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On the uncertainty assessment of incident direct solar radiation on building facades due to shading devices

机译:关于遮阳装置导致建筑物外墙入射太阳直射的不确定性评估

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摘要

The area of projected shadow on building facades may play a role of paramount importance in the prediction of solar energy conversion and building thermal and energy performance. Algorithms for solar shading calculations may directly affect the accuracy of results obtained by building energy simulation tools. In addition, the consideration of uncertain design parameters imply an estimative of a confidence interval of solar fraction results that determine the reliability as well as the improvement of shading calculation models. In this way, this paper presents a methodology for uncertainty and sensitivity analysis applied to the prediction of sunlit area on building exterior surfaces with shading devices. From a single building model, the solar fraction was investigated for two cities and four typical days. According to the obtained results, more than 20% of all simulation time steps have uncertainties equal or higher than 5% on the solar fraction calculation at 95% confidence level. The maximum values of the uncertainties occur in warmer months, which could significantly impact the building energy balance. Three inputs have higher influence on the uncertainties on solar fraction results: (1) latitude, (2) orientation and (3) width of over-hang fins. Perturbation of only 5 degrees on the building orientation may imply important uncertainties on solar fraction, which is normally neglected by designers. The results highlight the importance of assessing the uncertainty of inputs in algorithms such as the one to calculate the surface solar fraction that is an important prerequisite of the final building energy balance. (C) 2016 Elsevier B.V. All rights reserved.
机译:建筑立面上的投影阴影区域可能在预测太阳能转换以及建筑热能性能方面发挥着至关重要的作用。遮阳计算的算法可能直接影响通过建筑能源模拟工具获得的结果的准确性。此外,对不确定设计参数的考虑意味着对太阳分数结果的置信区间的估计,该结果确定了可靠性以及阴影计算模型的改进。通过这种方式,本文提出了一种用于不确定性和灵敏度分析的方法,该方法适用于带有遮阳设备的建筑物外表面上的日照区域的预测。从单个建筑模型中,研究了两个城市和四个典型日的太阳能比例。根据获得的结果,在95%置信度下,在太阳分数计算中,所有模拟时间步长中的20%以上具有不确定性,等于或大于5%。不确定性的最大值出现在温暖的月份,这可能会严重影响建筑的能量平衡。三个输入对太阳分数结果的不确定性有更高的影响:(1)纬度,(2)方向和(3)悬垂鳍的宽度。在建筑物方向上仅摄氏5度的扰动可能暗示着太阳能比例的重要不确定性,通常设计人员会忽略这些不确定性。结果强调了评估算法输入不确定性的重要性,例如计算表面太阳分数的算法,这是最终建筑能量平衡的重要前提。 (C)2016 Elsevier B.V.保留所有权利。

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