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Dynamic control of room air temperature for stratum ventilation based on heat removal efficiency: Method and experimental validations

机译:基于除热效率的地层通风室内空气温度动态控制:方法和实验验证

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摘要

Stratum ventilation can energy-efficiently provide quality indoor air and thermal comfort. The room air temperature in the occupied zone is a dominant parameter for thermal comfort. The non-uniform thermal environment of stratum ventilation challenges the dynamic control of the room air temperature. This study proposes a dynamic control method of the room air temperature for stratum ventilation based on heat removal efficiency. The proposed method requires inputs of only supply air temperature, supply airflow rate and exit air temperature, and can be readily employed by the building management system in practice. Dynamic experiments, with a wide variation range (i.e., from 24.5 degrees C to 30 degrees C), different variation rates (i.e., from 0 degrees C/min to 0.088 degrees C/min) and different variation trends (i.e., increase, decrease and steady) of the room air temperature, are conducted to validate the proposed method. The time interval of the dynamic experiments is 1 min. Furthermore, the effects of the cooling load and room occupancy are also analyzed to demonstrate the robustness of the proposed method. The differences between the predicted room air temperatures by the proposed method and measurements are no more than 0.33 degrees C, and the root mean square errors are no more than 0.18 degrees C. Compared with the conventional method, which assumes that the room air temperature equals to the exit air temperature at the air terminals, the proposed method improves the accuracy in the room air temperature prediction by 79.3%-93.3%. The proposed method can be applied to dynamically control the room air temperature to meet the requirement of thermal comfort.
机译:地层通风可节能地提供优质的室内空气和热舒适性。占用区域的室内空气温度是热舒适性的主要参数。地层通风的不均匀热环境对室内空气温度的动态控制提出了挑战。本研究提出了一种基于排热效率的室内空气温度动态控制方法。所提出的方法仅需要输入空气温度,空气流量和出口空气温度的输入,并且在实践中可以很容易地被建筑物管理系统采用。动态实验,变化范围宽(从24.5摄氏度到30摄氏度),变化速率不同(从0摄氏度/分钟到0.088摄氏度/分钟),变化趋势也不同(例如,增加,减少稳定的室内空气温度),以验证所提出的方法。动态实验的时间间隔为1分钟。此外,还分析了制冷负荷和房间占用的影响,以证明所提出方法的鲁棒性。所提出的方法与测量值之间的预测室内空气温度之差不超过0.33摄氏度,均方根误差不超过0.18摄氏度。与传统方法相比,假定室内空气温度等于相对于空气终端的出风温度,该方法将室内空气温度预测的准确性提高了79.3%-93.3%。该方法可用于动态控制室内空气温度,以满足热舒适性的要求。

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