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Improved hydrodynamic performance of liquid film seal by considering boundary slip and cavitation

机译:通过考虑边界滑动和空化来改善液体膜密封的流体动力学性能

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Purpose The purpose of this paper is to investigate the effect of boundary slip on hydrodynamic performance of liquid film seal considering cavitation. Design/methodology/approach A mathematical model of liquid film seal with slip surface was established based on the Navier slip model and Jakobsson-Floberg-Olsson (JFO) boundary condition. Liquid film governing equation was discretized by the finite difference method and solved by the SOR relaxation iterative algorithm and the hydrodynamic performance parameters of liquid film seal were obtained considering boundary slip and cavitation. Findings The results indicate that the values of performance parameters are affected significantly by the slip length under the condition of high speed and low differential pressure. Originality/value The performances of liquid film seal are investigated considering slip surface and cavitation. The results presented in the study are expected to provide a theoretical basis to improve the design method of liquid film seal.
机译:目的本文的目的是探讨边界滑移对考虑空化的液体薄膜密封的流体动力学性能的影响。设计/方法/方法基于Navier Spl Model和Jakobsson-Flogerg-Olsson(JFO)边界条件建立了具有滑动表面的液体薄膜密封的数学模型。通过有限差分法离散化液膜控制方程,并通过SOR松弛迭代算法解决,考虑边界滑动和空化获得液膜密封的流体动力学性能参数。结果表明,在高速和低差压条件下,性能参数值受到滑动长度的影响。原创性/值考虑滑动表面和空化进行液体薄膜密封的性能。预计研究中提出的结果提供了改进液膜密封的设计方法的理论依据。

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