液锂铅包层第一壁肋粗化通道强制对流换热数值分析

Wei‐Hong Wang, Desheng Cheng, Yunqing Bai, Songlin Liu, Xi Pei
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引用次数: 0

摘要

第一壁作为液态金属包层的关键组成部分,必须承受并去除等离子体室和高功率密度LiPb增殖区的最大热通量。适当的对策是对等离子体面冷却剂通道壁进行人工粗化,以加强热交换。为FDS系列液态锂铅包层设计了高压氦气肋粗化冷却剂通道,与光滑冷却剂通道相比,提高了湍流换热性能。利用计算流体力学程序FLUENT??研究了第一壁肋粗化冷却剂通道内的换热系数和摩擦系数。基于二维物理模型和周期条件。数值分析结果表明,肋粗面矩形通道湍流换热努塞尔数(Nu)比光滑通道湍流换热努塞尔数(Nu)高200%,氦气与CLAM钢结构的分数系数(f)比光滑通道湍流换热系数高20%。同时给出了考虑不同凸度部分高度和宽度的数值优化参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical analysis of forced convection heat transfer in first wall rib-roughened channels for liquid lithium lead blanket
The first wall as the key component of the liquid metal blanket must withstand and remove the maximum heat flux from the plasma chamber and high power density LiPb breeder zone. A suitable countermeasure would be artificial roughening of the coolant channel wall facing the plasma for intensifying heat exchange. The rib-roughened coolant channels with high pressure helium gas for FDS series liquid lithium lead blanket were designed to enhance the turbulence heat transfer in comparison with smooth coolant channels. Heat transfer coefficients and friction factors in rib-roughened coolant channels of the first wall are investigated using the computational fluid dynamics code FLUENT??based on the two dimensional physical model and periodic condition. From the results of the numerical analysis, the turbulence heat transfer Nusselt number (Nu) in the rectangular channels of rib-roughened face is higher 200% than those in the smooth channels, and the fraction coefficient (ƒ) between the helium gas and CLAM steel structure is 20% more than those in the smooth channels. The numerically optimized parameters are also presented considering different convexity part height and width as well.
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