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A residual-based variational multiscale method with weak imposition of boundary conditions for buoyancy-driven flows

机译:浮力驱动流边界条件弱的基于残差的变分多尺度方法

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There is growing interest in high fidelity simulations of buoyancy-driven flows in indoor environments. This is driven to a large extent by the push to utilize naturally occurring flows to reduce energy consumption in the built environment. Naturally occurring (buoyancy-driven) flows exhibit spatiotemporal thermal fluctuations, and accurately capturing these thermal variations is essential to calculate energy usage. In this work, we deploy a residual-based variational multiscale (VMS) finite element large-eddy simulation model for accurately modeling buoyancy-driven flows in enclosed environments. We use the canonical example of the Rayleigh-Benard convection problem in 2D and 3D to verify and validate the VMS model. We show good comparison with benchmark numerical and experimental results across seven orders of magnitude variation in Rayleigh numbers (Ra similar to 10(3) to 10(10)), covering laminar, transition, and turbulent regimes without any extra treatments. We additionally employ weak enforcement of Dirichlet boundary conditions for both velocity and temperature, and show that comparable results can be produced with much coarser meshes. This confirms that the VMS framework with weak imposition of Dirichlet boundary conditions is a computationally efficient approach to model buoyancy-driven flow physics in complex indoor environments. (C) 2019 Elsevier B.V. All rights reserved.
机译:在室内环境中,由浮力驱动的流动的高保真度模拟越来越引起人们的兴趣。这在很大程度上受到推动以利用自然流来减少建筑环境中的能量消耗的推动。自然发生的(浮力驱动的)流动表现出时空热波动,因此准确地捕获这些热变化对于计算能量使用至关重要。在这项工作中,我们部署了基于残差的变尺度多尺度(VMS)有限元大涡模拟模型,以对封闭环境中的浮力驱动流进行精确建模。我们使用2D和3D中的Rayleigh-Benard对流问题的典型示例来验证和验证VMS模型。我们在瑞利数的七个数量级变化(Ra类似于10(3)至10(10))中显示了与基准数值和实验结果的良好比较,涵盖了层流,过渡和湍流状态,无需任何额外处理。我们还对速度和温度都采用了Dirichlet边界条件的弱执行,并表明使用更粗糙的网格可以产生可比的结果。这证实了具有弱Dirichlet边界条件的VMS框架是在复杂室内环境中对浮力驱动的流动物理建模的一种有效计算方法。 (C)2019 Elsevier B.V.保留所有权利。

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