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首页> 外文期刊>Fusion Engineering and Design >MHD simulation of the liquid metal/helium gas dual-cooled waste transmutation blanket for FDS
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MHD simulation of the liquid metal/helium gas dual-cooled waste transmutation blanket for FDS

机译:FDS液态金属/氦气双冷废trans变毯的MHD模拟

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摘要

Numerical simulation of magnetohydrodynamic (MHD) flow is implemented by using the commercial code package PHOENICS, in which the momentum source term of Lorentz force is added by applying FORTAN subroutine. Assuming simplified condition of a square duct, the numerical approach is applied to simulate the velocity profile in MA-zone in the design of dual-cooled waste transmutation blanket (DWTB) for a fusion-driven sub-critical system (FDS). The high velocity of closing FW side will improve the heat transfer between liquid metal and the walls of duct, due to high Hartmann number, but the MHD pressure drop will be increased. The compromise between the heat transfer and MHD pressure drop can be taken as reference for the design of the transmutation blanket.
机译:使用商业代码包PHOENICS对磁流体动力学(MHD)流动进行了数值模拟,其中通过应用FORTAN子例程添加了洛伦兹力的动量源项。假设方管条件简化,在聚变驱动亚临界系统(FDS)的双冷式废物转化毯(DWTB)的设计中,采用数值方法来模拟MA区的速度分布。由于高的哈特曼数,关闭FW侧的高速度将改善液态金属与管道壁之间的传热,但MHD压降将增加。传热和MHD压降之间的折衷可以作为the变层设计的参考。

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