首页> 外文期刊>Journal of Flow Visualization and Image Processing >EXPERIMENTAL STUDY OF IMPINGING HEAT TRANSFER OF INLINE AND STAGGERED JET ARRAYS BY TRANSIENT LIQUID CRYSTAL TECHNIQUE
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EXPERIMENTAL STUDY OF IMPINGING HEAT TRANSFER OF INLINE AND STAGGERED JET ARRAYS BY TRANSIENT LIQUID CRYSTAL TECHNIQUE

机译:瞬态液晶技术影响直列式和交错式射流阵传热的实验研究

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摘要

The objective of the present experimental work is the study of local heat transfer performance over a target plate under impingement of inline and staggered jet arrays by a liquid crystal thermograph technique. Three jet-to-target spacings Z ( = z/d) of 3, 6, and 9 with inline and staggered jet arrays were considered at jet Reynolds numbers Re = 1500, 3000, and 4500 in three different exit-flow orientations. The results show that the local heat transfer rates are characterized by obvious periodic-type variation of Nusselt number distributions. The downstream peaks are diminished with increasing cross-flow effect. The best heat transfer performance is obtained with the cross flow exiting from both ends of the impingement channel. The inline jet array produces relatively higher local and overall heat transfer rates than those of the staggered jet array. Additionally, in the present results of 3 ≤ Z ≤ 9, higher heat transfer rates are found for the system with a smaller jet-to-plate spacing.
机译:本实验工作的目的是通过液晶热像仪技术研究在串联和交错喷射阵列撞击下靶板上的局部传热性能。在三个不同的出口流方向,雷诺数分别为Re = 1500、3000和4500时,分别考虑了3个,6个和9个带有串联和交错喷射阵列的三个喷射目标间距Z(= z / d)。结果表明,局部传热速率具有明显的努塞尔数分布的周期性变化特征。下游峰随着交叉流效应的增加而减小。从冲击通道的两端流出的错流可获得最佳的传热性能。串联射流阵列产生的热量比交错射流阵列的传热速率要高。另外,在目前的3≤Z≤9的结果中,对于喷嘴间距较小的系统,传热速率更高。

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