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引用本文:��־�����a�������� ��������ǿ���У���Ŵ���. Һ̬�ʵ��װ����ˮ��Ч��ģ��[J]. 核聚变与等离子体物理, 2015, 35(3): 278-283. DOI: 10.16568/j.0254-6086.201503015
作者姓名:��־�����a�������� ��������ǿ���У���Ŵ���
作者单位:(1. ???????????????????????????? 610041??2. ?????????????????о???????? 610064?? 3. ??????????????????????? 610064??
摘    要:


Simulation of cooling efficiency in test device of liquid lithium
ZHU Zhi-chuan,GOU Fu-jun,MIAO Feng,WANG Jian-qiang,YANG Dang-xiao,ZHANG Chuan-wu. Simulation of cooling efficiency in test device of liquid lithium[J]. Nuclear Fusion and Plasma Physics, 2015, 35(3): 278-283. DOI: 10.16568/j.0254-6086.201503015
Authors:ZHU Zhi-chuan  GOU Fu-jun  MIAO Feng  WANG Jian-qiang  YANG Dang-xiao  ZHANG Chuan-wu
Affiliation:(1. Colloge of Electrical and Information Engineering, Southwest University for Nationalities, Chengdu 610041; 2. Institute of Nuclear Science and Technology, Sichuan University, Chengdu 610064; 3. College of Physical Science and Technology, Sichuan University, Chengdu 610064??
Abstract:Using commercial software CFX, the effect of velocity of liquid lithium, heat flux, velocity and temperature of water on temperature of the free flow liquid lithium and cooling efficiency of water under the action of thermal load was calculated. Results indicate that temperature of liquid lithium will decrease with the increase of velocity of liquid lithium. When heat flux is less than 2MW·m-2, water cooling can meet the requirements of the temperature control of liquid lithium, however, cooling capacity of water is insufficient when heat flux is much higher. Increasing the velocity of cooling water is the effective way to decrease temperature of liquid lithium and improve cooling efficiency. The temperature of water has a little impact on temperature of liquid lithium and cooling efficiency.
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