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Performance of a natural ventilation system with heat recovery in UK classrooms: An experimental study

机译:英国教室中具有热回收功能的自然通风系统的性能:一项实验研究

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This paper presents the ventilation performance of a passive ventilation system with heat recovery (PVHR) based on in-situ monitoring in a primary school in London. The study involves long-term (15month) monitoring of temperature, relative humidity and carbon dioxide (CO2) concentrations in both the classrooms and the outdoor environment. In addition, short term (1- and 2-week) observational monitoring was performed in two classrooms at ventilation system level and classroom level, during both the heating and non-heating seasons. Temperatures and air velocities were measured within the PVHR system while instances of window opening and the number of students were noted in daily diaries. Air permeability and infiltration measurements were performed to characterize the spaces. Time-varying ventilation rates were estimated through a form of continuity equation considering CO2 generation rates by occupants. Preliminary results show that the operation of the ventilation system is more sensitive to changes in wind speed and direction than to buoyancy. When negative pressure was observed on the classrooms' facades the ventilation system was supplying two to three times more air in comparison to instances when positive pressures were observed. The assessment of the ventilation performance of such natural ventilation systems depending solely on wind and buoyancy is complicated as they are dynamic systems that constantly balancing with the surrounding conditions, and the operation is highly correlated to the airtightness of the building's envelope. (C) 2018 Published by Elsevier B.V.
机译:本文基于伦敦一所小学的现场监测,介绍了具有热回收功能的被动通风系统(PVHR)的通风性能。该研究涉及对教室和室外环境中的温度,相对湿度和二氧化碳(CO2)浓度进行长期(15个月)监测。此外,在供暖和非供暖季节,在通风系统级别和教室级别的两个教室中进行了短期(1周和2周)的观察性监测。在PVHR系统中测量温度和风速,同时在日记中记录开窗情况和学生人数。进行透气性和渗透测量以表征空间。时变通风率是通过考虑居民二氧化碳排放量的连续性方程式估算的。初步结果表明,通风系统的运行对风速和风向的变化比对浮力更敏感。当在教室的外墙上观察到负压时,与观察到正压的情况相比,通风系统提供的空气多出两到三倍。仅依靠风和浮力来评估这种自然通风系统的通风性能十分复杂,因为它们是不断与周围环境保持平衡的动态系统,并且运行与建筑物围护的气密性高度相关。 (C)2018由Elsevier B.V.发布

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