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The effect of large-amplitude g-jitter vertical free convection boundary-layer flow in porous media

机译:多孔介质中大振幅g抖动垂直自由对流边界层流动的影响

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In this paper we consider how the boundary-layer flow induced by a constant temperature vertical surface embedded in a porous medium is modified by time periodic variations in the gravitational acceleration. It is assumed that the amplitude of these variations is comparable with the mean gravitational acceleration. The resulting nonsimilar boundary layer equations are solved using the Keller-box method after using a Fourier decomposition in time to reduce the system to parabolic form with only two independent variables. The main effect of such g-jitter is confined mainly to the region near the leading edge and becomes weak at larger distances from the leading edge. For small g-jitter amplitudes the numerical results compare very well indeed with our earlier analysis in Rees and Pop [Int. Comm. Heat Mass Transfer 27 (2000) 415].
机译:在本文中,我们考虑了如何通过重力加速度的时间周期变化来修改嵌入多孔介质中的恒温垂直表面所引起的边界层流。假定这些变化的幅度与平均重力加速度相当。在及时使用傅立叶分解以将系统简化为仅具有两个自变量的抛物线形式之后,使用Keller-box方法求解所得的非相似边界层方程。这种g抖动的主要作用主要限于前缘附近的区域,并且在距前缘较大的距离处变弱。对于较小的g抖动幅度,数值结果确实与我们之前在Rees和Pop [Int。通讯热传质27(2000)415]。

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