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CORC (R) cable terminations with integrated Hall arrays for quench detection

机译:CORC(R)电缆终端,具有集成霍尔阵列,用于淬火检测

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ReBCO superconducting cables have the potential to enable compact thermonuclear fusion reactors that operate at magnetic fields exceeding 20 T and allow operation at temperatures far exceeding the boiling point of liquid helium, potentially allowing for demountable magnets. Normal zone detection remains a challenge, and while novel quench detection techniques are an active area of research, few are non-invasive, provide real-time quench detection, and have been demonstrated with current ramp rates relevant for fusion reactors. To address this problem, a CORC (R) cable termination is developed with integrated Hall sensors to monitor current redistribution as a proxy for quench detection. The methodology exploits the current sharing and layered topology in CORC (R) cables, and allows quench detection using a localized sensor instead of co-wound voltage wires or optical fibers. Experiments are presented where current redistribution is measured from induced quenches, and in a 0.2 meter CORC (R) sample it is found that the Hall sensors detect normal zone transitions with a similar magnitude and temporal resolution as voltage measurements. To emulate the conditions of dynamic poloidal and central solenoidal fields, experiments are repeated with ramp rates up to 10 kA s(-1) that demonstrate the potential to detect normal zone development over a range of experimental parameters.
机译:REBCO超导电缆具有能够使紧凑的热核聚变反应器能够在超过20t的磁场下操作,并在远超过液氦的沸点的温度下允许操作,可能允许拆卸磁体。正常区域检测仍然是一个挑战,而新颖的淬火检测技术是一个有效的研究领域,但很少有非侵入性,提供实时骤降检测,并且已经通过对熔化反应器相关的电流斜坡速率进行了证明。为了解决这个问题,使用集成的霍尔传感器开发了CORC(R)电缆终端,以监控当前再分布作为淬火检测的代理。该方法利用CORC(R)电缆中的电流共享和分层拓扑,并使用局部传感器而不是共缠绕电压线或光纤进行淬火检测。介绍了从诱导淬火测量电流再分分配的实验,并且在0.2米的CORC(R)样品中,发现霍尔传感器检测具有类似幅度和时间分辨率的正常区域转换为电压测量。为了模拟动态域和中央电磁场的条件,用斜坡速率重复实验,高达10ka的速率(-1),证明了在一系列实验参数上检测正常区域开发的可能性。

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