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Numerical analysis of MHD flow and heat transfer in a poloidal channel of the DCLL blanket with a SiC_f/SiC flow channel insert

机译:带有SiC_f / SiC流道插入件的DCLL橡皮布的极向通道中MHD流动和传热的数值分析

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摘要

MHD flow and heat transfer have been analyzed for a front poloidal channel in the outboard module of a Dual Coolant Lithium Lead (DCLL) blanket, with a flow channel insert made of a silicon carbide composite. The US reference DCLL blanket module [C. Wong, S. Malang, M. Sawan, S. Smolentsev, S. Majumdar, B. Merrill, D.K. Sze, N. Morley, S. Sharafat, P. Fogarty, M. Dagher, P. Peterson, H. Zhao, S. Zinkle, M. Youssef, Assessment of liquid breeder first wall and blanket options for the DEMO design, in: Proceedings of the 16th ANS TOFE Meeting, Madison, September 14-16,2004.] has been considered. Effectiveness of the insert as insulator was assessed via numerical simulations based on a 2D model for a fully developed flow and on a 3D model for heat transport. Parametric studies were performed at σ = 5-500 (Ωm)~(-1) and k = 2-20W/mK. Parameters resulting in a reasonably low MHD pressure drop and almost no heat leakage from the breeder into the cooling helium flows have been identified.
机译:已对双冷却液锂铅(DCLL)毯子外侧模块中的前极极通道进行了MHD流动和传热的分析,该通道具有由碳化硅复合材料制成的流动通道插件。美国参考DCLL橡皮布模块[C. Wong,S.Malang,M.Sawan,S.Smolentsev,S.Majumdar,B.Merrill,D.K. Sze,N. Morley,S. Sharafat,P. Fogarty,M. Dagher,P. Peterson,H.Zhao,S.Zinkle,M.Youssef,评估DEMO设计的液体育种人员第一道墙和毯子选项,在:已审议了第16届ANS TOFE会议的议事日程,2004年9月14日至16日。通过基于2D模型(用于充分发展的流动)和3D模型(用于热传递)的数值模拟,评估了插入物作为绝缘体的有效性。参数研究以σ= 5-500(Ωm)〜(-1)和k = 2-20W / mK进行。已经确定了导致合理的MHD压降较低且几乎没有热量从育种机泄漏到冷却氦气流中的参数。

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