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Analysis of alternative ventilation strategies for existing multi-family buildings using CONTAM simulation software

机译:使用CONT仿真软件分析现有多家族建筑的替代通风策略

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In many existing high-rise multi-family buildings, a pressurized corridor ventilation system is used to meet outdoor air ventilation requirements. However, this system often has poor performance, leading to under- or over- ventilation in different parts of a building. This study examines three ventilation strategies including: the base case, which is a traditional pressurized corridor ventilation system, a direct-to-suite ducted ventilation system, and a suite-based HRV ventilation system. A building model was constructed in CONTAM using features of a typical post-war multi-family building in Toronto, Canada. All three strategies were simulated using CONTAM under both summer and winter conditions. The resulting outdoor airflow delivery rates to the suites and corridor pressure differentials were compared to assess the effectiveness of each strategy. The results show that the suite-based HRV strategy is able to provide adequate ventilation airflow to individual suites in both summer and winter. In the traditional pressurized corridor system and the direct-to-suite ducting system, the airflows delivered to the suites located at the top of the building are higher than those delivered to the suites located at the bottom of the building. This uneven airflow distribution is more pronounced in winter when stack effect impacts the ventilation system more significantly.
机译:在许多现有的高层多家庭建筑中,使用加压走廊通风系统来满足室外空气通风要求。然而,该系统通常具有差的性能,导致建筑物的不同部位的下限或过度通风。本研究审查了三种通风策略,包括:基本情况,是一种传统的加压走廊通风系统,直接套件管道通风系统和基于套件的HRV通风系统。建筑模型在加拿大多伦多的典型战后多家庭建筑的特点中构建了Contam。在夏季和冬季条件下使用CONT模拟所有三种策略。将由此产生的套房和走廊压差的户外气流输送速率进行比较,以评估每个策略的有效性。结果表明,基于套房的HRV策略能够为夏季和冬季提供足够的通风气流。在传统的加压走廊系统和直到套件管道系统中,输送到位于建筑物顶部的套件的气流高于送到位于建筑物底部的套房的套房的套件。当堆栈效果更加显着影响通风系统时,这种不均匀气流分布在冬季更明显。

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