Modeling and Simulation Needs in Fusion Energy Research

S. Zoletnik
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Abstract

Fusion energy research has reached a state, where a transition from laboratory scale physics experiments to industrial scale reactors is necessary and possible. Current devices can routinely reach plasma conditions needed for a fusion reactor, but positive energy balance can only be achieved by increasing the machine size by about a factor of two above the currently largest device JET. Although the step seems to be straightforward it involves some qualitative differences: dominance of plasma self-heating by alpha particles, huge neutron load on all components, activation of the device, just to name a few. The paper gives an overview of the stand of fusion research, key components of a fusion reactor and simulation possibilities and needs in the hope to help modelers in other fields to contribute to the development of fusion power
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聚变能研究中的建模与仿真需求
聚变能研究已经达到了从实验室规模的物理实验向工业规模的反应堆过渡的必要和可能的状态。目前的设备通常可以达到聚变反应堆所需的等离子体条件,但只有将机器尺寸增加到目前最大设备JET的两倍左右,才能实现正能量平衡。虽然这个步骤看起来很简单,但它涉及到一些质的差异:α粒子的等离子体自热优势,所有组件上的巨大中子负荷,设备的激活,仅举几例。本文概述了核聚变的研究现状、核聚变反应堆的关键部件以及模拟的可能性和需求,希望能对其他领域的建模人员为核聚变发电的发展做出贡献
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