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A Novel Hexagonal Beam Steering Electrowetting Device for Solar Energy Concentration

机译:用于太阳能集中的新型六边形光束转向电润湿装置

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摘要

Traditional tracking devices for solar energy applications have several disadvantages, such as bulky mechanical structure, large wind loads, and ease of misalignment. This study aims to design a flat, thin, and adaptive beam steering device to eliminate these drawbacks. A proof of concept device was fabricated to demonstrate this design. The novelty of the proof of concept device is the hexagonal structure of the electrowetting cell design. The hexagonal cell was dosed with two immiscible liquids with different refractive indices. The hypothesis of this design is that by deforming the liquid shape with the application of voltage, light can be steered and concentrated for solar energy applications. A maximum contact angle change of 44° was observed with the application of 26 V to one of the electrodes of the hexagonal cell. The device demonstrated a 4.5° change of laser beam path with only a 0.2 refractive index difference of the liquids. The 3D simulation model developed in this study shows that a tilted and flat interface can be achieved using higher dielectric constant dielectric materials. The device can facilitate the planer steering and concentration of sunlight for rooftop applications without moving mechanical parts.
机译:用于太阳能应用的传统跟踪装置具有若干缺点,如庞大的机械结构,大风力载荷,并且易于未对准。本研究旨在设计一个平坦,薄的和自适应的梁转向装置,以消除这些缺点。制造了概念设备证明以演示这种设计。概念装置证明的新颖性是电润湿细胞设计的六边形结构。用两个不混溶的液体给出六边形细胞,具有不同的折射率。这种设计的假设是通过在施加电压的施加时使液体形状变形,可以对光线转向并集中用于太阳能应用。使用26V施加到六边形细胞的一个电极中,观察到44°的最大接触角变化。该装置展示了4.5°的激光束路径的变化,仅具有0.2折射率差的液体。本研究开发的3D模拟模型表明,可以使用更高介电常数介电材料实现倾斜和平面界面。该装置可以促进刨花的刨升和浓度,用于屋顶应用而不移动机械部件。

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