局部气候带对极端高温影响的缓解和恢复力:对巴塞罗那市(西班牙)的研究

IF 2.1 Q3 ENVIRONMENTAL SCIENCES Urban science (Basel, Switzerland) Pub Date : 2023-09-26 DOI:10.3390/urbansci7040102
David Hidalgo García, Julián Arco Díaz
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引用次数: 0

摘要

全球变暖正在加速严重气象事件的扩大,如持续干旱和气温升高。这些现象正在引发环境温度的大幅升高,大都市地区首当其冲。目前,极端高温已经影响了全球30%的人口,预测表明,这一数字将在未来几年上升到74%。联合国2030年议程中概述的目标之一,特别是在可持续发展目标11 (SDG11)中,是实现可持续城市发展。为了实现这一目标,必须仔细研究和深入研究城市环境条件,以全面了解其动态。这种理解是实施气候变化缓解和适应战略的基础,最终提高城市居民的福祉。在这方面,遥感和地理信息系统领域取得了重大进展。值得注意的是,由欧洲空间局开发的urban clim模型有助于评估众多欧洲城市中心的环境状况。本研究利用urbanclim的数据,研究了2017年夏季巴塞罗那极端高温条件下热应激指数(Hi)的演变。利用Landsat 8卫星图像,我们导出了以下变量:归一化植被差指数和归一化建筑差指数。研究结果表明,在极端高温条件下,Hi指数呈上升趋势,人口密度较高的地区和工业区对Hi的抵抗力较低,而人口密度较低的地区和农村地区对Hi的抵抗力较强。这种差异可归因于较高的植被覆盖率和较低的建筑密度。这样,与平均温度相比,当使用高温时,Hi增加得更快、更强烈,降低得更慢。这对未来规划新的城市发展至关重要。
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Mitigation and Resilience of Local Climatic Zones to the Effects of Extreme Heat: Study on the City of Barcelona (Spain)
Global warming is precipitating an amplification of severe meteorological occurrences such as prolonged dry spells and episodes of elevated temperatures. These phenomena are instigating substantial elevations in environmental warmth, with metropolitan regions bearing the brunt of these impacts. Currently, extreme heat is already impacting 30% of the global populace, and forecasts suggest that this figure will escalate to 74% in the forthcoming years. One of the objectives outlined in the United Nations 2030 agenda, specifically within Sustainable Development Goal 11 (SDG11), is the attainment of sustainable urban development. To achieve this, it is imperative to scrutinize and delve into urban environmental conditions in order to understand their dynamics comprehensively. This understanding serves as the foundation for implementing mitigation and resilience strategies against climate change, ultimately enhancing the well-being of city residents. In this context, the field of remote sensing and geographic information systems has made substantial advancements. Notably, the UrbClim model, developed by the European Space Agency, facilitates the assessment of environmental conditions within numerous European urban centers. This research, utilizing data from UrbClim, examines the evolution of the heat stress index (Hi) during extreme heat conditions in Barcelona during the summer of 2017. Leveraging Landsat 8 satellite imagery, we derived the following variables: the normalized difference vegetation index and the normalized building difference index. Our findings reveal that during extreme heat conditions, the Hi index experiences an escalation, with areas characterized by a higher population density and industrial zones displaying lower resistance in contrast to regions with a lower population density and rural areas, which exhibit greater resilience to Hi. This disparity can be attributed to higher vegetation coverage and reduced building density in the latter areas. In this way, Hi increases more quickly and intensely and decreases more slowly when using high temperatures compared to average temperatures. This is of utmost importance for the future planning of new urban developments.
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11 weeks
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