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Simulation of Convective Heat-Transfer Coefficient in a Buried Exchanger | Science Publications

机译:地下换热器对流换热系数的数值模拟科学出版物

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> This study presents analytical models allowing to study a forced convection laminar flow in non-established dynamic and thermic regimes. We treated a flow in a bitubular exchanger in permanent thermal contact with a semi-infinite medium, such as the ground. The wall temperature as well as the wall heat flux evolve in the course of time until a quasi-steady mode. The theoretical method is original because it uses Green's functions method to determine the analytical solutions of the heat propagation equation on the wall during the heating phase. These analytical solutions allow to identify the temperature distribution versus time. The complexity of the system geometry as well as the infinity of the medium surrounding the exchanger make the traditional methods of numerical resolution unable to solve the problem. We used, to solve it, the finite volume method coupled with the finite element method at the boundary. We studied the effect of Reynolds number, the fluid entry temperature and the transfer duration on the axial evolution of the heat transfer coefficient. We illustrated also the profile of the temperature field in the fluid medium.
机译: >这项研究提供了分析模型,可以研究未建立的动态和热态下的强迫对流层流。我们在与半无限长的介质(例如地面)保持永久热接触的情况下,在一个交换器中处理了流体。壁温以及壁热通量会随着时间的推移而变化,直到达到准稳态模式为止。该理论方法是新颖的,因为它使用格林函数方法来确定加热阶段壁上的热传递方程的解析解。这些分析解决方案可以确定温度分布与时间的关系。系统几何形状的复杂性以及交换器周围介质的无限性使得传统的数值解析方法无法解决该问题。为了解决这个问题,我们在边界处使用了有限体积方法和有限元方法。我们研究了雷诺数,流体进入温度和传递持续时间对传热系数轴向演变的影响。我们还说明了流体介质中温度场的分布。

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