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A micro solar heater for portable energy generation

机译:用于便携式能量发电的微太阳能加热器

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摘要

This study presents a new concept that combines microtechnology with solar thermal energy to provide a free portable energy source. A water-methanol mixture flows through an array of parallel microchannels which are fabricated into a silicon matrix using conventional micro-fabrication techniques. A vacuum layer is interposed between the channels and the external surface to thermally insulate the channels from the ambient temperature. A selective coating is deposited on one of the vacuum walls to absorb the short wavelength incoming radiation and reduce the long wavelength radiation, hence reducing the heat losses. A geometry and material optimization is still being developed in order to obtain the highest possible efficiency for the micro-heater, while keeping a low pressure drop in the micro-channels. The methanol outlet temperature is predicted to be higher than 250°C. This temperature is required for hydrogen production in a methanol reforming micro-reactor. Therefore, it is envisaged that the micro-solar heater will supply the thermal energy needed for hydrogen generation, that can later be used as fuel for microfuel cells. Both technologies can be integrated in a portable device.
机译:本研究提出了一种新的概念,将微技术与太阳能热能结合起来,以提供自由的便携式能源。水 - 甲醇混合物流过一系列并联微通道,使用常规微制造技术制造成硅基矩阵。真空层插入在通道和外表面之间,以从环境温度中热绝缘通道。在一个真空壁上沉积选择性涂层,以吸收短波长的辐射并减小长波长辐射,因此降低了热损失。仍在开发几何和材料优化,以便获得微加热器的最高效率,同时在微通道中保持低压下降。预测甲醇出口温度高于250℃。甲醇重整微反应器中的氢生产需要该温度。因此,设想微太阳能加热器将提供氢气产生所需的热能,以后可以用作微膳细胞的燃料。这两种技术都可以集成在便携式设备中。

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