沙尘暴期间入口空间对沙漠地区传统民居室内空气质量影响的研究

Q1 Arts and Humanities
Xinyu Zhang, Yushu Liang, Shanshan Shi, Guofeng Shen
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引用次数: 0

摘要

位于中国内蒙古西部的阿拉善盟经常遭受沙尘暴的侵袭。这种沙尘天气会导致室外和室内环境中的可吸入颗粒物(PM10)浓度急剧上升,对当地居民的健康构成严重威胁。该地区的传统民居具有特定的平面布局,包括一个入口空间,以便在沙尘暴期间保障室内空气质量,同时与当地气候相协调。本研究利用多区室内空气质量和通风分析计算机程序 CONTAM 和实地测量,定量评估了入口空间在沙尘暴和正常情况下保护室内空气质量免受环境 PM10 污染的有效性。模拟结果表明,入口空间能有效缓解中间房间的 PM10 污染,在沙尘期将平均浓度从 47.0 μg/m3 降低到 37.5 μg/m3。然而,入口空间的 PM10 污染可能会增加,平均浓度可达 70.0 μg/m3 。实验结果与模拟结果一致。鉴于建筑活动加剧了沙漠化和频繁的沙尘暴,上述研究结果有助于确定目标沙漠地区节能绿色乡土住宅的最佳设计策略,促进环境和谐,应对气候变化挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A study of the impact of entrance space on indoor air quality in vernacular dwellings in desert areas during sandstorms
Alxa League, located in the western part of Inner Mongolia, China, frequently suffers from sandstorms. Such dusty conditions result in sharp increases in respirable particulate matter (PM10) concentration in outdoor and indoor environments, posing a significant health risk to local inhabitants. Vernacular dwellings in this area feature a specific floor plan that includes an entrance space to safeguard indoor air quality during sandstorms while being compatible with the local climate. This study utilises CONTAM, a multizone indoor air quality and ventilation analysis computer program, and field measurements to quantitatively evaluate the effectiveness of the entrance space in protecting indoor air quality against ambient PM10 pollution under both dusty and normal conditions. The simulation results reveal that the entrance space can effectively mitigate PM10 pollution in the middle room, lowering the average concentration from 47.0 μg/m3 to 37.5 μg/m3 during dust periods. However, PM10 pollution may increase in the entrance space, reaching an average concentration of up to 70.0 μg/m3. Experimental outcomes align with the simulated results. Given that construction activities exacerbate desertification and frequent sandstorms, the above findings help identify the optimal design strategies for energy-efficient green vernacular dwellings in the targeted desert area, promoting environmental harmony and addressing climate change challenges.
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来源期刊
Built Heritage
Built Heritage Arts and Humanities-History
CiteScore
2.00
自引率
0.00%
发文量
29
审稿时长
12 weeks
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