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Comprehensive Construction Technology of Steel Structure and Damper for High-grade Seismic Building
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作者 ZHUZhenjie 《外文科技期刊数据库(文摘版)工程技术》 2022年第4期081-088,共8页
A large-scale high-rise office commercial project in a central Asian country has a total land area of 36576.9m2, and there are three single buildings, all of which are commercial and office buildings, sharing a baseme... A large-scale high-rise office commercial project in a central Asian country has a total land area of 36576.9m2, and there are three single buildings, all of which are commercial and office buildings, sharing a basement. The project is located in the active earthquake zone. The design structure of the single building has an anti-seismic grade of Grade 9, with extremely high anti-seismic requirements and complicated building functions. The project is designed and constructed at the same time. In addition, the architectural design refers to the GB series standards of the People's Republic of China, and the acceptance process refers to the local acceptance standards of Central Asia. This paper summarizes the comprehensive construction technology for the installation of high-rise steel structures and dampers overseas under the Grade 9 seismic design standard. 展开更多
关键词 high-rise building steel structure DAMPER comprehensive construction technology
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Performance of pond–wetland complexes as a preliminary processor of drinking water sources 被引量:13
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作者 Weidong Wang Jun Zheng +4 位作者 Zhongqiong Wang Rongbin Zhang Qinghua Chen Xinfeng Yu Chengqing Yin 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2016年第1期119-133,共15页
Shijiuyang Constructed Wetland(110 hm^2) is a drinking water source treatment wetland with primary structural units of ponds and plant-bed/ditch systems. The wetland can process about 250,000 tonnes of source water ... Shijiuyang Constructed Wetland(110 hm^2) is a drinking water source treatment wetland with primary structural units of ponds and plant-bed/ditch systems. The wetland can process about 250,000 tonnes of source water in the Xincheng River every day and supplies raw water for Shijiuyang Drinking Water Plant. Daily data for 28 months indicated that the major water quality indexes of source water had been improved by one grade. The percentage increase for dissolved oxygen and the removal rates of ammonia nitrogen, iron and manganese were 73.63%, 38.86%, 35.64%, and 22.14% respectively. The treatment performance weight of ponds and plant-bed/ditch systems was roughly equal but they treated different pollutants preferentially. Most water quality indexes had better treatment efficacy with increasing temperature and inlet concentrations. These results revealed that the pond–wetland complexes exhibited strong buffering capacity for source water quality improvement. The treatment cost of Shijiuyang Drinking Water Plant was reduced by about 30.3%. Regional rainfall significantly determined the external river water levels and adversely deteriorated the inlet water quality, thus suggesting that the "hidden" diffuse pollution in the multitudinous stream branches as well as their catchments should be the controlling emphases for river source water protection in the future. The combination of pond and plant-bed/ditch systems provides a successful paradigm for drinking water source pretreatment. Three other drinking water source treatment wetlands with ponds and plant-bed/ditch systems are in operation or construction in the stream networks of the Yangtze River Delta and more people will be benefited. 展开更多
关键词 Pond–wetland combination Plant-bed/ditch system Constructed root channel technology Semi-subsurface flow wetland Weighted comprehensive water quality index
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