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Equivalent room air temperature based cooling load estimation method for stratum ventilation and displacement ventilation

机译:基于等效室温的地层通风和置换通风的冷负荷估算方法

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摘要

Cooling load estimation is the base for the design and control of the air conditioning system. The indoor air temperature stratification of stratum ventilation and displacement ventilation contributes to the energy saving, but challenges the cooling load estimation. The existing building simulation tools are generally equipped with only the fully mixed air model and ignore the indoor air temperature stratification. This study proposes an equivalent room air temperature based cooling load estimation method to enable the fully mixed air model to accurately estimate the cooling load of stratum ventilation and displacement ventilation. The equivalent room air temperature is the air temperature with which the fully mixed air model can produce the same cooling load as that of stratum ventilation/displacement ventilation. The equivalent room air temperature is modelled as a function of the supply air temperature, supply airflow rate and room air temperature of stratum ventilation/ displacement ventilation using response surface methodology. Case studies using the experimentally validated multi-node models are conducted to demonstrate the effectiveness of the proposed method. The mean absolute errors in the cooling load estimation by the proposed method for the constant-air-volume system and the variable-air-volume system are 0.02% and 5.78% respectively under stratum ventilation, and 0.07% and 4.78% respectively under displacement ventilation. Compared with the conventional method, the proposed method improves the accuracy in the cooling load estimation by 70.92%-99.94%.
机译:估计冷负荷是空调系统设计和控制的基础。层通风和置换通风的室内空气温度分层有助于节能,但对制冷负荷的估算提出了挑战。现有的建筑物模拟工具通常仅配备完全混合空气模型,而忽略室内空气温度分层。这项研究提出了一种基于室内空气温度的等效冷却负荷估算方法,以使完全混合的空气模型能够准确估算地层通风和置换通风的冷却负荷。等效室内空气温度是指完全混合的空气模型可产生与层通风/置换通风相同的冷却负荷的空气温度。使用响应面方法将等效室内空气温度建模为供气温度,供气流量和地层通风/置换通风的室内温度的函数。使用经过实验验证的多节点模型进行案例研究,以证明所提出方法的有效性。恒定风量系统和可变风量系统在该方法估算的冷负荷下的平均绝对误差在地层通风下分别为0.02%和5.78%,在置换通风下分别为0.07%和4.78% 。与传统方法相比,该方法将冷负荷估算的精度提高了70.92%-99.94%。

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