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The Scientific Case for a JET D-T Experiment

机译:用于喷射D-T实验的科学案例

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After the first high power D-T experiment in JET in 1997 (DTE1), when JET was equipped with Carbon PFC's, a proposed second high power (up to ~40MW) D-T campaign (DTE2) in the current Be/W vessel will address essential operational, technical, diagnostics and scientific issues in support of ITER. These experiments are proposed to minimize the risks to ITER by testing strategies for the management of the in-vessel tritium content, by providing the basis for transferring operational scenarios from non-active operation to D-T mixtures and by addressing the issue of the neutron measurement accuracy. Dedicated campaigns with operation in Deuterium, Hydrogen and Tritium before the D-T campaign proper will allow the investigation of isotope scaling of the H-mode transition, pedestal physics, heat, particle, momentum and impurity transport in much greater detail than was possible in DTE1. The D-T campaign proper will include validations of the baseline ELMy H-Mode scenario, of the hybrid H-mode and advanced tokamak scenarios, as well as the investigation of alpha particle physics and the qualification of ICRH scenarios suitable for D-T operation. This paper reviews the scientific goals of DTE2 together with a summary of the results of DTE1.
机译:在1997年的射流中的第一个高功率DT实验之后(DTE1),当射流配有碳PFC时,当前BE / W船舶中提出的第二高功率(高达约40mW)DT运动(DTE2)将解决必不可少的运营支持ITER支持的技术,诊断和科学问题。提出了这些实验,以通过对血管内容的管理策略提供依据来将风险最大限度地减少对血管内容的策略来传输从非主动操作转移到DT混合的基础,并通过解决中子测量精度的问题。在D-T竞选活动之前,在DUTERIUM,氢气和氚中进行的专用活动将允许在DTE1中更大细节允许调查H模式转换,基座物理,热,颗粒,动量和杂质传输的同位素缩放。 D-T广告系列适当包括混合H模式和高级TOKAMAK情景的基线ELMY H模式方案的验证,以及α粒子物理学的调查以及适用于D-T操作的ICRH情景的资格。本文审查了DTE2的科学目标以及DTE1结果的摘要。

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