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PLAXIS 3D is a software for structural engineering that uses modeling and analysis based on the Koiter theory. In Design, PLAXIS 3D generates nonlinear finite element models. It then evaluates the compliance of the structure using the standard loading/fault conditions of each component. Using Poisson statistics, PLAXIS 3D provides information on the maximum subsidence between the topsoil and the bedrock.
PLAXIS 3D is a powerful engineering tool that can help to predict existing and future deformations of buildings in the ground and buildings and tunnels underground. PLAXIS 3D is a modular tool to incorporate engineering-related stress design models, such as consolidation, cut and fill, linear loads, or creep or cavitation reactions, to the entire model. PLAXIS 3D was developed to be a CAD tool for implementing all geotechnical engineering activities from building design to field testing. The major design features include surface and subsurface assemblies with dams, vaults and tunnels, and the use of the same assembly to generate different codes, thereby consolidating drilling and excavation flows and the entire process of making a geotechnical engineering-related solution.
PLAXIS 3D is definitely worth the time investment, especially if users already have some modeling experience with PLAXIS 2D. The modeling workflow and most of the modeling features are identical. It only takes a short time to become familiar with handling the third dimension when using construction geometry components natively.
In conclusion, the rock mass properties and environmental conditions of the Oman underground environment were gathered to conduct a preliminary stability assessment. A 3D numerical model was developed in PLAXIS 3D to use the hardening soil modelling method. The results have indicated that the pillars of KV57 should be strengthened since vertical strength is the weakest structure of the tomb. 7211a4ac4a