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Experimental monitoring and post-occupancy evaluation of a non-domestic solar building in the central region of Argentina

机译:阿根廷中部地区非住宅太阳能建筑物的实验性监测和占用后评估

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Previous experience in designing and monitoring bioclimatic buildings in central Argentina suggests that their thermal behavior is a matter of concern and that further research is needed. Thus, the objectives of this work are: to describe the design and the post-occupancy evaluation of a new non-domestic solar building in a continental semiarid region of central Argentina (37 degrees 38' latitude S, 63 degrees 34' longitude, 175 m above sea level), to analyze the building's hygrothermal and energy performance, and to estimate the PMV and PPD. The design guidelines were: to minimize the consumption of conventional energy in thermal-lighting conditioning, to use traditional technology, to maximize the thermal comfort, and to reach an extra-cost lower than 10%. The post-occupancy monitoring of the building was performed along one complete year (August 9th 2011-August 18th 2012). Data-loggers were installed in each functional area to sense the indoor temperature and relative humidity at time steps of 10 min. A meteorological station was installed near the building. The experimental results showed that during winter the average temperature in the areas of permanent use was 203 degrees C (average outdoor temperature: 10.1 degrees C) and the heating energy consumption was around 73.5 kW h/m(2). During summer the average indoor temperature in the building was 26.9 degrees C, 1.7 degrees C below the outdoor temperature average (28.6 degrees C); cooling systems were turned on when the indoor temperature reached 28 degrees C, at approximately 11:30 AM, when the outdoor air temperature exceeded 30 degrees C. Mechanical cooling consumed around 59% of the daily electricity consumption. The PDD results obtained for winter and summer representative days meet the requirements of ISO Norm 7730. Heating and cooling energy saving was around 63% and 76.5% respectively. The monitoring showed that the thermal behavior and energy performance met the expectations of both designers and users, and it is considered satisfactory and promising for low-energy consumption buildings. (C) 2015 Elsevier B.V. All rights reserved.
机译:阿根廷中部生物气候建筑的设计和监控经验表明,其热行为值得关注,需要进一步研究。因此,这项工作的目标是:描述阿根廷中部大陆半干旱地区(北纬37度,东经63度34',南纬175度)的新非家庭太阳能建筑的设计和使用后评估米),以分析建筑物的湿热和能源性能,并估算PMV和PPD。设计准则是:最大限度地减少热照明条件下传统能源的消耗,使用传统技术,最大化热舒适度,并达到低于10%的额外成本。整整一年(2011年8月9日至2012年8月18日)对建筑物进行了占用后监测。数据记录器安装在每个功能区域,以10分钟的时间步长感测室内温度和相对湿度。大楼附近安装了一个气象站。实验结果表明,在冬季,永久使用区域的平均温度为203摄氏度(室外平均温度:10.1摄氏度),加热能量消耗约为73.5 kW h / m(2)。在夏季,建筑物的室内平均温度为26.9摄氏度,比室外平均温度(28.6摄氏度)低1.7摄氏度;当室内温度在大约11:30 AM达到室外温度超过30摄氏度时,在室内温度达到28摄氏度时,打开​​了冷却系统。机械冷却消耗的电量约为每日用电量的59%。冬季和夏季代表日获得的PDD结果符合ISO规范7730的要求。供暖和制冷节能分别约为63%和76.5%。监测表明,热行为和能源性能满足了设计者和用户的期望,并且被认为对于低能耗建筑是令人满意的和有希望的。 (C)2015 Elsevier B.V.保留所有权利。

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