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首页> 外文期刊>Fusion Engineering and Design >Forced convective heat transfer in square-ribbed coolant channels with helium gas for fusion power reactors
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Forced convective heat transfer in square-ribbed coolant channels with helium gas for fusion power reactors

机译:聚变反应堆中带氦气的方肋冷却剂通道中的强制对流换热

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Square-ribbed coolant channels with helium gas for fusion power reactors were designed to enhance the turbulent heat transfer in comparison with smooth coolant channels. Heat transfer coefficients and friction factors in the square-ribbed annular channels were investigated quantitatively under high pressure. The turbulent heat transfer coefficients in the square-ribbed annulus, with a ratio of the rib pitch to a height of ten, were 200-300/100 higher than those in the smooth annulus and then the thermal-hydraulic empirical correlations were derived. The average heat fluxes from the heated wall were predicted using the present empirical correlations and the maximum heat flux at p/h=10 reached ≈1.5 MW/m~2 at Re=65 000. From the results of the present study, it can be expected that the proposed rib-roughened coolant channels are available to remove surface heat fluxes at the first wall and blanket in the fusion power reactors.
机译:设计用于聚变反应堆的氦气方形肋冷却液通道,与平滑冷却液通道相比,可增强湍流的热传递。在高压下定量研究了肋状环形通道中的传热系数和摩擦系数。肋骨节距与高度的比率为10时,方肋环中的湍流传热系数比光滑环中的湍流传热系数高200-300 / 100,然后得出了热-水的经验相关性。利用目前的经验关系式预测了来自加热墙的平均热通量,在p / h = 10时的最大热通量在Re = 65 000时达到了≈1.5MW / m〜2。可以预期的是,提出的肋状冷却剂通道可用于去除聚变动力反应堆中第一壁和覆盖层的表面热通量。

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