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Design of a Sustainable System for Harvesting Energy from Humans, Based on the Piezoelectric Effect in Places of High Mobilization of People

机译:基于人民高动员的压电效应,对人类收获能量的可持续系统设计

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The present project seeks to design a novel sustainable energy generation system at a University taking advantage of non-conventional renewable energy that can be obtained from humans using piezoelectric tiles. This idea came up from the opportunity to use human movement as a source of energy due to the great flow of people on campus, that's why the aim of this project was to analyze their characteristics to design the distribution of the tiles on the floor in such a way that the greatest amount of energy can be obtained. The method was based in the anthropometrical and biomechanical profiling of the population in order to quantify the potential energy that could be obtained through the movement of people when they activate the piezoelectric product, located and distributed in the place that will be identified as the area with the greatest possibility of energy generation. The tiles proposed for the final design are composed of 80% recyclable materials, which shows that it is an environmental-friendly product. As a result, it was obtained that when a woman with a weight of 48,88 kg (5 percentile) activates a tile produce a power of 4,83 W and a man with a weight of 93,94 kg (95 percentile) produce 9,67 W. The selection procedure of the piezoelectric system configuration was designed using the methodology of the hierarchical process analysis - HPA. The project also contributes to mitigate the environmental impact and the costs of current energy sources from the university. If the piezoelectric tiles were installed as indicated by the final configuration in the main traffic path obtained in the analysis of this project, 84.478 kg of CO_2 could be saved in the case of producing the minimum energy which is 424.517 kWh and 169.133 kg of CO_2 saved in the case of producing the maximum energy corresponding to 849.913 kWh.
机译:目前的项目寻求在大学设计新的可持续能源发电系统,利用使用压电瓷砖的人类可以从人类获得的非传统可再生能源。由于校园里的人们的巨大流动,这一想法来自使用人类运动作为能量的源泉,这就是为什么这个项目的目的是分析他们的特征来设计在这些地板上的地板上的瓷砖的分布可以获得最大能量的方式。该方法基于人口的人类测量和生物力学分析,以量化通过人们激活压电产品,位于和分布在将被识别为该区域的地区时,可以通过人们移动获得的潜在能量。能源产生的最大可能性。为最终设计提出的瓷砖由80%的可回收材料组成,表明它是一种环保产品。结果,获得重量为48,88千克(5百分位数)的女性激活瓷砖,产生4,83瓦的动力,重量为93,94千克(95百分位数)产生的人9,67 W.使用分层过程分析的方法 - HPA的方法设计了压电系统配置的选择过程。该项目还有助于减轻大学的环境影响和当前能源的成本。如果压电砖安装如在该项目的分析中获得的主要交通路径中的最终配置所示,则在生产最小能量的情况下,可以保存84.478千克的CO_2,该CO_2为424.517千瓦时和169.133千克的CO_2在产生对应于849.913千瓦时的最大能量的情况下。

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