水冷型空压机冷却器结垢的解决措施
2023-12-01 11:06:04   来源:   评论:0 点击:

为了解决水冷型空压机冷却器结垢问题,从自来水水质和冷却塔选型2方面分析结垢原因,阐述安装净水处理设备、对开式冷却塔加装防尘过滤装置、更换闭式冷却塔等改善措施及实施效果。


杨现实,刘海男
(新疆东纯兴纺织有限公司,新疆 喀什  844004)
 
摘要:为了解决水冷型空压机冷却器结垢问题,从自来水水质和冷却塔选型2方面分析结垢原因,阐述安装净水处理设备、对开式冷却塔加装防尘过滤装置、更换闭式冷却塔等改善措施及实施效果。指出:自来水水质偏硬,空气中的泥沙及杂质吸入冷却塔,会引起开式冷却塔循环水水质恶化、水垢严重;安装RO反渗透净水设备、加装防尘过滤装置能明显改善循环冷却水水质,延长开式冷却塔冷却器清洗周期;使用闭式冷却塔可规避开式冷却塔存在的问题,延长冷却器使用寿命、降低空压机故障率。
关键词:空压机;冷却器;结垢;开式冷却塔;净水处理;防尘过滤装置;闭式冷却塔
中图分类号:TS108.6            文献标志码:B            文章编号:1001-9634(2023)S1-0044-02
 
收稿日期:2023-04-27
作者简介:杨现实(1987—),男,河南开封人,主要从事纺织企业空压机、空调节能降耗方面的工作。
 
The Solution Measure of Scaling in Water-cooled Air Compressor Cooler
YANG Xianshi,LIU Hainan
(Xinjiang Dongchunxing Textile Co.,Ltd.,Kashgar 844004,China)
 
Abstract:In order to solve the problem of scaling of water-cooled air compressor cooler,the causes of scaling are analyzed from the two aspects of tap water quality and cooling tower selection.The improvement measures and implementation effects of installing water purification equipment,reloading the dustproof and filter devices on open cooling tower,and replacing closed cooling tower are described.It is pointed out that the water quality of tap water is hard,and the sediment and impurities in the air are sucked into the cooling tower,which will cause the quality of the circulating water from the open cooling tower to deteriorate and the scaling of water to be serious.On account of the installation of RO reverse osmosis water purification equipment and the dustproof and filter device,the quality of circulating cooling water can be significantly improved,and the cleaning cycle of the open cooling tower cooler can be extended.Using closed cooling tower,the problems existing in open cooling tower can be avoided,the service life of the cooler is prolonged,and the failure rate of the air compressor is reduced.
Key Words:air compressor;cooler;scaling;open cooling tower;water purification;dustproof and filter device;closed cooling tower
 
参考文献:
[1] 顾建东.现代纺纱厂节能措施[J].纺织器材,2023,50(1):66-69.
[2] 罗秀丽,郑其强,马思军,等.空压机余热节能全利用[J].纺织器材,2019,46(2):64-66.


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