Optical Investigation of Profile Losses in a Linear Turbine Cascade

Author:

Alhaj Olga1,Seume Joerg R.1

Affiliation:

1. Leibniz Universita¨t Hannover, Hannover, Germany

Abstract

Two or three dimensional flow visualisation is an active research field because of its non-intrusiveness. However, its application is often restricted to ideal laboratory conditions. Only few of the multi-dimensional flow visualization techniques have been developed into quantitative measurement techniques which are applicable to turbo machinery flow conditions. This paper demonstrates the application of completely optical measurements for the estimation of the loss coefficient of turbine blades in a linear cascade wind tunnel, which represents flow conditions close to the real but geometrically simplified and therefore more accessible. Two optical means were combined for this purpose. To determine the velocity field of the wake, two-component Particle Image Velocimetry (PIV) was employed. Tomographical Background Oriented Schlieren method (BOS), using 8 cameras placed in 180° around the cascade, was used for measuring a 3-D density field in the wake. For purposes of comparison, the traditional loss estimation method with 5-hole pressure probes accompanied the optical methods. Inlet parameters were measured with a Prandtl probe and a temperature sensor. The optical techniques are, once they are installed as in the present work, much faster than any other conventional method, e.g. pneumatic probes. Moreover, optical techniques can be used for investigation of transient flows.

Publisher

ASMEDC

Cited by 9 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Future Developments of Light-field-Based Measurements;Development and Application of Light-Field Cameras in Fluid Measurements;2022-08-14

2. Light-field PIV Implementation and Case Studies;Development and Application of Light-Field Cameras in Fluid Measurements;2022-08-14

3. Combining ART and FBP for improved fidelity of tomographic BOS;Measurement Science and Technology;2016-07-25

4. A direct approach for instantaneous 3D density field reconstruction from background-oriented schlieren (BOS) measurements;Experiments in Fluids;2015-12-26

5. Background-oriented schlieren (BOS) techniques;Experiments in Fluids;2015-03

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