Thermodynamic Evaluation of Gas Turbine Cogeneration Cycles: Part II—Complex Cycle Analysis

Author:

Rice I. G.1

Affiliation:

1. Spring, TX 77383

Abstract

Complex open gas turbine cycles are analyzed by applying the heat balance method presented in Part I of this paper. Reheating, intercooling, regeneration, steam injection, and steam cooling are evaluated graphically to give a visual perspective of what takes place in terms of the overall heat balance when such complexities are introduced to the cycle. An example of a viable, new, intercooled regenerative cycle is given. A second example of a prototype reheat gas turbine is also included. The overall approach using the heat balance method can be applied to various cogeneration configurations when considering the more complex cycles of the future.

Publisher

ASME International

Subject

Mechanical Engineering,Energy Engineering and Power Technology,Aerospace Engineering,Fuel Technology,Nuclear Energy and Engineering

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1. Exergy Analysis of Captive Power Plant;International Journal of Scientific Research in Science, Engineering and Technology;2019-05-10

2. Investigations on a complex Brayton cycle under maximum economic and maximum thermodynamic conditions;International Journal of Ambient Energy;2007-07

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5. Thermodynamic performance evaluation of combustion gas turbine cogeneration system with reheat;Applied Thermal Engineering;2004-09

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