Bionics · Rotating machinery · Non-smooth surface · Pit structure · Groove structure
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,"/> <h1 class="c-article-title" style="font-family:Georgia, Palatino, serif;font-size:1.875rem;font-weight:400;color:#333333;background-color:#FCFCFC;"> Bionics-Inspired Structure Boosts Drag and Noise Reduction of Rotating Machinery </h1>

Journal of Bionic Engineering ›› 2023, Vol. 20 ›› Issue (6): 2797-2813.doi: 10.1007/s42235-023-00404-3

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Bionics-Inspired Structure Boosts Drag and Noise Reduction of Rotating Machinery

Shengnan Tang1,4; Yong Zhu2,3,5,6; Shouqi Yuan3
  

  1. 1 Institute of Advanced Manufacturing and Modern EquipmentTechnology, Jiangsu University, Zhenjiang 212013, China 2 International Shipping Research Institute, GongQing Instituteof Science and Technology, Jiujiang 332020, China 3 National Research Center of Pumps, Jiangsu University,Zhenjiang 212013, Jiangsu, China 4 Saurer (Changzhou) Textile Machinery Co., Ltd,Changzhou 213200, China 5 Leo Group Co., Ltd, Wenling 317500, China 6 Wenling Fluid Machinery Technology Institute of JiangsuUniversity, Wenling 317525, China
  • 出版日期:2023-10-16 发布日期:2023-11-20
  • 通讯作者: Yong Zhu E-mail:zhuyong@ujs.edu.cn
  • 作者简介:Shengnan Tang1,4; Yong Zhu2,3,5,6; Shouqi Yuan3

Bionics-Inspired Structure Boosts Drag and Noise Reduction of Rotating Machinery

Shengnan Tang1,4; Yong Zhu2,3,5,6; Shouqi Yuan3 #br#   

  1. Institute of Advanced Manufacturing and Modern EquipmentTechnology, Jiangsu University, Zhenjiang 212013, China International Shipping Research Institute, GongQing Instituteof Science and Technology, Jiujiang 332020, China National Research Center of Pumps, Jiangsu University,Zhenjiang 212013, Jiangsu, China Saurer (Changzhou) Textile Machinery Co., Ltd,Changzhou 213200, China Leo Group Co., Ltd, Wenling 317500, China Wenling Fluid Machinery Technology Institute of JiangsuUniversity, Wenling 317525, China
  • Online:2023-10-16 Published:2023-11-20
  • Contact: Yong Zhu E-mail:zhuyong@ujs.edu.cn
  • About author:Shengnan Tang1,4; Yong Zhu2,3,5,6; Shouqi Yuan3

摘要: As a global concern, environmental protection and energy conservation have attracted significant attention. Due to the large carbon emission of electricity, promoting green and low-carbon transformation of the power industry via the synergistic development of clean energy sources is essential. Rotating machinery plays a crucial role in pumped storage, hydropower generation, and nuclear power generation. Inspired by bionics, non-smooth features of creatures in nature have been introduced into the structure design of efficient rotating machines. First, the concept and classification of bionics are described. Then, the representative applications of non-smooth surface bionic structures in rotating machineries are systematically and comprehensively reviewed, such as groove structure, pit structure, and other non-smooth surfaces. Finally, conclusions are drawn and future directions are presented. The effective design of a bionic structure contributes toward noise reduction, drag reduction and efficiency improvement of rotating machineries. Green and ecological rotating machinery will remarkably reduce energy consumption and contribute to the realization of the “double carbon” goal.

关键词: Bionics · Rotating machinery · Non-smooth surface · Pit structure · Groove structure
')">Bionics · Rotating machinery · Non-smooth surface · Pit structure · Groove structure

Abstract: As a global concern, environmental protection and energy conservation have attracted significant attention. Due to the large carbon emission of electricity, promoting green and low-carbon transformation of the power industry via the synergistic development of clean energy sources is essential. Rotating machinery plays a crucial role in pumped storage, hydropower generation, and nuclear power generation. Inspired by bionics, non-smooth features of creatures in nature have been introduced into the structure design of efficient rotating machines. First, the concept and classification of bionics are described. Then, the representative applications of non-smooth surface bionic structures in rotating machineries are systematically and comprehensively reviewed, such as groove structure, pit structure, and other non-smooth surfaces. Finally, conclusions are drawn and future directions are presented. The effective design of a bionic structure contributes toward noise reduction, drag reduction and efficiency improvement of rotating machineries. Green and ecological rotating machinery will remarkably reduce energy consumption and contribute to the realization of the “double carbon” goal.

Key words: Bionics · Rotating machinery · Non-smooth surface · Pit structure · Groove structure
')">Bionics · Rotating machinery · Non-smooth surface · Pit structure · Groove structure