Measuring Water Film Thickness in a Wet Gas Compressor Diffuser—Design, Calibration, and Testing of Electromagnetic Probes

Author:

Nolen Craig1,Poerner Melissa1

Affiliation:

1. Fluids and Machinery Engineering, Southwest Research Institute, San Antonio, TX 78238 e-mail:

Abstract

The distribution of water in the diffuser of a wet gas compressor is not well understood. Measurements of water film thickness across the diffuser surface would improve the understanding of two-phase flow phenomena in wet gas compressors. Electromagnetic probes were designed in order to measure water film thickness in the diffuser of a SwRI-designed wet gas compressor. The probes consisted of two electrode foils plated on a thin insulating substrate, allowing them to be bonded in place without drilling through the diffuser. An AC signal was passed between the electrodes, and the voltage across a resistor in series with the electrodes was recorded. As the water level covering the electrodes increased, the recorded voltage increased. A method of calibrating the probes was developed and used prior to installation in the diffuser. Testing showed the probes to be effective at detecting the presence of water in the diffuser and indicating the general water level. Improvements in probe design, calibration, and installation are needed to provide more precise water film thickness data.

Publisher

ASME International

Subject

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

Reference9 articles.

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2. Ransom, D., Camatti, M., Bertoneri, M., Podesta, L., Wilcox, M., and Bigi, M., 2011, “Mechanical Performance of a Two Stage Centrifugal Compressor Under Wet Gas Conditions,” 40th Turbomachinery Symposium, Houston, TX, Sept. 12–15, pp. 121–128.

3. Preliminary Indications of Water Film Distribution and Thickness on an Airfoil in a Water Spray,1984

4. Experiments on the Flow of a Thin Liquid Film Over a Horizontal Stationary and Rotating Disk Surface;Exp. Fluids,2003

5. An Automated Optical Liquid Film Thickness Measurement Method;Rev. Sci. Instrum.,1998

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