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大河道混凝土底板跳仓施工研究
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作者 畅新 《中国水运(下半月)》 2015年第8期269-270,共2页
文中针对大河道混凝土底板及驳岸挡墙的混凝土浇筑,进行了研究,探索了解决混凝土施工难题方法,总结出了跳仓施工工法,给工程技术管理人员提供了该类型混凝土施工的模式和程序步骤,以及安全管理的重点难点。
关键词 大河道 底板 驳岸挡墙 跳仓 工法 钢筋网片 模块化预制
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CO_2 emission and organic carbon burial in the Xinanjiang Reservoir 被引量:3
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作者 Fushun Wang Baoli Wang +2 位作者 Tao Zhou Tianyu Chen Jing Ma 《Acta Geochimica》 EI CAS CSCD 2017年第3期465-468,共4页
In order to understand the effect of river impoundment on carbon dynamics, a large reservoir in a subtropical area, the Xinanjiang Reservoir, was investigated in detail. CO_2 emissions from the water–air interface wa... In order to understand the effect of river impoundment on carbon dynamics, a large reservoir in a subtropical area, the Xinanjiang Reservoir, was investigated in detail. CO_2 emissions from the water–air interface was studied, as was organic carbon burial in sediment. The results show a significant seasonal difference in CO_2 emissions. River impoundment led to the enhancement of aquatic photosynthesis, generating large amounts of authigenic organic carbon that was then buried in sediment. 展开更多
关键词 The Xinanjiang Reservoir Carbon emission SEDIMENT Carbon retention
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Response of the distributary channel of the Huanghe River estuary to water and sediment discharge regulation in 2007
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作者 马妍妍 李广雪 +6 位作者 叶思源 张志恒 赵广明 李景阳 周春艳 丁文洁 杨欣 《Chinese Journal of Oceanology and Limnology》 SCIE CAS CSCD 2010年第6期1362-1370,共9页
The water and sediment discharge regulation (WSDR) project, which has been performed since 2002 before flood season every year, is of great significance to the river management in China. Until 2007, six experiments ... The water and sediment discharge regulation (WSDR) project, which has been performed since 2002 before flood season every year, is of great significance to the river management in China. Until 2007, six experiments have been fulfilled to evaluate the effect of the project on the natural environment. To fill the gap of investigations, a study on flood and suspended sediment transportation and channel changing along the distributary channel of the Huanghe (Yellow) River was conducted during the WSDR project period in 2007. The lower channel was scoured rapidly and the channel became unobstructed gradually several days after the flood peak water was discharged from the Xiaolangdi Reservoir. Within four days after the flood peak at 3 000 m3/s entered the distributary, the channel in the river mouth area was eroded quickly. Both the mean values of area and depth of the main channel were tripled, and the maximum flood carrying capacity increased to 5 500 m3/s or more. Then, the river channel was silted anew in a very short time after completion of the WSDR. Favored by the WSDR project, the fiver status in April 2008 became better than that of the year before. The adjustment ranges of main channel parameters were about 30%, 10%, and 10% at sections C2, Q4, and Q7, respectively. The process of rapid erosion-deposition was more active 15 km away in the channel from the fiver mouth due to the marine influence. It is reasonable for discharging sediment at concentration peak from Xiaolangdi Reservoir at the end of the flood peak. As a result, the sediment peak reached the river mouth about two days later than that of the water current. In addition, the WSDR project has improved the development of the estuarine wetland. Wetland vegetation planted along the river banks restrained the water flow as a strainer and improved the main channel stability. It is suggested to draw water at mean rate of 150 m3/s from the Huanghe River during flood periods, because at the rate the water in the wetland would be stored and replenished in balance. Moreover, we believe that cropland on the river shoal of the lower Huanghe River should be replaced by wetland. These activities should achieve the Huanghe River management strategy of "To concentrate flow to scour sediment, stabilize the main channel, and regulate water and sediment". 展开更多
关键词 Huanghe (Yellow) River estuary water and sediment regulation river channel adjustment wetland.
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