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埃克森美孚开发节能轮胎新材料
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作者 罗永浩 《橡胶科技》 2008年第22期14-14,共1页
关键词 新材料 轮胎气密层 埃克森 卤化丁基橡胶 新型节能材料 化工 相结合 粘弹性 生产 空气压力损失
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An Experimental Study of Separation Control on Ultra-Highly-Loaded Low Pressure Turbine Blade by Surface Roughness 被引量:1
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作者 SUN Shuang LEI Zhijun +2 位作者 LU Xingen ZHAO Shengfeng ZHU Junqiang 《Journal of Thermal Science》 SCIE EI CAS CSCD 2015年第3期229-238,共10页
An experimental study is conducted to improve an aft-loaded ultra-high-lift low pressure turbine(LPT) blade at low Reynolds number(Re) in steady state. The objective is to investigate the effect of blade roughness on ... An experimental study is conducted to improve an aft-loaded ultra-high-lift low pressure turbine(LPT) blade at low Reynolds number(Re) in steady state. The objective is to investigate the effect of blade roughness on the performance of LPT blade. The roughness is used as a passive flow control method which is to reduce total pressure loss and expand LPT operating margin. The experiment is performed on a low-speed cascade facility. 3 roughness heights and 3 deposit positions are investigated in the experiment which forms a large test matrix. A three-hole probe is used to detect flow aerodynamic performance and a hotwire probe is used to detect the characteristic of suction boundary layer. Regional roughness can suppress separation loss and bring fairly low turbulent dissipation loss. Detailed surveys near the blade surface shows that the loss reduction is due to the disappearance of separation bubble from the early transition onset. 展开更多
关键词 Separation control Turbine blade Surface roughness
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