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Model Simplification on Energy and Comfort Simulation Analysis for Residential Building Design in Hot and Arid Climate

机译:岩土气候居住建筑设计能量和舒适仿真分析模型简化

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摘要

Accurate building physics performance analysis requires time-consuming, detailed modeling, and calculation time requirement. This paper evaluates the impact of model simplifications on thermal and visual comfort as well as energy performance. In the framework of dynamic zonal thermal simulation, a case study of a residential building in hot climate is investigated. A detailed model is created and simplified through four scenarios, by incrementally reducing the number of thermal zones from modeling every space as a separate zone to modeling the building as a single zone. The differences of total energy and comfort performance in the detailed and simplified models are analyzed to evaluate the grade of the simplifications' accuracy. The results indicate that all simplification scenarios present a marginal average deviation in total energy demand and thermal comfort by less than 20%. Combining rooms with similar thermal features into a zone presents the optimal scenario, while the worst scenario is the single-zone model. Results showed that thermal zone merging as a simulation simplification method has its limitations as well, whereas a too intensive simplification can lead to undesired error rates. The method is well applicable in further early-stage design and development tasks, specifically in large-scale projects.
机译:精确的建筑物理性能分析需要耗时,详细的建模和计算时间要求。本文评估了模型简化对热视觉舒适度以及能源性能的影响。在动态区热仿真框架中,研究了热气候中住宅建筑的案例研究。通过四种情况创建和简化了一个详细的模型,通过逐步减少了热区域的数量,将每个空间建模为单独区域,以将构建建模为单个区域。分析了详细和简化模型中总能量和舒适性能的差异,以评估简化准确性的等级。结果表明,所有简化情景都呈现了总能量需求的边际平均偏差,热舒适度小于20%。将具有类似热特征的房间结合到区域中具有最佳场景,而最糟糕的情况是单区域模型。结果表明,作为模拟简化方法的热区合并也有其限制,而过度密集的简化可能导致不希望的错误率。该方法很好地适用于进一步的早期设计和开发任务,特别是在大型项目中。

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