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Heat transfer from a single and row of three dimensional wall jets - A combined experimental and numerical study

机译:从一排三维壁喷射的传热传热 - 一个组合的实验和数值研究

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This paper reports the results of experimental and numerical studies to understand the heat transfer characteristics of three-dimensional wall jets exiting from a single and a row of circular jet openings over an unheated flat plate. Infrared thermography is employed to obtain the temperature distribution over the target surface, and the semi-infinite approximation methodology is used to estimate the heat transfer coefficients. Single wire constant temperature hot-wire anemometer is used to measure the flow characteristics. Additionally, computational studies have been performed to select a suitable low Reynolds number turbulence closure models among the following models, namely (i) Spalart Almaras (SA) (ⅱ) Realizable k-ε with enhanced wall treatment (RKE-ewt) (ⅲ) k-ω SST and (ⅳ) Reynolds Stress Model with enhanced wall treatment (RSM-ewt) that predicts the experimentally obtained results for heat transfer characteristics accurately. Based on the investigations carried out, it is observed that RKE-ewt turbulence closure model is not only accurate but also faster in the prediction of heat transfer coefficient. Further, it is also seen that for a fixed mass flow rate, and at a given diameter of the jet opening, widely spaced jets show higher heat transfer coefficients. Furthermore, for a row of three-dimensional wall jets correlations based on the numerical results are developed for the Nusselt number for a Reynolds number range of 5000 to 15000.
机译:本文报道了实验性和数值研究的结果,了解从未加热的平板上从单个和一排圆形喷射开口离开的三维壁喷射的传热特性。使用红外热成像以获得目标表面上的温度分布,并且半无限近似方法用于估计传热系数。单线恒温热线风速计用于测量流动特性。另外,已经进行了计算研究以在下列型号中选择合适的低雷诺数湍流闭合模型,即(i)Spalart Almaras(SA)(Ⅱ)可实现的K-ε,具有增强的壁处理(RKE-EWT)(Ⅲ) K-ωSST和(ⅳ)雷诺应力模型具有增强型墙面处理(RSM-EWT),预测了实验所获得的热传递特性的结果。基于进行的研究,观察到RKE-EWT湍流闭合模型不仅准确,而且在传热系数的预测中也更快。此外,还可以看出,对于固定的质量流量,并且在喷射开口的给定直径处,广泛间隔的喷射显示出更高的传热系数。此外,对于基于数值结果的一排三维壁喷射相关性,用于雷诺数范围为5000至15000的豆浆编号。

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