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Parametric Study of Environmental Conditions on The Energy Harvesting Efficiency for The Multifunctional Composite Structures

机译:对多功能复合结构能量采集效率的环境条件参数研究

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摘要

This paper presents a parametric study of the efficacy of an integrated vibration energy harvesting device under the environmental condition representative of an offshore wind turbine. A multifunctional glass fibre composite with an integrated Micro Fibre Composite (MFC) energy harvesting device was tested by swept sine vibration under environmental conditions that ranged from -40 degrees C to 70 degrees C in temperature and 10%RH to 90%RH in humidity in order to characterise the sensitivity and dependence of energy harvesting on environmental conditions. Experimental vibration testing was complemented with theoretical analysis to investigate the relative contributions to the temperature dependence of energy harvesting. This included mechanical properties of the stiffness and strength of the cantilever structure and the electrical properties of the MFC transducer, including its dielectric constants and charge coefficients. An inverse proportionality was observed between the magnitude of harvested energy and the climatic temperature. The efficiency of energy harvesting was dominated by the stiffness of the cantilever, which displayed viscoelastic temperature dependence. The sample was also tested with a vibration profile obtained from a wind turbine in order to validate the temperature influence under typical service conditions. Numerical modal analysis was used to determine the shapes of resonance modes, the frequencies of which were temperature dependent. Humidity was observed to have a secondary influence on energy harvesting, with no significant short-term effect on the structural properties of the samples within the limits of the experimental method.
机译:本文介绍了在近海风力涡轮机的环境条件下集成振动能量收集装置的效果的参数研究。具有集成的微纤维复合物(MFC)能量收集装置的多功能玻璃纤维复合材料通过扫过的环境条件下,在温度为-40℃至70摄氏度,在湿度下为90%RH至90%RH为了表征能量收集对环境条件的灵敏度和依赖性。实验振动测试与理论分析补充说,研究能量收集的温度依赖性的相对贡献。这包括悬臂结构的刚度和强度的力学性能和MFC换能器的电性能,包括其介电常数和电荷系数。在收获的能量和气候温度的幅度之间观察到逆比例。能量收集效率由悬臂的刚度为主,展示粘弹性温度依赖性。还使用从风力涡轮机获得的振动曲线测试样品,以便在典型的服务条件下验证温度影响。数值模态分析用于确定共振模式的形状,其频率为温度依赖性。观察到湿度对能量收集具有次要影响,对实验方法的限制内的样品的结构性质没有显着的短期影响。

著录项

  • 来源
    《Composite Structures》 |2021年第1期|112979.1-112979.9|共9页
  • 作者单位

    Univ Chester Chester Smart Composites Grp Chester Cheshire England;

    Univ Warwick Warwick Mfg Grp Coventry W Midlands England;

    Aston Univ Mech Engn & Design Birmingham W Midlands England;

    Univ Chester Chester Smart Composites Grp Chester Cheshire England;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Multifunctional composite structure; Energy harvesting; MFC;

    机译:多功能复合结构;能量收集;MFC;

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