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Effect of spatial side-wall temperature variation on transient natural convection of a nanofluid in a trapezoidal cavity

机译:空间侧壁温度变化对梯形腔中纳米流体瞬态自然对流的影响

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Purpose - This paper aims to study analytically and numerically the problem of transient natural convection heat transfer in a trapezoidal cavity with spatial side-wall temperature variation. Design/methodology/approach - The governing equations subject to the initial and boundary conditions are solved numerically by the finite difference scheme consisting of the alternating direction implicit method and the tri-diagonal matrix algorithm. The left sloping wall of the cavity is heated to nonuniform temperature, and the right sloping wall is maintained at a constant cold temperature, while the horizontal walls are kept adiabatic. Findings - It is shown that the heat transfer rate increases in non-uniform heating increments, whereby low wave number values are more affected by the convection. The best heat transfer enhancement results from larger side wall inclination angle; however, trapezoidal cavities require longer time compared to that of square to reach steady state. Originality/value - The study of natural convection heat transfer in a trapezoidal cavity filled with nanofluid and heated by spatial side-wall temperature has not yet been undertaken. Thus, the authors of the present study believe that this work is valuable.
机译:目的-本文旨在分析和数值研究具有空间侧壁温度变化的梯形腔体中的自然对流瞬态传热问题。设计/方法/方法-通过包含交替方向隐式方法和三对角矩阵算法的有限差分方案,对受初始和边界条件约束的控制方程进行数值求解。腔体的左倾斜壁被加热到不均匀的温度,右倾斜壁被保持在恒定的低温下,而水平壁则保持绝热。结果-显示出传热速率以不均匀的加热增量增加,因此低波数值受对流影响更大。最佳的传热效果来自较大的侧壁倾斜角度;但是,梯形腔要比稳态腔需要更长的时间才能达到稳态。原创性/价值-尚未进行在充满纳米流体并被空间侧壁温度加热的梯形腔中自然对流传热的研究。因此,本研究的作者认为这项工作是有价值的。

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