers into the Township the beautification of the immediate surrounds (gardens etc.) had a distinct European flavour. This environment has been very beneficial for tourism in later years. At the completion of the scheme, in the 1960's, the village was opened to public/tourism use. Strict environmental control has not allowed for any extensive redevelopment in tourist accommodation and basically restricted it to the accommodation initially built for the construction workers. Activities such a bike riding, snow skiing, restricted horse riding and bush walking on the Alpine plains and mountains are now a viable part of the Kiewa Valley Tourist Industry. The lake is one of the many water storage reservoirs used to supply the power stations their main power to run the huge turbines generating the final product, electricityBlack and white photograph of Bogong Township taken from Little Arthur fire track. September 1953Faded handwritten inscription on back - Bogong Township taken from Little Arthur fire track. Sept 1953bogong village, secv -
Kiewa Valley Historical SocietyPhoto - First Bogong Camp, September 1950
... The lake is one of the many water storage reservoirs used to supply the power stations their main power to run the huge turbines generating the final product, electricity Bogong Camp Bogong village SECV Handwritten on the back - 1st Bogong Camp. ...In 1940 Field Headquarters for the Kiewa Scheme were established at Bogong with office, workshop facilities and accommodation for workmen, staff and some families constructed. (There had been a 'tent camp' on this site in 1939 but was destroyed by bushfires) Construction of accommodation continued until 1947. A total of 40 houses plus a hostel for single staff, post office, police station, medical centre and primary school all with water and sewerage and electricity supply. The staff hostel was known as Kiewa House and is now occupied by the Education Department. Lake Guy was named after Mr. L.T. Guy who was the Resident Engineer in charge of construction work and associated activities on the Kiewa area. He held this position from 1939 to November 1946 when he was transferred to Head Office. The Bogong Township was developed firstly as an accommodation centre (base camp) for construction workers employed under the Kiewa Hydroelectric Scheme. Due to the influx of European workers into the Township the beautification of the immediate surrounds (gardens etc.) had a distinct European flavour. This environment has been very beneficial for tourism in later years. At the completion of the scheme, in the 1960's, the village was opened to public/tourism use. Strict environmental control has not allowed for any extensive redevelopment in tourist accommodation and basically restricted it to the accommodation initially built for the construction workers. Activities such a bike riding, snow skiing, restricted horse riding and bush walking on the Alpine plains and mountains are now a viable part of the Kiewa Valley Tourist Industry. The lake is one of the many water storage reservoirs used to supply the power stations their main power to run the huge turbines generating the final product, electricityBlack and white photo of Bogong Village. September 1950Handwritten on the back - 1st Bogong Camp. SEC Kiewa Scheme Sept 1950bogong camp, bogong village, secv -
Kiewa Valley Historical SocietyPhoto - Bogong Village Township
... The lake is one of the many water storage reservoirs used to supply the power stations their main power to run the huge turbines generating the final product, electricity Bogong Village SECV Black and white photograph of Bogong Village from across Lake Guy. ...In 1940 Field Headquarters for the Kiewa Scheme were established at Bogong with office, workshop facilities and accommodation for workmen, staff and some families constructed. (There had been a 'tent camp' on this site in 1939 but was destroyed by bushfires) Construction of accommodation continued until 1947. A total of 40 houses plus a hostel for single staff, post office, police station, medical centre and primary school all with water and sewerage and electricity supply. The staff hostel was known as Kiewa House and is now occupied by the Education Department. Lake Guy was named after Mr. L.T. Guy who was the Resident Engineer in charge of construction work and associated activities on the Kiewa area. He held this position from 1939 to November 1946 when he was transferred to Head Office. The Bogong Township was developed firstly as an accommodation centre (base camp) for construction workers employed under the Kiewa Hydroelectric Scheme. Due to the influx of European workers into the Township the beautification of the immediate surrounds (gardens etc.) had a distinct European flavour. This environment has been very beneficial for tourism in later years. At the completion of the scheme, in the 1960's, the village was opened to public/tourism use. Strict environmental control has not allowed for any extensive redevelopment in tourist accommodation and basically restricted it to the accommodation initially built for the construction workers. Activities such a bike riding, snow skiing, restricted horse riding and bush walking on the Alpine plains and mountains are now a viable part of the Kiewa Valley Tourist Industry. The lake is one of the many water storage reservoirs used to supply the power stations their main power to run the huge turbines generating the final product, electricityBlack and white photograph of Bogong Village from across Lake Guy. Photo mounted on buff cardbogong village, secv -
Kiewa Valley Historical SocietyPhotographs x 2 1. Lake Guy & Bogong Village 2. Bulldozer moving rocks
... Lake Guy is one of the many water storage reservoirs used to supply the power stations their main power to run the huge turbines generating the final product, electricity 2. ...1. In 1940 Field Headquarters for the Kiewa Scheme were established at Bogong with office, workshop facilities and accommodation for workmen, staff and some families constructed. (There had been a 'tent camp' on this site in 1939 but was destroyed by bushfires) Construction of accommodation continued until 1947. A total of 40 houses plus a hostel for single staff, post office, police station, medical centre and primary school all with water and sewerage and electricity supply. The staff hostel was known as Kiewa House and is now occupied by the Education Department. Lake Guy was named after Mr. L.T. Guy who was the Resident Engineer in charge of construction work and associated activities on the Kiewa area. He held this position from 1939 to November 1946 when he was transferred to Head Office. 2. Example of the type of heavy machinery used in clearing and building of Lake Guy, Bogong Village and Clover Dam 1. The Bogong Township was developed firstly as an accommodation centre (base camp) for construction workers employed under the Kiewa Hydroelectric Scheme. At the completion of the scheme, in the 1960's, the village was opened to public/tourism use. Strict environmental control has not allowed for any extensive redevelopment in tourist accommodation and basically restricted it to the accommodation initially built for the construction workers. Lake Guy is one of the many water storage reservoirs used to supply the power stations their main power to run the huge turbines generating the final product, electricity 2. Pictorial record of the types of machinery used in the development of Bogong Village and the Hydro-electricity scheme including the Clover Dam. Note the lack of safety equipment worn by construction workers of the period. 2 black and white photographs taken at Bogong 1. Lake Guy with Bogong Village in the background 2. Workman in bulldozer clearing rocks, possibly for construction at Bogong1. Handwritten in blue ink on back of photo 'Lake Guy showing Bogong Village' 2. No markingslake guy, bogong village, secv
