The Effect of Isentropic Exponent on Transonic Turbine Performance

Author:

Baumgärtner David1,Otter John J.1,Wheeler Andrew P. S.1

Affiliation:

1. Whittle Laboratory, Department of Engineering, Cambridge University, Cambridge CB3 0DY, UK

Abstract

Abstract The isentropic exponent is one of the most important properties affecting gas dynamics. Nonetheless, its effect on turbine performance is not well known. This paper discusses a series of experimental and computational studies to determine the effect of isentropic exponent on the flow field within a turbine vane. Experiments are performed using a newly modified transient wind tunnel that enables annular cascade testing with a wide range of working fluids and operating conditions. For the present study, tests are undertaken using air, CO2, R134a, and argon, giving a range of isentropic exponent from 1.08 to 1.67. Measurements include detailed wall static pressures that are compared with computational simulations. Our results show that over the range of isentropic exponents tested here, the loss can vary between 20% and 35%, depending on vane exit Mach number. The results are important for future turbines operating with real-gas effects and/or those where high gas temperatures can lead to variations in the isentropic exponent.

Publisher

ASME International

Subject

Mechanical Engineering

Reference24 articles.

1. The Three Isentropic Exponents of Dry Steam;Kouremenos;Forschung im Ingenieurwesen A,1985

2. The Three Isentropic Exponents of Wet Steam;Paradissiadis;Forschung im Ingenieurwesen A,1987

3. The Role of Dense Gas Dynamics on ORC Turbine Performance;Wheeler;ASME J. Eng. Gas Turbines Power,2013

4. A Study of Trailing-Edge Losses in Organic Rankine Cycle Turbines;Durá Galiana;ASME J. Turbomach.,2016

5. A Review of Helium Gas Turbine Technology for High-Temperature Gas-Cooled Reactors;No;Nucl. Eng. Technol.,2007

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