首页> 外文会议>Trends in Distribution Switchgear, 1994., Fourth International Conference on >Physical principles and development of a new generation of SF/sub 6/ circuit-breakers for 145 kV
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Physical principles and development of a new generation of SF/sub 6/ circuit-breakers for 145 kV

机译:145 kV的新一代SF / sub 6 /断路器的物理原理和开发

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The arc in conventional gas-blast circuit-breakers is merely a passive element to be quenched by a transonic gas flow of sufficient pressure. The latter is generated mechanically by rather simple means, but uneconomically from the modern point of view. The arc in a self-blast circuit breaker is an active element controlling the breaker action in a complicated manner all the time from contact separation to extinction at one of the subsequent current-zeros. For these reasons, the development of 3rd generation SF/sub 6/ switchgear requires high-level research activities including arc physics, flow dynamics, material sciences and mechanics. The theoretical modelling has pointed out to be a valuable tool to approach the final design sufficiently closely already before the series of switching tests are performed. Further steps of improvement require highly sophisticated computational fluid dynamics in order to obtain high-resolution spacetime patterns of the interesting physical quantities and to point out the influence of details of the design. The reward for these efforts is the new generation of high-technology switchgear which guarantees safe power distribution with minimum maintenance during long service life.
机译:常规吹气断路器中的电弧仅是被动元件,该被动元件将被足够压力的跨音速气流淬灭。后者是通过相当简单的方式机械地生成的,但是从现代的角度来看是不经济的。自爆断路器中的电弧是一个有源元件,它以复杂的方式始终控制断路器的动作,从触头分离到随后的零电流之一消失为止。由于这些原因,第三代SF / sub 6 /开关设备的开发需要高水平的研究活动,包括电弧物理,流动力学,材料科学和力学。理论建模已指出是在执行一系列开关测试之前已经足够接近地进行最终设计的有价值的工具。进一步的改进步骤需要高度复杂的计算流体动力学,以便获得有趣的物理量的高分辨率时空模式,并指出设计细节的影响。这些努力的回报是新一代高科技开关设备,它可以确保安全的配电,并在较长的使用寿命内减少维护工作。

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