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高散湿洁净厂房低温水除湿空调系统设计
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作者 李自奎 《中文科技期刊数据库(全文版)工程技术》 2024年第8期0030-0033,共4页
本文给出一种聚焦洁净厂房,运用高散湿低温水来除湿空调系统的设计。这套系统表现为低温水除湿器和通常的空调设备构成,具备用低温水解决洁净区湿度的本领并能实现区域除湿,极力避开厂房大面积制冷,从而能显著减低能源消耗。模拟试验表... 本文给出一种聚焦洁净厂房,运用高散湿低温水来除湿空调系统的设计。这套系统表现为低温水除湿器和通常的空调设备构成,具备用低温水解决洁净区湿度的本领并能实现区域除湿,极力避开厂房大面积制冷,从而能显著减低能源消耗。模拟试验表明,此设计在保持洁净厂房温湿度不变的情况下,能力超过传统的空调除湿系统,节能效果有所提升。此系统在热负载平衡方面表现出较好的适用性,适合任何规模的洁净厂房。对于减低洁净厂房的运营费用,增加空调系统的稳定性,及降低能源消耗上面,都有着积极的影响。 展开更多
关键词 高散湿洁净厂房 低温水除湿空调系统 大面积制冷 能耗 节能效率
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高散湿洁净厂房低温水除湿空调系统设计 被引量:1
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作者 褚川川 《洁净与空调技术》 2023年第3期61-65,共5页
洁净厂房温湿度控制对于产品的质量至关重要,以湖北某胶囊壳生产洁净厂房项目为例,对高散湿洁净环境下的低温水除湿空调系统设计方案进行了介绍,指出了低温水除湿空调系统设计的特殊之处,提供了空调系统在不同季节运行模式的转换设计方... 洁净厂房温湿度控制对于产品的质量至关重要,以湖北某胶囊壳生产洁净厂房项目为例,对高散湿洁净环境下的低温水除湿空调系统设计方案进行了介绍,指出了低温水除湿空调系统设计的特殊之处,提供了空调系统在不同季节运行模式的转换设计方案,介绍了不同工况下的节能设计方案。 展开更多
关键词 高散湿 洁净厂房 低温水除湿 节能设计 工况转换
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Evapotranspiration and Removal Performance in the Treatment of High Salinity LandfilI-Leachate Using HSF
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作者 Tokuo Yano Kazuhiro Yamada +3 位作者 Masatomo Nakayama Akiko Inoue-kohama Shinya Sato Keijiro Enari 《Journal of Environmental Science and Engineering(B)》 2016年第9期440-450,共11页
In this study, the water budget in the treatment of high salinity landfill-leachate was estimated and the influence of evapotranspiration (ET) on treatment performance was investigated. The salinity of the inside of... In this study, the water budget in the treatment of high salinity landfill-leachate was estimated and the influence of evapotranspiration (ET) on treatment performance was investigated. The salinity of the inside of horizontal subsurface flow constructed wetland (HSF) of the raw leachate inflow was 15.0± 3.4 g.Cl/L which was in the level of the salinity of the survival limit of reed, and that of the double diluted leachate inflow was 9.3 ± 1.9 g.CI7L. There were large differences in the vegetation between HSF of the raw leachate inflow and that of the double diluted leachate inflow. The dense vegetation bed of double diluted leachate inflow during the growing season (April-October) provided a high ET and a large water loss, which made great contributions to the reduction of the outflow load of COD and T-N. The HSF with die-back reeds in the non-growing season (November-March) provided a slight ET and a small water loss and made less of a contribution to pollutant removal compared to the HSF with dense vegetation bed during the growing season. However, the HSF with die-back reeds during the non-growing season exhibited higher removal performance than the unplanted HSF. 展开更多
关键词 EVAPOTRANSPIRATION HSF high salinity landfill-leachate removal performance water budget.
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