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作 者:唐贵富[1] 吕艳[1] 马洪发[1] 孙成旭 张春晓[1] 李洋[1] TANG Gui-fu;LYU Yan;MA Hong-fa;SUN Cheng-xu;ZHANG Chun-xiao;LI Yang(Shenyang Academy Of Instrumentation Science CO.,LTD.,Shenyang 110043,China)
机构地区:[1]沈阳仪表科学研究院有限公司,辽宁沈阳110043
出 处:《管道技术与设备》2021年第6期38-40,共3页Pipeline Technique and Equipment
摘 要:电站间接空冷散热器表面积大,清洗工作量大,清洗技术不成熟。塔外清洗喷嘴距空冷散热器距离远,大于水射流有效靶距,清洗效果差;塔内清洗存在较大的清洗盲区。针对上述问题,在塔内清洗方法的基础上,优化了垂直导向机构,将垂直导向机构做了轻量化设计,在垂直导向机构上、下分别设计并安装了2套清洗执行机构,根据项目不同可分别调整清洗机构安装位置,解决上、下清洗盲区问题;翻转机构安装在垂直导向机构两侧,保证了垂直导向机构不倾斜,清洗架不倾斜。The surface area of indirect air cooling radiator in power station is huge,the cleaning workload is large,and the cleaning technology is immature.The distance between the outer cleaning nozzle and the air cooling radiator is far,which is larger than the effective target distance of water jet,and the cleaning effect is poor.There is a large cleaning blind area in the tower.In order to solve these problems,on the basis of the cleaning method in the tower,the vertical guiding mechanism was optimized,made the vertical guiding mechanism lightweight,and designed and installed two sets of cleaning executing mechanisms on and below the vertical guiding mechanism respectively,according to different projects,the installation position of the cleaning mechanism can be adjusted to solve the problem of the upper and lower cleaning blind area,and the overturning mechanism can be installed in the vertical guiding mechanism to ensure that the vertical guiding mechanism is not inclined and the cleaning frame is not inclined.
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