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Stochastic Boundary-Domain Integral Method for heat transfer simulations

2019 4th International Conference on Smart and Sustainable Technologies (SpliTech), 2019
In this paper we couple a numerical method aimed at simulation of flow and heat transfer of nanofluids with stochastic modelling of input and material parameters. A fast Boundary- Domain Integral Method has been developed to solve the governing equations and set up the deterministic flow and heat transfer solver. Furthermore, the Stochastic Collocation
Ravnik, Jure   +4 more
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On the alternating method and boundary-domain integrals for elliptic Cauchy problems

Computers & Mathematics with Applications, 2019
zbMATH Open Web Interface contents unavailable due to conflicting licenses.
Andriy Beshley   +2 more
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Preconditioned conjugate gradient methods for boundary-domain integral method

Engineering Analysis with Boundary Elements, 1993
Abstract The paper deals with the iterative solution of systems of linear equations arising in viscous flow computation by the boundary-domain integral method (BDIM) with the subdomain technique. Three versions of conjugate gradient method — the bi-conjugate gradient method (bi-CG), conjugate gradients squared (CGS) and its variant bi-CGSTAB - are ...
Matjaž Hriberšek   +2 more
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Conjugate heat transfer by boundary-domain integral method

Engineering Analysis with Boundary Elements, 2000
zbMATH Open Web Interface contents unavailable due to conflicting licenses.
Hriberšek, M., Kuhn, G.
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Simulation of gas–solid particle flows by boundary domain integral method

Engineering Analysis with Boundary Elements, 2002
zbMATH Open Web Interface contents unavailable due to conflicting licenses.
Požarnik, M., Škerget, L.
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Boundary-domain integral method using a velocity-vorticity formulation

Engineering Analysis with Boundary Elements, 1995
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
openaire   +1 more source

Boundary domain integral method for transport phenomena in porous media

International Journal for Numerical Methods in Fluids, 2001
Summary: We present a boundary domain integral method for the solution of transport phenomena in porous media. The complete, so-called modified Navier-Stokes equations (Brinkman-extended Darcy formulation with inertial term) are used to describe the fluid motion in porous media.
Jecl, R., Škerget, L., Petrešin, E.
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Will the boundary(-domain) integral-equation methods survive? Preface to the special issue on non-traditional boundary (-domain) integral-equation methods

Journal of Engineering Mathematics, 2005
zbMATH Open Web Interface contents unavailable due to conflicting licenses.
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Computational Fluid Dynamics by the Boundary-Domain Integral Method

1992
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
openaire   +1 more source

A boundary‐domain integral equation method in viscous fluid flow

International Journal for Numerical Methods in Fluids, 2004
AbstractIn this paper, the reciprocal work theorem for viscous fluid flow is established for Newtonian fluids and, based on this theorem, a set of boundary‐domain integral equations is derived from the continuity and momentum equations for two‐dimensional viscous flows.
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