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Short-circuit calculating procedure for low-voltage A-C systems

机译:低压A-C系统的短路计算程序

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FAULT currents in electrical systems depend upon the impedance of the circuit for their intensity. Stresses, both thermal and mechanical, occur due to such currents and at various time intervals following initiation of the fault. Such stresses are of primary interest in system and equipment design. The possible amount of short-circuit current in any system equals the quotient of the voltage divided by the impedance. The latter term usually includes certain elements which formerly were indeterminate but now can be estimated with reasonable accuracy. Short-circuit currents measured in present-day (600 volts and less) types of equipment were found to check closely with currents calculated from the impedance of the circuit and the applied voltage.1 It is, therefore, advisable to discard “rule-of-thumb” or “discounting” procedures for predetermining fault currents. In the discussion which follows, a method is given whereby the symmetrical current may be calculated from the E/Z relation; the amount of d-c component is shown to decrease from a theoretical maximum at zero time at various rates according to the relation of the circuit reactance to its resistance; a simplified and convenient step-by-step procedure is given for the determination of balanced three-phase short-circuit currents using the foregoing relationships; the time is shown at which currents that determine the interrupting and short-time duties of circuit interrupting devices are identified in order that the corresponding value of reactance and d-c component can be used for calculation of the imposed current.
机译:电气系统中的故障电流取决于其强度的电路阻抗。由于这种电流,并且在故障发生后的不同时间间隔,都会产生热应力和机械应力。这种压力是系统和设备设计的主要关注点。在任何系统中,短路电流的可能量等于电压除以阻抗的商。后一个术语通常包括以前不确定的某些元素,但现在可以以合理的准确性进行估计。发现在当今(600伏及以下)类型的设备中测量的短路电流与根据电路阻抗和施加的电压计算出的电流密切相关。 1 因此,建议放弃“经验法则”或“折现”程序来预先确定故障电流。在下面的讨论中,给出了一种方法,通过该方法可以根据E / Z关系计算对称电流。根据电路电抗与其电阻的关系,表明d-c成分的量以各种速率从零时的理论最大值减少。根据上述关系,给出了简化且方便的分步过程来确定平衡的三相短路电流;示出了确定用于确定电路中断装置的中断和短时工作的电流的时间,以便可以将电抗和d-c分量的相应值用于计算施加的电流。

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