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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Numerical Investigations and Performance Experiments of a Deep-Well Centrifugal Pump With Different Diffusers
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Numerical Investigations and Performance Experiments of a Deep-Well Centrifugal Pump With Different Diffusers

机译:带有扩散器的深井离心泵的数值研究和性能实验

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In this paper, the design methodology of a new type of three-dimensional surface return diffuser (3DRD) is presented and described in detail. The main goal was to improve the hydrodynamic performance of the deep-well centrifugal pump (DCP). During this study, a two-stage DCP equipped with two different type diffusers was simulated employing the commercial computational fluid dynamics (CFD) software ANYSY-Fluent to solve the Navier-Stokes equations for three-dimensional steady flow. A sensitivity analysis of the numerical model was performed in order to impose appropriate parameters regarding grid elements number and turbulence model. The flow field and the static pressure distribution in the diffusers obtained by numerical simulation were analyzed, and the diffuser efficiency was defined to quantify the pressure conversion capability. The prototype experimental test results were acquired and compared with the data predicted from the numerical simulation, which showed that the performance of the pump with 3DRD is better than that of the traditional cylindrical return diffuser (CRD) under all operating conditions. The efficiency and single-stage head of the pump with 3DRD have been significantly improved compared with the standard DCP of the same class.
机译:在本文中,提出并详细描述了一种新型的三维表面返回扩散器(3DRD)的设计方法。主要目标是改善深井离心泵(DCP)的流体力学性能。在此研究过程中,使用商业计算流体力学(CFD)软件ANYSY-Fluent对配备了两种不同类型扩散器的两级DCP进行了仿真,以求解Navier-Stokes方程的三维稳态流。为了对网格元素数量和湍流模型施加适当的参数,对数值模型进行了敏感性分析。分析了通过数值模拟获得的扩散器中的流场和静压分布,并定义了扩散器效率以量化压力转换能力。获得了原型实验测试结果,并将其与数值模拟预测的数据进行了比较,结果表明,在所有工作条件下,具有3DRD的泵的性能均优于传统的圆柱形回油扩散器(CRD)。与同级别的标准DCP相比,具有3DRD的泵的效率和单级扬程得到了显着提高。

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