Niu Jiaqing, Hu Ribin, Li Ming, Zhang Luying, Xu Bei, Zhang Yaqi, Luo Yi, Ding Jiang, Duan Qingshan
School of Mechanical Engineering, Guangxi University, Nanning 530004, China.
Beijing Key Laboratory of Micro-Nano Energy and Sensor, Center for High-Entropy Energy and Systems, Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Sciences, Beijing 101400, China.
Micromachines (Basel). 2025 Jul 8;16(7):795. doi: 10.3390/mi16070795.
High-efficiency wind energy collection and precise wind vector monitoring are crucial for sustainable energy applications, smart agriculture, and environmental management. A novel multi-layered triboelectric-electromagnetic hybrid generator (TEHG) for broadband wind energy collection and wind vector monitoring was built. The TEHG comprises three functional layers corresponding to three modules: a soft-contact rotary triboelectric nanogenerator (S-TEHG), an electromagnetic generator (EMG), and eight flow-induced vibration triboelectric nanogenerators (F-TENGs), which are arranged in a circular array to enable low-wind-speed energy harvesting and multi-directional wind vector monitoring. The TEHG achieves broadband energy harvesting and demonstrates exceptional stability, maintaining a consistent electrical output after 3 h of continuous operation. The EMG charges a 1 mF capacitor to 1.5 V 738 times faster than conventional methods by a boost converter. The TEHG operates for 17.5 s to power a thermohygrometer for 103 s, achieving an average output power of 1.87 W with a power density of 11.2 W/m, demonstrating an exceptional power supply capability. The F-TENGs can accurately determine the wind direction, with a wind speed detection error below 4.5%. This innovative structure leverages the strengths of both EMG and TENG technologies, offering a durable, multifunctional solution for sustainable energy and intelligent environmental sensing.
高效风能收集和精确风矢量监测对于可持续能源应用、智能农业和环境管理至关重要。构建了一种用于宽带风能收集和风矢量监测的新型多层摩擦电-电磁混合发电机(TEHG)。TEHG由对应于三个模块的三个功能层组成:一个软接触旋转摩擦纳米发电机(S-TEHG)、一个电磁发电机(EMG)和八个流致振动摩擦纳米发电机(F-TENG),它们以圆形阵列排列,以实现低风速能量收集和多方向风矢量监测。TEHG实现了宽带能量收集,并表现出卓越的稳定性,在连续运行3小时后保持一致的电输出。通过升压转换器,EMG为一个1 mF的电容器充电至1.5 V的速度比传统方法快738倍。TEHG运行17.5秒为一个温湿度计供电103秒,平均输出功率为1.87 W,功率密度为11.2 W/m,展示了卓越的供电能力。F-TENG可以准确确定风向,风速检测误差低于4.5%。这种创新结构利用了EMG和TENG技术的优势,为可持续能源和智能环境传感提供了一种耐用的多功能解决方案。