首页 | 本学科首页   官方微博 | 高级检索  
     检索      

无砂垫层真空预压在吹填淤泥软基处理中的效果分析
引用本文:吴兴龙,张开伟,徐剑.无砂垫层真空预压在吹填淤泥软基处理中的效果分析[J].岩土工程技术,2013(6):315-319.
作者姓名:吴兴龙  张开伟  徐剑
作者单位:浙江省钱塘江管理局勘测设计院,浙江杭州310016
摘    要:新吹填淤泥具有超软、超含水率等不利的工程特性,使得其对后期的地基处理提出了很高的要求.结合某新吹填淤泥工程,对取消排水垫层后的浅层地基处理进行了现场试验研究.同时采用数值模拟方法、理论和规范方法对该现场试验后的承载力进行分析和探讨.结果表明,在取消排水垫层后,采用浅层处理方法对新吹填淤泥进行处理,可使处理深度范围内的吹填淤泥强度得到明显增长.

关 键 词:吹填淤泥  浅层加固  真空预压  地基承载力  数值模拟

Analysis of Consolidation Effect of Vacuum Preloading Consolidation Without Conventional Top Sand Drainage Cushion on Newly Dreged Silt
Wu Xinglong Zhang Kaiwei Xu Jian.Analysis of Consolidation Effect of Vacuum Preloading Consolidation Without Conventional Top Sand Drainage Cushion on Newly Dreged Silt[J].Geotechnical Engineering Technique,2013(6):315-319.
Authors:Wu Xinglong Zhang Kaiwei Xu Jian
Institution:Wu Xinglong Zhang Kaiwei Xu Jian (Reconnaissance Design Institute of Qiantang River Administration, ttangzhou 310016, Zhejiang, China)
Abstract:The newly dredged silt has disadvantageous engineering properties of ultra-soft character and excess water content. It results in high requirements for post soft-ground treatment. For a future industry site filled with newly dredged silt, vacuum preloading consolidation method without drainage cushion was performed to improve the ground bearing capacity and reduce the post-construction settlement. Various approaches have been employed to investigate the ground bearing capacity af- ter the treatment, including field testing, theoretical method and empirical methods from different design codes. The test re- sults show vacuum preloading consolidation could increase the shearstrength of the newly dredged silt to a certain depth even without the conventional sand drainage cushion. The water content decreases substantially and the bearing capacity increases. Crust will be formed in short time on the surface of the newly dredged silt.
Keywords:dredged silt~ surface-layer improvement~ vacuum preloading~ subsoil bearing capacity~ numerical modeling
本文献已被 维普 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号