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Jothibasu, S.
- Optimization of Annual Energy Generation in run of the River of Hydro Power Plants
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Authors
Affiliations
1 Energy Efficiency and Renewable Energy Division, Central Power Research Institute, Sir C V Raman Road, Bangalore-560080, IN
1 Energy Efficiency and Renewable Energy Division, Central Power Research Institute, Sir C V Raman Road, Bangalore-560080, IN
Source
Power Research, Vol 8, No 4 (2012), Pagination: 317–328Abstract
Annual variation in water infl ow down to 50 % of its maximum value is quite common in run of the river hydro plants (with storage of 1–3 hours of power generation capacity) with multiple stations located on the same river in intervals of 30–50 km. The low capacity factors (< 40 %) call for effi cient water management for modulation of unit and station loads to co-ordinate operations and maximize energy generation. The effi ciency characteristics (which represent the utilization effi ciency of water resources) of the hydro units are not fl at but decrease with decrease in load. The net operating effi ciencies of individual hydro power plant units decrease sharply at lower loading levels below 80 % of the rated capacity due to swirling and vorticity components on one hand and erosion-cavitation on the other hand. The parameter (Pmin/Pmax) amongindividual units infl uences the net overall effi ciency to the tune of 2–10 % points in multi-turbine, multi-station environments of a river. By optimal selection of the loads to maximize this parameter, the energy generation can be maximized. The ultimate solution to optimal water utilization is to achieve a flat efficiency curve over the load range through 3-d designs of turbine runner. Silt control also plays a role in the energy effi ciency but is controllable and secondary.Keywords
Water management, Hydro power plant, Run of the river plants, Multiple serial stations, Runner design and Plant efficiency.- Operational Optimization of Turbo Generator Units and Auxiliaries in Large Run - off the River Hydro Power Plants
Abstract Views :176 |
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Authors
Affiliations
1 Energy Efficiency and Renewable Energy Division at CPRI Bangalore, IN
1 Energy Efficiency and Renewable Energy Division at CPRI Bangalore, IN
Source
Power Research, Vol 7, No 2 (2011), Pagination: 153–160Abstract
This paper presents the operational optimization to be implemented, based on the energy performance evaluation study carried out in a few large run off the river hydro power plants. The design parameters are compared with operating parameters and the deviations are analyzed. The various operational optimization opportunities available are described in this paperKeywords
Hydro Power Plant, Operational Optimization.- Development of a Novel Method for Maintaining Constant Total Head during Solar Surface Pump Testing
Abstract Views :294 |
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Authors
Affiliations
1 Energy Efficiency and Renewable Energy Division, CPRI, Bangalore – 560080, Karnataka, IN
1 Energy Efficiency and Renewable Energy Division, CPRI, Bangalore – 560080, Karnataka, IN
Source
Power Research, Vol 16, No 2 (2020), Pagination: 125-128Abstract
Solar pumps (water pumps energized by solar photovoltaic power) are being installed in large numbers for irrigation and drinking water pumping applications in the country under various schemes. Automatic test facilities are necessary to ensure quality products are deployed in time. This paper describes a novel method developed for auto constant total head maintaining during solar surface pump testing.Keywords
Constant Total Head, Novel Method, Solar Pump Testing, Surface Pump.References
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- Shaik R, Beemkumar N, Adarsha, Hiriyannaiah, Dhass AD. Efficiency enhancement in a SPV operated solar pump by effective design of VFD and tracking system. Materials Today: Proceedings; 2020 Jun. https://doi.org/10.1016/j.matpr.2020.05.035
- Harsh K, Rahul K, Pandey K, Jangir AK. BLDC motor driven water pump fed by solar photovoltaic array using boost converter. International Journal of Engineering Research and Technology. 2020 Jun; 9(6):635-9. https://doi.org/10.17577/IJERTV9IS060478
- Benghanem M, Daffallah KO, Alamari SN, Joraid AA. Effect of pumping head on solar water pumping system. Energy Conservation and Management. 2014; 77(2014):334-9. https://doi.org/10.1016/j.enconman.2013.09.043