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Cavitation Prediction in Liquid Ring Pump for Aircraft Fuel Systems by CFD Approach

机译:CFD方法采用飞机燃料系统液环泵空化预测

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Liquid ring pumps are used in aircraft fuel systems in conjunction with main impeller pumps. These pumps are used for priming the pump system as well as to remove fuel vapor and air from the fuel. Prediction of cavitation in liquid ring pumps is important as cavitation degrades the performance of these pumps and leads to their failure. As test based assessment of cavitation risk in liquid ring pump is expensive and time consuming, recent approaches have been to assess and predict the risk of cavitation using Computational Fluid Dynamics (CFD) methods with the goal to quicken the design process and optimize the performance of these pumps. The present study deals with the development and assessment of a CFD methodology to simulate cavitation for a liquid fuel pump used in aircraft fuel systems. The study simulates the cavitation phenomena using a multi-phase flow model consisting of fuel vapor, air, and liquid fuel phases. The rotation of the blades is simulated using two approaches, a steady state multiple reference frame approach and a transient sliding mesh approach. The results demonstrate that the numerical model employing transient sliding mesh approach along with a standard k-e turbulence model, although computationally expensive, is required to predict the cavitation phenomenon in liquid ring pumps accurately.
机译:液环泵用于飞机燃料系统,与主叶轮泵配合使用。这些泵用于引发泵系统以及从燃料中移除燃料蒸汽和空气。随着空化降低这些泵的性能并导致其故障,液环泵中空化预测很重要。随着基于测试的液体环泵的空化风险评估是昂贵且耗时的,最近的方法是使用计算流体动力学(CFD)方法来评估和预测空化的风险,以便加快设计过程并优化性能这些泵。本研究涉及CFD方法的开发和评估,以模拟飞机燃料系统中使用的液体燃料泵的空化。该研究使用由燃料蒸汽,空气和液体燃料相组成的多相流模型来模拟空化现象。使用两种方法,稳态多参考帧方法和瞬态滑动网格方法模拟刀片的旋转。结果表明,采用瞬态滑动网格方法的数值模型以及标准K-E湍流模型,但是需要准确地预测液体环泵中的空化现象。

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