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Numerical study of buoyancy and inclination effects on transient mixed convection in a channel with two facing cavities with discrete heating

机译:分立加热两个面对腔瞬态混合对流的浮力和倾斜效应的数值研究

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摘要

In this work, the two-dimensional mixed convection flow and heat transfer from a rectangular channel with two facing identical open cubic cavities with discrete heating is studied numerically. The walls facing the opening are isothermal and all other bounding walls of the cavities and the channel are non-adiabatic. A parametric study has been conducted using water (Pr = 7) as the working fluid. The effect of buoyancy strength or Richardson number, Ri = Gr/Re-2, and its corresponding sensitivity to duct orientation on the overall flow and thermal evolution in space and time is studied for Reynolds numbers from 100 to 1000, channel inclination of 0 degrees <= gamma <= 90 degrees and cavity aspect ratios (AR, ratio between the width and height of the enclosures) of 0.25, 0.5 and 1. The complex flow features are comprehensively presented in the form of velocity, vorticity and temperature contours for a wide range in the parametric space. The results reported herein demonstrate that the cavity aspect ratio plays a significant role on the achieved flow and temperature fields, oscillation frequencies and heat transfer characteristics of the double cavity. In addition, it has been found that the Reynolds and Prandtl numbers as well as the heat losses through the channel walls have a strong influence on the dynamical response of the system for all values of the heat loss parameter.
机译:在这项工作中,在数值上研究了具有具有离散加热的两个面向相同的开放立方腔的矩形通道的二维混合对流流和热传递。面向开口的壁是等温和腔的所有其他边界壁,并且通道是非绝热的。使用水(PR = 7)作为工作流体进行参数研究。浮力强度或Richardson号码,RI = GR / RE-2的影响以及其对在空间和时间的整体流动和热演变上的对导管方向的相应敏感性是从100到1000的雷诺数,通道倾斜0度的<=γ<= 90度和腔纵横比(AR,外壳的宽度和高度之间的比率)为0.25,0.5和1。复杂的流量特征以速度,涡旋和温度轮廓的形式综合地呈现参数空间的宽范围。本文报告的结果表明,腔纵横比在达到的流动和温度场,振荡频率和热传递特性上起着重​​要作用,振荡频率和热传递特性。此外,已经发现雷诺和普朗斯特数以及通过通道壁的热损失对系统的热损失参数的所有值产生强烈影响。

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