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A parametric building energy simulation case study on the potential and limitations of passive design in the Mediterranean climate of Malta

机译:马耳他地中海气候中被动设计潜力和局限性的参数化建筑能耗模拟案例研究

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The present case study sets out to investigate the potential and limitations of passive building design in a typical Mediterranean climate. The Maltese Islands were taken as the case study location. Assuming a fully detached, cuboid-shaped, generic multi-storey office building, one representative storey was modelled by means of the building energy simulation code WUFI Plus. Thermal comfort was analysed based on the adaptive acceptable operative room temperature concept of EN 15251 for buildings without mechanical cooling systems. Assuming neither artificial heating nor cooling, the free-running operative room temperature was evaluated. By means of a parametric study, the robustness of the concept was analysed and the impact of orientation, window to wall area ratio, glazing, shading, thermal insulation, nighttime ventilation and thermal mass on the achievable level of thermal comfort is shown and discussed. It is concluded that in a well-designed building and by means of decent insulation (present case: U_(wall)=0.54W/(m~2 · K)), double glazing, variable external shading devices and passive cooling by nighttime ventilation, a high level of thermal comfort is achievable in this climate using only very minor amounts of energy for artificial heating and cooling or possibly even none at all.
机译:本案例研究着手研究典型地中海气候中被动式建筑设计的潜力和局限性。以马耳他群岛为案例研究地点。假设一个完全分离的长方体形通用多层办公楼,则通过建筑能耗模拟代码WUFI Plus对一个代表楼层进行建模。基于EN 15251的适应性可接受的工作室内温度概念,对不带机械冷却系统的建筑物进行热舒适性分析。假设既不进行人工加热也不进行冷却,则对自由运行的室温进行了评估。通过参数研究,分析了该概念的稳健性,并显示并讨论了方向,窗与墙的面积比,玻璃,遮阳,隔热,夜间通风和热质量对可达到的热舒适度的影响。结论是,在设计合理的建筑物中,并通过适当的隔热(当前情况:U_(wall)= 0.54W /(m〜2·K)),双层玻璃,可变的外部遮阳装置和夜间通风进行被动冷却在这种气候下,仅使用极少量的能量进行人工加热和冷却,甚至根本不使用任何能量,就可以实现高水平的热舒适性。

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