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A coupling algorithm based on the finite element method (FEM) and the wideband fast multipole boundary element method (wideband FMBEM) is proposed for acoustic fluid structure interaction simulation and structural acoustic design sensitivity analysis by using the direct differentiation method.
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A forward numerical model of the TOF P-UPS is coupled to an inversion algorithm, based on the genetic optimization principle, targeting the determination of the orthotropic elastic parameters, and the quality of the inversion is demonstrated for synthetic data representative for composites.
These parameters are estimated by using the Levenberg Marquardt method coupled with the Gauss Newton algorithm based on the experimental data obtained from the treatment of pretreated palm oil mill effluent (POME) as a feed in the pilot plant scale ultrafiltration system.
In this paper, a method is proposed for the sequential reconstruction of the plume, by coupling a sequential data assimilation algorithm based on inverse modelling with an observation targeting strategy.
In order to solve the coupled multiphase flow and geomechanics, two coupling strategies are used, first the fully coupled approach and second the iterative algorithm based on the fixed-stress operator split.
This design problem is solved through the use of a genetic algorithm based optimization program coupled with a finite element based MHD simulation program.
Compared with the traditional loosely coupled astro-inertial integration framework, the proposed strongly coupled framework and robust astro-inertial integrated navigation algorithm based on star-coordinate matching can significantly improve robustness against perturbations.
This paper proposes a novel multi-faceted adaptive image fusion algorithm based on a pulse coupled neural network.
The drilling algorithm based on the signed distance fields coupled to a Marching Cube algorithm allowed performing a stapedotomy.
The PiCCO uses a proprietary algorithm based on the ventriculo-arterial coupling transfer function [ 3] to calculate CO.
CO was calculated by using an algorithm based on the ventriculo-arterial coupling transfer function with thermodilution calibration for CO measurement.
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