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Numerical analysis of two-dimensional steady-state and transient heat transfer in a parallel duct filled with pressurized He II

机译:加压He II填充的平行管内二维稳态和瞬态传热的数值分析

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摘要

Analysis on steady-state and transient heat transfer on a flat plate at the middle of a parallel duct immersed in He II was performed for bath temperatures from 1.8 to 2.1 K at 101.3 kPa. Two-dimensional computer code named SUPER-2D developed by the authors based on the two-fluid model and the theory of mutual friction was used. Steady-state critical heat flux (CHF) and the time lag from the application of a step heat input to lambda transition that is called a lifetime, were obtained numerically for various step heat fluxes and for the channel gaps from 2 to 20 mm. Effect of the gap restriction on the CHF and the lifetime were clarified. The solutions were compared with the experimental data for the ducts with the same structures and the corresponding conditions. They agreed well with the experimental data. The heat transport mechanism in the parallel duct was clarified.
机译:在101.3 kPa的浴温从1.8到2.1 K的条件下,对浸入He II的平行管道中间的平板上的稳态和瞬态传热进行了分析。作者基于双流体模型和相互摩擦理论,开发了二维计算机代码SUPER-2D。对于各种阶跃热通量和2到20 mm的通道间隙,均获得了稳态临界热通量(CHF)和从阶跃热输入施加到Lambda跃迁的时间滞后,称为寿命。阐明了间隙限制对CHF和寿命的影响。将溶液与具有相同结构和相应条件的管道的实验数据进行比较。他们与实验数据非常吻合。阐明了平行管道中的传热机理。

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