In the last years, among all different gas turbine inlet air cooling techniques, an increasing attention to fogging approach is dedicated. The various fogging strategies seem to be a good solution to improve gas turbine or combined cycle produced power with low initial investment cost and less installation downtime. In particular, overspray fogging and interstage injection involve two phase flow consideration and water evaporation during compression process (also known as wet compression). According to the Author's knowledge, the field of wet compression is not completely studied and understood. In the present paper, all the principal aspects of wet compression and in particular the influence of injected water droplet diameter and surface temperature, and their effect on gas turbine performance and on the behavior of the axial compressor (change in axial compressor performance map due to the water injection, redistribution of stage load, etc.) are analyzed by using a calculation code, named IN.FO.G.T.E. (INterstage FOgging Gas Turbine Evaluation), developed and validated by the Authors.

Bianchi M., Melino F., Peretto A., Spina P.R., Ingistov S. (2007). Influence Of Water Droplets Size And Temperature On Wet Compression. NEW YORK : ASME.

Influence Of Water Droplets Size And Temperature On Wet Compression

BIANCHI, MICHELE;MELINO, FRANCESCO;PERETTO, ANTONIO;
2007

Abstract

In the last years, among all different gas turbine inlet air cooling techniques, an increasing attention to fogging approach is dedicated. The various fogging strategies seem to be a good solution to improve gas turbine or combined cycle produced power with low initial investment cost and less installation downtime. In particular, overspray fogging and interstage injection involve two phase flow consideration and water evaporation during compression process (also known as wet compression). According to the Author's knowledge, the field of wet compression is not completely studied and understood. In the present paper, all the principal aspects of wet compression and in particular the influence of injected water droplet diameter and surface temperature, and their effect on gas turbine performance and on the behavior of the axial compressor (change in axial compressor performance map due to the water injection, redistribution of stage load, etc.) are analyzed by using a calculation code, named IN.FO.G.T.E. (INterstage FOgging Gas Turbine Evaluation), developed and validated by the Authors.
2007
Proceedings of ASME Turbo Expo 2007: Power for Land, Sea and Air
Bianchi M., Melino F., Peretto A., Spina P.R., Ingistov S. (2007). Influence Of Water Droplets Size And Temperature On Wet Compression. NEW YORK : ASME.
Bianchi M.; Melino F.; Peretto A.; Spina P.R.; Ingistov S.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/54311
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