Ecological performance optimization of a thermoacoustic heat engine

Ecological performance optimization of a generalized irreversible thermoacoustic heat engine with heat resistance, heat leakage, thermal relaxation and internal dissipation, in which heat transfer between the working fluid and heat reservoirs obeys a complex generalized heat transfer law Q <img border=0 src="../../../../../img/revistas/rmf/v56n5/a5s1.jpg">Δ (T)n -where n is a complex-, is investigated in this paper. Both the real part and the imaginary part of the complex heat transfer exponent change the optimal ecological function versus efficiency relationship, quantitatively. The analytical formulas about the ecological function and thermal efficiency of the thermoacoustic heat engine are derived. Furthermore, the comparative analysis of the influences of various factors on optimal performance of the generalized irreversible thermoacoustic heat engine is carried out by detailed numerical examples. The optimal zone on the performance of the thermoacoustic heat engine is obtained by numerical analysis. The results obtained herein can provide some theoretical guidelines for the design of real thermoacoustic engines.

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Main Authors: Chen,Lingen, Kan,Xuxian, Sun,Fengrui, Wu,Feng, Guo,Fangzhong
Format: Digital revista
Language:English
Published: Sociedad Mexicana de Física 2010
Online Access:http://www.scielo.org.mx/scielo.php?script=sci_arttext&pid=S0035-001X2010000500005
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spelling oai:scielo:S0035-001X20100005000052011-10-06Ecological performance optimization of a thermoacoustic heat engineChen,LingenKan,XuxianSun,FengruiWu,FengGuo,Fangzhong Thermoacoustic heat engine complex heat transfer exponent ecological optimization finite-time thermodynamics Ecological performance optimization of a generalized irreversible thermoacoustic heat engine with heat resistance, heat leakage, thermal relaxation and internal dissipation, in which heat transfer between the working fluid and heat reservoirs obeys a complex generalized heat transfer law Q <img border=0 src="../../../../../img/revistas/rmf/v56n5/a5s1.jpg">Δ (T)n -where n is a complex-, is investigated in this paper. Both the real part and the imaginary part of the complex heat transfer exponent change the optimal ecological function versus efficiency relationship, quantitatively. The analytical formulas about the ecological function and thermal efficiency of the thermoacoustic heat engine are derived. Furthermore, the comparative analysis of the influences of various factors on optimal performance of the generalized irreversible thermoacoustic heat engine is carried out by detailed numerical examples. The optimal zone on the performance of the thermoacoustic heat engine is obtained by numerical analysis. The results obtained herein can provide some theoretical guidelines for the design of real thermoacoustic engines.info:eu-repo/semantics/openAccessSociedad Mexicana de FísicaRevista mexicana de física v.56 n.5 20102010-10-01info:eu-repo/semantics/articletext/htmlhttp://www.scielo.org.mx/scielo.php?script=sci_arttext&pid=S0035-001X2010000500005en
institution SCIELO
collection OJS
country México
countrycode MX
component Revista
access En linea
databasecode rev-scielo-mx
tag revista
region America del Norte
libraryname SciELO
language English
format Digital
author Chen,Lingen
Kan,Xuxian
Sun,Fengrui
Wu,Feng
Guo,Fangzhong
spellingShingle Chen,Lingen
Kan,Xuxian
Sun,Fengrui
Wu,Feng
Guo,Fangzhong
Ecological performance optimization of a thermoacoustic heat engine
author_facet Chen,Lingen
Kan,Xuxian
Sun,Fengrui
Wu,Feng
Guo,Fangzhong
author_sort Chen,Lingen
title Ecological performance optimization of a thermoacoustic heat engine
title_short Ecological performance optimization of a thermoacoustic heat engine
title_full Ecological performance optimization of a thermoacoustic heat engine
title_fullStr Ecological performance optimization of a thermoacoustic heat engine
title_full_unstemmed Ecological performance optimization of a thermoacoustic heat engine
title_sort ecological performance optimization of a thermoacoustic heat engine
description Ecological performance optimization of a generalized irreversible thermoacoustic heat engine with heat resistance, heat leakage, thermal relaxation and internal dissipation, in which heat transfer between the working fluid and heat reservoirs obeys a complex generalized heat transfer law Q <img border=0 src="../../../../../img/revistas/rmf/v56n5/a5s1.jpg">Δ (T)n -where n is a complex-, is investigated in this paper. Both the real part and the imaginary part of the complex heat transfer exponent change the optimal ecological function versus efficiency relationship, quantitatively. The analytical formulas about the ecological function and thermal efficiency of the thermoacoustic heat engine are derived. Furthermore, the comparative analysis of the influences of various factors on optimal performance of the generalized irreversible thermoacoustic heat engine is carried out by detailed numerical examples. The optimal zone on the performance of the thermoacoustic heat engine is obtained by numerical analysis. The results obtained herein can provide some theoretical guidelines for the design of real thermoacoustic engines.
publisher Sociedad Mexicana de Física
publishDate 2010
url http://www.scielo.org.mx/scielo.php?script=sci_arttext&pid=S0035-001X2010000500005
work_keys_str_mv AT chenlingen ecologicalperformanceoptimizationofathermoacousticheatengine
AT kanxuxian ecologicalperformanceoptimizationofathermoacousticheatengine
AT sunfengrui ecologicalperformanceoptimizationofathermoacousticheatengine
AT wufeng ecologicalperformanceoptimizationofathermoacousticheatengine
AT guofangzhong ecologicalperformanceoptimizationofathermoacousticheatengine
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