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首页> 外文期刊>Mathematical Problems in Engineering >NATURAL CONVECTION IN A SQUARE CAVITY WITH PARTIALLY ACTIVE VERTICAL WALLS: TIME-PERIODIC BOUNDARY CONDITION
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NATURAL CONVECTION IN A SQUARE CAVITY WITH PARTIALLY ACTIVE VERTICAL WALLS: TIME-PERIODIC BOUNDARY CONDITION

机译:具有部分活动垂直壁的方型腔中的自然对流:时间周期边界条件

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摘要

A numerical study of transient natural convection in a square cavity with partly thermally active side walls is introduced. The thermally active regions of the side walls are periodic in time. Top and bottom of the cavity are adiabatic. Nine different positions of the thermally active zones are considered. The governing equations are solved using control volume method with power-law scheme. The results are obtained for various values of amplitude, period, and Grashof numbers ranging from 10~4-10~6 and different thermally active situations. It is found that the average heat transfer increases by increasing amplitude for P = 1,5, and decreasing for P = 3. The average Nusselt number behaves nonlinearly as a function of period.
机译:介绍了具有部分热活性侧壁的方腔内瞬态自然对流的数值研究。侧壁的热活性区域在时间上是周期性的。空腔的顶部和底部是绝热的。考虑了热活性区的九个不同位置。控制方程采用控制量法和幂律法求解。在10〜4-10〜6范围内的各种振幅,周期和Grashof值以及不同的热激活情况下获得结果。已发现,平均热传递随着振幅的增加而增加(对于P = 1,5,而对于P = 3,则减小)。平均努塞尔数随周期呈非线性变化。

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