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Critical heat flux study of cooling design of the spallation neutron source solid-target system - effect of heat flux distribution

机译:散装中子源固体系统固体源系统的临界热通量研究 - 热通量分布的影响

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Heat transfer experiments have been carried out in relation to the N-Arena solid-target system of the Japan Hadron Facility (JHF) project. Since maximum heat density in the solid target is estimated to be as high as 1000 MW/m{sup}2 at 0.6 MW proton beam power, heat removal from the target can be a vital problem. The present paper investigates the effect of axial heat flux distribution on CHF due to the proton beam profile by systematical CHF experiments using a thin rectangular channel with uniform and non-uniform axial heat flux distributions simulating a coolant channel of the proposed spallation neutron source. CHF correlations which can be used for design calculations were proposed based on the obtained data.
机译:传热实验是关于日本Hadron设施(JHF)项目的N-Arena固体目标体系进行的。由于固体目标中的最大热密度估计在0.6MW质子束功率下高达1000 mW / m {sup} 2,因此从目标的热量去除可能是一个重要的问题。本文通过使用薄矩形通道的系统CHF实验,研究了通过具有均匀和不均匀的轴向热通量分布的系统CHF实验,研究了轴向热通量分布对CHF的影响。模拟所提出的初始介质源的冷却剂通道。基于所获得的数据提出了可以用于设计计算的CHF相关性。

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