
第29卷第4期 2017年8月
浙江水利水电学院学报
J. Zhejiang Univ of Wat. Res & Electric Pow.
D0I: 10. 3969/j. issn. 2095-7092.2017.04. 011
Vol.29No.4 Aug.2017
六盘水市育德路地下综合管廊监控系统设计
杨坦'刘雪莉卫黎阳王兰静汪洋”
(1.安徽新华学院,安微合肥230088;2.西安博深安全科技股份有限公司,陕西西安710114)
摘要:针对城市地下综合管廊环境与监控系统建设经验不足的现状,为了满足管廊环境风险管理的需要,设计了六盘水市育德路地下综合管廊监控系统.针对易引起重大安全事故的特征风险因素,搭建了由系统工作站和数据传输模块构成的系统硬件系统,并设计了由环境设备监控、压缩编码、打包封装和无线模块构成的软件系统平台
构建了集环境监测、照明控制和设备监控数据为一体的连续在线的环境风险源实时监控系统关键词:地下综合管廊:环境与设备监控;硬件设计:软件设计
中图分类号:U459.3
文献标志码:A
文章编号:1008536X(2017)04-0056-04
DesignofUndergroundIntegratedCorridorMonitoringSystem
in Yude Road in Liupanshui
YANG Tan', LIU Xue-i', WEI Li-yang", WANG Lan-jing', WANG Yang
(1. Anhui Xinhua University, Hefei 230088, China; 2. Xi'an Boshen Security
Technology Co. , Ltd. , Xi'an 710014, China)
Abstract In present , the construction experience of environment and monitoring system for urban underground integrated corridor is limited. In order to meet the needs of corridor environmental risk management , integrated road management sys tem of Yude Road in Liupanshui City is designed. For the risk factors that can cause significant safety aceidents , system hardware system combined by system workstations and data transmission module is built , and the software system platform is designed based on environmental equipment monitoring , compression coding , packaging and wireless modules constitute , therefore , the real-time monitoring system for environmental risk source is constructed , which integrates environmental mo-nitoring, lighting control and equipment monitoring data , offering a certain reference for similar system design on engineer ing environment and equipment monitoring -
Key words : underground integrated corridor ; environment and equipment monitoring ; hardware design ; software design
1项目概况
六盘水市育德路地下综合管廊工程南起育德路(K2+660),北到天湖路(K5+600),全长约 3000m.育德路综合管廊分为三舱:电力舱宽度
收稿日期:2017-04-18
基金项目:安徽微省高校自然科学研究项目(KJ2017A616);国家级大学生创新创业训练计划项目(201512216043):安微省新华学院校级科研项目(2016TD012)
作著简介:杨坦(1987),男,安徽合肥人,硕士,讲师,研究方向为建筑筛数掘测技术。
2m.热力水信舱宽度6.4m,天然气舱宽度1.4m,各舱结构净高2.9m.环境与设备监控系统主机设备放置在1"分控中心,各区域控制设备放置在1”~ 8"风机房内,各风机房内的区域控制设备负责本风机房和邻近管廊(约400m范围内)的设备供电、通讯、控制等功能.由于育德路地下综合管廊因其所收容的管线种类较多,部分管道具有较大危险性,在使用过程中易导致触电、有毒有害或爆炸性气体泄漏等状况,进一步威胁管廊正常的运行使用.因此,在育德路地下综合管廊中设置环境与设备监控系统对预防事故发生具有重大意义,