Indoor air quality and ventilation requirement in residential buildings: A case study of Tehran, Iran

A. Ataei, A. Nowrouzi, Jun-Ki Choi
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引用次数: 1

Abstract

The ventilation system is a key device to ensure both healthful indoor air quality (IAQ) and thermal comfort in buildings. The ventilation system should make the IAQ meet the standards such as ASHRAE 62. This study deals with a new approach to modeling the ventilation and IAQ requirement in residential buildings. In that approach, Elite software is used to calculate the air supply volume, and CONTAM model as a multi-zone and contaminant dispersal model is employed to estimate the contaminants’ concentrations. Amongst various contaminants existing in the residential buildings, two main contaminates of carbon dioxide (CO2) and carbon monoxide (CO) were considered. CO and CO2 are generated mainly from combustion sources such as gas cooking and heating oven. In addition to the mentioned sources, CO2 is generated from occupants’ respirations. To show how that approach works, a sample house with the area of 80 m 2 located in Tehran was considered as an illustrative case study. The results showed that CO2 concentration in the winter was higher than the acceptable level. Therefore, the air change rate (ACH) of 4.2 was required to lower the CO2 concentration below the air quality threshold in the living room, and in the bedrooms, the rate of ventilation volume should be 11.2 ACH.
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住宅建筑的室内空气质量和通风要求:以伊朗德黑兰为例
通风系统是保证建筑室内健康空气质量和热舒适的关键设备。通风系统应使室内空气质量达到ASHRAE 62等标准。本研究探讨了一种新的住宅建筑通风与室内空气质量需求建模方法。该方法采用Elite软件计算送风量,采用CONTAM模型作为多区域污染物扩散模型估算污染物浓度。在住宅建筑中存在的各种污染物中,考虑了二氧化碳(CO2)和一氧化碳(CO)两种主要污染物。CO和CO2主要来自燃烧源,如燃气烹饪和加热炉。除了上述来源,二氧化碳是由居住者的呼吸产生的。为了展示这种方法是如何工作的,位于德黑兰的一个面积为80平方米的样房被认为是一个说明性的案例研究。结果表明,冬季CO2浓度高于可接受水平。因此,为了使客厅的CO2浓度低于空气质量阈值,要求换气速率(ACH)为4.2,卧室的换气速率应为11.2 ACH。
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