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Optimization on fresh outdoor air ratio of air conditioning system with stratum ventilation for both targeted indoor air quality and maximal energy saving

机译:通过分层通风优化空调系统的室外新鲜空气比例,以达到既定的室内空气质量和最大程度的节能效果

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Stratum ventilation can energy efficiently provide good inhaled indoor air quality with a proper operation (e.g., fresh outdoor air ratio). However, the non-uniform CO2 distribution in a stratum-ventilated room challenges the provision of targeted indoor air quality. This study proposes an optimization on the fresh outdoor air ratio of stratum ventilation for both the targeted indoor air quality and maximal energy saving. A model of CO2 concentration in the breathing zone is developed by coupling CO2 removal efficiency in the breathing zone and mass conservation laws. With the developed model, the ventilation parameters corresponding to different fresh outdoor air ratios are quantified to achieve the targeted indoor air quality (i.e., targeted CO2 concentration in the breathing zone). Using the fresh outdoor air ratios and corresponding ventilation parameters as inputs, energy performance evaluations of the air conditioning system are conducted by building energy simulations. The fresh outdoor air ratio with the minimal energy consumption is determined as the optimal one. Experiments show that the mean absolute error of the developed model of CO2 concentration in the breathing zone is 1.9%. The effectiveness of the proposed optimization is demonstrated using TRNSYS that the energy consumption of the air conditioning system with stratum ventilation is reduced by 6.4% while achieving the targeted indoor air quality. The proposed optimization is also promising for other ventilation modes for targeted indoor air quality and improved energy efficiency.
机译:分层通风可以通过适当的操作(例如新鲜的室外空气比例)有效地提供有效的吸入室内空气质量。但是,层状通风房间内的二氧化碳分布不均匀,对提供目标室内空气质量提出了挑战。这项研究针对目标室内空气质量和最大程度的节能提出了对层通风的新鲜室外空气比率的优化方案。通过将呼吸区中的CO2去除效率与质量守恒定律耦合,建立了呼吸区中CO2浓度的模型。利用开发的模型,可以量化对应于不同新鲜室外空气比率的通风参数,以实现目标室内空气质量(即,呼吸区域中的目标CO2浓度)。使用新鲜的室外空气比例和相应的通风参数作为输入,通过建筑能耗模拟对空调系统的能耗进行评估。最低能耗的新鲜室外空气比例被确定为最佳比例。实验表明,所建立的呼吸区域CO2浓度模型的平均绝对误差为1.9%。使用TRNSYS证明了所提出的优化的有效性,即在达到目标室内空气质量的同时,带层通风的空调系统的能耗降低了6.4%。拟议的优化还有望用于其他通风模式,以达到目标室内空气质量并提高能源效率。

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