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TPE upgrade for enhancing operational safety and improving in-vessel tritium inventory assessment in fusion nuclear environment

机译:升级TPE,以增强核聚变环境中的运行安全性并改善船上tri的库存评估

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The Tritium Plasma Experiment (TPE) is a unique high-flux linear plasma device that can handle beryllium, tritium, and neutron-irradiated plasma facing materials, and is the only existing device dedicated to evaluate in-vessel tritium inventory in the nuclear environment for fusion safety. The electrical upgrade were recently carried out to enhance operational safety and to improve plasma performance. New DC power supplies and a new control center enable remote plasma operations from outside of the contamination area for tritium, minimizing the possible exposure risk with tritium and beryllium and eliminating heat stress issue. In November 2015, the TPE successfully achieved first deuterium plasma via remote operation after a significant three-year upgrade. Simple linear scaling estimate showed that the TPE is expected to achieve Gamma(max)(i) of >1.0 x 10(23) m(-2) s(-1) and q(heat) of >1 MW m(-2) with new power supplies. This upgrade not only improves operational safety of the worker, but also enhances plasma performance to better simulate extreme plasma-material conditions expected in ITER, FNSF, and DEMO for improving in-vessel tritium inventory assessment in fusion nuclear environment. (C) 2016 Published by Elsevier B.V.
机译:t等离子体实验(TPE)是独特的高通量线性等离子体设备,可以处理铍,tri和中子辐照的等离子体材料,并且是现有的唯一用于评估核环境中船内in存量的设备。融合安全性。最近进行了电气升级,以增强操作安全性并改善等离子体性能。新的直流电源和新的控制中心可从污染区域外部对remote进行远程等离子体操作,从而最大程度地降低了and和铍可能引起的暴露风险,并消除了热应力问题。在经过三年的重大升级后,TPE于2015年11月通过远程操作成功实现了首个氘等离子体。简单的线性缩放估计表明TPE有望实现> 1.0 x 10(23)m(-2)s(-1)的Gamma(max)(i)和> 1 MW m(-2)的q(热) )和新电源。此次升级不仅提高了工人的操作安全性,而且还增强了等离子体性能,可以更好地模拟ITER,FNSF和DEMO中预期的极端等离子体材料条件,从而改善聚变核环境中的船内tri存量评估。 (C)2016由Elsevier B.V.发布

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