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Magnetohydrodynamic Calculations of Toroidal Fusion Reactor to Ensure Stable Control

Magnetohydrodynamic Calculations of Toroidal Fusion Reactor to Ensure Stable Control

作     者:Aybaba Hançerlioğullari Asli Kurnaz Yosef G. Ali Madee Aybaba Hançerlioğullari;Asli Kurnaz;Yosef G. Ali Madee

作者机构:Department of Physics Faculty of Arts and Sciences Kastamonu University Kastamonu Turkey 

出 版 物:《Open Journal of Applied Sciences》 (应用科学(英文))

年 卷 期:2016年第6卷第7期

页      面:402-408页

学科分类:07[理学] 070202[理学-粒子物理与原子核物理] 0702[理学-物理学] 

主  题:Fusion Reactor Monte Carlo Magnetohydrodynamic Tritium Breeding (TBR) 

摘      要:The development of magnetic configurations to confine the stability fluid plasmas for fusion energy is a challenge that is a mixture of basic fusion engineering and invention. In order to keep the fusion reactions in the plasma to be continuing in the fusion reactors, the speed of tritium breeding (TBR) should be kept above a certain value. At the Apex fusion reactor, a fast flowing thin liquid wall has replaced the solid first wall concept of the traditional reactors. Behind the fast flowing thin liquid wall, a slower and thicker second liquid wall (coat) is present. Monte Carlo Random method (MCRS) is the general name for the solution of experimental and statistical problems with a random approach. This method is dependent upon the theory of probability. In the present work, Mhd impacts are investigated quite unimportant for Flibe salt solutions. In this study, the fissile fuel production calculations are done for a neutron wall load of 10 MW/m2 fissile fuel production rates of 238U(n, γ)239Pu and 232Th(n,γ)233U increases almost linearly with increased heavy metal content.

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