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Estimating real-time infiltration for use in residential ventilation control

机译:估算住宅通风控制中使用的实时渗透

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Minimum outdoor air ventilation rates specified in standards such as ASHRAE Standard 62.2–2016 are generally based on envelope airtightness, building floor area, geographical location and number of occupants. ASHRAE Standard 62.2–2016 allows for a constant infiltration credit, which reduces the required mechanical ventilation. However, infiltration rates vary based on the weather and system operation. Thus, mechanical systems could potentially operate less if the real-time (RT) infiltration rate was known and used to adjust the mechanical ventilation rate. CONTAM models of two test houses on the campus of the National Institute of Standards and Technology were verified with measurements and used to simulate hourly infiltration rates in three cities. The infiltration rates were passed to a theoretical controller that changed the hourly mechanical ventilation rate to meet the ventilation requirement. Simulated energy use and relative annual occupant exposure for this RT control strategy were compared with ventilation at a constant rate. Implementation of the RT control strategy resulted in annual average energy savings of $66USD across both houses and three cities without increasing the annual occupant exposure compared with ventilating continuously at a constant rate. The authors discuss the advantages and limitations of the proposed RT ventilation control strategy.
机译:在Ashrae标准62.2-2016等标准中规定的最小户外空气通风率通常基于信封气密,建筑面积,地理位置和乘员数量。 ASHRAE标准62.2-2016允许恒定的渗透信用,从而降低所需的机械通风。但是,渗透率基于天气和系统操作而变化。因此,如果已知实时(RT)渗透速率并且用于调节机械通气速率,则机械系统可能较少。在国家标准和技术研究所校园内的两个测试房屋的型号进行了测量,用来模拟三个城市的每小时渗透率。渗透率转到理论控制器,改变了每小时机械通风率以满足通风要求。将模拟能量使用和相对年度乘员暴露于该RT对照策略的持续速率与通风进行比较。实际实施RT控制策略导致房屋和三个城市的年平均能源节省66 usd,而不增加年度乘员暴露,而不断以持续率持续通风。作者讨论了所提出的RT通风控制策略的优缺点。

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