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Experimental and Numerical Investigation of the Performance of a Centrifugal Pump When PumpingWater and Light Crude Oil

机译:离心泵抽水轻质原油性能的实验与数值研究

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In the oil and gas industry, crude oil is frequently transported and centrifugal pumps are used extensively. The pump impeller works under both design and off-design conditions in the applications, and the flow pattern deviates from the ideal case because of viscosity and density changes. An experimental as well as a numerical study was conducted to study the performance of a pump delivering water and light crude oil under design and off-design conditions. A 3D steady incompressible flow in the centrifugal pump was simulated by solving the Reynolds-averaged Navier-Stokes equations and SST turbulence model. At a low flow rate, extensive reverse flow occurs at the inlet of the impeller in the case of water, whereas the opposite was found for light crude oil. Recirculation was observed in the impeller flow passage for both water and the crude oil, but this diminished at higher flow rates.
机译:在石油和天然气工业中,经常运输原油,并且广泛使用离心泵。在应用中,泵叶轮既可以在设计条件下运行,也可以在非设计条件下工作,并且由于粘度和密度的变化,流量模式会偏离理想情况。进行了实验和数值研究,以研究在设计和非设计条件下输送水和轻质原油的泵的性能。通过求解雷诺平均Navier-Stokes方程和SST湍流模型,对离心泵中的3D稳定不可压缩流进行了模拟。在低流速下,如果是水,叶轮的进口会发生大量逆流,而轻质原油则相反。在叶轮流道中观察到了水和原油的再循环,但是在较高的流速下再循环减少了。

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