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Impact of plasma thermal transients on the design of the EU DEMO first wall protection

机译:等离子热瞬变对欧盟演示第一墙保护设计的影响

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The protection of the EU-DEMO first wall (FW) during plasma transients represents one of the main challenges of the current pre-concept design phase. While the present DEMO FW design heat load capability is of the order of approximate to 1 - 2 MW/m(2) in steady state, this limit is overcome during plasma transients for both normal and off-normal events leading to a plasma-wall contact. A strategy to protect the FW is being developed, considering the inclusion of discrete limiters, designed also to maintain the integrity of their cooling system during transients. The present investigations include electromagnetic modelling and plasma simulations on a list of critical transient events. The plasma equilibria are designed to ensure that the plasma impact, in case of loss of plasma control, is located, when possible, close to maintenance ports, to allow for replacement of the limiters. Charged particles and radiation heat load calculations are performed to evaluate the surface design and the required number of limiters. Finally, simplified thermal analyses are run to verify the integrity of the limiter plasma-facing components, and propose their design.
机译:在等离子体瞬变期间保护EU-DEMO第一壁(FW)代表了当前概念前设计阶段的主要挑战之一。虽然本演示FW设计热负荷能力是稳定状态的近似为1-2mW / m(2)的阶段,但在等离子体瞬变期间克服了该极限,用于导致等离子体壁的正常情况和非正常事件接触。正在开发一种保护FW的策略,考虑到包括离散限制器,设计在瞬态过程中也能够保持其冷却系统的完整性。本研究包括关键瞬态事件列表列表中的电磁建模和等离子体模拟。等离子体均衡旨在确保在损失等离子体控制的情况下,在可能的情况下,靠近维护端口,以允许更换限制器的等离子体。进行带电粒子和辐射热负荷计算以评估表面设计和所需的限制性数量。最后,运行简化的热分析以验证限制器等离子体的组件的完整性,并提出其设计。

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