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Numerical Simulation of the Neutralized α Particle Transport near the Divertor Plate Region

机译:分流板区域附近中和的α粒子输运的数值模拟

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The statistical random sample technique has been utilized to develop a new Monte-Carlo algorithm MCHET code recently. A large amount of comparative simulation calculation work relating to the neutralized alpha-particle transport has been performed. As a result, we have found the beneficial optimizing plasma density and temperature profiles in the divertor region, with the great resulting improvement of helium ash removal efficiency by the simultaneously externally applied proper RF ponderomotive force potential energy in the vicinity of the divertor plate region. In this work the dominant atomic processes of electron impact ionization and elastic scattering by plasma ions are included. The thermal and streaming motion of the ions along the magnetic field is taken into consideration. Important conclusions are obtained that the probability of neutral helium turning back to the target plate will increase at least by 50% for the optimized combination of the beneficial density, temperature profiles and proper RF perpendicular electric field. For FEB (Fusion Experimental Breeder) reactor design parameters, the RF ponderomotive potential enhancement from 0.5 to 0.9 of ash removal efficiency can be obviously obtained. In the meantime, the tritium inventory may also be reduced to some extent.
机译:已经利用统计随机样本技术在最近开发新的Monte-Carlo算法MCHET代码。已经进行了大量与中和α-粒子传输有关的比较模拟计算工作。结果,我们已经发现了转移器区域中的有益优化的等离子体密度和温度曲线,通过在转轴区域附近的同时外部施加的适当的RF PONDERDOMOTIVE力势能大大提高了氦灰去除效率。在这项工作中,包括电子冲击电离和血浆离子弹性散射的主要原子过程。考虑离子的热量和流动运动。获得了重要的结论,使得逆转到靶板的中性氦的概率将以优化的密度,温度曲线和适当的RF垂直电场的优化组合增加50%。对于2月(融合实验育种者)反应器设计参数,可以显然可以显然获得从0.5到0.9的灰色去除效率的射频思考潜在增强。与此同时,氚库存也可以在一定程度上降低。

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