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Thermal design of a modern, two floor, zero energy house in a desert compound

机译:现代,两层楼,零能量屋在沙漠化合物中的热设计

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The paper presents a thermal analysis and design of a fully equipped, air-conditioned, zero energy house located in a desert compound at 24.5° latitude. Unlike previous designs the home is two floors high, which makes the balancing of energy supply and demand even more challenging. The roof of the house carries an array of retractable Photovoltaic modules and cover. During day light hours the modules convert the incident sun energy into useful electrical power, while shielding the roof from direct sun-radiation. At night time, the roof cover and modules are retracted to expose the roof to the cool night-sky, thus enhancing cooling. The paper employs time-dependent modeling of Solar input and heat transfer to predict the roof, wall and window temperature distributions and cooling loads, as well as energy generated by the modules. With the aid of battery storage, the modules provide the entire energy needs of the house. The paper displays the results of energy balances for three key days of the year which demonstrate that the proposed two floor design is indeed capable of operating without external energy.
机译:本文介绍了位于沙漠化合物的齐全,空调的零能量房的热分析和设计,在24.5°纬度。与以前的设计不同,家庭是两个楼层高,这使得能量供应的平衡和需求更具挑战性。房屋的屋顶带有一系列可伸缩的光伏模块和盖子。在一天亮时,模块将入射的太阳能转换为有用的电力,同时屏蔽屋顶免于阳光辐射。在夜间,屋顶盖板和模块缩回以使屋顶暴露在凉爽的夜空中,从而提高冷却。本文采用时间依赖的太阳能输入和传热模型,以预测屋顶,墙壁和窗口温度分布和冷却负载,以及由模块产生的能量。借助电池存储,模块提供了房屋的整个能量需求。本文显示了今年三个关键日子的能量余额结果表明,所提出的两层设计确实能够在没有外部能量的情况下运行。

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