Fully coupled fluid-structure interaction model of reed valves in a multi-cylinder reciprocating piston compressor

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Abstract

For years compressor researchers have tried to account for the fluid interaction effect of the working fluid on valve motion in displacement compressors. In recent years, the computing capacities and available CFD and FEA programs have allowed fully coupled interaction of fluids and moving structures to be modelled more comprehensively. This paper describes our experience and results from developing a model of a multi-cylinder reciprocating piston compressor with suction and discharge valve systems that are fully coupled with the pressure pulsation in the adjacent plenum. Valve dynamics are captured by the model that affects compressor performance. The results show that higher running speed causes more discharge valve delay on closing due to higher pressure pulsation in discharge plenum. The acoustic property of the discharge plenum as it relates to valve motion is studied by the developed cost-effective standalone model.

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Xie, F., Nieter, J., Lifson, A., Reba, R., & Sishtla, V. (2017). Fully coupled fluid-structure interaction model of reed valves in a multi-cylinder reciprocating piston compressor. In IOP Conference Series: Materials Science and Engineering (Vol. 232). Institute of Physics Publishing. https://doi.org/10.1088/1757-899X/232/1/012030

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