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On heat loading, novel divertors, and fusion reactors

机译:关于热负荷,新型偏滤器和聚变反应堆

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The limited thermal power handling capacity of the standard divertors (used in current as well as projected tokamaks) is likely to force extremely high (similar to 90%) radiation fractions f(rad) in tokamak fusion reactors that have heating powers considerably larger than ITER [D. J. Campbell, Phys. Plasmas 8, 2041 (2001)]. Such enormous values of necessary f(rad) could have serious and debilitating consequences on the core confinement, stability, and dependability for a fusion power reactor, especially in reactors with Internal Transport Barriers. A new class of divertors, called X-divertors (XD), which considerably enhance the divertor thermal capacity through a flaring of the field lines only near the divertor plates, may be necessary and sufficient to overcome these problems and lead to a dependable fusion power reactor with acceptable economics. X-divertors will lower the bar on the necessary confinement to bring it in the range of the present experimental results. Its ability to reduce the radiative burden imparts the X-divertor with a key advantage. Lower radiation demands allow sharply peaked density profiles that enhance the bootstrap fraction creating the possibility for a highly increased beta for the same beta normal discharges. The X-divertor emerges as a beta-enhancer capable of raising it by up to roughly a factor of 2. (c) 2007 American Institute of Physics.
机译:标准分流器有限的热功率处理能力(用于当前以及预计的托卡马克中)可能会在托卡马克聚变反应堆中强制产生极高(约90%)的辐射分数f(rad),该反应堆的加热功率比ITER大得多[D. J.坎贝尔,物理学。 Plasmas 8,2041(2001)]。如此巨大的必要f(rad)值可能对聚变动力堆的堆芯约束,稳定性和可靠性造成严重的破坏性后果,特别是在具有内部运输壁垒的反应堆中。可能需要一种新型的称为X-divertors(XD)的偏滤器,它通过仅在偏滤器板附近散布磁力线来显着提高偏滤器的热容量,以克服这些问题并产生可靠的聚变能经济上可接受的反应堆。 X偏滤器会在必要的限制下降低压力条,使其处于当前实验结果的范围内。它减轻辐射负荷的能力为X-偏光镜提供了关键优势。较低的辐射要求可以使密度曲线峰值急剧增加,从而提高自举率,从而为相同的β正常放电提供更高的β可能性。 X偏向器以β增强器的形式出现,能够将其提高大约2倍。(c)2007年美国物理研究所。

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