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首页> 外文期刊>International journal of numerical methods for heat & fluid flow >CFD flow analysis in the centrifugal vortex pump
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CFD flow analysis in the centrifugal vortex pump

机译:离心旋涡泵中的CFD流量分析

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Purpose - Aging of the oil wells leads to a decrease in reservoir pressure and also to an increase in the water, gas and abrasive particles content. Therefore, there is a need for the oil pumps exploitation characteristics improvements. This paper aims to generate a valuable numerical model which will provide a useful tool to study various cases. Design/methodology/approach - Computational fluid dynamics (CFD) analysis of the generation of so-called coherent structures of eddies and turbulence in the peripheral area of the vortex rotor mounted at the back side of centrifugal rotor was undertaken. After detailed analysis of the influence of the used turbulence models on the results, a hybrid turbulent model Detached Eddies Simulation (DES) was chosen as the most suitable. Findings - Numerical control volume method with unsteady solver and DES turbulence model was proven to be valuable tool for flow analysis in the centrifugal pumps. Having in mind that DES turbulence model consumes much less computational time than large eddies turbulence model, this is a very useful fact that resulted from this research. Practical implications - The proven numerical model is robust and reliable enough to become a standard method in simulating flow and other physical phenomena occurring in centrifugal pumps and similar turbo machines. This makes it possible to easily research different factors that influence their performances. Originality/value - Comprehensive experimental and CFD study was performed which made it possible to conduct detailed validation and verification of described CFD model.
机译:目的-油井的老化会导致储层压力下降,并且还会导致水,气和磨料颗粒含量增加。因此,需要改进油泵的利用特性。本文旨在生成有价值的数值模型,这将为研究各种情况提供有用的工具。设计/方法/方法-进行了计算流体力学(CFD)分析,分析了安装在离心转子背面的涡旋转子外围区域中涡流和湍流的所谓相干结构。在详细分析了所使用的湍流模型对结果的影响之后,选择了最适合的混合湍流模型“分离涡流模拟”(DES)。研究结果-带有非定常求解器和DES湍流模型的数控体积方法被证明是用于离心泵流量分析的有价值的工具。考虑到DES湍流模型比大涡旋湍流模型消耗的计算时间少得多,这是这项研究得出的非常有用的事实。实际意义-经验证的数值模型足够强大且可靠,可以成为模拟离心泵和类似涡轮机中发生的流量和其他物理现象的标准方法。这使得可以轻松地研究影响其性能的不同因素。原创性/价值-进行了全面的实验和CFD研究,从而可以对所描述的CFD模型进行详细的验证和验证。

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