›› 2015, Vol. 29 ›› Issue (6): 54-58.

• 工程实录 • 上一篇    下一篇

武汉长江一级阶地临江地段抗浮水位取值探讨

刘亚洲1,张晓玉2   

  1. (1.武汉市政工程设计研究院有限责任公司,武汉〓430023; 2.中南勘察设计院(湖北)有限责任公司,武汉〓430071)
  • 收稿日期:2014-12-29 出版日期:2015-12-22 发布日期:2015-12-30
  • 作者简介:刘亚洲(1968-),男,本科,正高职高级工程师,注册岩土工程师。主要研究方向为岩土工程。

Groundwater Value for the Buoyancy Design in the First Terrace of Yangtze River in Wuhan

LIU Yazhou1, ZHANG Xiaoyu2   

  1. (1. Wuhan Municipal Engineering Design & Research Institute Ltd., Wuhan 430023; 
    2. Zhongnan Geotechnical Investigation and Design Institute (Hubei) Co., Ltd., Wuhan 430071 )
  • Received:2014-12-29 Online:2015-12-22 Published:2015-12-30

摘要: 长江一级阶地地层具有典型的二元结构,临江地段地下水与地表水互补关系密切,地下建(构)筑物的抗浮设计水位受积水深度、基础埋深、基底下土层及长江地表水历史水位等多种因素影响;三峡大坝修建后长江武汉段今后可能达到的最高水位直接影响到抗浮设计水位取值。对不同基础埋深情况下的抗浮设计水位及当前长江武汉段最高水位取值进行了综合分析及建议,对长江沿岸类似地区抗浮设计有一定参考意义。

关键词: 长江一级阶地, 临江地段, 抗浮设计水位, 长江武汉段最高水位

Abstract: The subsurface condition of the first terrace of Yangtze River in Wuhan has a distinct two-layer structure. The surface water is well connected with the groundwater at areas close to the river. As a result, the buoyancy design of the structures in these areas are associated with the groundwater level, foundation embedment depth, subsurface conditions below the foundation as well as the historical groundwater levels in the area. The future maximum flood water level after the Three Gorges Project construction is critical to the buoyancy design. This paper presents the results of the buoyancy design under various groundwater levels and different foundation embedment depths.

Key words: First Terrace of Yangtze River, Areas Close to the River, Groundwater Water Levels for Buoyancy Design, Maximum Flood Level