Analytical Grid Generation for accurate representation of clearances in CFD for Screw Machines

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Abstract

One of the major factors affecting the performance prediction of twin screw compressors by use of computational fluid dynamics (CFD) is the accuracy with which the leakage gaps are captured by the discretization methods. The accuracy of mapping leakage flows can be improved by increasing the number of grid points on the profile. However, this method faces limitations when it comes to the complex deforming domains of a twin screw compressor because the computational time increases tremendously. In order to address this problem, an analytical grid distribution procedure is formulated that can independently refine the region of high importance for leakage flows in the interlobe space. This paper describes the procedure of analytical grid generation with the refined mesh in the interlobe area and presents a test case to show the influence of the mesh refinement in that area on the performance prediction. It is shown that by using this method, the flow domains in the vicinity of the interlobe gap and the blowhole area are refined which improves accuracy of leakage flow predictions.

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Rane, S., Kovačević, A., & Stošić, N. (2015). Analytical Grid Generation for accurate representation of clearances in CFD for Screw Machines. In IOP Conference Series: Materials Science and Engineering (Vol. 90). Institute of Physics Publishing. https://doi.org/10.1088/1757-899X/90/1/012008

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