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Development of the Backflow Model for Simplified Impurity Exhaust in Monte-Carlo Calculation

机译:蒙特卡罗计算中简化杂质排放的回流模型的开发

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摘要

The Monte-Carlo (MC) approach has a lot of flexibility in impurity transport modeling in the SOL and divertor region. However, in the divertor plasma simulation with the noble impurity seeding, characteristic time of the impurity transport especially in the sub-divertor chamber is long because the MC calculation of the impurity gas transport can be finished only by exhaust. The impurity MC calculation for such long exhaust processes is difficult in a series of the iterative calculation of a suite of integrated divertor codes SONIC. In order to overcome such a problem, a backflow model has been developed. Amount of the backflow flux from the subdivertor chamber to the divertor region is evaluated in advance, and then simulating impurity flux is injected from the exhaust slot to the divertor region like a backflow. By this model, the MC calculation time is reduced significantly and iterative calculation of SONIC becomes possible within a reasonable calculation time. As a demonstration, the SONIC code with the backflow model has been applied to investigation of power handling in JT-60SA divertor. The SONIC simulation showed that low divertor heat load (< 10 MW/m~2) with the low SOL density (< 1.5 × 10~(19)m~(?3)), which is required in the full non-inductive current drive scenario, was achieved by the Ar gas puffing of 0.86 Pa m~3/s.
机译:蒙特卡洛(MC)方法在SOL和偏滤器区域的杂质迁移建模中具有很大的灵活性。但是,在利用稀有杂质注入的分流器等离子体模拟中,特别是在副分流器室中的杂质传输的特征时间长,这是因为杂质气体传输的MC计算只能通过排气来完成。在一系列集成的偏滤器代码SONIC的一系列迭代计算中,很难对如此长的排气过程进行杂质MC计算。为了克服这种问题,已经开发了回流模型。预先评估从子分流器腔室到分流器区域的回流通量,然后模拟杂质通量像逆流一样从排气槽注入到分流器区域。通过该模型,可以显着减少MC计算时间,并且可以在合理的计算时间内进行SONIC的迭代计算。作为演示,带有回流模型的SONIC代码已应用于调查JT-60SA偏滤器中的功率处理。 SONIC模拟表明,低的偏滤器热负荷(<10 MW / m〜2)和低的SOL密度(<1.5×10〜(19)m〜(?3)),这是全无感电流所必需的通过在0.86 Pa m〜3 / s的Ar气鼓吹下实现了驱动场景。

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