>Numerical studies have been performed to investigate the influence of the few impurity species on the heat load reduction and the SOL plasma parameters i'/> TECXY simulations of multi‐species impurity seeding in DEMO reactor
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TECXY simulations of multi‐species impurity seeding in DEMO reactor

机译:演示反应器中多种杂质种子的Tecxy模拟

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>Numerical studies have been performed to investigate the influence of the few impurity species on the heat load reduction and the SOL plasma parameters in the European DEMO reactor. Two‐dimensional multi‐fluid TECXY code has been used to model edge plasma transport described by the classical set of transport equations of multi‐species plasma derived by Braginskii. The TECXY code solves transport equations for few impurity species and all associated ionization stages simultaneously in a two‐dimensional poloidal geometry. >This paper describes the results of numerical simulations of the edge plasma performed for the DEMO reactor with neon and krypton seeding, as well as with a mixture of neon and krypton impurities. We aimed to obtain the energy flux reduction to the target plate at the smallest possible increase of the effective charge value considering gas puffing with various mixtures of impurities. It has been found that the heat load reduction can be improved for a specific mixture of impurity species seeded simultaneously to the edge plasma.
机译:

数值研究已经进行了研究少数杂质种类对欧洲演示反应器中的热负荷降低和溶胶等离子体参数的影响。二维多流体Tecxy代码已用于模拟由Braginskii导出的多种等离子体的经典传输方程组描述的边缘等离子体传输。 Tecxy代码在二维单色几何形状中同时解决少数杂质物种和所有相关电离阶段的传输方程。本文介绍了用氖的演示反应器执行的边缘等离子体的数值模拟结果和Krypton播种,以及氖和氪杂质的混合物。我们的目标是在考虑气体膨化的杂质的各种混合物的情况下,在可能的有效电荷值增加的情况下获得能量通量降低。已经发现,可以改善热负荷降低,用于同时播种到边缘等离子体的杂质物种的特定混合物。

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