设计热电发生器(TEG)作为绿豆发芽的替代电源

Rancang Bangun, Thermoelectric Generator, Sebagai Suplai, D. alternatif, Germinasi Kacang, Hijau Imron Ridzki, Asfari Hariz, Santoso, A. W. A. S. W. an, Wijaya Kusuma
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引用次数: 0

摘要

中央政府制定了国家能源政策(KEN),到 2025 年将可再生能源(EBT)的利用率提高约 23%,到 2050 年提高 31%。为了支持政府的这一计划,研究人员开发了一种热电发电机(TEG)作为替代电源,以取代绿豆发芽过程中使用的照明灯、风扇和水泵等电气设备的能源来源。该原型由两个室组成:一个是产生电能的燃烧室,另一个是用于发芽过程的控制室。这两个区域是分开的,以确保控制装置和发芽过程不受燃烧产生的热量的影响。该原型的主要组件包括十个最大功率为 5.2 W 的 TEG 单元、一个 33 Ah 电池、一个 8A 降压-升压转换器、一个 3A 降压转换器、一个 6W 全光谱 LED、四个直流风扇和一个直流泵。随着发芽过程的顺利进行,TEG 有效地发挥了作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rancang Bangun Thermoelectric Generator (TEG) Sebagai Suplai Daya Alternatif Germinasi Kacang Hijau
The central government has established the National Energy Policy (KEN) to increase the utilization of renewable energy sources (EBT) by around 23% by 2025 and 31% by 2050. In an effort to support the government's program, researchers have developed a Thermoelectric Generator (TEG) as an alternative power supply to replace the energy source from PT PLN for electrical equipment used in the green bean germination process such as lights, fans, and water pumps. This prototype consists of two chambers: a combustion chamber that generates electrical energy and a control room for the germination process. These two areas are separated to ensure that the control device and germination process are not affected by the heat from combustion. The main components of this prototype include ten TEG units with a maximum power of 5.2 W, a 33 Ah battery, an 8A Buck-boost converter, a 3A Buck converter, a 6W Full Spectrum LED, four DC fans, and a DC pump. The TEG functions effectively as the germination process proceeds smoothly.
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