Homogenization for a nonlocal coupling model

Abstract: "In [7,8,12] homogenization techniques are applied to derive an anisotropic variant of the bio-heat transfer equation as asymptotic result of boundary value problems providing a microscopic description for microvascular tissue. In view of a future application on treatment planning in...

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1. Verfasser: Hochmuth, Reinhard (VerfasserIn)
Format: Buch
Sprache:English
Veröffentlicht: Berlin Konrad-Zuse-Zentrum für Informationstechnik 2004
Schriftenreihe:ZIB-Report / Konrad-Zuse-Zentrum für Informationstechnik Berlin 2004,50
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245 1 0 |a Homogenization for a nonlocal coupling model  |c Reinhard Hochmuth 
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520 3 |a Abstract: "In [7,8,12] homogenization techniques are applied to derive an anisotropic variant of the bio-heat transfer equation as asymptotic result of boundary value problems providing a microscopic description for microvascular tissue. In view of a future application on treatment planning in hyperthermia, we investigate here the homogenization limit for a coupling model, which takes additionally into account the influence of convective heat transfer in medium size blood vessels. This leads to second order elliptic boundary value problems with nonlocal boundary conditions on parts of the boundary. Moreover, we present asymptotic estimates for first order correctors." 
650 4 |a Boundary value problems 
650 4 |a Homogenization (Differential equations) 
650 4 |a Thermodynamics 
810 2 |a Konrad-Zuse-Zentrum für Informationstechnik Berlin  |t ZIB-Report  |v 2004,50  |w (DE-604)BV013191727  |9 2004,50 
999 |a oai:aleph.bib-bvb.de:BVB01-013004397 

Datensatz im Suchindex

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author Hochmuth, Reinhard
author_facet Hochmuth, Reinhard
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spelling Hochmuth, Reinhard Verfasser aut
Homogenization for a nonlocal coupling model Reinhard Hochmuth
Berlin Konrad-Zuse-Zentrum für Informationstechnik 2004
15 S.
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ZIB-Report / Konrad-Zuse-Zentrum für Informationstechnik Berlin 2004,50
Abstract: "In [7,8,12] homogenization techniques are applied to derive an anisotropic variant of the bio-heat transfer equation as asymptotic result of boundary value problems providing a microscopic description for microvascular tissue. In view of a future application on treatment planning in hyperthermia, we investigate here the homogenization limit for a coupling model, which takes additionally into account the influence of convective heat transfer in medium size blood vessels. This leads to second order elliptic boundary value problems with nonlocal boundary conditions on parts of the boundary. Moreover, we present asymptotic estimates for first order correctors."
Boundary value problems
Homogenization (Differential equations)
Thermodynamics
Konrad-Zuse-Zentrum für Informationstechnik Berlin ZIB-Report 2004,50 (DE-604)BV013191727 2004,50
spellingShingle Hochmuth, Reinhard
Homogenization for a nonlocal coupling model
Boundary value problems
Homogenization (Differential equations)
Thermodynamics
title Homogenization for a nonlocal coupling model
title_auth Homogenization for a nonlocal coupling model
title_exact_search Homogenization for a nonlocal coupling model
title_full Homogenization for a nonlocal coupling model Reinhard Hochmuth
title_fullStr Homogenization for a nonlocal coupling model Reinhard Hochmuth
title_full_unstemmed Homogenization for a nonlocal coupling model Reinhard Hochmuth
title_short Homogenization for a nonlocal coupling model
title_sort homogenization for a nonlocal coupling model
topic Boundary value problems
Homogenization (Differential equations)
Thermodynamics
topic_facet Boundary value problems
Homogenization (Differential equations)
Thermodynamics
volume_link (DE-604)BV013191727
work_keys_str_mv AT hochmuthreinhard homogenizationforanonlocalcouplingmodel