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EVALUATION OF EFFECT OF VISCOSITY ON AN ELECTRICAL SUBMERSIBLE PUMP

机译:电动潜水泵的粘度影响评估

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Understanding and predicting the effect of viscosity change on an Electrical Submersible Pump (ESP) performance is of great significance to the oil and gas operators. The purpose of this research is to investigate the flow behavior inside a mixed flow type pump operating with fluids of different viscosities using Computational Fluid Dynamics (CFD) with the goal to establish additional terms for the pump affinity laws to scale pump performance including the effects of viscosity. Several sets of fluids of different viscosities and densities are simulated under various operating conditions. The effect of viscosity on the performance of the impeller and diffuser is discussed. Changes in the pump performance due to fluid viscosity are characterized using the dimensionless flow coefficient, head coefficient and rotational Reynolds number. The result, which can be regarded as the modified pump affinity laws for viscosity flows, was obtained based on the relationships between dimensionless coefficients. The modified affinity laws agreed well with the CFD results. Further study was conducted to validate the relationships using previously published test data for a semi axial pump design (Specific Speed, N_S: 3869) tested with fluid viscosity ranging from 1 cp to 1020 cp and in-house testing of a split vane impeller pump (Ns: 3027) and a helicoaxial pump (N_S: 5281) using 1cp and 5 cp viscosity fluid. The modified affinity laws accurately models the performance dependence upon viscosity. As with the standard affinity laws, a pump's functional relationship varies with each pump design. Yet the modified affinity laws produce a single common curve for all operating conditions and viscosities for a specific pump.
机译:了解和预测粘度变化对潜水电泵(ESP)性能的影响对石油和天然气经营者具有重要意义。本研究的目的是使用计算流体动力学(CFD)研究在不同粘度的流体下工作的混流型泵内部的流动行为,目的是为泵亲和力定律建立附加条件,以扩展泵的性能,包括对泵的影响。粘度。在各种操作条件下,模拟了几组不同粘度和密度的流体。讨论了粘度对叶轮和扩散器性能的影响。使用无因次流量系数,扬程系数和旋转雷诺数来表征由于流体粘度引起的泵性能变化。基于无量纲系数之间的关系,获得了可以被认为是粘度流的改进泵亲和力定律的结果。修改后的亲和力法则与CFD结果非常吻合。使用先前发布的半轴泵设计(比转速,N_S:3869)的测试数据进行了进一步的研究,以验证这种关系,该半轴泵设计的流体粘度范围为1 cp至1020 cp,并在内部对分叶式叶轮泵进行了测试( Ns:3027)和使用1cp和5 cp粘度流体的螺旋泵(N_S:5281)。修改后的亲和力定律可以准确地模拟性能对粘度的依赖性。与标准亲和力法则一样,泵的功能关系随每个泵的设计而变化。然而,修改后的亲和力定律会针对特定泵的所有工作条件和粘度产生一条共同的曲线。

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