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小型水轮机涡壳三维粘性流动解析
引用本文:韩凤琴,肖业祥,久保田乔.小型水轮机涡壳三维粘性流动解析[J].农业机械学报,2004,35(2):40-43.
作者姓名:韩凤琴  肖业祥  久保田乔
作者单位:1. 华南理工大学电力学院
2. 日本神奈川大学
基金项目:国家自然科学基金资助项目(项目编号:59979007)
摘    要:小型水轮发电机作为原动机能为工农业机械提供自主电源。为了使小型水轮机得到更广泛的应用,必须设计出结构简单、水力效率高的机器以确保运行稳定性。为此,对水轮机内部流动状况进行三维粘性流动数值解析是非常必要的。本文对常用的小型混流式水轮机涡壳、座环和无导叶环壁面内流动状况用最新的CFD技术进行了整体数值解析。根据解析结果,对涡壳和固定导叶进行了改进以减少水力损失。亦对固定导叶入口冲角、涡壳壁面粗糙度对流动的影响进行了定量分析。

关 键 词:小型水轮发电机  涡壳  三维粘性流动  固定导叶  数值解析  水力损失
修稿时间:2002年10月9日

Flow Analysis of a Spiral Case for Small Turbines
Han Fengqin,Xiao Yexiang.Flow Analysis of a Spiral Case for Small Turbines[J].Transactions of the Chinese Society of Agricultural Machinery,2004,35(2):40-43.
Authors:Han Fengqin  Xiao Yexiang
Abstract:As a prime mover, a small hydro turbine can produce the independence power for agriculture and industrial machines without fossil fuel. In order to extend its potential usage, the small hydro turbine should have a simple design with high performance to secure the stable operation. So, it is indispensable to investigate thoroughly the three dimensional viscous flow through the turbine. This paper deals with a lump-sum flow analysis of a spiral case, stay ring and vaneless annular walls for a small Francis turbine by the latest CFD code. According to the results of analysis, the shape of the spiral case and stay vanes were improved to reduce the hydraulic losses. Also, the chamfer of the stay vanes entrance and the surface roughness of the flow channel were optimized by the numerical investigations.
Keywords:Hydro turbines  Spiral case  CFD  Hydraulic performance  Loss
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