液态金属MHD和托卡马克毯槽冷却剂通道内的传热

B. Claude, T. Hua, David B. Black, I. Kirillov, S. I. Sidorenkov, Anatoly M. Shapiro, I. A. Evtushenko
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引用次数: 16

摘要

在美国阿贡国家实验室(ANL)的ALEX(阿贡液态金属实验)设备上进行了液态金属磁流体动力学/传热测试,该设备由美国阿贡国家实验室和Efremov研究所联合开发。测试部分是矩形开槽通道几何形状(意味着通道具有高宽高比,在这种情况下为10:1,并且长边与施加的磁场平行)。收集了等温和传热数据。试验截面的上水平面(长边)施加的热流密度为/spl sim/9 W/cm/sup 2/。哈特曼数为1050(2特斯拉),相互作用参数为9/spl倍/10/sup 3/,佩莱特数为10-200,基于小尺寸的半宽度(7毫米),速度为1-75厘米/秒。被实现。工质为NaK(钠钾共晶)。所有四个内墙都是光秃秃的300系列不锈钢导电墙。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Liquid metal MHD and heat transfer in a tokamak blanket slotted coolant channel
A liquid metal MHD (magnetohydrodynamic)/heat transfer test was conducted at the ALEX (Argonne Liquid Metal Experiment) facility of ANL (Argonne National Laboratory), jointly between ANL and NIIEFA (Efremov Institute). The test section was a rectangular slotted channel geometry (meaning the channel has a high aspect ratio, in this case 10:1, and the long side is parallel to the applied magnetic field). Isothermal and heat transfer data were collected. A heat flux of /spl sim/9 W/cm/sup 2/ was applied to the top horizontal surface (the long side) of the test section. Hartmann numbers to 1050 (2 Tesla), interaction parameters to 9/spl times/10/sup 3/, Peclet numbers of 10-200, based on the half-width of the small dimension (7 mm), and velocities of 1-75 cm/sec. were achieved. The working fluid was NaK (sodium potassium eutectic). All four interior walls were bare, 300-series stainless steel, conducting walls.
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