Vibration energy harvesting from an array of flexible stalks exposed to airflow: a theoretical study

被引:7
|
作者
Gardonio, P. [1 ]
Zilletti, M. [2 ]
机构
[1] Univ Udine, DPIA Via Sci 208, I-33100 Udine, Italy
[2] Univ Southampton Highfield, ISVR, Southampton SO17 1BJ, Hants, England
基金
英国工程与自然科学研究理事会;
关键词
vibration energy harvesting; mode veering; mode localisation; flow-induced vibration energy harvesting; Honami; dynamics of waving stalks; spectral model of waving stalks; TURBULENCE; LOCALIZATION; GENERATOR; STATE; WIND;
D O I
10.1088/0964-1726/25/3/035014
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
This paper investigates the vibration energy harvesting of a system formed by an array of identical artificial flexible stalks connected by equal axial springs. The stalks are excited in bending by the propagating eddies produced by a mixing layer airflow at the top end of the canopy. The energy harvesting is localised in one pivotal stalk, which is equipped with a harvester. The paper first contrasts the spectra of the energy harvested by this system and by a classical system, formed by an equal array of mechanically uncoupled beams, which are all equipped with harvesters. Since the proposed system forms a periodic structure, this analysis considers variations of the stiffness of the harvesting stalk and of the connecting springs, which may lead to natural frequencies veering and mode localisation effects. Finally, the paper presents a parametric study that highlights how the bending stiffness of the harvesting stalk, the axial stiffness of the connecting springs and the energy absorption coefficient of the harvester influence the energy extraction. The study shows that, particularly in presence of strongly correlated drag force excitations produced on the stalks by the airflow, the energy harvested with the proposed system with a single harvester is comparable to that of a more complex and more expensive system formed by a whole array of harvesters.
引用
收藏
页数:15
相关论文
共 50 条
  • [1] A piezoelectric energy harvesting from the vibration of the airflow around a moving vehicle
    Akkaya Oy, Sibel
    INTERNATIONAL TRANSACTIONS ON ELECTRICAL ENERGY SYSTEMS, 2020, 30 (12)
  • [2] Vibration energy harvesting using the Halbach array
    Zhu, Dibin
    Beeby, Steve
    Tudor, John
    Harris, Nick
    SMART MATERIALS AND STRUCTURES, 2012, 21 (07)
  • [3] Piezoelectric vibration energy harvesting from airflow in HVAC (Heating Ventilation and Air Conditioning) systems
    Gkoumas, Konstantinos
    Petrini, Francesco
    Bontempi, Franco
    X INTERNATIONAL CONFERENCE ON STRUCTURAL DYNAMICS (EURODYN 2017), 2017, 199 : 3444 - 3449
  • [4] Operating Energy Harvesting Array at Higher Vibration Modes
    Li, Yuejuan
    Cheng, Marvin H.
    Chen, Cheng-Yi
    PROCEEDINGS OF THE 2ND INTERNATIONAL CONFERENCE ON INTELLIGENT TECHNOLOGIES AND ENGINEERING SYSTEMS (ICITES2013), 2014, 293 : 1201 - 1207
  • [5] Vibration energy harvesting enhancement of a plate interacting with subsonic airflow in a narrow gap
    Qiao, Yu
    Yao, Guo
    INTERNATIONAL JOURNAL OF NON-LINEAR MECHANICS, 2023, 153
  • [6] Analysis of an array of flexoelectric layered nanobeams for vibration energy harvesting
    Wang, K. F.
    Wang, B. L.
    Zeng, S.
    COMPOSITE STRUCTURES, 2018, 187 : 48 - 57
  • [7] Vibration Energy Harvesting Using a Piezoelectric Circular Diaphragm Array
    Wang, Wei
    Yang, Tongqing
    Chen, Xurui
    Yao, Xi
    IEEE TRANSACTIONS ON ULTRASONICS FERROELECTRICS AND FREQUENCY CONTROL, 2012, 59 (09) : 2022 - 2026
  • [8] Vibration energy harvesting using piezoelectric circular diaphragm array
    Wang, Wei
    Yang, Tongqing
    Chen, Xurui
    Yao, Xi
    Zhou, Qifa
    2011 INTERNATIONAL SYMPOSIUM ON APPLICATIONS OF FERROELECTRICS (ISAF/PFM) AND 2011 INTERNATIONAL SYMPOSIUM ON PIEZORESPONSE FORCE MICROSCOPY AND NANOSCALE PHENOMENA IN POLAR MATERIALS, 2011,
  • [9] A MEMS Piezoelectric Cantilever Beam Array for Vibration Energy Harvesting
    Zhao, Xingqiang
    Wen, Zhiyu
    Deng, Licheng
    Luo, Guoxi
    Shang, Zhengguo
    Li, Dongling
    MICRO-NANO TECHNOLOGY XIV, PTS 1-4, 2013, 562-565 : 1052 - 1057
  • [10] On energy harvesting from ambient vibration
    Stephen, NG
    JOURNAL OF SOUND AND VIBRATION, 2006, 293 (1-2) : 409 - 425