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作 者:耿江海[1] 郭沁[1] 许自强[1] 张凯元[1] 刘云鹏[1]
机构地区:[1]华北电力大学电气与电子工程学院,保定071003
出 处:《科学技术与工程》2016年第22期213-218,共6页Science Technology and Engineering
基 金:中央高校基本科研业务费专项资金(2014MS92)资助
摘 要:户外设备柜顶内壁凝露后,极易滴落到设备表面,危害电路设备的正常运行。针对上述现象,首先在人工环境气候室内搭建了真型开关柜凝露实验系统,观测凝露发展过程;然后在改进膨胀腐蚀型梯度算子的基础上,采用不同方向、尺寸结构元素对凝露图像进行边缘提取,并进行量化处理,统计各区域总灰度值。结果表明:开关柜柜顶内壁边缘部位的水珠更多,且从外到内各区域总灰度值逐渐减小,即凝露是由边缘部位向中间发展的。最后,从防止凝露产生和排出凝露两个方面,设计了一种防凝露的方案,为实际工程提供参考。It is easily dripped onto the surface of devices after condensation formed on outdoor equipment roof inner wall, which harms the normal operation of the circuit devices. In connection with the phenomenon, firstly, a real condensation experiment system of the switchgear is set up to observe the development process of condensation, then, on the basis of improved expansion and corrosion type gradient operator, different directions and sizes of the structural elements are used to extract the edge of the condensation image, and quantitative disposal is used to count the total gray value of each area. The results show that, the drops of the edge is more than other sites of switchgear roof inner wall, and the total gray value of each area gradually decreases from the outside to inside, that is condensation is spread from the edge to the middle. Finally, a program of condensation prevention is designed by considering both preventing and exhausting condensation, which can provide a reference for practical engineering.
关 键 词:户外设备 凝露发展过程 改进形态学 量化 防凝露方案
分 类 号:TM81[电气工程—高电压与绝缘技术]
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