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Consequently, both static and time-varying displacement fields can be reconstructed without the knowledge of material properties, applied loading, or damping characteristics.
This paper proposes a full grid interval collocation method (FGICM) and a sparse grid interval collocation method (SGICM) to solve the uncertain heat convection-diffusion problem with interval input parameters in material properties, applied loads and boundary conditions.
In addition to research on these fundamental coupled processes and characterization of relevant material properties, applied research is being performed to develop analytical tools for the design and analysis of different geo-energy applications.
Furthermore, the assessment of RC constructions, especially of existing ones, is concerned with inevitable high uncertainties about geometry, material properties, applied loads and damage state, thus requiring a probabilistic approach for a reliable evaluation of the present and future performance.
The obtained results reveal that the magnetoelectric field inside the crack is dependent on the material properties, applied loadings, the dielectric permeability of crack interior, and the ratio of the crack length and the layer width.
Open image in new window Fig. 5 Meshes inside of the entity and the finite element model with different material properties applied to different phases.
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Further improvement in the output performance can be achieved by optimizing material properties, applying metal-to-metal bonding and fabricating thermocouple microstructures on high topography.
Cross-sectional geometry, materials properties, applied loads or nodal co-ordinates are considered as the key parameters.
In this sense, the user is able to filter out the drilling parameters, i.e., RPM and WOB, prone to resonance effects, and detrimental lateral and torsional vibrations based on the material and geometrical properties, applied WOB and rock stiffness coefficient.
Random variables relate to the material properties and applied loads.
A numerical analysis is performed for a wide range of orthotropic material properties and applied loads.
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