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介质强度

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The streamer theory is used to analyze the dielectric strength during circuit breaking.

应用流注理论对断路器开断过程中的介质强度进行了计算分析。

According to the quasistatic model, the relationship is established between electron residual energy and driven laser polarization, intensity, wavelength, pulse and media ionization potential, residual charges. The electron residual energy change with the driven laser parameters and the media characteristical parameters is calculated. According to the calculated results, adequate driven laser parameters will be favor of the realization of OFI X-ray laser amplification.

作者根据准静态模型,建立了电子剩余能随驱动激光偏振度、激光强度、波长、脉宽以及介质电离能、剩余电荷数关系式,定量计算了电子剩余能随驱动激光参数以及介质本身一些性能参数变化关系,根据计算结果提出采用适合的驱动激光参数可能更有利于实现光场感应电离的X射线激光放大。

With this equipment, the dielectric recovery strength characteristics of ceramic chambers and deion plate chambers are studied.

应用此装置测量了不同分断条件下陶土灭弧室和栅片灭弧室内的介质强度恢复特性。

It is possible to simultaneously examine the polarity and viscosity of medium when DNP is used as a fluorescence probe.

这一性质,再加上激基缔合物峰与单体峰强度比反映介质粘度,使DNP成为能同时探测介质极性和粘度的荧光探针。

The hot gas flow characteristics during the short circuit interruption in arcing chamber of SF_6 circuit breaker is calculated by using FLIC method.

1引言 SF。气体介质强度恢复特性的研究是从80年代初开始的,此后一直为各国学者所关注。

The voltage with the existence of gassing material, the arc voltage is higher.

试验结果表明,陶土灭弧室的介质恢复强度低,金属栅片灭弧室的介质恢复强度上升较快。

Theoretical analysis shows that Faraday magnetooptical effect has the anisotropy, and Faraday rotation is depend not only linearly on the magnetization Min paramagnetic and ferromagnetic media or the sublatbee's magnetization Mi in ferrimagnetie and antiferromagnetie media, but also on the high-order terms of M or Mi.

理论分析表明,法拉第磁光效应具有各向异性特性;法拉第旋转不仅与顺磁性和铁磁性介质中的磁化强度M或反铁磁性和亚铁磁性介质中的次晶格磁化强度Mi的线性项有关,而且还应与M或Mi的高次项有关。

In order to make clear the phenomenon of current zero in the arc-quenching chamber of deion plates, the process of dielectric recovery and reignition of short arc between iron plates is investigated, and then the dielectric recovery strengths of various chambers are measured and compared. The different characteristics near current zero in the deion plate chambers are also analyzed based on experiments in the paper.

为弄清栅片灭弧室内电弧电流的过零过程,专门研究了不同条件下栅片间低压短弧的介质强度恢复过程和电弧重燃过程,然后测量了多纵缝和栅片灭弧室的介质恢复强度,对比了它们的熄弧性能,在试验的基础上,分析了栅片灭弧室中电弧电流的过零特征。

The results show that the gas flow is represented as laminar flow in flat nozzle contour and turbulent flow in scraggling nozzle contour; The development of turbulent flow is good for the control effect of super-sound velocity gas flow and the dielectric strength recovery properties.

光滑喷口壁面吹弧气体的流动表现为层流;凸凹不平的喷口壁面吹弧气体的流动表现为湍流;对存在有湍流的不同喷口,湍流发展得越充分,越有利于控制超音速流的发展,从而有利于提高介质强度恢复速度。

On the basis of experiment analyses we would got that, When arc met with chute, it was blocked and had a stagnation, this made hot gas flow incrase near the chute; After arc went into the chute, mental vapor from arc root would lower the dielectric strength near the chute, meanwhile, High value of arc voltage and the corase face of the chute made electric strength increase. These factors might give rise to local restriking near the chute, and made arc voltage drop suddenly.

总结实验结果并加以分析,本文提出了这样的观点:电弧进入栅片时,在入口处受阻后的停滞,会使该区域的热气流增加;进入栅片后,弧根蒸发的金属蒸汽、电弧热气流会降低栅片入口区域的介质强度;电弧被栅片分割后,电压急剧上升,再加上栅片表面的不均匀会使局部区域的电场强度显著增加,这些因素的综合作用会导致电弧在栅片入口附近发生局部重击穿,引起电弧电压电压跌落。

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