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Characteristic Performance of Radio-Frequency (RF) Plasma Heating Using Inverter RF Power Supplies

机译:使用逆变器RF电源的射频(RF)等离子加热的特性

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High heat flux plasmas are produced by high power (-14kW) ICRF heating using inverter power supplies in the linear divertor simulator NAGDIS-II. The power flow rf radiated of power is investigated by a calorimetric method. Conventional power calculation using antenna voltage and current gives that about 70% of the rf power is radiated into the plasma. But increase of the heat load at the target and anode is about 10% of the rf power. Through this experiment, we find that about half of the rf power is lost at the antenna surface through the formation of rf induced sheath. And about 30% of the power is lost into the vacuum vessel through the charge exchange and elastic collision of ions with neutrals.
机译:高热通量等离子体是通过使用线性偏滤器模拟器NAGDIS-II中的逆变器电源通过大功率(-14kW)ICRF加热产生的。通过量热法研究了功率辐射的潮流rf。使用天线电压和电流的常规功率计算得出,射频功率中约有70%辐射到等离子体中。但是靶材和阳极处的热负荷增加大约是射频功率的10%。通过该实验,我们发现通过形成射频感应护套,在天线表面损失了大约一半的射频功率。通过电荷交换以及离子与中性离子的弹性碰撞,大约30%的功率会损失到真空容器中。

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