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首页> 外文期刊>Energies >Influence of Three Dynamic Predictive Clothing Insulation Models on Building Energy Use, HVAC Sizing and Thermal Comfort
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Influence of Three Dynamic Predictive Clothing Insulation Models on Building Energy Use, HVAC Sizing and Thermal Comfort

机译:三种动态预测衣物隔热模型对建筑能耗,暖通空​​调尺寸和热舒适度的影响

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In building energy simulation, indoor thermal comfort condition, energy use and equipment size are typically calculated based on the assumption that the clothing insulation is equal to a constant value of 0.5 clo during the cooling season and 1.0 clo during the heating season. The assumption is not reflected in practice and thus it may lead to errors. In reality, occupants frequently adjust their clothing depending on the thermal conditions, as opposed to the assumption of constant clothing values above, indicating that the clothing insulation variation should be captured in building simulation software to obtain more reliable and accurate results. In this study, the impact of three newly developed dynamic clothing insulation models on the building simulation is quantitatively assessed using the detailed whole-building energy simulation program, EnergyPlus version 6.0. The results showed that when the heating ventilation and air conditioning system (HVAC) is controlled based on indoor temperature the dynamic clothing models do not affect indoor operative temperatures, energy consumption and equipment sizing. When the HVAC is controlled based on the PMV model the use of a fixed clothing insulation during the cooling (0.5 clo) and heating (1.0 clo) season leads to the incorrect estimation of the indoor operative temperatures, energy consumption and equipment sizing. The dynamic clothing models significantly (p < 0.0001) improve the ability of energy simulation tools to assess thermal comfort. The authors recommend that the dynamic clothing models should be implemented in dynamic building energy simulation software such as EnergyPlus.
机译:在建筑能耗模拟中,通常基于以下假设来计算室内热舒适条件,能耗和设备尺寸:在降温季节,衣服隔热层等于恒定值0.5 clo,在加热季节等于1.0 clo。该假设未在实践中反映出来,因此可能导致错误。实际上,与上述恒定衣服值的假设相反,居住者经常根据温度条件调整衣服,这表明衣服隔热变化应在建筑仿真软件中获取,以获得更可靠和准确的结果。在这项研究中,使用详细的整栋建筑能源模拟程序EnergyPlus 6.0版,定量评估了三个新开发的动态服装隔热模型对建筑模拟的影响。结果表明,当根据室内温度控制采暖通风和空调系统(HVAC)时,动态服装模型不会影响室内工作温度,能耗和设备尺寸。当基于PMV模型控制HVAC时,在制冷(0.5 clo)和供暖(1.0 clo)季节使用固定的衣服隔热层会导致对室内工作温度,能耗和设备尺寸的错误估计。动态服装模型显着提高了(p <0.0001)能量模拟工具评估热舒适性的能力。作者建议动态服装模型应在动态建筑能耗模拟软件(例如EnergyPlus)中实现。

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