Multi-Objective Constructal Optimization for Marine Condensers
A marine condenser with exhausted steam as the working fluid is researched in this paper. Constructal designs of the condenser are numerically conducted based on single and multi-objective optimizations, respectively. In the single objective optimization, there is an optimal dimensionless tube diame...
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doaj-52f7c3161ed344a783011b43cac9be6e2021-09-09T13:43:57ZengMDPI AGEnergies1996-10732021-09-01145545554510.3390/en14175545Multi-Objective Constructal Optimization for Marine CondensersHuijun Feng0Wei Tang1Lingen Chen2Junchao Shi3Zhixiang Wu4Institute of Thermal Science and Power Engineering, Wuhan Institute of Technology, Wuhan 430205, ChinaCollege of Power Engineering, Naval University of Engineering, Wuhan 430033, ChinaInstitute of Thermal Science and Power Engineering, Wuhan Institute of Technology, Wuhan 430205, ChinaCollege of Power Engineering, Naval University of Engineering, Wuhan 430033, ChinaCollege of Power Engineering, Naval University of Engineering, Wuhan 430033, ChinaA marine condenser with exhausted steam as the working fluid is researched in this paper. Constructal designs of the condenser are numerically conducted based on single and multi-objective optimizations, respectively. In the single objective optimization, there is an optimal dimensionless tube diameter leading to the minimum total pumping power required by the condenser. After constructal optimization, the total pumping power is decreased by 42.3%. In addition, with the increase in mass flow rate of the steam and heat transfer area and the decrease in total heat transfer rate, the minimum total pumping power required by the condenser decreases. In the multi-objective optimization, the Pareto optimal set of the entropy generation rate and total pumping power is gained. The optimal results gained by three decision methods in the Pareto optimal set and single objective optimizations are compared by the deviation index. The optimal construct gained by the TOPSIS decision method corresponding to the smallest deviation index is recommended in the optimal design of the condenser. These research ideas can also be used to design other heat transfer devices.https://www.mdpi.com/1996-1073/14/17/5545constructal theorymarine condenserpumping powerentropy generation ratemulti-objective optimizationgeneralized thermodynamic optimization |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Huijun Feng Wei Tang Lingen Chen Junchao Shi Zhixiang Wu |
spellingShingle |
Huijun Feng Wei Tang Lingen Chen Junchao Shi Zhixiang Wu Multi-Objective Constructal Optimization for Marine Condensers Energies constructal theory marine condenser pumping power entropy generation rate multi-objective optimization generalized thermodynamic optimization |
author_facet |
Huijun Feng Wei Tang Lingen Chen Junchao Shi Zhixiang Wu |
author_sort |
Huijun Feng |
title |
Multi-Objective Constructal Optimization for Marine Condensers |
title_short |
Multi-Objective Constructal Optimization for Marine Condensers |
title_full |
Multi-Objective Constructal Optimization for Marine Condensers |
title_fullStr |
Multi-Objective Constructal Optimization for Marine Condensers |
title_full_unstemmed |
Multi-Objective Constructal Optimization for Marine Condensers |
title_sort |
multi-objective constructal optimization for marine condensers |
publisher |
MDPI AG |
series |
Energies |
issn |
1996-1073 |
publishDate |
2021-09-01 |
description |
A marine condenser with exhausted steam as the working fluid is researched in this paper. Constructal designs of the condenser are numerically conducted based on single and multi-objective optimizations, respectively. In the single objective optimization, there is an optimal dimensionless tube diameter leading to the minimum total pumping power required by the condenser. After constructal optimization, the total pumping power is decreased by 42.3%. In addition, with the increase in mass flow rate of the steam and heat transfer area and the decrease in total heat transfer rate, the minimum total pumping power required by the condenser decreases. In the multi-objective optimization, the Pareto optimal set of the entropy generation rate and total pumping power is gained. The optimal results gained by three decision methods in the Pareto optimal set and single objective optimizations are compared by the deviation index. The optimal construct gained by the TOPSIS decision method corresponding to the smallest deviation index is recommended in the optimal design of the condenser. These research ideas can also be used to design other heat transfer devices. |
topic |
constructal theory marine condenser pumping power entropy generation rate multi-objective optimization generalized thermodynamic optimization |
url |
https://www.mdpi.com/1996-1073/14/17/5545 |
work_keys_str_mv |
AT huijunfeng multiobjectiveconstructaloptimizationformarinecondensers AT weitang multiobjectiveconstructaloptimizationformarinecondensers AT lingenchen multiobjectiveconstructaloptimizationformarinecondensers AT junchaoshi multiobjectiveconstructaloptimizationformarinecondensers AT zhixiangwu multiobjectiveconstructaloptimizationformarinecondensers |
_version_ |
1717760400841244672 |