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Exact(30)
The efficiency of the proposed numerical tool is verified by published results.
This numerical tool is an extended version of an earlier one, adapted for the optimum design of unstiffened conical tanks.
The assessment process of such a numerical tool is a complex task and requires a suitable methodology.
The numerical tool is available as an e-document that is simple and easy to apply to any PAM data.
The developed numerical tool is capable of selecting the set of design variables that leads to optimum safe design.
The differential quadrature method as an efficient and accurate numerical tool is adopted to discretize the governing equations.
Similar(30)
In this section, the data, models, and numerical tool are described.
A numerical tool was designed to simulate the thermal fluid flow problem, which includes nanoparticles in a cubic interpolation profile.
The predictions of the numerical tool were compared to those of analytical homogenization models for a broad range of phases mechanical properties contrasts and spheres volume fractions.
The solution strategy and associated numerical tool are developed by using perturbation theory and Taylor expansion for linear equations with random and interval variables.
The validated numerical tool was applied to explore the dissipation of heat from the collector through natural convection and its dependence on collector geometrical parameters, tilt angle and operational conditions.
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