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Results from a research project studying the heavy metal contamination of alluvial soils in a historic mining area at the Vils River near Freihung (Eastern Bavaria, Germany) exemplify how FPXRF can be applied to quantify two- and three dimensional element distributions in a floodplain environment on different scales.
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In this paper, the three dimensional Element-Free Galerkin (EFG) method is used to investigate static behavior analysis of thick functionally graded piezoelectric plate.
Rope is modeled by two nodes and three dimensional elements (T3D2).
Previously reported analytical models are compared to new numerical simulations using either shell elements or two dimensional elements.
Two dimensional elements were chosen due to the prevailing plane-strain deformation of the specimen.
The stress state of the joint under torsional load with contact elements was calculated by three dimensional finite element analysis.
A three dimensional finite element model is developed using Lagrangian, eight nodded brick element in ANSYS/AUTODYN, v14.5.
Three dimensional finite element (FE) models were generated with continuum and beam elements representing the matrix and fibers, respectively.
In the present paper, a three dimensional finite element method (FEM) is used to compute the stress intensity factor (SIF) in straight lugs of Aluminum 7075-T6.
Three dimensional finite element models of eight implanted mandibles were analyzed.
Based on experimental works, three dimensional finite element models of composite joints were established.
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