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Recent developments in IFE safety and tritium research and considerations for future nuclear fusion facilities

机译:IFE安全和tri研究的最新进展以及对未来核聚变设施的考虑

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Over the past five years, the fusion energy group at Lawrence Livermore National Laboratory (LLNL) has made significant progress in the area of safety and tritium research for Inertial Fusion Energy (IFE). Focus has beep driven towards the minimization of inventories, accident safety, development of safety guidelines and licensing considerations. Recent technology developments in tritium processing and target fill have had a major impact on reduction of tritium inventories in the facility. A safety advantage of inertial fusion energy using indirect-drive targets is that the structural materials surrounding the fusion reactions can be protected from target emissions by a low-pressure chamber fill gas, therefore eliminating plasma material erosion as a source of activated dust production. An important inherent safety advantage of IFE when compared to other magnetic fusion energy (MFE) concepts that have been proposed to-date (including ITER), is that loss of plasma control events with the potential to damage the first wall, such as disruptions, are non-conceivable, therefore eliminating a number of potential accident initiators and radioactive in-vessel source term generation.
机译:在过去的五年中,劳伦斯·利弗莫尔国家实验室(LLNL)的聚变能小组在惯性聚变能(IFE)的安全性和tri研究领域取得了重大进展。焦点集中在减少库存,事故安全,制定安全指南和许可考虑方面。 tri处理和目标填充方面的最新技术发展对减少设施中t的库存产生了重大影响。使用间接驱动靶材的惯性聚变能的安全优势是,可通过低压腔室填充气体保护聚变反应周围的结构材料免受靶标排放,因此消除了等离子体物质作为活化粉尘产生源的侵蚀。与迄今已提出的其他磁聚能(MFE)概念(包括ITER)相比,IFE的一个重要的固有安全优势是,等离子体控制事件的损失可能会损坏第一壁,例如破裂,这是无法想象的,因此消除了许多潜在的事故起因和放射性内源术语的产生。

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