Efficiency of energy-generating tiles with different types of multipliers

S. Arhun, A. Hnatov, Pavlo Sokhin
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Abstract

Problem. With the urgent need for sustainable and renewable energy solutions, the integration of energy-harvesting technologies in urban infrastructure has become a focal point of innovation. Energy-generating tiles, transforming pedestrian movement into electricity, offer a viable path forward. Yet, their efficiency hinges on the internal design, particularly the type of multipliers used. Goal. This study aims to assess and compare the efficiency of energy-generating tiles equipped with helical and straight-cut gear multipliers, to identify the optimal design for maximizing energy conversion in urban environments. Methodology. An experimental setup was created to test prototypes of the energy-generating tiles under controlled foot traffic conditions. The study measured and analyzed the electrical output and efficiency of tiles with both types of gear multipliers, simulating real pedestrian traffic scenarios. Results. Energy-generating tiles featuring straight-cut gears outperformed those with helical gears in energy output and conversion efficiency. The research also illuminated the influence of pedestrian dynamics, like step force and frequency, on tile performance. Originality. This research advances renewable energy technology by offering a comprehensive analysis of energy-generating tile efficiency with different gear multipliers. It introduces an innovative method for evaluating tile performance, underscoring the significance of gear design in energy conversion. Practical value. The findings have considerable implications for sustainable urban development, suggesting that implementing energy-generating tiles in areas with high foot traffic could significantly enhance urban renewable energy sources. This study not only guides the design of more efficient energy-harvesting tiles but also encourages their broader adoption, supporting urban sustainability goals and the reduction of carbon emissions.
不同类型倍增器的发电瓦的效率
问题。随着对可持续和可再生能源解决方案的迫切需求,在城市基础设施中集成能源收集技术已成为创新的焦点。将行人的运动转化为电能的发电地砖提供了一条可行的发展道路。然而,其效率取决于内部设计,特别是所使用的乘法器类型。目标本研究旨在评估和比较配备螺旋齿轮和直切齿轮乘法器的发电地砖的效率,以确定在城市环境中实现最大能量转换的最佳设计。方法。建立了一个实验装置,在受控的人流条件下测试发电地砖的原型。研究模拟了真实的行人交通场景,测量并分析了带有两种齿轮倍增器的瓷砖的电力输出和效率。研究结果采用直切齿轮的发电瓷砖在能量输出和转换效率方面均优于采用螺旋齿轮的发电瓷砖。研究还揭示了行人动态对瓷砖性能的影响,如踏步力和频率。独创性。这项研究通过全面分析不同齿轮乘数的瓦片发电效率,推动了可再生能源技术的发展。它引入了一种评估瓦性能的创新方法,强调了齿轮设计在能量转换中的重要性。研究结果对城市的可持续发展具有重要意义,表明在人流量大的地区使用发电瓷砖可以显著提高城市可再生能源的利用率。这项研究不仅为设计更高效的能源收集地砖提供了指导,还鼓励更广泛地采用这种地砖,从而支持城市可持续发展目标和减少碳排放。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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