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Experimental Study of the Deformation Processes of Current-Carrying Elements of Protective Switches for Fusion Application

机译:用于融合应用的保护开关电流承载元件变形过程的实验研究

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Nuclear fusion could ensure a large-scale, safe and virtually inexhaustible source of energy. Most of modern tokamaks have a superconducting magnet system, which gives many advantages, but use of superconductors requires the special methods and means for protection of the coils in case of quench or another abnormal situation to be implemented in its power supply systems. To avoid propagation of the resistive area, the coil current must be quickly reduced by inserting a discharge resistor into the circuit, which is achieved by means of DC circuit breaker. To improve reliability of the energy extraction, the DC circuit breaker is composed of two connected-in-series switching devices, namely, the main circuit breaker and the backup one. The back-up circuit breakers are usually activated by the detonation energy of the explosive charge. The paper will describe the experimental investigation of the deformation processes of destroyable current-carrying elements of backup circuit breakers.
机译:核融合可以确保大规模,安全,几乎无穷无尽的能源来源。大多数现代Tokamak都具有超导磁体系统,这具有许多优点,但是使用超导体需要在淬火或在其供电系统中实现的另一个异常情况来保护线圈的特殊方法和装置。为了避免电阻区域的传播,通过将放电电阻插入电路中,必须快速减小线圈电流,这通过直流断路器实现。为了提高能量提取的可靠性,DC断路器由两个连接串联的开关装置组成,即主断路器和备用件。备用断路器通常由爆炸电荷的爆震能量激活。本文将描述备用断路器可破坏电流承载元件变形过程的实验研究。

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