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Simulation of Impinging Cooling Performance with Pin Fins and Mist Cooling Adopted in a Simplified Gas Turbine Transition Piece

机译:简化燃气轮机过渡件采用销翅片和雾气冷却撞击冷却性能的仿真

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摘要

The gas turbine transition piece was simplified to a one-four cylinder double chamber model with a single row of impinging holes in the outer wall. Heat transfer augmentation in the coolant chamber was achieved through the use of pin fin structure and mist cooling, which could increase the turbulence and heat transfer efficiency. The present research is focused on heat transfer and pressure characteristics of the impinging cooling in the coolant chamber using FLUENT software. With the given diameter of impinging hole, pin fin diameter ratios D/d have been numerically studied in ranges from 1 to 2. Three different detached L were simulated. The impinging cooling performance in all cases was compared between single-phase and two-phase (imported appropriate mist) flow in the coolant chamber. All the simulation results reveal that the factors of L and D/d have significant effects on the convective heat transfer. After the pin fin structure was taken, the resulting temperature decrease of 38.77 K at most compared with the result of structure without pin fins. And with the mist injecting into the cooling chamber, the area weighted average temperature got a lower value without excess pressure loss, which could satisfy the more stringent requirements in engineering.
机译:燃气涡轮机过渡件简化为单四缸双腔室模型,其中一排撞击外壁中的孔。通过使用销鳍结构和雾气冷却来实现冷却剂室中的传热增强,这可以提高湍流和传热效率。本研究专注于使用流畅的软件在冷却剂室中撞击冷却的传热和压力特性。对于撞击孔的给定直径,销鳍直径比率D / D在数值上进行了数值从1-2的范围进行了模拟的三种不同的分离的L.在冷却剂室中的单相和两相(进口适当的雾)流之间比较了所有情况的撞击性能。所有仿真结果表明,L和D / D的因素对对流传热产生显着影响。在捕获销鳍结构之后,与没有销翅片的结构的结果相比,得到的温度降低了38.77k。并且随着喷射进入冷却室,面积加权平均温度具有较低的值而不会过高压力损失,这可以满足工程中的更严格的要求。

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