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Analysis of Conjugate Heat Transfer for a Combined Turbulent Wall Jet and Offset Jet

机译:湍流壁面射流与偏角射流结合的共轭传热分析

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This paper presents a study of the conjugate heat transfer, involving conduction through a solid slab and turbulent convection in fluid, for a combined turbulent wall jet and offset jet flow using unsteady Reynolds averaged Navier-Stokes (URANS) equations. The conduction equation for the solid slab and convection equation for the fluid region are solved simultaneously satisfying the equality of temperature and heat flux at the solid-fluid interface. The fluid flow is complex because of the existence of periodically unsteady interaction between the two jets for the chosen ratio of jets separation distance to the jet width (i.e., d/w = 1). The heat transfer characteristics at the solid-fluid interface have been investigated by varying various important parameters within a feasible range: Reynolds number (Re = 10,000-20,000), Prandtl number (Pr = 1-4), solid-to-fluid thermal conductivity ratio (k_s/k_f= 1000-4000), and nondimensional solid slab thickness (s/w = 1-10). The bottom surface of the solid slab has been maintained at a constant temperature. The mean conjugate heat transfer characteristics indicate that the mean local Nusselt number along the interface is a function of flow (Re) as well as fluid (Pr) properties but is independent of solid properties (k_s and s). However, the mean interface temperature and mean local heat flux along the interface always depend on all the aforementioned properties.
机译:本文介绍了使用非稳态雷诺平均Navier-Stokes(URANS)方程的湍流壁面射流和偏移射流组合的共轭传热研究,涉及通过固体平板的传导和流体中的湍流对流。同时满足固体-流体界面处的温度和热通量相等,同时求解固体平板的传导方程和流体区域的对流方程。由于对于选定的射流分离距离与射流宽度之比(即,d / w = 1),两个射流之间存在周期性的不稳定相互作用,所以流体流动是复杂的。通过在可行范围内改变各种重要参数,研究了固-液界面的传热特性:雷诺数(Re = 10,000-20,000),普朗特数(Pr = 1-4),固-液导热系数比率(k_s / k_f = 1000-4000)和无量纲实心板厚度(s / w = 1-10)。实心板的底面已保持恒定温度。平均共轭传热特性表明,沿界面的平均局部Nusselt数是流量(Re)以及流体(Pr)性质的函数,但与固体性质(k_s和s)无关。但是,平均界面温度和沿着界面的平均局部热通量始终取决于所有上述特性。

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