Numerical and experimental study of droplet-film-interaction for low pressure steam turbine erosion protection applications

Author:

Bohn Dieter1,Uno Tatsuya2,Yoshida Takeshi2,Betcher Christian3,Frohnheiser Jan3,Weidtmann Kristof3

Affiliation:

1. RWTH Aachen University, Templergraben 55, 52062 Aachen, Germany

2. Kawasaki Heavy Industries, Ltd., 1-1, Kawasakicho, 673-8666 Akashi City, Japan

3. B&B-AGEMA GmbH, Juelicher Str. 338, 52070 Aachen, Germany

Abstract

One common approach for anti-erosion measures in low pressure steam turbines is to equip a hollow stator vane with slots on the airfoil surface in order to remove the water film by suction and consequently reduce the amount of secondary droplets. The purpose of this paper is to build an understanding of the predominant effects in fluid-film interaction and to examine the suitability of modern numerical methods for the design process of such slots. The performance of a suction slot in terms of collection rate and air leakage is investigated numerically in a flatplate setup with upstream injection of water. In order to model the relevant phenomena (film transport, edge stripping of droplets, transport of droplets in the surrounding fluid, wall impingement of droplets) an unsteady Eulerian-Lagrangian simulation setup is applied. The accuracy of the numerical approach is assessed by comparison with experimental measurements. The comparison of four cases with the measured data demonstrates that the chosen simulation approach is able to predict the main features of film flow and interaction with the surrounding fluid. The collection rate as well as fluid film properties show the same qualitative dependency from water mass flow rate and air velocity.

Publisher

Global Power and Propulsion Society

Reference20 articles.

1. Experimental investigation of droplet size influence on low pressure steam turbine blade erosion

2. Laboratory method to evaluate fog rejection effectiveness of hydrophobic coatings for steam turbine applications;Buehlmann S.,2018

3. Experimental studies of liquid film suction from turbine stator blade surface in wet steam flow;Gribin V.,2015

4. Grundlagen einer Theorie der Nassdampfturbine (in German);Gyarmathy G.,1962

5. Numerical study on high-speed impact between a water droplet and a deformable solid surface;Han Y.,2012

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