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Natures Buildings as Trees: Biologically Inspired Glass as an Energy System

机译:自然建筑如树:生物启发的玻璃作为能源系统

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The adaptive capacity in creating intelligent glass surfaces will be investigated using the principles of solar absorbance and active fluidic conductivity management as an energy system. To act as a thermal adsorption layer by applying bio-logically inspired engineering aims, of capture in enabling thermal transfer and control to regulate material composition. The creation of an adaptive cooling layer, by responsive measures to mirror our eco-systems through the employment of programmable self-awareness measures to regulate solar adsorption. These strategies for adaptation could enable the transformation of tall buildings, from mere material entities to mimic the intelligent surfaces of trees. Nature’s eco-systems are living multi-functional mechanical information systems of chemical composition forming hierarchical structures. They have the ability to learn and adapt to changing climatic circumstance by self-regulation of solar adsorption, to achieve material thermal management. These programmable controls of adaptive material performance change in relationship to solar capture. Could this be harnessed to exploit the functionalities and behavior of materials on the surfaces of buildings to act as an energy system, by the application of bio-logically inspired engineering aims: 1) Material absorbency: thermal conductivity adsorption of solar irradiance. 2) Adaptive real-time performance: material autonomy.
机译:将使用太阳吸收和主动流体传导性管理(作为能量系统)的原理来研究创建智能玻璃表面的适应能力。通过应用受生物学启发的工程目标充当热吸附层,在实现热传递和控制以控制材料成分方面进行捕获。通过采用可编程的自我意识措施来调节太阳吸收,通过响应措施来镜像我们的生态系统,从而创建自适应冷却层。这些适应策略可以使高层建筑从单纯的物质实体转变为模仿树木的智能表面。大自然的生态系统是活生生的多功能化学信息系统,其化学成分构成了层次结构。他们具有通过自我调节太阳吸收来学习和适应气候变化的能力,从而实现材料的热管理。这些自适应材料性能的可编程控件随太阳捕获的关系而变化。通过应用受生物学启发的工程目标,是否可以利用它来利用建筑物表面材料的功能和行为来充当能源系统:1)材料吸收性:太阳辐射的热导率吸收。 2)自适应实时性能:材料自主性。

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