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Effect of Corrugated Orifice and Pin-Fin on Multiple Array Impingement Cooling with Low Nozzle to Target Distance

机译:波纹孔口和销钉对低喷嘴到目标距离的多阵列冲击冷却的影响

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摘要

Impingement cooling is widely used in turbine vanes and combustors. With the increase of turbine inlet temperature, high heat transfer coefficient and low pressure drop are required for cooling structures. A series of new impingement configurations combined with corrugated orifice and pin-fins were developed in the present work. Both transient liquid crystal (TLC) and pressure measurement were applied on the impingement cooling structures. A 3D numerical method was also used for conjugate heat transfer simulation. Corrugated orifice helps decrease the pressure drop by decreasing the speed of cross flow. Experimental data show that, corrugated orifice is helpful in reducing pin-fin induced pressure drop but contributes little to heat transfer. Pin-fins increases both the heat transfer and pressure drop lightly. Conjugate heat transfer simulation shows that pin-fins significantly reduce the metal temperature by conduction. Structures with pin-fins can make a good use of the large surface area of corrugated orifices.
机译:冲击冷却广泛用于涡轮机叶片和燃烧器。随着涡轮机入口温度的增加,冷却结构需要高传热系数和低压下降。在本作工作中开发了一系列新的冲击配置与波纹孔口和销鳍片相结合。瞬态液晶(TLC)和压力测量都施加在冲击冷却结构上。 3D数值方法还用于共轭传热模拟。波纹孔口通过降低交叉流动的速度有助于降低压降。实验数据表明,波纹孔口有助于减少尖翅诱导的压降,但有助于传热。销翅片随着传热和压降而增加。共轭传热仿真表明,引脚翅片通过传导显着降低金属温度。带销翅片的结构可以很好地利用波纹孔的大表面积。

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