Nature-Inspired Structures Applied in Heat Transfer Enhancement and Drag Reduction

Heat exchangers are general equipment for energy exchange in the industrial field. Enhancing the heat transfer of a heat exchanger with low pump energy consumption is beneficial to the maximum utilization of energy. The optimization design for enhanced heat transfer structure is an effective method...

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Main Authors: Zhangyu Zhu, Juan Li, Hao Peng, Dongren Liu
Format: Article
Language:English
Published: MDPI AG 2021-06-01
Series:Micromachines
Subjects:
Online Access:https://www.mdpi.com/2072-666X/12/6/656
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spelling doaj-d96b51d9de4b41b78bd9b4b03e1c292c2021-06-30T23:10:53ZengMDPI AGMicromachines2072-666X2021-06-011265665610.3390/mi12060656Nature-Inspired Structures Applied in Heat Transfer Enhancement and Drag ReductionZhangyu Zhu0Juan Li1Hao Peng2Dongren Liu3School of Mechanical and Electrical Engineering, Nanjing Forestry University, 159 Long Pan Road, Nanjing 210037, ChinaSchool of Mechanical and Electrical Engineering, Nanjing Forestry University, 159 Long Pan Road, Nanjing 210037, ChinaSchool of Mechanical and Power Engineering, Nanjing Tech University, 30 South Pu Zhu Road, Nanjing 211816, ChinaMechanical Engineering College, Yangzhou University, 88 South University Ave., Yangzhou 225009, ChinaHeat exchangers are general equipment for energy exchange in the industrial field. Enhancing the heat transfer of a heat exchanger with low pump energy consumption is beneficial to the maximum utilization of energy. The optimization design for enhanced heat transfer structure is an effective method to improve the heat transfer coefficient. Present research shows that the biomimetic structures applied in different equipment could enhance heat transfer and reduce flow resistance significantly. Firstly, six biomimetic structures including the fractal-tree-like structure, conical column structure, hybrid wetting structure, scale structure, concave-convex structure and superhydrophobic micro-nano structure were summarized in this paper. The biomimetic structure characteristics and heat transfer enhancement and drag reduction mechanisms were analyzed. Secondly, four processing methods including photolithography, nanoimprinting, femtosecond laser processing and 3D printing were introduced as the reference of biomimetic structure machining. Finally, according to the systemic summary of the research review, the prospect of biomimetic heat transfer structure optimization was proposed.https://www.mdpi.com/2072-666X/12/6/656biomimetic structureheat transfer enhancementdrag reductionoptimal designheat exchanger
collection DOAJ
language English
format Article
sources DOAJ
author Zhangyu Zhu
Juan Li
Hao Peng
Dongren Liu
spellingShingle Zhangyu Zhu
Juan Li
Hao Peng
Dongren Liu
Nature-Inspired Structures Applied in Heat Transfer Enhancement and Drag Reduction
Micromachines
biomimetic structure
heat transfer enhancement
drag reduction
optimal design
heat exchanger
author_facet Zhangyu Zhu
Juan Li
Hao Peng
Dongren Liu
author_sort Zhangyu Zhu
title Nature-Inspired Structures Applied in Heat Transfer Enhancement and Drag Reduction
title_short Nature-Inspired Structures Applied in Heat Transfer Enhancement and Drag Reduction
title_full Nature-Inspired Structures Applied in Heat Transfer Enhancement and Drag Reduction
title_fullStr Nature-Inspired Structures Applied in Heat Transfer Enhancement and Drag Reduction
title_full_unstemmed Nature-Inspired Structures Applied in Heat Transfer Enhancement and Drag Reduction
title_sort nature-inspired structures applied in heat transfer enhancement and drag reduction
publisher MDPI AG
series Micromachines
issn 2072-666X
publishDate 2021-06-01
description Heat exchangers are general equipment for energy exchange in the industrial field. Enhancing the heat transfer of a heat exchanger with low pump energy consumption is beneficial to the maximum utilization of energy. The optimization design for enhanced heat transfer structure is an effective method to improve the heat transfer coefficient. Present research shows that the biomimetic structures applied in different equipment could enhance heat transfer and reduce flow resistance significantly. Firstly, six biomimetic structures including the fractal-tree-like structure, conical column structure, hybrid wetting structure, scale structure, concave-convex structure and superhydrophobic micro-nano structure were summarized in this paper. The biomimetic structure characteristics and heat transfer enhancement and drag reduction mechanisms were analyzed. Secondly, four processing methods including photolithography, nanoimprinting, femtosecond laser processing and 3D printing were introduced as the reference of biomimetic structure machining. Finally, according to the systemic summary of the research review, the prospect of biomimetic heat transfer structure optimization was proposed.
topic biomimetic structure
heat transfer enhancement
drag reduction
optimal design
heat exchanger
url https://www.mdpi.com/2072-666X/12/6/656
work_keys_str_mv AT zhangyuzhu natureinspiredstructuresappliedinheattransferenhancementanddragreduction
AT juanli natureinspiredstructuresappliedinheattransferenhancementanddragreduction
AT haopeng natureinspiredstructuresappliedinheattransferenhancementanddragreduction
AT dongrenliu natureinspiredstructuresappliedinheattransferenhancementanddragreduction
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