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Computational fluid dynamics simulation study of gas flow in dry scroll vacuum pump

机译:干涡旋真空泵中气体流动的计算流体动力学模拟研究

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摘要

Based on CFD method and dynamics mesh method, the transient flow simulation model of dry scroll vacuum pump was established. Numerical calculation was carried out under three kinds of typical working conditions of viscous flow state including under-compression, slightly over-compression and over-compression. Simulation results are in line with the results of experiment or theoretical calculation on the whole. The maximum error of pumping speed between the simulation and the experiment is about 30%, and the minimum is close to 10%. The predicted compression power accords with the theoretical prediction of approximate polytropic process. The simulation pressure inside the pump also has a consistent change process with experimental results. The contrast and analysis of the simulation model and the physical experiments suggest that the further correctly modified geometric parameters and boundary conditions according to practical situations can significantly improve the accuracy of the numerical calculation. Further analysis of the main flow phenomena and characteristics of scroll compression chamber at the discharge side during the discharge process confirms that under-compression and over-compression lead to the large variation of gas pressure and dramatic fluctuation of compression torque. (C) 2015 Elsevier Ltd. All rights reserved.
机译:基于CFD方法和动力学网格方法,建立了干式涡旋真空泵的瞬态流动模拟模型。在三种典型的粘性流动状态工作条件下进行了数值计算,包括欠压缩,略过压缩和过压缩。仿真结果总体上与实验或理论计算结果吻合。模拟和实验之间的最大抽速误差约为30%,最小值接近10%。预测的压缩功率与近似多变过程的理论预测相符。泵内的模拟压力也具有与实验结果一致的变化过程。仿真模型与物理实验的对比分析表明,根据实际情况进一步正确修改几何参数和边界条件可以显着提高数值计算的准确性。进一步分析排放过程中排放侧涡旋压缩室的主要流动现象和特性,可以确认,压缩不足和过度压缩会导致气体压力的大变化和压缩扭矩的剧烈波动。 (C)2015 Elsevier Ltd.保留所有权利。

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