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Harvesting electrical energy from torsional thermal actuation driven by natural convection

机译:从自然对流驱动的扭转热驱动中收集电能

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摘要

The development of practical, cost-effective systems for the conversion of low-grade waste heat to electrical energy is an important area of renewable energy research. We here demonstrate a thermal energy harvester that is driven by the small temperature fluctuations provided by natural convection. This harvester uses coiled yarn artificial muscles, comprising well-aligned shape memory polyurethane (SMPU) microfibers, to convert thermal energy to torsional mechanical energy, which is then electromagnetically converted to electrical energy. Temperature fluctuations in a yarn muscle, having a maximum hot-to-cold temperature difference of about 13 °C, were used to spin a magnetic rotor to a peak torsional rotation speed of 3,000 rpm. The electromagnetic energy generator converted the torsional energy to electrical energy, thereby producing an oscillating output voltage of up to 0.81 V and peak power of 4 W/kg, based on SMPU mass.
机译:为将低等级废热转化为电能而开发实用,具有成本效益的系统是可再生能源研究的重要领域。我们在这里展示了一种热能收集器,该热能收集器由自然对流提供的微小温度波动驱动。该收割机使用包括良好排列的形状记忆聚氨酯(SMPU)超细纤维的卷曲纱线人造肌肉,将热能转换为扭转机械能,然后再将其电磁转换为电能。纱线肌肉的温度波动具有最大的热-冷温度差约13 C,用于使磁转子旋转至3,000 rpm的峰值扭转转速。电磁能量发生器将扭转能量转换为电能,从而基于SMPU质量产生高达0.81 0.8V的振荡输出电压和4 W / kg的峰值功率。

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