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Herein, the possible application of the methodology for solution of axisymmetric free vibration response of circular and annular (polar) orthotropic plates has been illustrated.
The purpose of this study is to extend this methodology for solution of multi-objective optimal control problems under the framework of NSGA-II.
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The numerical methodology used for solution procedure is the hybrid particle/mesh method and a fractional step scheme is used to solve for transport, reaction and mixing sequentially.
A methodology for optimal solution is proposed based on objective function and is given in Fig. 4.
In this paper, the authors propose a local time-domain approach to establish an efficient methodology for the solution of large-scale acoustic wave propagation problems.
Presented in this paper is a numerical methodology for the solution of the parabolic governing partial differential equation that describes unsteady advection diffusion heat transfer.
A general methodology for the solution of partial differential equations is described in which the discretization of the calculus is exact and all approximation occurs as an interpolation problem on the material constitutive equations.
A methodology for the efficient solution of the optimization process is presented.
We propose a new methodology for the numerical solution of the isothermal Navier Stokes Korteweg equations.
Recent research on the numerical method has focused on the idea of using a meshless methodology for the numerical solution of partial differential equations.
We present a novel methodology for the numerical solution of problems of diffraction by infinitely thin screens in three-dimensional space.
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