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Numerical Assessment of the Performance of Ventilation Strategies in a Single-Family Building

机译:单户住宅通风策略性能的数值评估

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摘要

Ventilation systems are primarily designed for ensuring good indoor air quality (IAQ). However, building energy requirements tend to put demand on reducing air change rates. The assessment of the performance of ventilation systems over long periods has thus become a subject of importance. In this framework, five ventilation systems were investigated for a heating period in a single-family house using a representative occupancy and pollution schedule. This was undertaken using SEVIBAD, a combined mass and heat transfer toolbox. This paper compares the different results. For the studied climate, the best air quality and energy performances were obtained with mechanical balanced ventilation; the total energy savings that can be expected, compared to the reference system, is more than 20% depending on the efficiency of the heat exchanger. Also, it has been found that humidity-controlled ventilation systems could allow a similar reduction of energy consumption but in contrast fails, at times, to provide good IAQ. Finally, the studied natural ventilation system provides excessive airflow rates and obviously great energy losses, yet not the expected air quality.
机译:通风系统主要用于确保良好的室内空气质量(IAQ)。但是,建筑能源需求往往要求降低空气变化率。因此,长期评估通风系统的性能已成为重要课题。在此框架下,使用有代表性的居住和污染时间表,对单户住宅供暖期间的五个通风系统进行了研究。这是使用质量传热工具箱SEVIBAD进行的。本文比较了不同的结果。对于研究的气候,通过机械平衡通风可获得最佳的空气质量和能量性能;与参考系统相比,取决于热交换器的效率,可以预期的总节能量超过20%。而且,已经发现湿度控制的通风系统可以类似地减少能耗,但是相反有时不能提供良好的室内空气质量。最后,所研究的自然通风系统提供了过高的气流速率和明显的巨大能量损失,但未达到预期的空气质量。

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