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首页> 外文期刊>Thermal science >Experimental and CFD analysis of swirl, nozzle arrangement, cross-section and jets diameter on heat transfer in multi-jet air impingement cooling
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Experimental and CFD analysis of swirl, nozzle arrangement, cross-section and jets diameter on heat transfer in multi-jet air impingement cooling

机译:多喷嘴空气冲击冷却中涡流,喷嘴布置,横截面和喷嘴直径对传热的实验和CFD分析

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Experimental investigation and CFD analysis were performed to study the effects of swirl, nozzle arrangement, cross section of nozzle, number of jets and jet diameter on heat transfer coefficient in multi-jet air impingement cooling for a target surface of 100 ×150 mm size supplied with a constant heat flux of 7666 W/m2. The normalized heat transfer coefficient based on unit volume of air is evaluated through measurement of temperature for flow Reynolds numbersin the range of 8000-22000 with H/D ratiosof 1, 2, 4, and 6. Investigations with and without swirl reveal that among the tested conditions, for 8 mm jets, introducing swirl reduces the heat transfer where as for 10 mm and 12 mm jets, swirl improves the average heat transfer rate. For sets of 12 nozzles configurations, the staggered arrangement for 6 mm and 8 mm nozzles results in higher heat transfer rate than in-line arrangement unlike in 4 mm nozzles where in-line arrangement is better. Heat transfer coefficients for circular, square and triangular cross-sections of same flow area have been compared. Circular cross-section offers better heat transfer coefficient for all the tested conditions. For a given number of nozzles, there is an optimum diameter corresponding to maximum value of normalized heat transfer coefficient. The results are corroborated with CFD analysis for a few representative conditions tested.
机译:进行了实验研究和CFD分析,以研究涡流,喷嘴布置,喷嘴横截面,喷嘴数量和喷嘴直径对多喷嘴空气冲击冷却中提供的100×150 mm尺寸目标表面的传热系数的影响。恒定热通量为7666 W / m2。通过测量H / D比为1、2、4和6的流动雷诺数在8000-22000范围内的温度来评估基于空气单位体积的归一化传热系数。在8mm喷嘴的测试条件下,引入涡流会降低传热,而对于10mm和12mm喷嘴,涡流会提高平均传热率。对于12个喷嘴配置的组,与4 mm喷嘴相比,6 mm和8 mm喷嘴的交错布置比在线布置具有更高的传热速率,而4 mm喷嘴则更好。比较了相同流动面积的圆形,正方形和三角形横截面的传热系数。圆形横截面在所有测试条件下均可提供更好的传热系数。对于给定数量的喷嘴,存在与归一化传热系数的最大值相对应的最佳直径。对于一些代表性的测试条件,结果通过CFD分析得到了证实。

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