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Effect of water injection cooling on flow field characteristics in the cooling section of precooled turbine-based combined cycle engine

机译:注水冷却对预冷涡轮联合循环发动机冷却段流场特性的影响

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摘要

To explore the inlet air cooling effect in a precooled turbine-based combined cycle engine, a numerical investigation for air/droplet fully coupled cooling is performed in the cooling section with a spray system. The accuracy of numerical simulation program for mass injection cooling methodology is qualified with the experimental data. Results indicate that an even spray arrangement is beneficial to the uniform distribution of flow field, and it is also the major factor resulting in the flow loss. Although the flow loss of dry air is irreversible in the flow process, the additional new energy of water vapor can contribute total energy of wet air mixture. In contrast, under the lowest requirement qualified of mass injection cooling at two high-altitude simulation environments, the total-pressure drop coefficients are 3.22-4.22% before mist injection and 2.87-3.86% after mist injection; the total-temperature drop coefficient is 10.09% and 16.29%, respectively, for dry air and wet air conditions. After optimization for spray apparatus, the flow loss can decrease by about 55.84% before mist injection and about 64.53% after mist injection. Additionally, a little influence is for flow field temperature. Therefore, water injection cooling can effectively improve the flow field characteristics due to a larger total-temperature drop and a smaller total-pressure loss in the cooling section. (C) 2019 Elsevier Ltd. All rights reserved.
机译:为了探索基于预冷涡轮的联合循环发动机中的进气冷却效果,在带有喷雾系统的冷却段中对空气/液滴完全耦合冷却进行了数值研究。大量注入冷却方法的数值模拟程序的准确性与实验数据相符。结果表明,均匀的喷雾布置有利于流场的均匀分布,也是造成流失的主要因素。尽管干燥空气的流动损失在流动过程中是不可逆的,但额外的水蒸气新能量可以贡献湿空气混合物的总能量。相比之下,在两种高空模拟环境下,在最低质量喷射注水条件下,雾滴喷射前的总压降系数为3.22-4.22%,雾滴喷射后的总压降系数为2.83-3.86%。在干燥空气和湿空气条件下,总温降系数分别为10.09%和16.29%。在对喷雾设备进行优化之后,在雾气喷射之前,流量损失可以降低约55.84%,在雾气喷射之后,流量损失可以降低约64.53%。另外,对流场温度的影响很小。因此,注水冷却由于冷却部中的总温度下降较大且总压力损失较小而可以有效地改善流场特性。 (C)2019 Elsevier Ltd.保留所有权利。

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