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Physics / Heat transfer / Chemical engineering / Natural convection / Grashof number / Rayleigh number / Computational fluid dynamics / Prandtl number / Ludwig Prandtl / Convection / Fluid dynamics / Fluid mechanics


SOLUTION OF A LOW PRANDTL NUMBER NATURAL CONVECTION BENCHMARK BY A LOCAL MESHLESS METHOD Gregor Kosec* and Božidar Šarler† * Jožef Stefan Institute
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Document Date: 2013-08-01 05:14:15


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File Size: 1,46 MB

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Company

Jožef Stefan Institute Laboratory / /

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Facility

University of Nova Gorica Laboratory / /

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IndustryTerm

metal / oscillatory solution / pressure correction algorithm / steady state solutions / closed form solution / solidification systems / energy conservation / porous media / computing / reference solutions / proper solution / chemical inhomogeneities / solidification processing problems / pure liquid metal / numerical solutions / large global systems / /

MarketIndex

LOW PRANDTL NUMBER NATURAL CONVECTION / /

Organization

University of Nova Gorica Laboratory for Multiphase Processes Vipavska / Centre of Excellence for Biosensorics / Automation and Process Control Laboratory for Advanced Materials Systems Velika / /

Person

Gregor Kosec / Božidar Šarler Instead / Božidar Šarler Key / Božidar Šarler / /

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Technology

fluid dynamics / heat transfer / simulation / pressure correction algorithm / /

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