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Optofluidic solar concentrators using electrowetting tracking: Concept, design, and characterization

机译:使用电润湿跟踪的光流体太阳能集中器:概念,设计和表征

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摘要

We introduce a novel optofluidic solar concentration system based on electrowetting tracking. With two immiscible fluids in a transparent cell, we can actively control the orientation of fluid-fluid interface via electrowetting. The naturally-formed meniscus between the two liquids can function as a dynamic optical prism for solar tracking and sunlight steering. An integrated optofluidic solar concentrator can be constructed from the liquid prism tracker in combination with a fixed and static optical condenser (Fresnel lens). Therefore, the liquid prisms can adaptively focus sunlight on a concentrating photovoltaic (CPV) cell sitting on the focus of the Fresnel lens as the sun moves. Because of the unique design, electrowetting tracking allows the concentrator to adaptively track both the daily and seasonal changes of the sun's orbit (dual-axis tracking) without bulky, expensive and inefficient mechanical moving parts. This approach can potentially reduce capital costs for CPV and increases operational efficiency by eliminating the power consumption of mechanical tracking. Importantly, the elimination of bulky tracking hardware and quiet operation will allow extensive residential deployment of concentrated solar power. In comparison with traditional silicon-based photovoltaic (PV) solar cells, the electrowetting-based self-tracking technology will generate ~70% more green energy with a 50% cost reduction.
机译:我们介绍了一种基于电润湿跟踪的新型光流太阳能集中系统。在透明池中有两种不混溶的流体,我们可以通过电润湿主动控制流体-流体界面的方向。两种液体之间自然形成的弯月面可以充当动态光学棱镜,用于太阳跟踪和日光转向。集成的光流体太阳能集中器可以由液体棱镜跟踪器与固定和静态光学聚光镜(菲涅耳透镜)组合而成。因此,随着太阳的移动,液体棱镜可以将阳光自适应地聚焦在聚光光伏(CPV)电池上,该电池位于菲涅尔透镜的焦点上。由于采用了独特的设计,电润湿跟踪使集中器能够自适应地跟踪太阳轨道的每日和季节性变化(双轴跟踪),而无需笨重,昂贵且效率低下的机械运动部件。通过消除机械跟踪的功耗,这种方法可以潜在地降低CPV的资本成本并提高运营效率。重要的是,消除了笨重的跟踪硬件和安静的操作,将允许在住宅中广泛部署集中式太阳能。与传统的硅基光伏(PV)太阳能电池相比,基于电润湿的自跟踪技术将产生约70%的绿色能源,而成本降低了50%。

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