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Fokker-planck modelling of delayed loss of charged fusion products in TFTR

机译:TFTR中带电聚变产物的延迟损失的Fokker-Planck建模

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摘要

The results of a Fokker-Planck simulation of the ripple induced loss of charged fusion products in TFTR are presented. It is shown that the main features of the measured 'delayed loss' of partially thermalized fusion products(FPs), such as the differences between deuterium-deuterium (DD)and deuterium-tritium(DT)discharges and the plasma current and major radius dependences, are in satisfactory agreement with the classical collisional ripple transport mechanism. The inclusion of an inward shift of the vacuum flux surface turns out to necessary for an adequate and consistent explanation of the origin of the partially thermalized fusion product loss to the bottom of TFTR.
机译:提出了由Fokker-Planck模拟得出的TFTR带电熔合产物的纹波感应损耗的结果。结果表明,部分热熔产物(FPs)的“延迟损失”测量的主要特征,例如氘-氘(DD)和氘-((DT)放电之间的差异以及等离子体电流和主要半径依赖性与经典的碰撞波纹传输机制令人满意。为了充分和一致地说明部分热熔合产物损失到TFTR底部的原因,必须包括真空通量表面的向内移动。

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