期刊文献+

无人值守变电站自动灭火装置选用探究

Exploration on the Selection of Automatic Fire Extinguishing Device in Unattended Substation
下载PDF
导出
摘要 文章旨在探究如何对无人值守变电站实行科学有效的消防安全管理,以应对自动化水平提高后可能出现的消防管理挑战。通过分析无人值守变电站的设备设施现状、人员配置、管理流程,识别了存在的消防隐患。随后,对几种自动灭火系统进行了优劣分析,并提出了提升消防管理的措施,包括技术应用和维护策略。通过采用物联网技术、智能视频检测、与消防部门的沟通协作以及选用合适的自动灭火系统(如S型气溶胶灭火装置),可以有效提升无人值守变电站的消防安全管理水平。同时,强调了日常管理和维护的重要性,包括系统清洁、功能检查、定期维护和遵守维护周期。通过这些措施,能够增强变电站对火灾的预防、监控和应急响应能力。 It aims to explore how to implement scientific and effective fire safety management for unattended substations,so as to deal with the challenges that may occur in fire management after the improvement of automation level.By analyzing the status quo of the equipment and facilities,the personnel allocation and the management process of the unattended substation,the report identified the existing fire hazards.Subsequently,the advantages and disadvantages of several automatic fire extinguishing systems are analyzed,and measures to improve fire management are put forward,including technical application and maintenance strategies.Through the adoption of internet of things technology,intelligent video detection,communication and cooperation with fire departments,and the selection of appropriate automatic fire extinguishing system(such as S-type aerosol fire extinguishing device),the fire safety management level of unattended substation can be effectively improved.At the same time,the importance of routine management and maintenance is emphasized,including system cleaning,functional inspection,regular maintenance and compliance maintenance cycles.Through these measures,the substation's fire prevention,monitoring and emergency response ability can be enhanced.
作者 焦晓辉 JIAO Xiaohui(CNOOC(China)Co.,Ltd.Tianjin Branch,Tianjin 300452,China)
出处 《化工管理》 2024年第33期101-104,共4页 Chemical Management
关键词 无人值守变电站 消防安全管理 自动灭火系统 unattended substation fire safety management automatic fire extinguishing system
  • 相关文献

参考文献9

二级参考文献21

  • 1尹艳,李红,文湘闽,李建成.四川电力系统变电站工频电场辐射调查[J].职业卫生与病伤,2004,19(2):113-113. 被引量:3
  • 2王兵,刘静坤.高压工频电场对作业人员神经行为功能影响的研究[J].职业与健康,2004,20(8):1-2. 被引量:8
  • 3王伯翰.高压开关机械故障的监测与诊断[J].高电压技术,1993,19(2):30-34. 被引量:14
  • 4王旭昶,黄瑜珑,古金国,徐国政,钱家骊.SF_6断路器不拆卸检测技术[J].高压电器,1996,32(2):9-12. 被引量:11
  • 5中华人民共和国卫生部.GBZ2 2-2007工作场所有害因素职业接触限值第2部分:物理因素[S].北京:人民卫生出版社,2007.5-6.
  • 6国家能源局.DIJT799.-2010电力行业劳动环境监测技术规范第7部分:工频电场、磁场监测[s].北京:中国电力出版社,2010.
  • 7International Commission on Non-ionizing Radiation Protection, Guidelines for limiting exposure to time-varying electric and magnetic fields( 1Hz to 100kHz )[ J ]. Health Phys, 2010, 99( 6 ): 818-836.
  • 8中华人民共和国卫生部.GBZ/T189.3—2007工作场所物理因素测量第3部分:工频电场[s].北京:人民卫生出版社,2007.
  • 9BRIEF R S, SCALA R A. Occupational exposure limits for novel work schedules[ J ]. Am Ind Hyg Assoe J, 1975, 36( 6 ): 467-469.
  • 10世界卫生组织(WHO).制订以健康为基础的电磁场标准的框架[M].杨新村,李毅,吕斌,译.北京:中国电力出版社,2008.

共引文献22

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部