Results 241 to 250 of about 23,409 (291)
An importance sampling vortex particle method for turbulence visualization simulation in maritime simulators. [PDF]
Zhu T, Ren H, Tao R, Wei D, Xie P.
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Exponential stabilization and finite time blow-up in a fractional thermal piezoelectric beam with delay. [PDF]
Ullah Z, Hao J, Thabet STM, Moulahi T.
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Pareto-Driven Multiobjective Design of Axial-Flow Automotive Fan with Response Surface Modeling. [PDF]
Ren K +5 more
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The Boundary-Domain Integral Method for Elliptic Systems
Pseudohomogeneous distributions.- Levi functions for elliptic systems of partial differential equations.- Systems of integral equations, generated by Levi functions.- The differential equations of the DV model.- Levi functions for the shell equations.- The system of integral equations and its numerical solution.- An example: Katenoid shell under ...
Pomp, Andreas
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Computational Fluid Dynamics by the Boundary-Domain Integral Method
Very fast development of computing enabled also the development of numerical fluid dynamics. It is numerical modelling and simulation of flow circumstances, including numerical experiments by the computer. Such procedure may have several important advantages over physical measurements on a laboratory model.
P. Skerget +3 more
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Boundary-domain integral method using a velocity-vorticity formulation
Abstract The paper deals with the numerical solution of fluid dynamics (transport phenomena in incompressible fluid flow) using a boundary-domain integral method. A velocity-vorticity formulation of the Navier-Stokes equations is adopted, where the kinematic equation is written in its parabolic version.
L. Skerget, Z. Rek
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Fast boundary-domain integral method for heat transfer simulations
Engineering Analysis with Boundary Elements, 2019zbMATH Open Web Interface contents unavailable due to conflicting licenses.
J. Tibaut, J. Ravnik
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The solution of Navier-Stokes equations of time dependent incompressible viscous fluid flow in planar geometry by the Boundary Domain Integral Method (BDIM) is discussed. In order to reduce the computational cost of BDIM iterative methods (Krylov subspace and Domain decomposition methods) are used. Different types of preconditioning, from simple Jacobi
M. Hriberšek, L. ŠKerget
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