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首页> 外文期刊>International Journal of Thermal Sciences >Scalings for unsteady natural convection boundary layers on a vertical plate at time-dependent temperature
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Scalings for unsteady natural convection boundary layers on a vertical plate at time-dependent temperature

机译:随时间变化的垂直板上不稳定自然对流边界层的缩放比例

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In this paper, a scaling analysis using a simple three-region structure was used to develop scalings for the unsteady natural convection boundary layer (NCBL) of a homogeneous Newtonian fluid with Pr>1 adjacent to a finite vertical plate evenly heated with a time-varying sinusoidal temperature, where Pr is the Prandtl number. Three distinct sub-stages are. identified in the heating stage, i.e., a start-up stage, a transitional stage, and a quasi-steady stage. After the heating stage, there is a very short cooling stage, in which a double thermal boundary layer structure is developed, which leads to a new, thinner thermal boundary layer adjacent to the plate co-existing with the original thermal boundary layer. A series of scalings are developed for the thermal and viscous boundary thicknesses, the maximum vertical velocity within the boundary layer, and the Nusselt number which are the major parameters representing the flow behavior, in terms of the governing parameters of the flow, i.e., the Rayleigh number Ra, Pr, and the dimensionless natural frequency of the time-varying sinusoidal temperature at various flow development stages. These scalings are tested by full numerical solutions of the governing equations and are shown to, in general, provide an accurate description of the flow. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:在本文中,使用简单的三区域结构进行标度分析,以开发Pr> 1的均匀牛顿流体的非稳态自然对流边界层(NCBL)的标度,并与有限垂直板相邻并均匀加热,时间为变化的正弦温度,其中Pr是普朗特数。三个不同的子阶段是。在加热阶段,即启动阶段,过渡阶段和准稳定阶段确定。在加热阶段之后,有一个非常短的冷却阶段,其中发展出双重热边界层结构,这导致与板相邻的新的更薄的热边界层与原始热边界层共存。针对流动和控制的边界厚度,边界层内的最大垂直速度和Nusselt数,制定了一系列缩放比例,它们是代表流动行为的主要参数,代表着流动的控制参数,即瑞利数Ra,Pr和在不同流动发展阶段时变正弦温度的无量纲自然频率。这些比例通过控制方程的完整数值解进行了测试,并显示出通常可对流量进行准确的描述。 (C)2016 Elsevier Masson SAS。版权所有。

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