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Study of a High-Pressure External Gear Pump with a Computational Fluid Dynamic Modeling Approach

机译:计算流体动力学建模方法研究高压外齿轮泵

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A study on the internal fluid dynamic of a high-pressure external gear pump is described in this paper. The pump has been analyzed with both numerical and experimental techniques. Starting from a geometry of the pump, a three-dimensional computational fluid dynamics (CFD) model has been built up using the commercial code PumpLinx ? . All leakages have been taken into account in order to estimate the volumetric efficiency of the pump. Then the pump has been tested on a test bench of Casappa S.p.A. Model results like the volumetric efficiency, absorbed torque, and outlet pressure ripple have been compared with the experimental data. The model has demonstrated the ability to predict with good accuracy the performance of the real pump. The CFD model has been also used to evaluate the effect on the pump performance of clearances in the meshing area. With the validated model the pressure inside the chambers of both driving and driven gears have been studied underlining cavitation in meshing fluid volume of the pump. For this reason, the model has been implemented in order to predict the cavitation phenomena. The analysis has allowed the detection of cavitating areas, especially at high rotation speeds and delivery pressure. Isosurfaces of the fluid volume have been colored as a function of the total gas fraction to underline where the cavitation occurs.
机译:本文对高压外齿轮泵的内部流体动力学进行了研究。该泵已经通过数值和实验技术进行了分析。从泵的几何形状开始,使用商业代码PumpLinx?建立了三维计算流体动力学(CFD)模型。 。为了估计泵的容积效率,已经考虑了所有泄漏。然后将泵在Casappa S.p.A.的测试台上进行了测试。将模型结果(例如容积效率,吸收扭矩和出口压力波动)与实验数据进行了比较。该模型证明了能够以很高的精度预测实际泵的性能。 CFD模型也已用于评估啮合区域中间隙对泵性能的影响。利用经过验证的模型,对驱动齿轮和从动齿轮腔室内的压力进行了研究,从而在泵的啮合流体体积中强调了气穴现象。因此,为了预测气蚀现象而实施了该模型。该分析允许检测空化区域,尤其是在高转速和高输送压力下。流体体积的等值面已根据总气体分数进行了着色,以在发生气蚀的位置强调。

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