首页> 外文会议>ASME International Heat Transfer Conference >ALTERNATIVE AND RELEVANT REPRESENTATION TO HEAT TRANSFER COEFFICIENT FOR MODELING THE HEAT TRANSFER BETWEEN A FLUID AND A NON-ISOTHERMAL WALL IN TRANSIENT REGIME
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ALTERNATIVE AND RELEVANT REPRESENTATION TO HEAT TRANSFER COEFFICIENT FOR MODELING THE HEAT TRANSFER BETWEEN A FLUID AND A NON-ISOTHERMAL WALL IN TRANSIENT REGIME

机译:用于在瞬态状态下对流体和非等温壁之间的传热模拟传热系数的替代和相关的表示

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This paper deals with the relevant model that can be proposed for modeling the interfacial heat transfer between a fluid and a wall in the case of space and time varying thermal boundary conditions. Usually, for a constant and uniform heat transfer (unidirectional steady-state regime), the problem can be solved introducing a heat transfer coefficient h, uniform in space and constant in time that linearly links the surface heat flux and the temperature difference between the wall temperature T_w and an equivalent fluid temperature T_f. The problem we consider in this work concerns the heat transfer between a steady-state fluid flow and a wall submitted to a transient and non uniform thermal solicitations, as for instance a steady-state flow on a flat plate submitted to a transient and space reduced heat flux. We will show that the more interesting representation for describing the interfacial heat transfer is not to define as usually done a non-uniform and variable heat transfer coefficient h(x,t) because as it depends on the thermal boundary conditions, it is not really intrinsic. We propose an alternative approach, which consists in introducing a generalized impedance Z(ω,p) that links in space and time domain the heat flux and the temperature difference through a double convolution product instead of a scalar product. After the presentation of the general problem, the simple case of a stationary piston flow that can be solved analytically will be considered for validation both in thermal steady-state and transient regimes. To conclude and show the interest of our approach, a comparison between a global approach and a numerical simulation in a more complex and realistic case taking into account the thermal coupling with a flat plate will be presented.
机译:本文涉及相关模型,可以提出用于在空间和时间变化的热边界条件的情况下模拟流体和壁之间的界面传热。通常,对于恒定和均匀的传热(单向稳态状态),可以求解输热系数H,在空间中均匀,并且在时间线性地链接墙壁之间的温差和恒定的恒定温度T_W和等效流体温度T_F。我们考虑的问题涉及稳态流体流动和提交到瞬态和非均匀热招揽的壁之间的传热,例如,在提交到瞬态和空间的平板上的稳态流动热通量。我们将表明,用于描述界面传热的更有趣的表示是不定义,因为通常是不均匀和可变的传热系数h(x,t),因为它取决于热边界条件,它不是真的固有的。我们提出了一种替代方法,该方法包括引入在空间和时域中链接的广义阻抗Z(ω,P)通过双卷积产品而不是标量产品,而不是标量产品。在呈现的一般问题之后,将考虑在热稳态和瞬态制度中被视为验证的固定活塞流的简单情况。为了结束并表明我们的方法的兴趣,将呈现全球方法与在更复杂和现实情况中的数值模拟之间的比较,考虑到与平板的热耦合。

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