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中心进气旋转盘的冷却效果实验研究 被引量:8
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作者 徐国强 丁水汀 +1 位作者 陶智 罗翔 《热能动力工程》 EI CAS CSCD 北大核心 2000年第3期260-263,共4页
:对涡轮发动机热部件冷却的主要指标目的是使热部件的总体温度尽可能低和热部件内部的温差尽可能小 ,因此对涡轮发动机涡轮盘的冷却除研究转盘表面的对流换热系数外 ,还应对以上两个指标进行研究。本文将发动机的涡轮盘简化成中心进气... :对涡轮发动机热部件冷却的主要指标目的是使热部件的总体温度尽可能低和热部件内部的温差尽可能小 ,因此对涡轮发动机涡轮盘的冷却除研究转盘表面的对流换热系数外 ,还应对以上两个指标进行研究。本文将发动机的涡轮盘简化成中心进气旋转盘模型 ,用实验的方法研究了旋转雷诺数、进气雷诺数、盘罩间隙比和出气间隙比对转盘无量纲过余体平均温度和无量纲径向温差的影响 。 展开更多
关键词 旋转盘 中心进气 涡轮发动机 冷动效果
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Research on Cooling Effectiveness in Stepped Slot Film Cooling Vane
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作者 LI Yulong WU Hong +1 位作者 ZHOU Feng RONG Chengjun 《Journal of Thermal Science》 SCIE EI CAS CSCD 2016年第3期273-279,共7页
As one of the most important developments in air cooling technology for hot parts of the aero-engine, film cool- ing technology has been widely used. Film cooling hole structure exists mainly in areas that have high t... As one of the most important developments in air cooling technology for hot parts of the aero-engine, film cool- ing technology has been widely used. Film cooling hole structure exists mainly in areas that have high temperature, uneven cooling effectiveness issues when in actual use. The first stage turbine vanes of the aero-engine consume the largest portion of cooling air, thereby the research on reducing the amount of cooling air has the greatest potential. A new stopped slot film cooling vane with a high cooling effectiveness and a high cooling uniformity was researched initially. Through numerical methods, the affecting factors of the cooling effectiveness of a vane with the stepped slot film cooling structure were researched. This paper focuses on the cooling effectiveness and the pressure loss in different blowing ratio conditions, then the most reasonable and scientific structure parameter can be obtained by analyzing the results. The results show that 1.0 mm is the optimum slot width and 10.0 is the most reasonable blowing ratio. Under this condition, the vane achieved the best cooling result and the highest cooling effectiveness, and also retained a low pressure loss. 展开更多
关键词 Film cooling Cooling effectiveness Blowing ratio Pressure loss
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