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冲动级与反动级叶高之比较 被引量:2
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作者 陈子聿 姚依晨 +1 位作者 胥建群 汤黎明 《汽轮机技术》 北大核心 2018年第2期103-106,126,共5页
电厂汽轮机主要以反动级和冲动级为主,相同参数下两者叶片高度的比较是研究叶高损失的重要途径。运用连续性方程、级的焓降公式,从理论上证明了在相同进汽参数、蒸汽流量和平均直径下,反动级叶片高度大于冲动级,前者的叶高是后者的1.315... 电厂汽轮机主要以反动级和冲动级为主,相同参数下两者叶片高度的比较是研究叶高损失的重要途径。运用连续性方程、级的焓降公式,从理论上证明了在相同进汽参数、蒸汽流量和平均直径下,反动级叶片高度大于冲动级,前者的叶高是后者的1.315倍,即前者的叶高损失小于后者。并通过敏感性分析,得出了忽略喷嘴前后比容变化的影响是可以接受的,冲动级采用一定的反动度,对叶高比的影响不大。影响两者叶高比的主要因素是设计喷嘴的出口汽流角以及动叶出口的余速利用。 展开更多
关键词 叶高损失 叶高 喷嘴出口比容 余速利用 喷嘴出口汽流角
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Experimental Research of Surface Roughness Effects on Highly-Loaded Compressor Cascade Aerodynamics 被引量:4
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作者 CHEN Shao-wen XU Hao +1 位作者 WANG Song-tao WANG Zhong-qi 《Journal of Thermal Science》 SCIE EI CAS CSCD 2014年第4期307-314,共8页
Aircraft engines deteriorate during continuous operation under the action of external factors including fouling, corrosion, and abrasion. The increased surface roughness of compressor passage walls limits airflow and ... Aircraft engines deteriorate during continuous operation under the action of external factors including fouling, corrosion, and abrasion. The increased surface roughness of compressor passage walls limits airflow and leads to flow loss. However, the partial increase of roughness may also restrain flow separation and reduce flow loss. It is necessary to explore methods that will lower compressor deterioration, thereby improving the overall performance. The experimental research on the effects of surface roughness on highly loaded compressor cascade aerodynamics has been conducted in a low-speed linear cascade wind tunnel. The different levels of roughness are arranged on the suction surface and pressure surface, respectively. Ink-trace flow visualization has been used to measure the flow field on the walls of cascades, and a five-hole probe has been traversed across one pitch at the outlet. By comparing the total pressure loss coefficient, the distributions of the secondary-flow speed vector, and flow fields of various cases, the effects of surface roughness on the aerodynamics of a highly loaded compressor cascade are analyzed and discussed. The results show that adding surface roughness on the suction surface and pressure surface make the loss decrease in most cases. Increasing the surface roughness on the suction surface causes reduced flow speed near the blade, which helps to decrease mixing loss at the cascades outlet. Meanwhile, adding surface roughness on the suction surface restrains flow separation, leading to less flow loss. Various levels of surface roughness mostly weaken the flow turning capacity to various degrees, except in specific cases. 展开更多
关键词 Highly loaded compressor linear cascades surface roughness aerodynamic performance experimental research
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