02291nas|a2200253 i 450000500170000000800410001703500150005810000190007324500820009226000520017430000140022649000260024050001360026650200580040252012220046065000260168265000160170870000370172470000360176170000420179771000740183981000590191385600650197220260818113901.0181199s1999 th uu m rtt 00| a1eng d a.b117648310 aSompote Youwai10aFinite element modelling of hexagonal wire mesh embankment on soft foundation aBangkok :bAsian Institute of Technology,c1999 a99 leaves1 aThesis vno. GE-98-13 aA thesis submitted in partial fulfillment of the requirements for the degree of Master of Engineering, School of Civil Engineering  aThesis (M.Eng.) - Asian Institute of Technology, 1999 aA full-scale hexagonal wire mesh embankment on Bangkok Clay has been analyzed by the finite element method. The agreement between the finite element results and the field data is quite good. The important simulation consideration for simulating the behavior of reinforced wall embankment were: the step of construction process, the variation of soil permeability during consolidation process and the selection of the appropriate model and properties at the interface between soil and the reinforcement. For the interface between soil and the reinforcement, the direct shear mechanism generally dominate the behavior of hexagonal wire mesh reinforcement. This implied that direct shear mechanism is the appropriate model for simulating the behavior of the hexagonal wire mesh reinforcement on soft ground foundation. For the parametric study, the tensile force on the soft foundation is more than on the stiff foundation. In addition, the tensile force will become higher if the reinforcement stiffness and the friction angle are increased and the reduction factor is decreased. The tensile force in the reinforcements can be adjusted depending on the stiffness of the reinforcement and on the types of the foundation. 0aFinite element method 0aEmbankments1 aBergado, Dennes T.,eChairperson1 aOtsu, Hiroyasu,eCo-chairperson1 aDer Guey, Lin,eExamination committee2 aAsian Institute of Technology Partial Scholarship,eScholarship donor2 aAsian Institute of Technology.tThesis ;vno. GE-98-13 3Full-Textuhttp://203.159.5.9/ait-thesis/detail.php?q=B12448