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3-D NUMERICAL HEAT TRANSFER FOR CONFINED TURBULENT TWIN CIRCULAR JETS IMPINGING ON AN INCLINED MOVING PLATE

机译:受限湍流双圆射流撞击倾斜运动板上的3D数值传热

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The objective of this study is to numerically investigate the 3-D confined turbulent twin circular jets impinging to an inclined moving plate submerged in quiescent water. The effects of different dimensionless plate velocities (U_p = -0.2, -0.1, 0, 0.1, 0.2), and the oblique angles (9 = 0°, 10°, 20°, 30°), with U_p = 0 and θ= 0° being the conventional vertical jet impingement to a stationary plate , on the velocity field and heat transfer phenomenon were investigated in detail. It is shown that the plate moving direction has tremendous effect on the local and average Nusselt number distributions. In the case of stationary plate (U_p = 0 ), the average Nusselt number is decreased as the plate oblique angle 9 is increased. For a positive normalized plate velocity (U_p>0), the average Nusselt number is decreased with increasing oblique angle 9, while for a negative normalized plate velocity (U_p<0), the opposite trend is true.
机译:这项研究的目的是对3D受限湍流双圆形射流进行数值研究,该射流撞击到浸没在静止水中的倾斜运动板上。不同的无量纲板速度(U_p = -0.2,-0.1、0、0.1、0.2)和倾斜角(9 = 0°,10°,20°,30°)的影响,其中U_p = 0和θ= 0°是传统的垂直射流撞击固定板的速度场和传热现象进行了详细研究。结果表明,板块的运动方向对局部和平均努塞尔数分布有很大的影响。在固定板(U_p = 0)的情况下,随着板倾斜角9的增加,平均Nusselt数会减少。规范化板速度为正值(U_p> 0)时,平均Nusselt数随斜角9的增加而减小,而规范化板速度为负值(U_p <0)时,相反的趋势成立。

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