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应对气候变化引发的热应激:评估凉爽屋顶及其对艾哈迈达巴德城市贫民窟家庭室内环境温度的影响。

Combating Climate Change-induced Heat Stress: Assessing Cool Roofs and Its Impact on the Indoor Ambient Temperature of the Households in the Urban Slums of Ahmedabad.

作者信息

Vellingiri Selvakumar, Dutta Priya, Singh Srishti, Sathish L M, Pingle Shyam, Brahmbhatt Bijal

机构信息

Gujarat Institute of Desert Ecology, Bhuj, Gujarat, India.

Indian Institute of Public Health, Gandhinagar, Gujarat, India.

出版信息

Indian J Occup Environ Med. 2020 Jan-Apr;24(1):25-29. doi: 10.4103/ijoem.IJOEM_120_19. Epub 2020 Mar 18.

Abstract

BACKGROUND

The rising global temperature and frequent heatwaves are the adverse effects of climate change. The causalities and ill impacts of the heat stress were higher among the slum dwellers because of the vulnerable household structures, which were made by heat-trapping materials like tin sheets, cement sheet (asbestos), plastic, and tarpaulin. The houses are not only dwellings but also a source of livelihood for many slum dwellers as they are involved in home-based work. The increase in the temperature of more than 40°C severely affects health and increases energy expenditures.

OBJECTIVE

The present study conducted to identify the efficient cool roof technologies that reduce indoor temperature of the households and improve the heat resilience of dwellings located in the urban slums of Ahmedabad.

METHODOLOGY

The performances of cool roof interventions were compared with the nonintervention - roof types, namely, tin, asbestos/cement sheet, and concrete. Relative humidity/temperature data loggers (Lascar EL-USB-2-LCD, Sweden) were used to measure the indoor ambient temperature and humidity. The questionnaire-based survey also has been conducted to understand the socioeconomic status and the perceptions related to roofing and health.

RESULTS

The results revealed that selected cool roof technologies including Thermocol insulation, solar reflective white paint on the outer surface of the roof, and Modroof are effectively reducing the indoor temperature as compared to the nonintervention roofing.

CONCLUSION

Cool roof technologies have a wider scope as number of informal settlements are increasing across the cities in India and other developing countries. The governments may not able to provide proper housing to all these inhabitants due to various reasons including the land tenure of the habitats. Validated cool roof technologies can be promoted as these structures are not requires legal sanctions and easily dismantled and installed in multiple places and safeguards the investment of urban poor.

摘要

背景

全球气温上升和热浪频发是气候变化的不利影响。由于家庭结构脆弱,贫民窟居民受热应激的伤亡和不良影响更大,这些家庭结构由锡板、水泥板(石棉)、塑料和防水油布等蓄热材料制成。这些房屋不仅是住所,也是许多贫民窟居民的生计来源,因为他们从事居家工作。超过40°C的气温升高会严重影响健康并增加能源支出。

目的

本研究旨在确定有效的凉爽屋顶技术,以降低家庭室内温度,并提高艾哈迈达巴德城市贫民窟住宅的耐热能力。

方法

将凉爽屋顶干预措施的性能与非干预屋顶类型(即锡板、石棉/水泥板和混凝土)进行比较。使用相对湿度/温度数据记录器(瑞典Lascar EL-USB-2-LCD)测量室内环境温度和湿度。还进行了基于问卷的调查,以了解社会经济状况以及与屋顶和健康相关的看法。

结果

结果显示,与非干预屋顶相比,选定的凉爽屋顶技术,包括泡沫聚苯乙烯隔热材料、屋顶外表面的太阳能反射白色涂料和模块化屋顶,能有效降低室内温度。

结论

随着印度和其他发展中国家城市中非正式住区数量的增加,凉爽屋顶技术具有更广泛的应用范围。由于包括栖息地土地使用权在内的各种原因,政府可能无法为所有这些居民提供适当住房。经过验证的凉爽屋顶技术可以得到推广,因为这些结构不需要法律制裁,并且易于在多个地方拆卸和安装,同时保障了城市贫困人口的投资。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a325/7227734/8b4a66985e8f/IJOEM-24-25-g001.jpg

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