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Evaluation of an Electrostatic Dust Removal System with Potential Application in Next-Step Fusion Devices

机译:静电除尘系统在下一步融合装置中的应用潜力评估

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摘要

The ability to manage inventories of carbon, tritium, and high-Z elements in fusion plasmas depends on means for effective dust removal. A dust conveyor, based on a moving electrostatic potential well, was tested with particles of tungsten, carbon, glass and sand. A digital microscope imaged a representative portion of the conveyor, and dust particle size and volume distributions were derived before and after operation. About 10 cu mm volume of carbon and tungsten particles were moved in under 5 seconds. The highest driving amplitude tested of 3 kV was the most effective. The optimal driving frequency was 210 Hz (maximum tested) for tungsten particles, decreasing to below 60 Hz for the larger sand particles. Measurements of particle size and volume distributions after 10 and 100 cycles show the breaking apart of agglomerated carbon, and the change in particle distribution over short timescales 1 s).
机译:管理聚变等离子体中碳,tri和高Z元素库存的能力取决于有效除尘的手段。测试了基于移动的静电势阱的粉尘输送机,并用钨,碳,玻璃和沙子的颗粒进行了测试。数字显微镜对传送带的代表性部分进行了成像,并且在操作之前和之后得出了粉尘的粒径和体积分布。在5秒内移动了约10立方毫米体积的碳和钨颗粒。测试的最高驱动幅度为3 kV最为有效。钨微粒的最佳驱动频率为210 Hz(最大测试),大砂粒的最佳驱动频率降至60 Hz以下。 10和100个循环后的粒度和体积分布的测量结果表明,附聚碳的分解,以及短时间范围内1秒内颗粒分布的变化。

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