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Modeling energy efficiency of bioclimatic buildings

机译:模拟生物气候建筑的能效

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The application of bioclimatic principles is a critical factor in reducing energy consumption and CO_2 emissions of the building sector. This paper develops a regression model of energy efficiency as a function of environmental conditions, building characteristics and passive solar technologies. A sample of 77 bioclimatic buildings (including 45 houses) was collected, covering Greece, other Mediterranean areas and the rest of Europe. Average energy efficiency varied from 19.6 to 100% with an average of about 68%. Environmental conditions included latitude, altitude, ambient temperature, degree days and sun hours; building characteristics consisted in building area and volume. Passive solar technologies included (among others) solar water heaters, shading, natural ventilation, greenhouses and thermal storage walls. Degree days and a dummy variable indicating location in the Mediterranean area were the strongest predictors of energy efficiency while taller and leaner buildings tended to be more energy efficient. Surprisingly, many passive technologies did not appear to make a difference on energy efficiency while thermal storage walls in fact seemed to decrease energy efficiency. The model developed may be of use to architects, engineers and policy makers. Suggestions for further research include obtaining more building information, investigating the effect of passive solar technologies and gathering information on the usage of building.
机译:生物气候原理的应用是减少建筑行业的能耗和CO_2排放的关键因素。本文根据环境条件,建筑特征和被动太阳能技术开发了能源效率的回归模型。收集了涵盖希腊,其他地中海地区和欧洲其他地区的77座生物气候建筑(包括45栋房屋)的样本。平均能效从19.6%到100%不等,平均约为68%。环境条件包括纬度,海拔,环境温度,日数和日照时间;建筑特征包括建筑面积和体积。被动太阳能技术包括(其中包括)太阳能热水器,遮阳,自然通风,温室和蓄热墙。度数天数和指示位于地中海地区位置的虚拟变量是能源效率的最强预测指标,而较高和较矮的建筑往往更节能。令人惊讶的是,许多被动技术似乎并未对能源效率产生影响,而储热墙实际上似乎在降低能源效率。开发的模型可能对建筑师,工程师和政策制定者有用。进一步研究的建议包括获取更多的建筑物信息,调查无源太阳能技术的效果以及收集有关建筑物用途的信息。

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