CONSTRUCTAL ENTRANSY DISSIPATION MINIMIZATION FOR "VOLUME-POINT" HEAT CONDUCTION BASED ON TRIANGULAR ELEMENT

By taking equivalent thermal resistance, which reflects the average heat conduction effect and is defined based on entransy dissipation, as optimization objective, the "volume to point" constructal problem based on triangular element of how to discharge the heat generated in a fixed volume...

Full description

Bibliographic Details
Main Authors: Shuhuan Wei, Lingen Chen, Fengrui Sun
Format: Article
Language:English
Published: VINCA Institute of Nuclear Sciences 2010-01-01
Series:Thermal Science
Subjects:
Online Access:http://thermalscience.vinca.rs/2010/4/19
id doaj-81e7c4c74acd455b8cafe3be53442925
record_format Article
spelling doaj-81e7c4c74acd455b8cafe3be534429252021-01-02T07:15:50ZengVINCA Institute of Nuclear SciencesThermal Science0354-98362010-01-0114410751088TSCI10041075WCONSTRUCTAL ENTRANSY DISSIPATION MINIMIZATION FOR "VOLUME-POINT" HEAT CONDUCTION BASED ON TRIANGULAR ELEMENTShuhuan WeiLingen ChenFengrui SunBy taking equivalent thermal resistance, which reflects the average heat conduction effect and is defined based on entransy dissipation, as optimization objective, the "volume to point" constructal problem based on triangular element of how to discharge the heat generated in a fixed volume to a heat sink on the border through relatively high conductive link is re-analyzed and re-optimized in this paper. The constructal shape of the control volume with the best average heat conduction effect is deduced. For the same parameters, the constructs based on minimization of entransy dissipation and the constructs based on minimization of maximum temperature difference are compared, and the results show that the constructs based on entransy dissipation can decrease the mean temperature difference better than the constructs based on minimization of maximum temperature difference. But with the increase of the number of order, the mean temperature difference does not always decrease, and there exists some fluctuations. Because the idea of entransy describes heat transfer ability more suitably, the optimization results of this paper can be put to engineering applica tion of electronic cooling.http://thermalscience.vinca.rs/2010/4/19constructal theoryentransy dissipationvolume-point heat conductiongeneralized thermodynamic optimization
collection DOAJ
language English
format Article
sources DOAJ
author Shuhuan Wei
Lingen Chen
Fengrui Sun
spellingShingle Shuhuan Wei
Lingen Chen
Fengrui Sun
CONSTRUCTAL ENTRANSY DISSIPATION MINIMIZATION FOR "VOLUME-POINT" HEAT CONDUCTION BASED ON TRIANGULAR ELEMENT
Thermal Science
constructal theory
entransy dissipation
volume-point heat conduction
generalized thermodynamic optimization
author_facet Shuhuan Wei
Lingen Chen
Fengrui Sun
author_sort Shuhuan Wei
title CONSTRUCTAL ENTRANSY DISSIPATION MINIMIZATION FOR "VOLUME-POINT" HEAT CONDUCTION BASED ON TRIANGULAR ELEMENT
title_short CONSTRUCTAL ENTRANSY DISSIPATION MINIMIZATION FOR "VOLUME-POINT" HEAT CONDUCTION BASED ON TRIANGULAR ELEMENT
title_full CONSTRUCTAL ENTRANSY DISSIPATION MINIMIZATION FOR "VOLUME-POINT" HEAT CONDUCTION BASED ON TRIANGULAR ELEMENT
title_fullStr CONSTRUCTAL ENTRANSY DISSIPATION MINIMIZATION FOR "VOLUME-POINT" HEAT CONDUCTION BASED ON TRIANGULAR ELEMENT
title_full_unstemmed CONSTRUCTAL ENTRANSY DISSIPATION MINIMIZATION FOR "VOLUME-POINT" HEAT CONDUCTION BASED ON TRIANGULAR ELEMENT
title_sort constructal entransy dissipation minimization for "volume-point" heat conduction based on triangular element
publisher VINCA Institute of Nuclear Sciences
series Thermal Science
issn 0354-9836
publishDate 2010-01-01
description By taking equivalent thermal resistance, which reflects the average heat conduction effect and is defined based on entransy dissipation, as optimization objective, the "volume to point" constructal problem based on triangular element of how to discharge the heat generated in a fixed volume to a heat sink on the border through relatively high conductive link is re-analyzed and re-optimized in this paper. The constructal shape of the control volume with the best average heat conduction effect is deduced. For the same parameters, the constructs based on minimization of entransy dissipation and the constructs based on minimization of maximum temperature difference are compared, and the results show that the constructs based on entransy dissipation can decrease the mean temperature difference better than the constructs based on minimization of maximum temperature difference. But with the increase of the number of order, the mean temperature difference does not always decrease, and there exists some fluctuations. Because the idea of entransy describes heat transfer ability more suitably, the optimization results of this paper can be put to engineering applica tion of electronic cooling.
topic constructal theory
entransy dissipation
volume-point heat conduction
generalized thermodynamic optimization
url http://thermalscience.vinca.rs/2010/4/19
work_keys_str_mv AT shuhuanwei constructalentransydissipationminimizationforvolumepointheatconductionbasedontriangularelement
AT lingenchen constructalentransydissipationminimizationforvolumepointheatconductionbasedontriangularelement
AT fengruisun constructalentransydissipationminimizationforvolumepointheatconductionbasedontriangularelement
_version_ 1724357535977177088