可再生能源
物理
能量收集
工作(物理)
能量(信号处理)
发电
摩擦电效应
可扩展性
能量转换
能源消耗
波浪能
能量流
功率(物理)
电
工程物理
可用能量
海洋能源
能源
电气工程
风力发电
能量密度
航空航天工程
电势能
能源工程
钥匙(锁)
新兴技术
系统工程
储能
电信
电流(流体)
能源开发
新能源
作者
Fucheng Zhang,Peijian Zhou,Xiao Liu,Yanzhao Wu,Zhifeng Yao,Zhouqian Miao
摘要
Over the past two decades, significant growth in global energy consumption has driven the exploration of clean and renewable energy sources, among which ocean wave energy stands out as a vast and largely untapped resource. In addition to traditional electromagnetic generators, triboelectric nanogenerators and piezoelectric power generation technologies have emerged as viable options for low-frequency wave energy harvesting. This review demonstrates that bio-inspired designs substantially improve energy conversion performance, with representative cases achieving up to 30%–40% enhancement in capture factor or several-fold increases in power density over conventional counterparts. By categorizing and quantitatively analyzing bio-inspired wave energy harvesting devices into four types—bio-inspired electromagnetic, triboelectric, piezoelectric, and hybrid systems—this work not only summarizes the current state-of-the-art but also critically assesses key performance metrics, identifies persistent challenges in scalability and durability, and outlines future research directions. The quantitative analysis presented in this review underscores the significant potential of bio-inspired strategies in advancing wave energy harvesting toward practical and competitive renewable energy solutions.
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