Performance Assessment of a Piezoelectric Vibration Energy Harvester for Hybrid Excitation with Varying Cross Sections

被引:0
|
作者
Ambrożkiewicz, Bartlomiej [1 ]
Czyż, Zbigniew [2 ]
Pakrashi, Vikram [3 ]
Anczarski, Jakub [4 ]
Stączek, Pawel [4 ]
Koszewnik, Andrzej [5 ]
Wendeker, Miroslaw [4 ]
Litak, Grzegorz [4 ]
机构
[1] Faculty of Mathematics and Information Technology, Lublin University of Technology, Nadbystrzycka 38, Lublin,20-618, Poland
[2] Faculty of Aviation, Polish Air Force University, Dywizjonu 303 Street No 35, Dęblin,08-521, Poland
[3] UCD Centre for Mechanics, School of Mechanical and Materials Engineering, D04, Dublin,V1W8, Ireland
[4] Faculty of Mechanical Engineering, Lublin University of Technology, 36, Lublin,20-618, Poland
[5] Faculty of Mechanical Engineering, Bialystok University of Technology, Wiejska 45C, Bialystok,15-351, Poland
基金
爱尔兰科学基金会;
关键词
Machine vibrations - Piezoelectric transducers - Vibration analysis;
D O I
10.3390/s24237629
中图分类号
学科分类号
摘要
This paper experimentally examines the influence of hybrid excitation on the performance of vibrational piezoelectric energy harvesting systems on a bluff body with a variable cross section along its generatrix. A combination of vibrational excitation from a shaker and airflow is considered the source from which energy is harvested. Varied excitation frequencies and airflow velocities across five different masses were considered, each defining the natural frequency of the system. The system’s performance in hybrid excitation, enhancements in energy harvesting, and challenges with these was observed, helping to determine optimal operating conditions to function effectively in ambient environments. The tests identified the conditions and ranges within which maximized harvesting responses were observed. Next, computational fluid dynamic (CFD) simulations were carried out to understand the impact of circular and square cross sections controlling the nature of the airflow and representative of the wide range of cross sections that may be utilized for such purposes. The analyses helped contextualize the opportunities and limitations of the use of such cross sections and helped in understanding if a transition from one cross section to another can lead to an assimilation of the advantages observed in using each cross section independently. © 2024 by the authors.
引用
收藏
相关论文
共 50 条
  • [21] Performance analysis and test of a piezoelectric energy harvester based on indirect excitation
    Wang S.-Y.
    Zhu Y.-N.
    Kan J.-W.
    Zhang Z.-H.
    Huang X.
    Hou L.-J.
    Zhendong Gongcheng Xuebao/Journal of Vibration Engineering, 2021, 34 (01): : 127 - 133
  • [22] Design of a piezoelectric-electromagnetic hybrid vibration energy harvester operating under ultra-low frequency excitation
    Song, Fang
    Xiong, Yuzhong
    MICROSYSTEM TECHNOLOGIES-MICRO-AND NANOSYSTEMS-INFORMATION STORAGE AND PROCESSING SYSTEMS, 2022, 28 (08): : 1785 - 1795
  • [23] Performance Analysis of a Three-DOF Piezoelectric Vibration Energy Harvester
    Guntur, Jalalu
    Raju, S. Srinivasulu
    Srikanth, M.
    Likhitha, J.
    Lekhana, D.
    JOURNAL OF POLYMER & COMPOSITES, 2023, 11 : S10 - S18
  • [24] Demonstration of the effect of piezoelectric polarization vector on the performance of a vibration energy harvester
    Gibert, James M.
    ACTIVE AND PASSIVE SMART STRUCTURES AND INTEGRATED SYSTEMS 2014, 2014, 9057
  • [25] Vibration performance analysis of magnetic coupling array piezoelectric energy harvester
    Zhang, Xu-Hui
    Zhu, Fu-Lin
    Pan, Jia-Nan
    Chen, Xiao-Yu
    Guo, Yan
    Xu, Heng-Tao
    Tian, Hao
    Zhendong Gongcheng Xuebao/Journal of Vibration Engineering, 2024, 37 (07): : 1191 - 1199
  • [26] Modeling and Analysis of a Piezoelectric Energy Harvester with Varying Cross-Sectional Area
    Rosa, Maiara
    De Marqui Junior, Carlos
    SHOCK AND VIBRATION, 2014, 2014
  • [27] Enhancement of vibration based piezoelectric energy harvester using hybrid optimization techniques
    P. Mangaiyarkarasi
    P. Lakshmi
    V. Sasrika
    Microsystem Technologies, 2019, 25 : 3791 - 3800
  • [28] Theoretical and experimental studies on piezoelectric-electromagnetic hybrid vibration energy harvester
    Deng, Licheng
    Wen, Zhiyu
    Zhao, Xingqiang
    MICROSYSTEM TECHNOLOGIES-MICRO-AND NANOSYSTEMS-INFORMATION STORAGE AND PROCESSING SYSTEMS, 2017, 23 (04): : 935 - 943
  • [29] Enhancement of vibration based piezoelectric energy harvester using hybrid optimization techniques
    Mangaiyarkarasi, P.
    Lakshmi, P.
    Sasrika, V
    MICROSYSTEM TECHNOLOGIES-MICRO-AND NANOSYSTEMS-INFORMATION STORAGE AND PROCESSING SYSTEMS, 2019, 25 (10): : 3791 - 3800
  • [30] Theoretical and experimental studies on piezoelectric-electromagnetic hybrid vibration energy harvester
    Licheng Deng
    Zhiyu Wen
    Xingqiang Zhao
    Microsystem Technologies, 2017, 23 : 935 - 943