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Predicting air temperatures in a naturally ventilated nearly zero energy building: Calibration, validation, analysis and approaches

机译:预测天然通风的近零能量建设中的空气温度:校准,验证,分析和方法

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摘要

As the cooling energy demand in buildings is set to increase dramatically in the future, the exploitation of passive solutions like natural ventilation could prove vital in reducing the reliance on mechanical systems. Models that can predict air temperature accurately in naturally ventilated mode are key to understanding the potential of natural ventilation now and in the future. This article presents a simulation based case study of a retrofitted nearly zero energy test-bed university building, in naturally ventilated mode only. The study had three aims: (1) calibration and validation of a whole building energy model, (2) a comparative analysis of occupancy schedules and opening control strategies, and (3) a comparison of researcher and practitioner approaches. Results showed the detailed building model was capable of predicting room level air temperature with a low level of error (0.27 degrees C = 5 RMSE = 1.50 degrees C) that was well within the limits of existing calibration standards (MBE +/- 10%, CVRMSE 20%). The comparative analysis highlighted the need to consider occupancy schedules that have a wide range of diversity, and opening control strategies that reflect the manual and automated relationship in natural ventilation systems. The approach comparison highlighted that both practitioner and researcher approaches to simulating both occupancy schedules and opening control strategies showed similar levels of performance for the application considered. The paper also provides recommendations for those modelling air temperatures and thermal comfort in nearly zero energy buildings.
机译:由于建筑物中的冷却能源需求被设定为在未来急剧增加,因此对自然通风等被动解决方案的开采可以证明对降低对机械系统的依赖性至关重要。可以在天然通风模式中精确地预测空气温度的模型是了解现在和将来的自然通风潜力的关键。本文介绍了基于模拟的基于模拟的近零能量测试床大学建筑,仅适用于自然通风模式。该研究有三个目的:(1)整个建筑能源模型的校准和验证,(2)占用时间表和开放控制策略的比较分析,以及(3)研究人员和从业者方法的比较。结果表明,详细的建筑模型能够以低误差水平(0.27摄氏度<= 1.50℃)预测房间水平的空气温度,这在现有校准标准的限制范围内(MBE +/- 10 %,cvrmse <20%)。比较分析强调了需要考虑具有广泛多样性的入住时间表,以及反映自然通风系统中手动和自动关系的开放控制策略。该方法的比较突出显示,从业者和研究人员来模拟占用时间表和开放控制策略的方法显示出类似的应用程序的性能水平。本文还提供了近零能量建筑的那些对空气温度和热舒适性的建议。

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