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关于超加过程的遍历极限的识别
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作者 钱能生 《数学物理学报(A辑)》 CSCD 北大核心 1996年第3期258-262,共5页
该文讨论了随机过程中一类重要过程—超加过程的遍历极限的存在和识别,另外还给出了它们的应用,较完满地解决了超加过程的遍历性.
关键词 超加过程 保测变换 识别 随机过程 遍历极限
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关于超加过程的遍历极限的辨识
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作者 钱能生 杜桂莲 《五邑大学学报(自然科学版)》 CAS 1994年第3期7-12,共6页
本文讨论了随机过程中一类重要的过程一超加过程的遍历极限的存在和辨识,另外我们还给出了它们的应用,较完满地解决了超加过程的遍历性。
关键词 超加过程 遍历 保测变换 线性压缩算子
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Enhancement of fine particle filtration with efficient humidification 被引量:3
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作者 Yumei Zhang Weidong Zhang +4 位作者 Zhengyu Yang Junteng Liu Fushen Yang Ning Li Le Du 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2016年第4期453-459,共7页
Filtration is one of the most effective methods to remove suspended fine particles from air. In filtration processes,pressure drop of compact dust cake causes problems in efficiency and economy, which has received inc... Filtration is one of the most effective methods to remove suspended fine particles from air. In filtration processes,pressure drop of compact dust cake causes problems in efficiency and economy, which has received increasing attention and still remains challenging. In this study, we developed a novel technique to intensify the filtration of fine particles with efficient humidification. Two strategies for humidification, including ultrasonic atomization and steam humidification(controlling of ambient humidity), were employed and proved to be both effective. The regeneration frequency of the filter could be reduced by 55% with ultrasonic atomization, while steam humidification could lead to a 78% reduction in regeneration frequency. The effect of operating conditions on pressure drop and the mass loading during filtration were investigated. The dust cake showed a loose and porous structure with an optimized droplet-to-particle ratio. With the ratio of 1.53 and 0.0282, the maximum mass loading was 552 g·m-2upon the ultrasonic atomization and 720 g·m-2upon the steam humidification. The results show that humidification could slow down the increase of pressure drop during filtration and improve the efficiency of process. 展开更多
关键词 FiltrationHumidificationLiquid bridgePressure dropDust cake structure
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