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Quantifying uncertainty in outdoor air flow control and its impacts on building performance simulation and fault detection

机译:量化室外气流控制中的不确定性及其对建筑性能模拟和故障检测的影响

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There is usually discrepancy between deterministic modeling and actual operations of HVAC (heating, ventilation and air-conditioning) systems to some extent depending on the model comprehensiveness. Our main challenge is to express associated uncertainty in model outcomes in a way that is helpful to those trying to use the predictions from simulations to make decisions. Considerable research is underway to quantify uncertainty in building simulation. A recent trend is to include HVAC system parameters in uncertainty analysis. Outdoor air control has significant impact on energy consumption and indoor air quality. This study investigates the uncertainties of outdoor air control of a particular system type. Based on the analysis, the authors have identified the uncertain parameters, quantified their uncertainty patterns and mapped them to building performance simulation in terms of energy consumption and ventilation requirement. The simulated results show that the uncertainty in outdoor air control can lead to 17% difference in cooling consumption and 43% difference in heating consumption compared with using standard outdoor air control settings in EnergyPlus simulation. The effects of the identified uncertainty on fault detection are also discussed. (C) 2016 Elsevier B.V. All rights reserved.
机译:HVAC(供暖,通风和空调)系统的确定性建模与实际操作之间通常存在差异,具体取决于模型的全面性。我们的主要挑战是以对模型结果相关的不确定性进行表达的方式,该方法对于那些试图使用模拟的预测来做出决策的人很有帮助。正在进行大量研究以量化建筑仿真中的不确定性。最近的趋势是在不确定性分析中包括HVAC系统参数。室外空气控制对能耗和室内空气质量有重大影响。这项研究调查了特定系统类型的室外空气控制的不确定性。在分析的基础上,作者确定了不确定的参数,量化了不确定的模式,并将其映射到能耗和通风需求方面的建筑性能模拟中。仿真结果表明,与在EnergyPlus仿真中使用标准室外空气控制设置相比,室外空气控制的不确定性可导致制冷消耗量相差17%,供暖消​​耗量相差43%。还讨论了确定的不确定性对故障检测的影响。 (C)2016 Elsevier B.V.保留所有权利。

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