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NUMERICAL SIMULATIONS ON NATURAL CONVECTION FROM A CIRCULAR CYLINDER IN OSCILLATING FLOWS

机译:绕流中圆圆柱自然对流的数值模拟。

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Natural convection from a circular cylinder in oscillating flows has been simulated by projection method with two dimensional exponential stretched staggered cylindrical meshes. Present numerical results are validated by comparing the heat transfer results of free convection over a circular cylinder to published experimental and numerical results. The effects of wave directions, amplitudes, frequencies and buoyancy forces on the enhancement of heat transfer have also been presented. Based on turning points of the curves of the overall Nusselt numbers versus Reynolds numbers, the heat transfer can be divided into three linear regimes (conduction, laminar convection and turbulent convection dominated regimes) and two non-linear transient regimes. The valid ranges of the governing parameters for heat transfer enhancement have been identified. The effects of wave directions, amplitudes, frequencies, and buoyancy forces on the enhancement of heat transfer are also investigated. The effective ranges of the governing parameters for heat transfer enhancement are identified.
机译:利用二维指数拉伸交错圆柱网格的投影方法,模拟了圆柱体在振荡流动中的自然对流。通过将圆柱体上自由对流的传热结果与已发布的实验和数值结果进行比较,可以验证当前的数值结果。还提出了波的方向,幅度,频率和浮力对增强传热的影响。根据总Nusselt数与Reynolds数的曲线的转折点,可以将热传递分为三种线性状态(传导,层流对流和湍流对流为主的状态)和两个非线性瞬态状态。已经确定了用于传热增强的控制参数的有效范围。还研究了波的方向,振幅,频率和浮力对增强传热的影响。确定用于传热增强的控制参数的有效范围。

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    《ASME heat transfer conference》|2014年|V004T14A001.1-V004T14A001.8|共8页
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    Yan Su;

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