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Numerical investigation on blade leading edge high-efficiency swirl and impingement phase transfer cooling mechanism

机译:叶片前缘高效旋流和冲击相转移冷却机理的数值研究

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A comparative study of the flow field and heat transfer characteristics between swirl and impingement of mist/air cooling on blade leading edge is carried out to find a better cooling configuration for phase transition cooling. The Eulerian-Lagrangian particle tracking technique is used to investigate mist/air cooling. Comparisons are made between these two cooling forms in such aspects as vortex structure, heat transfer enhancement, pressure loss, and thermal uniformity with and without mist injection. The influences of mist ratio and Reynolds numbers on these parameters are studied in this paper. Results show that heat transfer is enhanced while pressure loss and thermal uniformity are improved by the swirl flow created by vortex impingement. The heat transfer performance increases by about 46.2 and 51.9%, respectively, for impingement and swirl cooling with 8% mist injection, and the pressure loss coefficient increases by 19%. The difference of heat transfer coefficient between swirl and impingement cooling with and without mist injection at high Reynolds number is larger than that at low Reynolds number. In addition, the heat transfer nonuniform coefficient of swirl cooling is about 15% lower than for impingement cooling.
机译:对旋流与叶片前缘上的雾/空气冷却的撞击和旋流之间的流场和传热特性进行了比较研究,以找到用于相变冷却的更好的冷却构造。欧拉-拉格朗日粒子跟踪技术用于研究薄雾/空气冷却。在这两种冷却形式之间进行了比较,包括涡流结构,传热增强,压力损失以及有无雾气注入时的热均匀性。研究了雾比和雷诺数对这些参数的影响。结果表明,涡流撞击产生的涡流促进了传热,同时改善了压力损失和热均匀性。对于采用8%的水雾喷射进行的冲击冷却和涡流冷却,传热性能分别提高了约46.2%和51.9%,压力损失系数提高了19%。在高雷诺数下,在有雾和无雾的情况下,旋流和冲击冷却之间的传热系数差异要大于低雷诺数时的传热系数差异。此外,涡流冷却的传热不均匀系数比冲击冷却低约15%。

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