SHF叶轮叶片扩散器数值计算与实测的比较

A. Bayeul-Lainé, P. Dupont, G. Cavazzini, A. Dazin, G. Bois, O. Roussette
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引用次数: 0

摘要

本文采用PIV(粒子图像测速法)和压力探头对径向流泵叶片扩压器的性能和内部流动特性进行了分析。对于给定的旋转速度和不同的质量流量,PIV测量已经在一个扩压器通道内的中等高度进行了。这些结果已在以前的几份来文中提出。利用一个三孔压力探头在两个扩压器几何喉道之间的不同径向位置从轮毂到叶冠扩压器宽度进行了新的实验。并利用商用代码Star CCM+ 7.02.011和CFX进行了数值模拟。对整个泵进行了冻结转子和全非定常计算。对某一质量流率下的PIV数值计算结果、以往的PIV实验结果和新型探针遍历法进行了比较和讨论。在这方面,考虑泵的旋转部分和固定部分之间的流体泄漏的第一次尝试已经进行了检查,因为它可能影响扩散器内部的实际流动结构。
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Comparisons between numerical calculations and measurements in vaned diffuser of SHF impeller
The paper presents analysis of the performance and the internal flow behaviour in the vaned diffuser of a radial flow pump using PIV (Particle Image Velocimetry) and pressure probe traverses. PIV measurements have already been performed at middle height inside one diffuser channel passage for a given speed of rotation and various mass flow rates. These results have been already presented in several previous communications. New experiments have been performed using a three-hole pressure probe traverses from hub to shroud diffuser width at different radial locations between the two diffuser geometrical throats. Numerical simulations are also realized with the commercial codes Star CCM+ 7.02.011 and CFX. Frozen rotor and fully unsteady calculations of the whole pump have been performed. Comparisons between numerical results, previous experimental PIV results and new probe traverses one's are presented and discussed for one mass flow rate. In this respect, a first attempt to take into account fluid leakages between the rotating and fixed part of the pump has been checked since it may affect the real flow structure inside the diffuser.
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来源期刊
排灌机械工程学报
排灌机械工程学报 Engineering-Mechanical Engineering
CiteScore
1.90
自引率
0.00%
发文量
5192
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