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磨蚀对水斗式水轮机的水斗型线及性能影响的研究 被引量:6
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作者 葛新峰 孙洁 +5 位作者 蔡建国 张雷 张辉 王金亮 maxime binama 郑源 《中国电机工程学报》 EI CSCD 北大核心 2021年第21期7391-7402,共12页
在含沙水流中运行的水斗式水轮机,分水刃和缺口是斗叶上最容易受到磨损变形的部位。采用欧拉-拉格朗日法对水-气-砂三相流进行非定常计算,研究分水刃高度下降对流态及泥沙磨损的影响,以及分水刃高度、缺口深度变化对转轮外特性的影响。... 在含沙水流中运行的水斗式水轮机,分水刃和缺口是斗叶上最容易受到磨损变形的部位。采用欧拉-拉格朗日法对水-气-砂三相流进行非定常计算,研究分水刃高度下降对流态及泥沙磨损的影响,以及分水刃高度、缺口深度变化对转轮外特性的影响。研究发现:分水刃高度下降会对流线产生影响,在进水侧区域诱发旋涡和湍流,致使流态紊乱,水力损失增加,从而造成转轮外特性下降。当分水刃高度下降2、5、10mm时,转轮的效率分别减少了0.22%、0.66%、5.98%。分水刃高度下降造成的斗叶型线变化,会影响泥沙颗粒对斗叶内壁面的磨损情况。分水刃下降的高度越大,分水刃区域的磨损越严重、磨损范围越大。缺口深度增加会减小斗叶工作面面积,造成转轮外特性下降。尤其是当缺口深度增加10mm时,效率降低了15.37%,转轮效率低于70%,在这种工况下运行,对射流能量的利用是非常不利的。 展开更多
关键词 水斗式水轮机 泥沙磨蚀 分水刃 缺口 水-气-砂三相流数值模拟
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Sediment Erosion on Pelton Turbines:A Review 被引量:1
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作者 Xinfeng Ge Jie Sun +8 位作者 Dongdong Chu Juan Liu Ye Zhou Hui Zhang Lei Zhang Huixiang Chen Kan Kan maxime binama Yuan Zheng 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2023年第3期36-62,共27页
The Pelton turbine has been widely used to develop high-head water resources with sediments because of its advantages in life cycle costs.When a flood or monsoon season occurs,the sediment concentration in the river i... The Pelton turbine has been widely used to develop high-head water resources with sediments because of its advantages in life cycle costs.When a flood or monsoon season occurs,the sediment concentration in the river increases suddenly,causing severe erosion to the nozzle,needle,and runner of Pelton turbines.After decades of development,researchers have developed practical engineering experience to reduce the sediment concentration of the flow through the turbine and ensure the safety and efficiency of power generation.Research on the mechanism of sediment erosion,development of anti-erosion materials,and establishment of erosion prediction models have attracted scholarly interest in recent years.Extensive research has been conducted to determine a complete and valuable syndication erosion model.However,owing to the complexity of the flow and wear mechanisms,the influence of specific parameters of erosion and the syndication effect is still difficult to determine.Computational fluid dynamics and erosion monitoring technology have also been evaluated and applied.This paper presents a comprehensive review of the erosion of Pelton turbines,some of the latest technical methods,and possible future development directions. 展开更多
关键词 Pelton turbine Sediment erosion Sediment erosion mechanism CFD The experimental method
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