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Thermal zoning and interzonal airflow in the design and simulation of solar houses:a sensitivity analysis

机译:太阳能房屋设计和仿真中的热分区和分区间气流:敏感性分析

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摘要

Many assumptions must be made about thermal zoning and interzonal airflow for modelling the performance of buildings. This is particularly important for solar homes, which are subjected to high levels of periodic solar heat gains in certain zones. The way in which these passive solar heat gains are distributed to other zones of a building has a significant effect on predicted energy performance, thermal comfort and optimal design selection. This article presents a comprehensive sensitivity analysis that quantifies the effect of thermal zoning and interzonal airflow on building performance, optimal south-facing glazing area, and thermal comfort. The effect of controlled shades to control unwanted solar gains is also explored. Results show that passive solar buildings, in particular, can benefit from increased air circulation with a forced air system because it allows solar gains to be redistributed and thus reduces direct gain zone overheating and total energy consumption.
机译:为了对建筑物的性能进行建模,必须对热分区和分区间气流做出许多假设。这对于在某些区域中遭受周期性高水平周期性太阳热能吸收的太阳能房屋尤为重要。这些被动的太阳热能散布到建筑物的其他区域的方式,对预测的能源性能,热舒适性和最佳的设计选择都有重要影响。本文提供了一项综合的灵敏度分析,可以量化热分区和分区间气流对建筑性能,最佳朝南玻璃窗面积和热舒适性的影响。还探讨了控制阴影以控制不必要的太阳能增益的效果。结果表明,被动式太阳能建筑尤其可以从强制通风系统中增加的空气流通中受益,因为它可以重新分配太阳能,从而减少直接增益区域的过热和总能耗。

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