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Bionic Photovoltaic Panels Bio-Inspired by Green Leaves
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作者 MatthiasZhr Dennis Friedrich +2 位作者 Tania Y.Kloth Gerhard Goldmann Helmut Tributsch 《Journal of Bionic Engineering》 SCIE EI CSCD 2010年第3期284-293,共10页
In strong solar light, silicon solar panels can heat up by 70℃ and, thereby, loose approximately one third of their efficiencyfor electricity generation. Leaf structures of plants on the other hand, have developed a ... In strong solar light, silicon solar panels can heat up by 70℃ and, thereby, loose approximately one third of their efficiencyfor electricity generation. Leaf structures of plants on the other hand, have developed a series of technological adaptations,which allow them to limit their temperature to 40-45℃ in full sunlight, even if water evaporation is suppressed. This is accomplishedby several strategies such as limitation of leaf size, optimization of aerodynamics in wind, limitation of absorbedsolar energy only to the useful fraction of radiation and by efficient thermal emission. Optical and infrared thermographicmeasurements under a solar simulator and in a streaming channel were used to investigate the corresponding properties of leavesand to identify suitable bionic model systems. Experiments started with the serrated structure of ordinary green leaves distributedover typical twig structures and finally identified the Australian palm tree Licuala ramsayi as a more useful bionic model. Itcombines a large area for solar energy harvesting with optimized aerodynamic properties for cooling and is able to restructureitself as a protection against strong winds. The bionic models, which were constructed and built, are analyzed and discussed. 展开更多
关键词 BIONICS photovoltaic panel green leaves heat control licuala ramsayi
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珍稀植物毛花轴榈的开发利用
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作者 骆文华 《中国野生植物资源》 2007年第6期20-22,共3页
为了有效地保护和利用我国的珍稀野生植物资源,对珍稀濒危植物毛花轴榈的形态特征、分布、繁殖栽培及适应性进行了介绍,并对其在园林上的应用进行了探讨。认为毛花轴榈是优良的庭园绿化和室内观赏植物,值得推广应用。
关键词 园林植物 毛花轴榈 繁殖栽培 开发利用
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