生态伞:伞的原型开发作为太阳能和风能的收割机

P. Khoury, Y. Saadeh, Charbel Azzi, Samer Bu Jawdeh, R. Hamade
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引用次数: 1

摘要

熟悉的雨伞被重新设计,从可再生能源中收集电力,从而产生了生态伞。采用了几种工程技术:翅片设计的空气动力学,电源管理的机电一体化,热电和太阳能薄膜的材料,布局的CAD和人体舒适的传热。其结果是一个可持续的设计,能够收集太阳能和风能,并转化为电能,为个人携带它的利益。在多风的气候,生态伞旋转凭借一个轻型涡轮机,导致旋转的测力计。太阳能薄膜被塑造成伞状结构,具有高效的能量转换(10%-20%取决于条件)。产生的电力通过电源管理系统输送,该系统能够1)为可充电电池充电,为便携式电子设备的其他电池充电,以及/或2)在热(冷)天通过吹冷(热)空气提供个人热舒适。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Eco-Brella: prototype development of the umbrella as harvester of solar and wind energies
The familiar umbrella has been redesigned for power harvesting from renewable energy sources resulting in the Eco-Brella . Several engineering technologies are utilised: aerodynamics for fin design, mechatronics for power management, materials for thermoelectric and solar film, CAD for the layout, and heat transfer for human comfort. The result is a sustainable design capable of harvesting both solar and wind energies which are converted into electric power for the benefit of the individual carrying it. In windy climates, the Eco-Brella rotates by virtue of a light turbine which causes rotation of a dynamometer. Solar film is shaped into an umbrella-like configuration with efficient power conversion (10%–20% depending on conditions). Generated power is channeled through power management system capable of 1) charging a rechargeable battery from which other batteries of portable electronic devices are charged and/or 2) providing personal thermal comfort by blowing cool (hot) air on hot (cold) days.
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