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Is it fundamental to model the inter-building effect for reliable building energy simulations? Interaction with shading systems

机译:模拟可靠的建筑能量模拟的建筑间效果的基础是什么?与着色系统的互动

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摘要

In recent times, the inter-building effect has been deeply investigated because it can highly affect building energy performance. Thus, reliable energy simulations of a single building can require to model the effects of surrounding buildings. This can imply complex models, and consequently high computational burden. The study aims at investigating such phenomena with suitable simplifications by keeping high reliability. Two typical buildings of European cities, located in South Italy, are investigated with building models developed using DesignBuilder (R) and EnergyPlus. Dynamic energy simulations are performed by using different modeling approaches: detailed modeling, different shading systems, different shading setpoints, no shading, no inter-building effect and the combination no shading and no inter-building effect (simplest model). For each approach different simulation timesteps are considered. The coupling between EnergyPlus and MATLAB (R) is implemented for a comprehensive comparison of the performance indicators provided by the different approaches. The main goal is to identify the models that ensure the best tradeoff between accuracy and computational burden as well as to verify if these latter can reliably replace the most detailed model. The tradeoff models provide - compared to the most detailed one - mean bias error around 2% and reductions in simulation times around 46%, which can be considered an excellent tradeoff. Finally, the study proposes insights into building modeling to answer the question: Is it fundamental to model the inter-building effect for reliable energy simulations?
机译:最近,建筑间效果已经深入研究,因为它可以影响建筑能量性能。因此,单个建筑的可靠能量模拟可能需要为周围建筑物的效果进行建模。这可能意味着复杂的模型,从而大的计算负担。该研究旨在通过保持高可靠性来调查具有适当简化的这种现象。位于南意大利的两座欧洲城市的典型建筑,并使用使用DesignBuilder(R)和EnergyPlus开发的建筑模型进行了调查。通过使用不同的建模方法执行动态能量模拟:详细建模,不同的阴影系统,不同的阴影设定点,没有阴影,没有建设间效果,也没有组合没有阴影,没有建设间效果(最简单的模型)。对于每个方法,考虑不同的模拟时间。能量支放和MATLAB(R)之间的耦合实现,以全面比较不同方法提供的性能指标。主要目标是识别确保准确性和计算负担之间最佳权衡的模型,并验证这些后者是否可以可靠地替换最详细的模型。权衡模型提供 - 与最详细的一个平均偏差误差相比为2%,并在仿真时间减少约46%,这可以被认为是出色的权衡。最后,该研究提出了对建筑建模的见解,以回答问题:是模拟可靠能量模拟的建筑间效果的根本吗?

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