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NATURAL CONVECTION FLOW IN VERTICAL CHANNEL DUE TO RAMPED WALL TEMPERATURE AT ONE BOUNDARY

机译:壁面温度一边界上升,垂直通道中的自然对流

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摘要

An exact solution to the problem of unsteady natural convective flow of a viscous and incompressible fluid in a vertical parallel plate channel due to ramp heating at one boundary is presented. The temperature at one of the channel plates increases linearly over a certain time period and then remains constant while that at the other plate is maintained at the initial fluid temperature. The Laplace transform technique has been used to obtain the expressions for the velocity and temperature fields by solving the dimensionless governing partial differential equations under appropriate boundary conditions. The influence of the physical parameters on the velocity field, the temperature field, rate of heat transfer, skin-friction and volume flow rate of the fluid are analyzed systematically. The shear stress at the plate with ramped temperature boundary condition is significantly higher than that at the other plate because of the steeper velocity profiles in the vicinity. The Nusselt number at the plate with ramped temperature is much higher than that at the other plate indicating that much of the energy released from the plate because of its increasing temperature with time is convected out by the fluid before it reaches the second plate. The natural convection due to ramp heating has also been compared with the baseline case of flow with constant temperature.
机译:提出了一种精确解决方案,该方案解决了由于在一个边界处的斜坡加热而导致的垂直平行板通道中的粘性和不可压缩流体的不稳定自然对流流动问题。在一个通道板上的温度在一定时间段内线性增加,然后保持恒定,而在另一个板上的温度则保持在初始流体温度。通过在适当的边界条件下求解无量纲控制的偏微分方程,拉普拉斯变换技术已用于获得速度和温度场的表达式。系统分析了物理参数对流体的速度场,温度场,传热速率,摩擦系数和体积流量的影响。在温度边界条件倾斜的情况下,该板的剪切应力明显高于其他板,这是因为附近的速度分布较陡。温度升高的板中的努塞尔数比另一板高得多,这表明由于温度随时间升高而从板中释放出的大量能量在到达第二板之前被流体对流。还已经将由于斜坡加热而产生的自然对流与恒定温度下的基线流量进行了比较。

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