About: Assessment of the Wetness Energy Loss in 1000 MW Nuclear and 210 MW Fossil LP Steam Turbines     Goto   Sponge   NotDistinct   Permalink

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  • This paper presents results of computational analysis of the wet steam energy loss occurring in 1000 MW nuclear and 210 fossil MW LP steam turbines. The turbines operate under considerably different conditions as regards pressure level in the droplet nucleation zone, exit moisture level and droplet size spectra determined from the optical extinction measurements. The evaluation of the basic wetness energy losses was carried out covering thermodynamic loss, drag loss of the fine and coarse droplets, impact loss, collected water loss, centrifuging loss and exit loss. Statistical 2D evaluation method was employed throughout the computational simulation of the loss.
  • This paper presents results of computational analysis of the wet steam energy loss occurring in 1000 MW nuclear and 210 fossil MW LP steam turbines. The turbines operate under considerably different conditions as regards pressure level in the droplet nucleation zone, exit moisture level and droplet size spectra determined from the optical extinction measurements. The evaluation of the basic wetness energy losses was carried out covering thermodynamic loss, drag loss of the fine and coarse droplets, impact loss, collected water loss, centrifuging loss and exit loss. Statistical 2D evaluation method was employed throughout the computational simulation of the loss. (en)
Title
  • Assessment of the Wetness Energy Loss in 1000 MW Nuclear and 210 MW Fossil LP Steam Turbines
  • Assessment of the Wetness Energy Loss in 1000 MW Nuclear and 210 MW Fossil LP Steam Turbines (en)
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  • Assessment of the Wetness Energy Loss in 1000 MW Nuclear and 210 MW Fossil LP Steam Turbines
  • Assessment of the Wetness Energy Loss in 1000 MW Nuclear and 210 MW Fossil LP Steam Turbines (en)
skos:notation
  • RIV/68407700:21220/12:00203382!RIV13-GA0-21220___
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  • P(GAP101/11/1593)
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  • 123878
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  • RIV/68407700:21220/12:00203382
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  • steam turbine; wet steam; wetness energy loss (en)
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  • [965D7A490121]
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  • Srní
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  • Plzeň
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  • Power system, Engineering, Thermodynamics & Fluid flow 2012
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  • Kolovratník, Michal
  • Petr, Václav
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number of pages
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  • Západočeská univerzita v Plzni
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  • 978-80-261-0113-0
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  • 21220
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