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Predicted toroidal rotation enhancement of fusion power production in ITER

机译:预测的ITER核聚变发电的环形旋转增强

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The toroidal rotation driven by negative neutral beam injection (NNBI) into the International Thermonuclear Experimental Reactor is predicted using the GLF23 transport model. It is found that a significant gain in the fusion power output is achieved with reasonable levels of NNBI power. The increase in fusion power with co-injected NNBI is steeper than with balanced NNBI or pure electron heating. This is due to the toroidal rotation increasing the threshold gradient for the ion temperature gradient modes in the GLF23 model. The increase in fusion power is found to be weakly dependent on the NNBI voltage over a range of values from 250 keV to I MeV.
机译:使用GLF23传输模型预测了由向国际热核实验反应堆中注入负中性束(NNBI)驱动的环形旋转。已经发现,通过合理水平的NNBI功率,可以在融合功率输出中获得显着的增益。共注入NNBI的融合能力增加比平衡NNBI或纯电子加热的融合能力陡峭。这是由于环形旋转增加了GLF23模型中离子温度梯度模式的阈值梯度。发现在从250 keV到I MeV的值范围内,聚变功率的增加几乎不依赖于NNBI电压。

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