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Influence of the inlet channel flow of a steam turbine on solid particle erosion of the control stage nozzles

机译:汽轮机进气通道流量对控制级喷嘴固体颗粒侵蚀的影响

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摘要

Based on experiments and numerical simulation, the influence of the inlet flow channel of a steam turbine on the solid particle erosion of nozzle segments was investigated systematically. The results indicate that the upstream channels of the nozzle segment, such as the regulating valve, nozzle chamber and connection pipe, concentrate the solid particle erosion to a small number of nozzles or local regions of the nozzle, which greatly reduces the time for nozzle damage. Compared with the present erosion situation, measures adopted to distribute particles at the inlet of a nozzle chamber uniformly can double the service life of a nozzle segment, while the service life can be increased by eight to ten times through measures to distribute particles uniformly at the inlet of a nozzle segment. This article shows that the service life of a nozzle segment can be doubled through substituting a nozzle chamber with a tangential steam intake for one with a normal steam intake. Moreover, a boride layer with 0.04 mm effective thickness or a CrN layer with 0.01 mm effective thickness can further double the service life of a nozzle segment. In addition, a pocket-trap arranged in the particle-aggregated area after an elbow can reduce the weight loss at nozzle sites with the most serious erosion by over 85%. These investigations are of great significance to the long-term, safe and high-efficiency running of a steam turbine.
机译:在实验和数值模拟的基础上,系统地研究了汽轮机进口流道对喷嘴段固体颗粒冲蚀的影响。结果表明,喷嘴段的上游通道,例如调节阀,喷嘴腔和连接管,将固体颗粒侵蚀集中在少数喷嘴或喷嘴的局部区域,大大减少了喷嘴损坏的时间。 。与目前的腐蚀状况相比,采取措施将颗粒均匀地分布在喷嘴室的入口处可以使喷嘴段的使用寿命延长一倍,而通过将颗粒均匀地分布在喷嘴室的措施可以将使用寿命提高八至十倍。喷嘴段的入口。本文表明,通过将切线蒸汽入口的喷嘴腔室替换为正常蒸汽入口的喷嘴腔室,可使喷嘴段的使用寿命增加一倍。此外,有效厚度为0.04mm的硼化物层或有效厚度为0.01mm的CrN层可以使喷嘴段的使用寿命进一步加倍。另外,在弯头之后的颗粒聚集区域中设置一个袋式捕集器,可以将腐蚀最严重的喷嘴位置的重量损失减少85%以上。这些研究对蒸汽轮机的长期,安全和高效运行具有重要意义。

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