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低比转速离心泵圆盘损失的计算
引用本文:杨从新,钱晨. 低比转速离心泵圆盘损失的计算[J]. 兰州理工大学学报, 2012, 38(3): 56-60. DOI: 10.3969/j.issn.1673-5196.2012.03.014
作者姓名:杨从新  钱晨
作者单位:1.兰州理工大学能源与动力工程学院,甘肃兰州,730050;2.兰州理工大学能源与动力工程学院,甘肃兰州,730050
基金项目:国家重大装备研制项目,甘肃省教育厅项目
摘    要:准确计算圆盘损失的大小是预测低比转速离心泵性能的重要因素.在泵试验结果的基础上,借助流体动力计算的数值计算和模拟方法,采用RNGk-ε湍流模型封闭时均N-S方程组,以低比转速离心泵M23-12.5为对象,在假定圆盘摩擦损失只增加轴功率而不影响液体有效能量增加的基础上,通过泵的数值预测结果和实验性能曲线的对比,对3种圆盘摩擦损失的计算方法进行比较.结果表明与直接计算叶轮外圆直径的摩擦力矩作为整个泵的圆盘摩擦损失的方法相比,根据泵叶轮的形状,分别计算其前后盖板的摩擦力矩进而求得叶轮圆盘损失的方法,更适合低比转速离心泵叶轮圆盘损失功率的计算.

关 键 词:离心泵  圆盘摩擦损失  数值模拟  轴功率  效率  扬程

Calculation of disc loss in centrifugal pump with low specific speed
YANG Cong-xin , QIAN Chen. Calculation of disc loss in centrifugal pump with low specific speed[J]. Journal of Lanzhou University of Technology, 2012, 38(3): 56-60. DOI: 10.3969/j.issn.1673-5196.2012.03.014
Authors:YANG Cong-xin    QIAN Chen
Affiliation:(College of Energy and Power Engineering,Lanzhou Univ.of Tech.,Lanzhou 730050,China)
Abstract:Accurate calculation of the disc loss is one of the important factors for predicting centrifugal pump performance.Taking the advantage of numeric computation and simulation method for fluid-dynamic computation,three methods for evaluating discfrictional loss were compared with each other.In doing so,the pump experiment results were taken as a basis,the time-averaged Navier-Stokes equations with RNG k-ε turbulence mode for closing Navier-Stokes equations were employed,the low specific speed centrifugal pump M23-12.5 was taken as investigation object,an assumption was made that the disc friction loss would only increase the shaft power without influence on the effective energy increase,and the pump performances of both numeric prediction and experiment were compared.The result showed that it is more appropriate to compute the disc loss at the front and rear shrouds according to the shape of the pump impeller than directly taking friction torque of impeller at its periphery as disc friction loss.
Keywords:centrifugal pump  disc friction loss  numerical simulation  shaft power  efficiency  head
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