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浅析自动喷水灭火系统的现状及将来的发展方向
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作者 马兴富 《科技资讯》 2009年第18期58-58,共1页
本文主要阐述了自动喷火灭火系统的应用现状、特点及发展方向。
关键词 自动喷水系统 湿式系统 发展方向
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浅谈码头自动喷水灭尘系统控制回路设计
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作者 靖伯龙 胡柏 +1 位作者 周琦 王晓苏 《纯碱工业》 CAS 2018年第2期25-26,共2页
碱厂码头的抓吊机在工作的时候,干燥的石头在下放至漏斗时会产生大量的粉尘。为了减少粉尘且合理利用水资源和人力,从安全性、经济性、合理性的原则出发,来设计这套自动喷水灭尘系统,用于现场减少粉尘带来的危害。
关键词 自动喷水系统 中间继电器 电磁阀 接近开关 时间继电器
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江银大厦消防给水设计与施工
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作者 崔剑 《工程建设与设计》 2002年第2期25-29,共5页
介绍江门市人民银行大楼的消防设计思路和特点 ,施工过程中遇到的问题和解决办法 。
关键词 消火栓系统 自动喷水灭系统 1211气体系统 液压浮球阀
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Heat resistance and water protection effectiveness for large single-pane fireproof glass
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作者 邵荃 李芳 +1 位作者 陈涛 孙占辉 《Journal of Central South University》 SCIE EI CAS 2011年第6期2185-2191,共7页
The effects and heat transfer mode of water film and sprinkler system on the heat-resistant property associated with the insulation of a fireproof glass were investigated. In the experiments, fireproof glass with a si... The effects and heat transfer mode of water film and sprinkler system on the heat-resistant property associated with the insulation of a fireproof glass were investigated. In the experiments, fireproof glass with a size of 3 300 mm (height)×2 200 mm (width) ×12 mm (thickness) was exposed to an oil pool fire with a power of approximately 1.4 MW. The experimental results show that the application of the water film or sprinkler system on the glass can effectively resist the intensive heat from the fire in the test due to the absorption of latent heat. The permitted period of integrity and insulation with a water film and a sprinkler system could be extended to 60 min. It should be noted that the temperature of the glass surface Can be kept under 60℃in a 60 min test. The experimental results suggest that it is feasible to substitute fireproof glass with water film for a fireproof door as long as the water film or sprinkler system can work stably and water can cover the whole surface of the frreproof glass. 展开更多
关键词 water film sprinkler system HEAT-RESISTANCE fireproof glass fire test
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Structure Design of Large-scale Sow House with Fermentation Bed
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作者 Bo LIU Zhaolong LI +4 位作者 Jianglin LAN Qinlou HUANG Jianyang TANG Wenquan YU Huai SHI 《Agricultural Science & Technology》 CAS 2014年第10期1819-1825,共7页
ln this research, the whole contact-type large-scale sow house with fer-mentation bed was designed. The planning area of the entire piggery was 5 700 m2 with workplace and green belts. The sow house was 93 m long and ... ln this research, the whole contact-type large-scale sow house with fer-mentation bed was designed. The planning area of the entire piggery was 5 700 m2 with workplace and green belts. The sow house was 93 m long and 33 m wide, a total of 3 069 m2, including office area of 60 m2 and aisle area of 107 m2. The fer-mentation bed had an area of 2 902 m2 with length of 88.7 m and width of 27.7 m. lts area accounted for 95% of the total area of sow house. The fermentation mattress had a depth of 80 cm, and had a volume of 2 321 m3, equivalent to 733 t of coconut chaff and rice chaff. On a large fermentation bed, the areas for boars, replacement gilts, pregnant sows, obstetric tables, nursery pigs, etc. were designed. The large-scale sow house with fermentation bed was equipped with the automatic feeding system, automatic sprinkler system, automatic positioning column for preg-nant sows, sows' obstetric table system, fanning wet curtain cooling system, video monitoring system, environmental monitoring (light, temperature, water, humidity, CO2, NH3) and automatic control system. Every farming area was equipped with feeding trough and water trough. The water though was fixed with overflow pipe for removing the extra water. The house could hold 500-head sows. Each sow occu-pied 4.9 m2 of the fermentation bed in average. The designed sow house had a maximum annual output of 10 000 piglets. 展开更多
关键词 Fermentation bed Large-scale sow house Whole contact-type fermen-tation-bed obstetric table Automatic control Non-pollution No smelL
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