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A One-Dimensional Flow Analysis for the Prediction of Centrifugal Pump Performance Characteristics

机译:预测离心泵性能特征的一维流动分析

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A one-dimensional flow procedure for analytical study of centrifugal pump performance is done applying the principle theories of turbomachines. Euler equation and energy equation are manipulated to find pump performance parameters at different discharge coefficients. Fluid slippage loss at impeller exit and volute loss are estimated. The fluid slippage is modeled by the slip factor approach using Wiesner empirical expression. The volute loss model counts friction loss associated with the volute throw flow velocity, diffusion friction loss due to circulation associated with volute flow, loss due to vanishing of radial flow at volute outlet, and loss inside pump volute throat. Models for impeller hydraulic friction power loss, disk friction power loss, internal flow leakage power loss, and inlet shock circulation power loss are considered by suitable models. Pump internal volumetric flow leakage and volumetric efficiency are related to pump geometry and flow properties. The procedure adopted in this paper is capable of obtaining performance characteristic curves of centrifugal pump in a dimensionless form. Pump head coefficient, manometric efficiency, power coefficient, and required NPSH are characterized. The predicted coefficients and obtained performance curves are consistent with experimental characteristics of centrifugal pump.
机译:应用涡轮机原理,完成了用于分析离心泵性能的一维流动程序。操纵欧拉方程和能量方程可找到不同排放系数下的泵性能参数。估算叶轮出口处的滑差损失和蜗壳损失。流体滑移是使用Wiesner经验表达式通过滑移因子方法建模的。蜗壳损耗模型计算与蜗壳抛流速度相关的摩擦损耗,与蜗壳流相关的循环所致的扩散摩擦损耗,蜗壳出口处径向流消失所致的损耗以及泵蜗壳喉内的损耗。叶轮液压摩擦功率损耗,盘式摩擦功率损耗,内部流量泄漏功率损耗和入口冲击循环功率损耗的模型已通过合适的模型进行了考虑。泵内部的体积流量泄漏和体积效率与泵的几何形状和流量特性有关。本文采用的程序能够获得无量纲形式的离心泵的性能特征曲线。表征了泵压头系数,测压效率,功率系数和所需的NPSH。预测的系数和获得的性能曲线与离心泵的实验特性一致。

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