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光纤气泡微腔传感技术 被引量:2
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作者 刘申 廖常锐 王义平 《应用科学学报》 CAS CSCD 北大核心 2018年第1期104-147,共44页
基于光纤气泡微腔的干涉仪在光纤传感领域中已经获得广泛关注.结合最新研究进展,给出了一种电弧放电法制备光纤气泡微腔的新技术,该技术仅利用商用光纤熔接机且无需辅助设备.系统研究了基于光纤气泡微腔的法布里-珀罗干涉仪的工作原理... 基于光纤气泡微腔的干涉仪在光纤传感领域中已经获得广泛关注.结合最新研究进展,给出了一种电弧放电法制备光纤气泡微腔的新技术,该技术仅利用商用光纤熔接机且无需辅助设备.系统研究了基于光纤气泡微腔的法布里-珀罗干涉仪的工作原理、制备方法及传感应用,实现了基于矩形气泡微腔的光学回音壁模式谐振器,进一步完成了腔模式的应变调谐. 展开更多
关键词 光纤 气泡微腔 法布里-珀罗干涉仪 回音壁谐振器 气压传感 应变
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基于LoRa无线通信的变电站火灾报警系统设计 被引量:11
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作者 赵志浩 卢超波 +1 位作者 陶洪平 沈伟 《电子与封装》 2022年第7期69-72,共4页
针对目前变电站内火灾监测的不足,提出了一种基于LoRa无线通信的变电站火灾报警系统。系统通过监测探火导管气压变化判断火灾是否发生,采用LoRa无线通信代替传统的有线通讯,可减少施工工序,缩短施工周期,有利于后期的系统维护。试验证... 针对目前变电站内火灾监测的不足,提出了一种基于LoRa无线通信的变电站火灾报警系统。系统通过监测探火导管气压变化判断火灾是否发生,采用LoRa无线通信代替传统的有线通讯,可减少施工工序,缩短施工周期,有利于后期的系统维护。试验证明系统可以准确快速监测到火灾的发生,并通过LoRa将报警信息传输给消防主机,可以代替有线系统,在变电站设备区域快速部署。 展开更多
关键词 火灾监测 气压传感 LoRa通讯 CKS32
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Effect of roadway turnings on gas explosion propagation characteristics in coal mines 被引量:12
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作者 Zhu Chuanjie Lin Baiquan +1 位作者 Ye Qing Zhai Cheng 《Mining Science and Technology》 EI CAS 2011年第3期365-369,共5页
In order to reveal the effect of turnings on explosion propagation, experiments were performed in three different pipes (single bend, U-shaped pipe and Z-shaped pipe). Flame and pressure transducers were used to tra... In order to reveal the effect of turnings on explosion propagation, experiments were performed in three different pipes (single bend, U-shaped pipe and Z-shaped pipe). Flame and pressure transducers were used to track the velocity at the explosion front. When the pipes were filled with methane, the explosion strength was significantly enhanced due to the turbulence induced by increasing the number of turnings, while the flame speed (Sf) and peak overpressure (ΔPmax) increased dramatically. In addition, the strength of the explosion increased in violence as a function of the number of turnings. However, when the bend was without methane, the turnings weakened the strength of the explosion compared with the ordinary pipe, shown by the decrease in the values of ΔPmax and Sf. In addition, the propagation characteristics in a U-shaped pipe were similar to those in a Z-shaped pipe and the values of APmax and Sf were also close. The results show that the explosion propagation characteristics largely depend on gas distribution in the pipes and the number of turnings. The different directions of the turnings had no effect. 展开更多
关键词 Gas explosion Turning Flame speed Peak overpressure Explosion propagation
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