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Design of a Climate Adaptable Solar Energy system using biomimetic inspiration from a lichen symbiosis

机译:利用地衣共生的仿生灵感设计气候适应型太阳能系统

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Designing energy systems that are adaptable and provide undisturbed service in different climate conditions is an essential challenge for sustainable design. This project involves the design and construction of a Climate Adaptable Solar Energy (CASE) System that aims to address the performance reduction due to changing environmental conditions. The CASE System is a biomimetic design, inspired by lichen, and applies biological concepts of protection and energy conversion to achieve adaptability. Symbiotic organisms of fungus and algae within lichen organisms exhibit environmental adaptability through close integration, thus living as a single organism. DSSCs were implemented as the driving mechanisms for harnessing energy for the system from the sun, just as algae performs in lichen. Dye-sensitized solar cells (DSSCs), which currently convert up to 15 percent of solar energy into electrical energy, are cheaper to manufacture than traditional photovoltaic systems, offer greater mechanical durability, and are a rising competitor for the current solar energy system market. Since the DSSCs were commercially unavailable, the DSSCs were assembled from core components contained in a kit. Additional pieces of the CASE System were designed and manufactured to perform functions similar to a fungus in a lichen organism, by providing protection and temperature control to the DSSCs.
机译:设计适应性强的能源系统,并在不同的气候条件下提供不受干扰的服务是可持续设计的一项基本挑战。该项目涉及气候适应太阳能(CASE)系统的设计和构建,该系统旨在解决由于环境条件变化而导致的性能下降。 CASE系统是仿生设计,受到地衣的启发,并应用保护和能量转换的生物学概念来实现适应性。地衣生物内部的真菌和藻类共生生物通过紧密整合而表现出对环境的适应性,因此可以作为一个生物体生活。就像藻类在地衣中的表现一样,DSSC被用作驱动系统为太阳提供能量的驱动机制。染料敏化太阳能电池(DSSC)目前可将高达15%的太阳能转化为电能,与传统的光伏系统相比,制造成本更低,具有更高的机械耐用性,并且在当前的太阳能系统市场中是不断上升的竞争者。由于DSSC在市场上不可用,因此DSSC是从套件中包含的核心组件组装而成的。通过为DSSC提供保护和温度控制,可以设计和制造CASE系统的其他部件,以执行与地衣生物体中的真菌相似的功能。

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