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VISUALISATION OF HEAT TRANSFER IN LAMINAR FLOWS

机译:层流流动中传热的可视化

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Heat transfer in fluid flows traditionally is examined in terms of temperature field and heat-transfer coefficients. However, heat transfer may alternatively be considered as the transport of thermal energy by the total convective-conductive heat flux in a way analogous to the transport of fluid by the flow field. The paths followed by the total heat flux are the thermal counterpart to fluid trajectories and facilitate heat-transfer visualisation in a similar manner as flow visualisation. This has great potential for applications in which insight into the heat fluxes throughout the entire configuration is essential (e.g. cooling systems, heat exchangers). To date this concept has been restricted to 2D steady flows. The present study proposes its generalisation to 3D unsteady flows by representing heat transfer as the 3D unsteady motion of a virtual fluid subject to continuity. The heat-transfer visualisation is provided with a physical framework and demonstrated by way of representative examples. Furthermore, a fundamental analogy between fluid motion and heat transfer is addressed that may pave the way to future heat-transfer studies by well-established geometrical methods from laminar-mixing studies.
机译:在温度场和传热系数方面检查流体流动中的热传递。然而,传热可以替代地被认为是通过流动场类似于流体的传输的方式被总对流导电热通量被认为是热能的传输。然后,总热通量的路径是流体轨迹的热对应物,并以与流动可视化类似的方式促进热传递可视化。这对应用具有很大的潜力,其中在整个配置中深入了解热通量至关重要(例如,冷却系统,热交换器)。迄今为止,这一概念仅限于2D稳定流动。本研究提出了通过将传热作为虚拟流体经受连续性的3D不稳定运动表示到3D不稳定流动的概括。传热可视化具有物理框架,并通过代表性示例演示。此外,解决了流体运动和传热之间的基本类比,这可能通过来自层层混合研究的良好建立的几何方法来铺平到未来的传热研究。

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