论文标题
通过旋转扁平板和局部流动调制的差异加热腔中的混合对流
Mixed Convection in a Differentially Heated Cavity with Local Flow Modulation via Rotating Flat Plates
论文作者
论文摘要
已经研究了通过旋转平板在局部调制下导致热浮力导致的腔内的混合对流。目前的模型由一个方形腔组成,其左右垂直壁分别固定在恒定高温和低温下,而顶部和底壁应该是绝热的。与长度相比,两个顺时针旋转的平板,厚度可忽略不计,充当流动调节剂的沿腔的中心线垂直放置。通过实施\ textit {任意的拉格朗日欧拉(ALE)}有限元元素配方,使用三角离散化方案实现\ textit {任意的lagrangian eulerian(ale)}来解决。基于板动态条件的旋转雷诺数在430处被认为是恒定的。数值结果确定关键雷利号$ ra_ {cr} = 0.41 \ times10^6 $,超过两个较小的流量调节器比单个较大的调制器更有效。对于双重调节器的情况,观察到热振荡频率对雷利数字不敏感。
Mixed Convection inside a cavity resulting from thermal buoyancy force under local modulation via rotating flat plate has been investigated. The present model consists of a square cavity with the left and right vertical walls fixed at constant high and low temperatures respectively while the top and bottom walls are supposed to be adiabatic. Two clockwise rotating flat plates, having negligible thickness in comparison to their lengths, acting as flow modulators have been placed vertically along the centerline of the cavity. The moving boundary problem due to plate motion in this study has been solved by implementing \textit{Arbitrary Lagrangian Eulerian (ALE)} finite element formulation with triangular discretization scheme.Simulations are conducted for air ($Pr=0.71$) at different Rayleigh numbers ($10^2 \leq Ra \leq 10^6$). Rotational Reynolds number based on plate dynamic condition has been considered to be constant at 430. Numerical results identify critical Rayleigh number $Ra_{cr}=0.41\times10^6$ beyond which two smaller flow modulators are more effective than a single larger modulator. Thermal oscillating frequency was observed to be insensitive to Rayleigh number for the case of double modulators.