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AERO-THERMAL PERFORMANCE OF A ROTOR BLADE CASCADE WITH STATOR-ROTOR SEAL PURGE FLOW

机译:定子-转子密封冲流的转子叶片级联的空气热性能

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The present paper investigates the effects of purge flow from a stator-rotor seal gap on the aerodynamic and thermal performance of a rotor blade cascade. Particular attention is paid to thermal results in the leading edge area that is typically difficult to protect. Experimental tests have been performed on a seven-blade cascade of a high-pressure rotor stage of a real gas turbine at low Mach number (Ma_(2is)=0.3). To simulate the rotational effect in a linear cascade environment, a number of inclined fins have been installed inside the stator-rotor gap, making the coolant flow to exit with the right tangential velocity component. Tests have been carried out at different blowing conditions, with mass flow rate ratios up to 2.0%. Aerodynamic effects of purge flow on secondary flow structures were surveyed by traversing a 5-hole miniaturized pressure probe in a plane 0.08c_(ax) downstream of the trailing edge. Film cooling effectiveness distributions on the end wall platform were obtained by using Thermochromic Liquid Crystals technique. Results allowed to investigate the effect of purge flow injection from the upstream gap on the secondary flows development and on the thermal protection capability. Purge flow injection of 1.0% reduced secondary flow losses and was found to effectively protect the front end wall region, up to about 0.5c_(ax) downstream of the leading edge. Increasing the purge flow up to 1.5% - 2.0% provided a better thermal protection not only stream wise, but also in the region close to the leading edge because of the weakened washing activity of the horseshoe vortex.
机译:本文研究了来自定子-转子密封间隙的吹扫气流对转子叶片叶栅的空气动力学和热性能的影响。要特别注意通常难以保护的前缘区域的热结果。已经在低马赫数(Ma_(2is)= 0.3)下对真实燃气轮机的高压转子级的七叶栅进行了实验测试。为了模拟线性级联环境中的旋转效果,在定子-转子间隙内安装了许多倾斜的散热片,使冷却剂流以正确的切向速度分量流出。已经在不同的吹风条件下进行了测试,质量流量比高达2.0%。通过在后缘下游的0.08c_(ax)平面中横穿5孔微型压力探头,调查了吹扫气流对次级流动结构的空气动力学影响。利用热致变色液晶技术获得了端壁平台上的薄膜冷却效率分布。结果允许研究从上游间隙注入吹扫流对二次流发展和热保护能力的影响。 1.0%的吹扫流注入减少了二次流损失,并被发现可以有效地保护前端壁区域,直至前缘下游约0.5c_(ax)。由于马蹄涡流的洗涤活性减弱,因此将吹扫流量提高至1.5%-2.0%不仅在流向方面而且在靠近前缘的区域中都提供了更好的热保护。

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