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Labyrinth roof mounted natural ventilation is used to disperse heat from the production process in the power plant.
More information on the project:
www.coltinfo.co.uk/projects/power-generation/power-genera...
A Colt Shaft solution installed in the Hydro Electric Power Station in Ireland.
More information on the project:
www.coltinfo.co.uk/projects/power-generation/power-genera...
Duke Energy's Crystal River power complex, as viewed from the Withlacoochee River, Levy County, Florida. The complex consists of a coal-fired plant to be phased out, a natural gas-fired plant under construction and the deactivated CR-3 nuclear power plant.
PK3_1723 c2.
"Anderson Collection 313B Hydro substation at Sulphide" [Ontario]. There are railway cars in the background.
Eritrea, Asmara, woman walking on an empty street by gas station with a building in the background
Eritrea, Asmara, gas station with a building in the background
CHINA SHANGHAI HONGQIAO 19MAY10 - Installation of solar photovoltaic panels on the roofs of the Hongqiao Passenger Rail Terminal in Shanghai, China. There are a total of 23000 solar panels planned for the CECIC-funded project, each panel with a production capacity of 280 KWh to feed into the electricity grid.
jre/Photo by Jiri Rezac
© Jiri Rezac 2010
It's about three kilometers from the highway to the beach, most of it dirt road with long stretches of the road deserted. So I was so glad to hitch a ride on the Bangui Police Patrol car out on routine patrol in the area, just as I was walking only a short distance off the highway. It costs P200 round trip to hire a tricycle to get to the windmills; this is OK if I got one or two with me to share the fare. After mulling it over - it was a very hot humid afternoon - ignoring the touts and a few stares I decided to walk, and rewarded with a free ride and new friends! These are the only police I ever felt comfortable with, I salute Ilocos for the absence of corruption. — in Bangui, Ilocos Norte.
Wall mounted natural ventilation at Gluckstadt Power Plant was provided and installed by Colt.
More information on the project:
www.coltinfo.co.uk/projects/power-generation/power-genera...
"View of Dam looking up river. Width of Dam, 700 feet; height, 17 feet; estimated horse power, 26,000. The Dam is also utilized for a railway and foot bridge. Gilmour & Co's Sluice and Power House to the right; Trenton Electric and Water Co's Sluice and Power House to the left."
Dam on the Trent river north of Trenton, Ontario.
The spillway on the Ruataniwha Dam.
The dam forms Lake Ruataniwha and is located in the Mackenzie Basin in New Zealand's South Island.
An artificial lake, it was formed as part of the Waitaki hydroelectric project. It lies on the traditional boundary of the Canterbury and Otago provinces with the town of Twizel two kilometres to the north.
It is named after Ruataniwha Station, a large sheep station in the area, part of which was purchased by the NZ Electricity Department as the site for the township of Twizel.
The lake is approximately 4.5 km in length and covers 3.4 square km.
It was formed by the New Zealand Ministry of Works as part of the Upper Waitaki Power Project between 1977[2] and 1981 in a gorge created by the Ohau River. The gorge was blocked by the building of the Ruataniwha Dam whose crest carries State Highway 8 between Twizel and Omarama.
Lake Ruataniwha is fed by the output from the Ohau A power station and also by an overflow discharge from Lake Ohau down the normally dry bed of the Ohau River.
The lake functions as a surge reservoir for the power scheme. If, during excessive inflows into Lake Ohau which Ohau A is unable to pass or, when there has been a failure of the Ohau canal, Lake Ohau can overflow a weir into the normally dry bed of the upper reaches of the Ohau River and thus into Lake Ruataniwha. Also, if water cannot pass down the canal to Ohau B then the excess inflows into the lake can be diverted by the spillway down the bed of the lower reaches of the Ohau River to Lake Benmore. While limited the storage capacity of the lake also ensures that the flows through Ohau A do not have to be exactly matched to those through Ohau B and Ohau C.
Ruataniwha discharges through a natural gap in the dam into a canal which feeds the Ohau B power station.
Before construction of the dam could start the Ohau River was diverted by cutting a channel through a low, rocky extension of the Benmore Range and building three diversion gates there which consumed 100,000 cubic metres of concrete. The Ohau River was diverted in August 1980 so that water passed through Ohau A and then back down the river bed. Later that year, downstream of Ohau A, the river was again diverted, this time away from its natural channel and through the completed gates. An earth dam with gravel shoulders was then built on its upstream and downstream sides. The main dam, which blocks the original river channel, is 240 metres long while an adjoining wing dam is 480 metres. When the dam was completed the diversion gates were closed which, beginning in March 1982,[5] impounded the water behind the dam up to and over a temporary weir which had been built downstream of Ohau A. In 1984 the lake was temporarily lowered by 3 metres while this weir was removed to improve the performance of the Ohau A power station. The diversion gates now function as spillway gates to allow excess water to pass safely through the dam.
An open picnic area with tables on a raised area where several paths converge, also includes these small, open-ended shelters if you want out of the wind, sun or rain (or snow!). I quite liked the almost Gothic arch shape of the shelters.
CHINA SHANGHAI HONGQIAO 19MAY10 - Installation of solar photovoltaic panels on the roofs of the Hongqiao Passenger Rail Terminal in Shanghai, China. There are a total of 23000 solar panels planned for the CECIC-funded project, each panel with a production capacity of 280 KWh to feed into the electricity grid.
jre/Photo by Jiri Rezac
© Jiri Rezac 2010
Lake Mead. Boulder City with its two golf courses and airport, is in the foreground. Hoover Dam is on the right.
"Anderson Collection 361D Dam #2 Trent R. 1913"
View of Dam #2 on the Trent river north of Trenton, Ontario.
First experiements with the Lumix S5. Still learning how to use it properly. Next time I definitely need to set the ISO manually to avoid so much noise.
Steam rising from the cooling towers of Ratcliffe on Soar Power Station
Jocassee Dam aerial and Duke Energy Jocassee Hydro Station Jocassee Pumped Storage Hydro Station - © 2019 David Oppenheimer - Performance Impressions aerial photography archives - performanceimpressions.com
Pouring the concrete foundation for 2MW T/A Set adjacent to the mill building at Millaquin Sugar Mill. Keith Heidenreich (left), Renzo Modolo (standing beside him) , unknown and Jimmy Rodgers (shorts).
Roof mounted Labyrinth natural ventilator at Gluckstadt Power Plant.
More information on the project:
www.coltinfo.co.uk/projects/power-generation/power-genera...
A further three 3000 kVA Cummins Diesel Generators in their #BespokeEnclosures plus base #FuelTanks leave the works. The units will be used as backup #Power for a #DataCentre
View this Generator here: bit.ly/c3000d5
Or find out more about our #AcousticEnclosures here: bit.ly/generator-enclosures
W: adeltd.co.uk
E: enquiries@adeltd.co.uk
T: +44 (0) 845 519 3627
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Javier Gonzalez, Sr. Manager Power Gen Sales Diesel LA & Gas Americas, at the MTU Onsite Energy PowerGen Symposium in Mankato
Wind-turbine blades manufactured at a Siemens Energy factory in Port Madison, Iowa, are off-loaded from trains in Pasco, Wash. The blades -- each 160 feet long and weighing 11 tons -- are trucked to Garfield County for assembly on wind turbines at Puget Sound Energy's Lower Snake River Wind Project - Phase I.