首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >INFLUENCE OF TRAILING EDGE COOLANT EJECTION RATE AND CUT-BACK LENGTH ON ENERGY LOSS AND SHOCKWAVE INTENSITY OF A TRANSONIC TURBINE BLADE
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INFLUENCE OF TRAILING EDGE COOLANT EJECTION RATE AND CUT-BACK LENGTH ON ENERGY LOSS AND SHOCKWAVE INTENSITY OF A TRANSONIC TURBINE BLADE

机译:尾缘冷却剂喷射速率和回切长度对跨音速涡轮叶片的能量损失和波峰强度的影响

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As part of our efforts to understand better ways and means to further improve jet engine performance, the influence of trailing edge coolant ejection rate and cut-back length on energy loss and Shockwave intensity of a transonic turbine blade is numerically investigated with an exit Mach number of 1.2 for different coolant/main stream mass-flux ratios and cut-back lengths. Test results indicate both coolant ejection rate and cutback length have their optimum values, and the best ejection rate and the best cut-back length correlate with each other. From the view of minimizing the energy loss coefficient, the best ejection rate decreases with the increasing cut-back length. And from the view of minimizing the trailing edge Shockwave intensity, a higher trailing edge coolant ejection rate and a longer trailing edge cut-back can reduce the Shockwave intensity. It is therefore believed that these findings can of course facilitate the design of a trailing edge cooling system for transonic turbine blade to further improve jet engine performance. Moreover, trailing edge coolant ejection can be considered as an active flow control method at the same time.
机译:为了了解进一步改善喷气发动机性能的更好方法和手段,我们以出口马赫数为数值研究了后缘冷却液的喷射速度和切入长度对跨音速涡轮叶片的能量损失和冲击波强度的影响。对于不同的冷却剂/主流质量通量比和缩减长度,其系数为1.2。测试结果表明,冷却液的喷射速度和切入长度均具有最佳值,并且最佳的喷射率和切入长度彼此相关。从最小化能量损失系数的观点来看,最佳喷射速率随着切入长度的增加而降低。并且从最小化后沿冲击波强度的观点来看,较高的后沿冷却剂喷射速率和较长的后沿切角可以减小冲击波强度。因此,据信这些发现当然可以促进跨音速涡轮叶片的后缘冷却系统的设计,以进一步改善喷气发动机的性能。而且,后缘冷却剂的喷射可以同时被认为是一种主动的流量控制方法。

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