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Heat Transfer Mechanism of a Swirling Impinging Jet in a Stagnation Region

机译:驻流区旋流射流的传热机理

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Heat transfer characteristics of a swirling impinging jet have been experimentally examined using a combined particle image velocimetry (PIV) and laser-induced fluorescence (LIF) technique for simultaneous measurement of velocity and temperature fields. The present study shows that the radial width of the jet stretches with increasing swirl intensity, and that the stretching phenomenon contributes to the maximum local heat transfer coefficient. At the stagnation region, the flow near the heated surface is mixed intermittently by reverse flows toward upstream, and spatial distributions of temperature are correlated with instantaneous velocity vector maps. The dynamic behavior of recirculation zones, attributed to swirl number Sw and impinging distance, mainly determines the turbulent heat transfer at the stagnation region.
机译:使用组合粒子图像测速(PIV)和激光诱导荧光(LIF)技术,同时测量速度和温度场,已通过实验检查了旋流撞击射流的传热特性。本研究表明,射流的径向宽度随着旋流强度的增加而拉伸,并且拉伸现象有助于最大的局部传热系数。在停滞区域,受热表面附近的流通过向上游的逆流间歇性地混合,温度的空间分布与瞬时速度矢量图相关。归因于旋流数Sw和撞击距离的再循环区的动力学行为主要决定了滞流区域的湍流传热。

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