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CW, high power, gyrotron development at 110 GHz for ECH applications

机译:用于ECH应用的110 GHz连续波,高功率回旋管开发

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Summary form only given. Electron cyclotron heating (ECH) is the most promising plasma heating method to achieve fusion. High-power, long-pulse or CW gyrotrons are required in many present and Future ECH experiments. For example, the planned experiment at DIII-D, the experimental tokamak at General Atomics, will require 4 MW of RF power at 110 GHz for a pulse duration of 10 seconds. The RF requirement for the planned International Thermonuclear Experimental Reactor (ITER) is 50 MW at 170 GHz and CW operation [1]. To achieve the goal of 1 MW, CW operation, we have designed and begun fabrication of a new tube that has improved cooling to all tube parts which showed signs of overheating during the last experiment. In addition, we are looking at the possibility of using alternate output window designs to increase power handling capability. We will summarize the design of the new tube and present initial test data.
机译:仅提供摘要表格。电子回旋加速器加热(ECH)是实现聚变的最有希望的等离子体加热方法。当前和将来的许多ECH实验都需要大功率,长脉冲或CW旋流器。例如,DIII-D计划中的实验,即通用原子公司的实验托卡马克,在10 GHz的脉冲持续时间内将需要110 GHz的4 MW射频功率。计划中的国际热核实验反应堆(ITER)的RF要求在170 GHz和连续波运行下为50 MW [1]。为了实现连续运行1兆瓦的目标,我们设计并开始制造一种新的管子,该管子改善了对所有管件的冷却效果,在上一个实验中,管件显示出过热迹象。此外,我们正在研究使用备用输出窗口设计来提高功率处理能力的可能性。我们将总结新管的设计并提供初始测试数据。

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