Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
Numerical modeling of dredging effect on berthing structure
Abstract Piles and diaphragm wall-supported berthing structure on marine soils are loaded laterally from horizontal soil movements generated by dredging. The literature on the adequacy of the finite element method modeling of berthing structure to analyze their behavior during dredging is limited. This paper describes a finite element approach for analyzing the lateral response of pile and diaphragm wall during dredging. Piles are represented by equivalent sheet-pile walls and a plane strain analysis using the finite element method is performed. Results from the finite element method are compared with full-scale field test data. Full-scale field test was conducted on a bearing structure to measure the lateral deflection on pile and diaphragm wall for their full length using inclinometer during dredging in sequence. The finite element method results are in good agreement with full-scale field results. Conclusions are drawn regarding application of the analytical method to study the effect of dredging on piles and diaphragm wall-supported berthing structures.
Numerical modeling of dredging effect on berthing structure
Abstract Piles and diaphragm wall-supported berthing structure on marine soils are loaded laterally from horizontal soil movements generated by dredging. The literature on the adequacy of the finite element method modeling of berthing structure to analyze their behavior during dredging is limited. This paper describes a finite element approach for analyzing the lateral response of pile and diaphragm wall during dredging. Piles are represented by equivalent sheet-pile walls and a plane strain analysis using the finite element method is performed. Results from the finite element method are compared with full-scale field test data. Full-scale field test was conducted on a bearing structure to measure the lateral deflection on pile and diaphragm wall for their full length using inclinometer during dredging in sequence. The finite element method results are in good agreement with full-scale field results. Conclusions are drawn regarding application of the analytical method to study the effect of dredging on piles and diaphragm wall-supported berthing structures.
Numerical modeling of dredging effect on berthing structure
Muthukkumaran, Kasinathan (Autor:in) / Sundaravadivelu, Ranganathan (Autor:in)
Acta Geotechnica ; 2 ; 249-259
03.11.2007
11 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
Berthing structure , Creep effect , Dredging , Lateral movement , Passive resistance Engineering , Geoengineering, Foundations, Hydraulics , Continuum Mechanics and Mechanics of Materials , Geotechnical Engineering & Applied Earth Sciences , Soil Science & Conservation , Soft and Granular Matter, Complex Fluids and Microfluidics , Structural Mechanics
RESPONSE OF BERTHING STRUCTURE DUE TO UNDERWATER BLASTING FOR ROCK DREDGING
British Library Online Contents | 2009
Monitoring of Lateral Deflections of a Berthing Structure During Dredging-A Case Study 5.35
British Library Conference Proceedings | 2004
|Automatic berthing structure for intelligent operation and maintenance ship and berthing process
Europäisches Patentamt | 2024
|