The paper describes a general analytical solution for obtaining the excess pore pressure in a consolidating layer due to depth and time-dependent changes of total stress, given by a simple product of depth- and time-dependent functions. The solution is validated against three previously published solutions, and the paper ends with analysis of a case history involving settlement and consolidation beneath a periodically loaded silo. Good agreement is observed between the analytical solution and measured settlements, and the transient response is also validated against a finite-element solution.
机构:
MOE Key Lab of Soft Soils and Geo-environmental Engineering, Zhejiang University
Institute of Engineering Mechanics, China Earthquake AdministrationMOE Key Lab of Soft Soils and Geo-environmental Engineering, Zhejiang University
Zhen-dong SHAN
Dao-sheng LING
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机构:
MOE Key Lab of Soft Soils and Geo-environmental Engineering, Zhejiang UniversityMOE Key Lab of Soft Soils and Geo-environmental Engineering, Zhejiang University
Dao-sheng LING
Hao-jiang DING
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机构:
MOE Key Lab of Soft Soils and Geo-environmental Engineering, Zhejiang UniversityMOE Key Lab of Soft Soils and Geo-environmental Engineering, Zhejiang University
机构:
MOE Key Lab of Soft Soils and Geo-environmental Engineering, Zhejiang University
Institute of Engineering Mechanics, China EarthquakeMOE Key Lab of Soft Soils and Geo-environmental Engineering, Zhejiang University
Zhendong SHAN
Daosheng LING
论文数: 0引用数: 0
h-index: 0
机构:
MOE Key Lab of Soft Soils and Geo-environmental Engineering, Zhejiang UniversityMOE Key Lab of Soft Soils and Geo-environmental Engineering, Zhejiang University
Daosheng LING
Haojiang DING
论文数: 0引用数: 0
h-index: 0
机构:
MOE Key Lab of Soft Soils and Geo-environmental Engineering, Zhejiang UniversityMOE Key Lab of Soft Soils and Geo-environmental Engineering, Zhejiang University