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Examining a numerical model validity for performance evaluation of a prototype solar oriented Double skin Facade: Estimating the technical potential for energy saving

机译:检查模型有效性,用于绩效评估的原型太阳定向双皮外观:估算节能技术潜力

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摘要

Peak loads in Iran's national electrical grid are always appear during summers days where a significant part of them is due to cooling systems in the buildings. In this paper a prototype Double Skin Facade (DSF) integrated into a Double Glazed Window (DGW) has been designed and retrofitted to increase the efficiency of the cooling system of a typical sunshine oriented office room. Temperature profiles on inner and outer surfaces of this office have been recorded before and after implementing this energy saving method. On the other hand, a numerical simulation was developed in order to model the behavior of the system where the inputs of the model are environmental parameters such as solar irradiation, wind velocity and ambient air temperature. The simulated model was fully validated by implementing a local experimental setup. In this research, experimental temperature profiles are compared to the model based ones to evaluate the numerical model's validity. By employing the final prediction errors the results show a good agreement between model and profiles. From energy saving point of view, thermo-graphical images showed that the designed system has the ability to save 0.27-0.42 kWhth/m(2)/day, by decreasing the air conditioning inlet temperature between 4 and 6 degrees C in summer days. Integration of the proposed DSF system into the buildings in suitable conditions, would potentially provide a nation-wide electricity consumption reduction up to 4283039.4 MWh alongside with its positive environmental benefits during hot season.
机译:伊朗国家电网的峰值负荷始终出现在夏季的日子,其中重要的部分是由于建筑物中的冷却系统。在本文中,设计和改装了集成在双层玻璃窗口(DGW)中的原型双皮外立面(DSF),以提高典型的阳光照相办公室的冷却系统的效率。在实现这种节能方法之前和之后,在该办公室内和外表面上的温度曲线已经记录。另一方面,开发了数值模拟,以便模拟模型输入的系统的行为是环境参数,例如太阳照射,风速和环境空气温度。通过实现本地实验设置完全验证模拟模型。在该研究中,将实验温度分布与基于模型的型号进行比较,以评估数值模型的有效性。通过采用最终预测错误,结果显示了模型和配置文件之间的良好一致性。从节能的角度来看,热图形图像显示,设计的系统能够通过减少夏季的4至6摄氏度之间的空调入口温度来节省0.27-0.42 kWhth / m(2)/天。拟议的DSF系统在合适的条件下将拟议的DSF系统集成到建筑物中,可能会在炎热季节的积极环境效益以及其积极的环境效益中提供全国范围的电力消耗。

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