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Plasma behaviour with hydrogen supersonic molecular beam and cluster jet injection in the HL-2A tokamak

机译:HL-2A托卡马克中的氢超声分子束和团簇射流注入的等离子体行为

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The experimental results of low pressure supersonic molecular beam injection (SMBI) fuelling on the HL-2A closed divertor indicate that during the period of pulsed SMBI the power density convected at the target plate surfaces was 0.4 times of that before or after the beam injection. An empirical scaling law used for the SMBI penetration depth for the HL-2A plasma was obtained. The cluster jet injection (CJI) is a new fuelling method which is based on and developed from the experiments of SMBI in the HL-1M tokamak. The hydrogen clusters are produced at liquid nitrogen temperature in a supersonic adiabatic expansion of moderate backing pressure gases into vacuum through a Laval nozzle and are measured by Rayleigh scattering. The measurement results have shown that the averaged cluster size of as large as hundreds of atoms was found at the backing pressures of more than 0.1 MPa. Multifold diagnostics gave coincidental evidence that when there was hydrogen CJI in the HL-2A plasma, a great deal of particles from the jet were deposited at a terminal area rather than uniformly ablated along the injecting path. SMB with clusters, which are like micro-pellets, will be of benefit for deeper fuelling, and its injection behaviour was somewhat similar to that of pellet injection. Both the particle penetration depth and the fuelling efficiency of the CJI were distinctly better than that of the normal SMBI under similar discharge operation. During hydrogen CJI or high-pressure SMBI, a combination of collision and radiative stopping forced the runaway electrons to cool down to thermal velocity due to such a massive fuelling.
机译:在HL-2A闭合偏滤器上进行低压超音速分子束注入(SMBI)燃料的实验结果表明,在脉冲SMBI期间,目标板表面对流的功率密度是束流注入之前或之后的0.4倍。获得了用于HL-2A等离子体的SMBI穿透深度的经验比例定律。集束喷射注入(CJI)是一种新的加油方法,它是基于HL-1M托卡马克的SMBI实验而开发的。氢团簇是在液氮温度下,通过拉瓦尔喷嘴在中等背压气体的超音速绝热膨胀中产生的,并通过瑞利散射进行测量。测量结果表明,在超过0.1 MPa的背压下,平均簇大小达到数百个原子。多重诊断提供了偶然的证据,即当HL-2A等离子体中存在氢CJI时,来自射流的大量颗粒会沉积在末端区域,而不是沿注入路径均匀消融。具有团簇的SMB(如微丸)将有利于更深的加油,并且其注入行为与丸粒注入相似。在类似的排放操作下,CJI的颗粒穿透深度和燃料效率均明显优于普通SMBI。在氢CJI或高压SMBI期间,碰撞和辐射停止的结合迫使失控电子由于如此大量的燃料而冷却到热速度。

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