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A new multiple high-speed air circuit breaker for mercury-arc-rectifier anode circuits and its relation to the arc-back problem

机译:用于汞弧整流器阳极电路的新型多重高速空气断路器及其与反弧问题的关系

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Mercury-arc power rectifiers have been used increasingly to supply power to d-c utilization systems in the United States since the early twenties. War requirements, because they have multiplied the demand for aluminum, magnesium, chlorine, zinc, and copper, all of which utilize d-c current in their reduction, have tremendously increased d-c power consumption. It is estimated that 12 1/2 per cent of the kilowatt-hours generated in 1941 were consumed in such electrochemical processes. Since the mercury-arc rectifier is now the almost universally accepted form of conversion apparatus for this purpose, the attention of many more engineers has recently been focused on it. Many advantages of the modern rectifier have led to its wide acceptance, but it is not within the scope of this paper to deal with these. One persistent factor in connection with the application of rectifiers which has claimed much attention is the phenomenon of arc-back. Various methods of attack have been employed successfully. High-speed anode switching appears to be the most satisfactory way to handle this problem. Such a solution is widely used in the aluminum industry.1 Part I of this paper includes an analysis of the arc-back problem and various means of protection from its effects. Reasons why high-speed anode switching is an improved type of arc-back protection are set forth. Part II of this paper describes this multi-pole high-speed air circuit breaker. The requirements which the breaker must meet are discussed, and the electrical and mechanical features described. Performance of the breaker was checked in field tests. Oscillographic data are presented and prove that the performance is acceptable.
机译:自20年代初以来,汞弧功率整流器已越来越多地用于向美国dc利用率系统供电。由于战争需求增加了对铝,镁,氯,锌和铜的需求,而这些需求都在减少时利用了直流电流,因此大大增加了直流功耗。据估计,在这种电化学过程中消耗了1941年产生的千瓦时的12 1/2%。由于汞弧整流器现在是为此目的而被几乎普遍接受的转换设备,因此最近更多的工程师开始关注它。现代整流器的许多优点已导致其被广泛接受,但是处理这些问题不在本文讨论范围之内。与整流器的应用有关的一个引起人们广泛关注的持久因素是反弧现象。已经成功采用了多种攻击方法。高速阳极切换似乎是解决此问题的最令人满意的方法。这种解决方案在铝工业中得到了广泛的应用。 1 本文的第一部分包括对反弧问题的分析以及针对其影响的各种保护措施。阐述了为什么高速阳极开关是一种改进的反弧保护类型的原因。本文的第二部分描述了这种多极高速空气断路器。讨论了断路器必须满足的要求,并描述了电气和机械特性。在现场测试中检查了断路器的性能。提供了示波器数据并证明其性能可以接受。

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