论文标题

从影响带电荷表面的滴剂发电

Electric generation from drops impacting onto charged surfaces

论文作者

Wu, Hao, Mendel, Niels, Ende, Dirk van den, Zhou, Guofu, Mugele, Frieder

论文摘要

液体滴在固体表面上的影响导致定向滴运动的动能转化为各种形式的能量,包括表面能,振动能,热以及在适当条件下的电能。近年来,后者引起了极大的关注,因为它可能直接从随机环境流中转化能量,例如在海上降雨,喷雾和波动运动到电能。尽管这种能量收割机的众多配置发明了,但基本的物理原理和最佳操作条件仍然难以捉摸。在这封信中,我们使用高速电流和视频成像测量的组合来开发无参数的定量描述,以实现优化电极配置的能量收集过程。一种新型的电解辅助电荷注入方法EWCI可实现高度稳定的表面电荷和稳健的能量转换,几个月,创纪录的效率超过了初始动能的2.5%。

The impact of liquid drops onto solid surfaces leads to conversion of kinetic energy of directed drop motion into various forms of energy including surface energy, vibrational energy, heat, and under suitable conditions, electrical energy. The latter has attracted substantial attention in recent years for its potential to directly convert energy from random environmental flows such as rainfall, spray, and wave motion on the sea to electrical energy. Despite the invention of numerous configurations of such energy harvesters, the underlying physical principles and optimum operation conditions have remained elusive. In this letter, we use a combination of high-speed electrical current and video imaging measurements to develop a parameter-free quantitative description of the energy harvesting process for an optimized electrode configuration. A novel electrowetting-assisted charge injection method, EWCI, enables highly stable surface charges and robust energy conversion for several months with record efficiencies exceeding 2.5 percent of the initial kinetic energy.

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