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An effective procedure for simulation of random wind velocity field by the orthogonal expansion method is proposed in this paper.
This article presents a new and substantially improved finite volume procedure for simulation of incompressible flows on non-orthogonal grids.
The experimental procedure for simulation and acceleration of the sample corrosion by using the electrochemical process is also presented.
A concrete procedure for simulation of the key units and flowsheet of the high-pressure urea synthesis loop has been developed.
Details of experimental setup are first presented with particular focuses on: shaking table array of the four independent shaking tables; dynamic similitude design between scale model of soil and tunnel structure and prototype model; design and fabrication of the scaled model tunnel and model soil; and procedure for simulation of non-uniform seismic waves.
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In this paper, we introduce a new numerical procedure for simulations in geometrical optics that, based on the recent development of Eulerian phase-space formulations of the model, can deliver very accurate, uniformly resolved solutions which can be made to converge with arbitrarily high orders in general geometrical configurations.
This implies the need for numerical procedures for simulation of seismic behavior of shallow foundations supported on both liquefiable and densified subsoil.
In order to address these problems efficiently, the software includes the state-of-the-art of the algorithms and numerical procedures for simulation, reliability and optimization analysis, respectively.
In view of the fact that existing POD methods in the model reduction for dynamic simulation of MEMS dealt with only noise-free data, this paper proposes a neural-network-based method that combines robust principal component analysis (PCA) neural network model with Galerkin procedure for dynamic simulation and analysis of non-linear MEMS with noisy data.
This paper introduces a procedure for the simulation of long-term time series of the mean wind speed.
This way the validity of the proposed procedure for the simulation is verified by means of the theoretical results.
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