张伟,王学友,武海明,刘晓峰,吴亚楠,李毅,柴渭莉.装甲车辆舱室湿度调节系统设计与研制[J].装备环境工程,2019,16(1):89-91. ZHANG Wei,WANG Xue-you,WU Hai-ming,LIU Xiao-feng,WU Ya-nan,LI Yi,CHAI Wei-li.Design and Development of Humidity Control System for Armored Vehicle Cabin[J].Equipment Environmental Engineering,2019,16(1):89-91.
装甲车辆舱室湿度调节系统设计与研制
Design and Development of Humidity Control System for Armored Vehicle Cabin
  修订日期:2019-01-25
DOI:10.7643/ issn.1672-9242.2019.01.017
中文关键词:  舒适性  装甲车辆  湿度  舱内  实验  设计  研制  评价
英文关键词:comfort  armored vehicle  humidity  cabin  experiment  design  development  evaluation
基金项目:
作者单位
张伟 兵器工业卫生研究所,西安 710065 
王学友 兵器工业卫生研究所,西安 710065 
武海明 兵器工业卫生研究所,西安 710065 
刘晓峰 兵器工业卫生研究所,西安 710065 
吴亚楠 兵器工业卫生研究所,西安 710065 
李毅 兵器工业卫生研究所,西安 710065 
柴渭莉 兵器工业卫生研究所,西安 710065 
AuthorInstitution
ZHANG Wei Hygiene Research Institute of Ordnance Industry, Xi′an 710065, China 
WANG Xue-you Hygiene Research Institute of Ordnance Industry, Xi′an 710065, China 
WU Hai-ming Hygiene Research Institute of Ordnance Industry, Xi′an 710065, China 
LIU Xiao-feng Hygiene Research Institute of Ordnance Industry, Xi′an 710065, China 
WU Ya-nan Hygiene Research Institute of Ordnance Industry, Xi′an 710065, China 
LI Yi Hygiene Research Institute of Ordnance Industry, Xi′an 710065, China 
CHAI Wei-li Hygiene Research Institute of Ordnance Industry, Xi′an 710065, China 
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中文摘要:
      目的 设计研制舱室湿度调节系统,用于开展装甲车辆舱室热舒适性测试与评价技术研究。方法 通过任务计算机设定实验任务,并将湿度目标值通过RS485总线传输给PLC控制器,由PLC控制器控制加湿机和除湿机工作,同时由湿度传感器对舱室内的湿度进行实施监控,达到目标值后,进行加湿和除湿的动态控制。结果 该系统可实现20%~95%舱内湿度调节。结论 为开展装甲车辆舱室湿热环境研究奠定实验基础。
英文摘要:
      Objective To design a set of cabin humidity control system to carry out thermal comfort test and evaluation tech-nique research on armored vehicle cabin. Methods The test tasks were set by the task computer. The target values were transferred through RS485 trunk to the PLC controller. The humidifier and dehumidifier were controlled by the PLC controller. The humidity sensor was used to monitor the humidity in the cabin at the same time. After reaching the target value, the dynamic control of humidification and dehumidification was carried out. Results The system can actualize cabin humidity from 20%RH to 95%RH. Conclusion It establishes the experimental foundation for studying the heat and humidity environment of the armored vehicle cabin.
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