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On the Influence of Viscosity Upon ESP Performance

机译:论粘度对鉴定性能的影响

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This paper presents experimental data and a preliminary analysis on the operation of centrifugal pumps with viscous liquids. Two centrifugal pumps, a conventional radial (Ns = 1000) and a semi-axial electrical submersible pump -^sESP (Ns= 3850) were instrumented and tested with water – 1 cP, and clear glycerin. The glycerin viscosity was varied from 67 cP to 1020 cP, through changes in temperature, encompassing the viscosity range of light to heavy oils. The main purpose ofthese tests, besides measuring the influence of viscosity upon the pump overall performance, was to supply detailed nformation on the energy transfer processes taking place in the pump internal components. To accomplish with that the pressure distribution along the flow path, through impellers and diffusers, from the pump inlet eye to the discharge section, was measured. Thus, besides measuring the flow rate, the total pressure difference, the speed, the power and the mean operation temperature, for a working liquid with various viscosities in a full range of operational conditions, the data showed the pressure evolution inside the pump. Later analyses revealed that there was a strong relationship between the flow hydrodynamics in successive pump devices in terms of head gain and viscous dissipation. This relationship was set by the pump operational operational conditions, flow rate and speed, and the fluid viscosity. In other words, how a diffuser performed depended on Reynolds number and the upstream flow through the impeller. Thus, any generalizing model dealing with the influence of fluid viscosity on the pump performance should account for these phenomena. For this reason, it is highly improbable that “black-box” approaches that neither consider the flow hydrodynamics of the successive connecting devices nor assess the influence of the Reynolds number on them could give proper viscosity correction factors for different pumps.
机译:本文呈现的实验数据和上离心泵有粘性液体的操作的初步分析。两个离心泵,常规的径向(NS = 1000)和半轴向电潜泵 - ^ SESP(NS = 3850)的仪器,并用水进行测试 - 1厘泊,和清晰甘油。甘油粘度变化从67厘泊至1020厘泊,通过改变温度,包含光的粘度范围,以重质油。主要目的ofthese测试中,除了测量在泵的整体性能的粘度的影响,是就发生在泵的内部部件的能量转移过程提供详细载文信息。为了实现与沿着流动路径的压力分布,通过叶轮和扩散器,从泵入口眼睛到排出部,进行测定。因此,除了测量流速,总的压力差,速度,功率和平均操作温度,对于具有在全方位的操作条件不同粘度工作液体,所述的数据显示,泵内的压力的变化。后来分析显示,有头增益和粘性耗散方面连续泵装置流流体力学之间有很强的关系。这个关系是由泵操作的操作条件,流量和速度,以及流体粘度设定。换句话说,扩散器执行如何依赖于雷诺数和通过叶轮上游流动。因此,任何泛化模型交易流体粘度对泵性能的影响应该考虑这些现象。出于这个原因,它是非常不可能的“黑盒子”的方法,无论是考虑到连续的连接设备的流流体力学,也没有评估他们的雷诺数的影响可以给出不同的泵适当粘度的修正系数。

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