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Measurement and simulation of indoor air quality and energy consumption in two Shanghai office buildings with variable air volume systems

机译:上海两座可变风量办公楼室内空气质量和能耗的测量和模拟

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Two modem office buildings in Shanghai with typical variable air volume (VAV) systems were selected for research. Four separate spaces on a standard office floor in each building facing different directions (north, south, east, and west) were selected for thorough site measurements of outdoor airflow rates and indoor air quality (concentrations of CO_2 and PM_(10)) during typical days of the four seasons (summer, autumn, winter, spring). Computer simulations and calculations were also done of outdoor airflow rates and CO2 concentrations in the four-test spaces on an hourly basis for the entire year. In addition to the site measurements, monthly electrical consumption for the two buildings was recorded or estimated. Simulations and calculations were performed of the buildings' energy consumption and energy cost using two different outdoor air control strategies of a typical VAV system as well as a fan coil unit (FCU) system. The site-recorded data, or estimated data, and simulation results are compared and analyzed. The study reveals that in a VAV system, the outdoor airflow rate distributed to each zone varies greatly, especially during part-load hours, making it difficult to always ensure sufficient outdoor air in each zone and avoid indoor air quality (IAQ) problems. However, this problem can be prevented by using appropriate outdoor air control strategies―e.g. a fixed high level total outdoor airflow rate.
机译:选择了上海两座具有典型可变风量(VAV)系统的现代办公大楼进行研究。在典型情况下,每个建筑物的标准办公室地板上有四个面向不同方向(北,南,东,西)的独立空间,用于室外风量和室内空气质量(CO_2和PM_(10)的浓度)的全面现场测量。四个季节的天数(夏季,秋季,冬季,春季)。全年还每小时对四个测试空间中的室外气流速率和CO2浓度进行计算机模拟和计算。除现场测量外,还记录或估算了两座建筑物的每月用电量。使用典型的VAV系统和风机盘管(FCU)系统的两种不同的室外空气控制策略,对建筑物的能耗和能源成本进行了仿真和计算。比较并分析现场记录的数据或估计的数据以及模拟结果。研究表明,在VAV系统中,分配给每个区域的室外空气流速变化很大,尤其是在部分负荷时段,这使得始终确保每个区域中的室外空气非常困难,并且很难避免室内空气质量(IAQ)问题。但是,可以通过使用适当的室外空气控制策略(例如,固定的高水平室外总风量。

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