VALIDATION OF DESIGNBUILDER SIMULATION ACCURACY USING FIELD MEASURED DATA OF INDOOR AIR TEMPERATURE IN A CLASSROOM BUILDING

Habu Yusuf Abba, R. A. Abdul Majid, Muhammad Hamdan Ahmed, Olutobi G. Ayegbusi
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Abstract

Studies have shown that a very wide range of parameters affect thermal comfort of building occupants. Heat transfer through the roofs has been identified as one of the causes of overheating in building interiors. Building Performance Simulation tools can be used to determine appropriate roof design parameters with optimum thermal performance in tropical climates like Nigeria. However, ensuring the reliability of the simulation results is essential for both occupants and designers. Therefore, this study seeks to verify and validate the accuracy of simulation results of DesignBuilder as a simulation tool for the present research works on roof thermal performance. The study primarily focuses on the impact of roof design on the air temperature in the indoor learning environment. Validation is examined by comparing the measured daily indoor air temperature of Kofar Wambai Secondary School Classroom, Bauchi city data and the simulation results. Comparative analysis indicate that the % deviation of field measured and simulated results for the tested days (18th and 21st September, 2018) were 2.39% and 1.25% respectively. The R2 results indicated 99% and 75% correlation between the simulated and measured indoor temperature on the tested days.These results agreed with the recommendations of a study by (Andelkovic et al, 2016) which reported that the marginal value of R2 for measurements and simulations validation is R2 ≥ 75%. Therefore, DesignBuilder can be employed to evaluate roof thermal performance as well as predict indoor air temperature of classroom buildings.
利用教室室内温度实测数据验证设计人员模拟的准确性
研究表明,影响建筑居住者热舒适的参数非常广泛。通过屋顶的热量传递已被确定为建筑物内部过热的原因之一。建筑性能模拟工具可用于确定在尼日利亚等热带气候条件下具有最佳热性能的适当屋顶设计参数。然而,确保仿真结果的可靠性对于居住者和设计者来说都是至关重要的。因此,本研究旨在验证和验证DesignBuilder作为当前屋顶热性能研究工作的模拟工具的模拟结果的准确性。本研究主要关注屋顶设计对室内学习环境空气温度的影响。通过比较科法尔万拜中学教室日室内温度实测数据和包奇市室内温度模拟结果,验证了模型的有效性。对比分析表明,试验日(2018年9月18日和21日)现场实测结果与模拟结果的偏差%分别为2.39%和1.25%。R2结果表明,在测试日,模拟室内温度与实测值之间的相关性为99%和75%。这些结果与(Andelkovic et al ., 2016)的研究建议一致,该研究报告测量和模拟验证的R2边际值为R2≥75%。因此,可以使用DesignBuilder来评估屋顶热工性能,并预测教室建筑的室内空气温度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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