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Influence of inclined wall self-shading strategy on office building heat gain and energy performance in hot humid climate of Malaysia

机译:炎热潮湿气候下斜墙自遮蔽策略对办公楼热量获取和能源绩效的影响

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摘要

External shading geometry on buildings has been found to contribute substantially to reducing energy consumption for cooling. This study examines the effect of inclined wall self-shading strategy on heat gain in an office building. Field measurement of environmental variables such as ambient temperature, relative humidity, dew point, and wet bulb temperature was carried out in a case study inclined wall self-shading office building located in Putrajaya, Malaysia. The results of the validation of ApacheSim simulation software tool against the measured environmental variables indicated significant reliability having Pearson correlations ranging from 0.56 to 0.90. In establishing the relationship between different inclined wall strategies to the amount of heat gain, modification of the inclined wall self-shading projection (SSP) was modelled and experimented using ApacheSim simulation. Findings from the analysis revealed a relationship between heat gains into a building space and self-shading projection (SSP), as heat gains tend to reduce with increased SSP. From the findings, the optimum inclination angle of self-shading for effective heat gain reduction is based on a 45% self-shading projection. The application of inclined wall self-shading strategy in buildings would, therefore, bring about a reduction in heat gain, which invariably reduces energy consumption for cooling.
机译:已经发现建筑物上的外部阴影几何形状对减少冷却能耗大有贡献。这项研究探讨了斜墙自遮蔽策略对办公楼热量获取的影响。在位于马来西亚布城的一栋倾斜墙自遮蔽办公大楼的案例研究中,对环境变量(例如环境温度,相对湿度,露点和湿球温度)进行了现场测量。针对测得的环境变量对ApacheSim仿真软件工具进行验证的结果表明,皮尔森相关性介于0.56至0.90之间,具有显着的可靠性。在建立不同的斜墙策略与热量获取之间的关系时,对斜墙自阴影投影(SSP)的修改进行了建模,并使用ApacheSim仿真进行了实验。分析的结果表明,进入建筑物空间的热量增加与自阴影投影(SSP)之间的关系,因为随着SSP的增加,热量增加趋于减少。根据发现,有效降低热增益的自阴影最佳倾斜角度基于45%的自阴影投影。因此,在建筑物中应用倾斜墙自遮蔽策略会导致热量增加的减少,从而始终减少冷却的能耗。

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