首页> 外文会议>ASME/BATH Symposium on Fluid Power and Motion Control >NUMERICAL MODELING OF GASEOUS CAVITATION IN CFD OF HYDRAULIC OIL FLOW BASED ON DYNAMIC STIMULATION
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NUMERICAL MODELING OF GASEOUS CAVITATION IN CFD OF HYDRAULIC OIL FLOW BASED ON DYNAMIC STIMULATION

机译:基于动态刺激的液压油流动型气体空化的数值模拟

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In this paper, the cavitation phenomenon in hydraulic oil is investigated, and a new gaseous cavitation model based on the dynamic stimulation is examined. Before modeling, to confirm the characteristics of cavitation occurrence in hydraulic oil flow, the comparison of our previous experiment with the pressure distribution by CFD has been conducted. It is clarified that the region where the cavitation bubbles appear do not agree with the low pressure region, which indicates they are not in the case of vaporous cavitation. This comparison indicates that the gaseous cavitation has been occurred predominantly in the previous experiment. In modeling, the dynamic stimulation of unsteady flow field is assumed to play a major role in the liberation of dissolved air. The dynamic stimulation is transferred into the dimension of pressure and applied to the threshold pressure of liberation. Several models considering dynamic stimulation are proposed and comparison of the effect of those models has conducted to estimate the most appropriate modeling.
机译:本文研究了液压油中的空化现象,研究了基于动态刺激的新气体空化模型。在建模之前,为了确认液压油流量的空化发生特性,已经进行了我们先前的CFD压力分布实验的比较。阐明了空化气泡出现的区域与低压区域不一致,这表明它们不在蒸汽的空化的情况下。该比较表明,在先前的实验中主要发生了气体空化。在建模中,假设非定常流场的动态刺激在溶解空气的解放中发挥着重要作用。动态刺激被转移到压力的尺寸中并施加到析出的阈值压力。考虑动态刺激的若干模型是提出的,并比较这些模型的效果来估计最合适的建模。

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