Condensation in Radial Turbines—Part I: Mathematical Modeling

Author:

Schuster Sebastian1,Brillert Dieter1,Benra Friedrich-Karl1

Affiliation:

1. Chair of Turbomachinery, University of Duisburg-Essen, Lotharstr. 1, Duisburg, 47057, Germany e-mail:

Abstract

In this two-part paper, the investigation of condensation in the impeller of radial turbines is discussed. In Paper I, a solution strategy for the investigation of condensation in radial turbines using computational fluid dynamics (CFD) methods is presented. In Paper II, the investigation methodology is applied to a radial turbine type series that is used for waste heat recovery. First, the basic CFD approach for the calculation of the gas-droplet-liquid-film flow is introduced. Thereafter, the equations connecting the subparts are explained and a validation of the models is performed. Finally, in Paper I, condensation phenomena for a selected radial turbine impeller are discussed on a qualitative basis. Paper II continues with a detailed quantitative analyses. The aim of Paper I is to explain the models that are necessary to study condensation in radial turbines and to validate the implementation against available experiments conducted on isolated effects. This study aims to develop a procedure that is applicable for investigation of condensation in radial turbines. Furthermore, the main processes occurring in a radial turbine once the steam temperature is below the saturation temperature are explained and analyzed.

Publisher

ASME International

Subject

Mechanical Engineering

Reference56 articles.

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4. Classical Nucleation Theory and Its Application to Condensing Steam Flow Calculations;Proc. Inst. Mech. Eng., Part C: J. Mech. Eng. Sci.,2005

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