首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >HEAT TRANSFER CHARACTERISTICS OF A BLADE TRAILING EDGE WITH PRESSURE SIDE BLEED EXTRACTION
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HEAT TRANSFER CHARACTERISTICS OF A BLADE TRAILING EDGE WITH PRESSURE SIDE BLEED EXTRACTION

机译:加压边排渣的叶片尾缘的传热特性。

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This paper investigates the heat transfer and pressure loss characteristic in the internal cooling system of the trailing edge of a gas turbine blade. The geometrical profile of the blade trailing edge and the operating conditions considered are representative of that normally found in a heavy-duty gas turbine. The trailing edge geometry consists of two radial passages with inclined turbulators which are connected with a bend. The trailing edge section consists of pins rows and a flow ejection cut-out slot. The impact of a cross-over hole in the web connecting the serpentine passages is also investigated. Both numerical and experimental studies were conducted at several passage Reynolds numbers ranging from 10~4 to 10~6. Experiments were conducted in a Perspex model at atmospheric conditions. The internal heat transfer coefficients were measured via the transient liquid crystal method and the pressure drop was measured via pressure taps. The impact of blade rotation on the heat transfer and pressure drop was also assessed numerically. Comparison of the measured and predicted heat transfer coefficients and pressure drops shows a good agreement for several flow conditions. The three-dimensional flow field in the passage and in the downstream pin banks was well captured numerically, with and without coolant injection via cross-over hole.
机译:本文研究了燃气轮机叶片后缘内部冷却系统中的传热和压力损失特性。叶片后缘的几何轮廓和所考虑的运行条件代表了通常在重型燃气轮机中发现的轮廓。后缘的几何形状由两个带有倾斜湍流器的径向通道组成,这些湍流器与弯头相连。后缘部分由排针和射流切出槽组成。还研究了连接蛇形通道的腹板中跨接孔的影响。数值和实验研究都是在雷诺数从10〜4到10〜6范围内进行的。实验是在大气条件下以有机玻璃模型进行的。内部传热系数是通过瞬态液晶方法测量的,而压降是通过压力接头测量的。叶片旋转对传热和压降的影响也得到了数值评估。测量和预测的传热系数与压降的比较显示了在几种流动条件下的良好一致性。无论有无通过交叉孔注入冷却剂,都可以很好地捕获通道和下游销柱中的三维流场。

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