利用热力释放锌屋顶,使用热电发电机作为可再生能源

Aby Elsa Putra, Rifky Rifky, Agus Fikri
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引用次数: 1

摘要

本研究是利用废热锌屋顶改造成电能的来源。锌余热利用采用TEC-12706型热电发生器将热能转化为电能,并通过转速为5m /s的风扇在寒冷地区保持低温的散热器。本研究采用锌、铝、亚克力制成的测试模拟工具进行。锌屋面余热利用试验从上午9点到下午15点,持续3天,所测参数为太阳辐射强度(Es)、空速(v)、电流(I)、功率(W)、温度(T),其中部分参数可在模拟试验系统工具中找到。从所进行的测试结果来看,最高效率值为0,00888%,最大发电量为0,0042 W。高强度的太阳辐射会影响环境的温度,从而也会对冷区散热器的温度产生影响,那么温差的数值也会受到影响。热阻值对系统也有影响,余热能能否转化为电能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pemanfaatan Panas Buang Atap Seng dengan Menggunakan Generator Termoelektrik sebagai Sumber Energi Listrik Terbarukan
This research was conducted to utilize waste heat energy zinc roof for a revamped into a source of electrical energy. Waste heat utilization of zinc using thermoelectric generator type of TEC-12706 to convert thermal energy into electrical energy and the fan with speed 5 m/s to hold a low temperature in a cold area of heatsink. This research was conducted using a test simulation tool made by zinc, aluminum and acrilic. Waste heat utilization of testing zinc roof done starting at 09.00 WIB until 15.00 WIB for 3 days, with some measured parameters required as the intensity of  solar radiation (Es), airspeed (v), current (I), power (W) and temperature (T) some of which are found in the system tools of simulation testing. From the results of testing performed, the value of the highest efficiency i.e. of 0,00888% and the largest electrical power generated in the amount of 0,0042 W. A high intensity of the solar radiation it will affect the temperature of the environment which will also have an effect on the temperature in the cold area of heatsink, then the value of the temperature difference will also be affected. Heat resistance value on the system also affects the value of the waste heat energy can be changed into electrical energy.
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