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线-管式双极预荷电器的极间电场分布模型 被引量:2
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作者 常玉锋 李梦玲 +2 位作者 叶罗威 杨瑞阳 李帅帅 《江汉大学学报(自然科学版)》 2019年第6期507-513,共7页
电场分布是电除尘理论研究的核心问题之一。为提高对微细颗粒物的捕集效率,拟从理论上明确线-管式横向双极预荷电器这种新型电极结构的极间电场分布规律。基于高斯通量定律,建立了线-线电极的电场分布函数;根据电场叠加原理,推导出线-... 电场分布是电除尘理论研究的核心问题之一。为提高对微细颗粒物的捕集效率,拟从理论上明确线-管式横向双极预荷电器这种新型电极结构的极间电场分布规律。基于高斯通量定律,建立了线-线电极的电场分布函数;根据电场叠加原理,推导出线-管式预荷电器极间电场分布模型;结合其电器电极结构对称分布特点,可划分为6个不同的荷电区域,分别采用线-管式预荷电器的极间电场分布模型进行求解。线-管式双极预荷电器内正、负电场对称分布有利于提高静电凝聚速率和除尘效率、减少累积电荷和抑制反电晕烧袋现象。 展开更多
关键词 电场分布 线管双极 预荷电器 除尘效率
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Impact of TID on response to pulsed X-ray irradiation in the bipolar operational amplifier 被引量:2
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作者 LI Rui Bin WANG Gui Zhen +7 位作者 CHEN Wei MA Qiang LIU Yan LIN Dong Sheng YANG ShanChao BAI XiaoYan QI Chao JIN XiaoMing 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2015年第2期390-396,共7页
Groups of a typical operational amplifier-μA741 were irradiated in a cobalt unit, each group accumulating a different total ionizing dose (TID). The results showed that the TID caused power consumption current and ... Groups of a typical operational amplifier-μA741 were irradiated in a cobalt unit, each group accumulating a different total ionizing dose (TID). The results showed that the TID caused power consumption current and slew rate (SR) to degenerate in ultra-linearity, owing to a severe reduction in the current gain of the internal LPNP transistors. Pulsed X-ray irradiation experiments were carried out on the μA741 groups with different values, and the results revealed that the impact on the response to the pulsed X-ray irradiation was greater when the devices absorbed more TID. The mechanism for this is explained on the basis of the circuit construction of the μA741; the sensitive parameters of the circuit were obtained via simulation on SP1CE. The simulation results additionally showed that if the sensitive parameters were optimized, the duration of interruption caused by the pulsed X-ray irradiation would be reduced significantly. In addition, several proposals are provided for hardening the devices. 展开更多
关键词 TID pulsed X-ray irradiation operational amplifier simulation
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