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Sensitivity analysis of a maritime located night ventilated library building

机译:海上夜间通风图书馆大楼的敏感性分析

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An examination of the role of design and operational parameters in a night ventilated library building located in Ireland, and which is subject to a maritime type climate, is considered. For this investigation, a self-contained space within the library building is analysed. A dynamic model of the space is created using the ESPr simulation package, which is compared with building data obtained from an experimental monitoring programme. Calculation of the mean bias deviation between the predicted and experimental data indicates agreement better than 0.45℃ for the dry bulb temperature and 1.1℃ for the mean radiant temperature. Using ESPr predictions, the role of different building design and operational parameters are examined by means of parametric analysis including building mass, ventilation duration, internal gain and ventilation rates. Compared to a reference base of the existing building, increasing the building mass was found to achieve a significant reduction in internal dry resultant temperatures, with a decrease of between 2 and 3℃ observed when mass was increased from 800 kg/m~2 to 1600 kg/m~2. Reducing building internal gains from 40 W/m~2 to 20 W/m~2 was observed to have the potential of further reducing dry resultant temperatures by up to 1℃. Examination of night ventilation rates indicated that increasing night ventilation up to 10 ACH was observed to have a significant affect on reduction of dry resultant temperature, but further increases of air changes were observed to have a negligible effect.
机译:考虑对设在爱尔兰的夜间通风图书馆建筑物中的设计和操作参数的作用进行检查,该建筑物受海洋气候影响。为了进行此调查,分析了图书馆大楼内的一个独立空间。使用ESPr仿真包创建空间的动态模型,并将其与从实验监控程序获得的建筑数据进行比较。预测数据和实验数据之间的平均偏差偏差的计算表明,干球温度的一致性优于0.45℃,辐射平均温度的一致性优于1.1℃。使用ESPr预测,可通过参数分析(包括建筑质量,通风时间,内部增益和通风率)来检查不同建筑物设计和运行参数的作用。与现有建筑物的参考基础相比,增加建筑物的质量可以显着降低内部干燥合成温度,当质量从800 kg / m〜2增加到1600时,温度可以降低2-3℃公斤/米〜2。观察到建筑物内部增益从40 W / m〜2降低到20 W / m〜2有可能进一步将干燥的合成温度降低多达1℃。夜间通风率的检查表明,观察到夜间通风量增加至10 ACH对降低干燥的合成温度有显着影响,但观察到空气变化的进一步增加对效果却微不足道。

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