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Numerical investigation of transient natural convection in a horizontal channel heated from the upper wall

机译:从上壁加热的水平通道中瞬态自然对流的数值研究

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摘要

In this investigation a transient numerical analysis for laminar natural convection in air between two horizontal parallel plates, with the upper plate heated at uniform heat flux and the lower one adiabatic, is carried out by means of the finite-volume method. The model is assumed to be two-dimensional. The Navier-Stokes equations together with the continuity and energy equations are solved by a numerical scheme based on SIMPLE in an H-shaped domain. Results are presented in terms of air velocity and temperature profiles. Wall temperatures and the temporal behavior of several significant variables, such as the penetration length, are reported for different Rayleigh numbers and aspect ratio values. Correlations among penetration length, dimensionless time, Rayleigh number, and aspect ratio are evaluated for 10(2) <= Ra <= 10(4) and L/b = 5, 10, and 20. At steady state regime, correlations for average Nusselt numbers and maximum dimensionless wall temperature in terms of Rayleigh number and aspect ratio are given for 10(2) <= Ra <= 10(4) and 5 <= L/b <= 20.
机译:在这项研究中,通过有限体积法对两个水平平行板之间的空气层流自然对流进行了瞬态数值分析,其中上板以均匀的热通量加热,下板为绝热。假定该模型是二维的。通过基于H型域中SIMPLE的数值方案,求解Navier-Stokes方程以及连续性和能量方程。结果以空气速度和温度曲线表示。对于不同的瑞利数和纵横比值,报告了壁温和几个重要变量(如穿透长度)的时间行为。对于10(2)<= Ra <= 10(4)和L / b = 5、10和20,评估了穿透长度,无量纲时间,瑞利数和长宽比之间的相关性。在稳态下,平均值的相关性对于10(2)<= Ra <= 10(4)和5 <= L / b <= 20,给出了基于瑞利数和纵横比的努塞尔数和最大无因次壁温。

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