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High-speed repetitive pellet injector for plasma fueling of magnetic confinement fusion devices

机译:用于磁约束聚变设备的等离子加油的高速重复颗粒喷射器

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The projected fueling requirements of future magnetic confinement devices for controlled thermonuclear research [e.g., the International Thermonuclear Experimental Reactor (ITER)] indicate that a flexible plasma fueling capability is required. This includes a mix of traditional gas puffing and low- and high-velocity deuterium-tritium pellets. Conventional pellet injectors (based on light gas guns or centrifugal accelerators) can reliably provide frozen hydrogen pellets (1- to 6-mm-diam sizes tested) up to /spl sim/1.3-km/s velocity at the appropriate pellet fueling rates (1 to 10 Hz or greater). For long-pulse operation in a higher velocity regime (<2 km/s), an experiment in collaboration between Oak Ridge National Laboratory (ORNL) and ENEA Frascati is under way. This activity will be carried out in the framework of a collaborative agreement between the U.S. Department of Energy and European Atomic Energy Community-ENEA Association. In this experiment, an existing ORNL hydrogen extruder (equipped with a pellet chambering mechanism/gun barrel assembly) and a Frascati two-stage light gas gun driver have been combined on a test facility at ORNL. Initial testing has been carried out with single deuterium pellets accelerated up to 2.1 km/s with the two-stage driver; in addition, some preliminary repetitive testing (to commission the diagnostics) was performed at reduced speeds, including sequences at 0.5 to 1 Hz and 10 to 30 pellets. The primary objective of this study is to demonstrate repetitive operation (up to /spl sim/1 Hz) with speeds in the 2- to 3-km/s range. In addition, the strength of extruded hydrogen ice as opposed to that produced in situ by direct condensation in pipe guns can be investigated. The equipment and initial experimental results are described.
机译:未来用于受控热核研究的磁性限制装置的预计加油要求[例如,国际热核实验反应堆(ITER)]表明需要灵活的等离子加油能力。这包括传统的气体膨化和低速和高速氘-颗粒的混合。常规的颗粒喷射器(基于轻型气枪或离心式加速器)可以在适当的颗粒加油速率下可靠地提供高达/ spl sim / 1.3 km / s速度的冷冻氢气颗粒(测试的直径为1至6 mm直径)( 1至10 Hz或更高)。为了在较高的速度范围(<2 km / s)下进行长脉冲操作,橡树岭国家实验室(ORNL)和ENEA Frascati之间正在进行一项实验。这项活动将在美国能源部与欧洲原子能共同体-ENEA协会之间的合作协议框架内进行。在该实验中,将现有的ORNL氢气挤出机(配备有颗粒腔室机构/枪管组件)和Frascati两级轻型气枪驱动器组合在ORNL的测试设施上。最初的测试是使用两级驱动器对单个氘弹进行的,加速至2.1 km / s。此外,以降低的速度进行了一些初步的重复测试(以调试诊断程序),包括以0.5到1 Hz的频率和10到30个药丸的序列。这项研究的主要目的是演示速度在2至3 km / s范围内的重复操作(高达/ spl sim / 1 Hz)。此外,可以研究与在枪支枪中直接冷凝产生的氢冰挤压强度(与原位产生的强度相反)。描述了设备和初步实验结果。

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