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Modeling the impact of the COVID-19 lockdowns on urban surface ecological status: A case study of Milan and Wuhan cities

机译:建模Covid-19锁定对城市地表生态地位的影响 - 以米兰和武汉城市为例

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摘要

The COVID-19 pandemic has caused unprecedent negative impacts on our society, however, evidences show a reduction of anthropogenic pressures on the environment. Due to the high importance of environmental conditions on human life quality, it is crucial to model the impact of COVID-19 lockdown on environmental conditions. Consequently, the objective of this study was to model the impact of COVID-19 lockdown on the urban surface ecological status (USES). To this end, the Landsat-8 images of Milan for three pre-lockdown dates (Feb 13, 2018 (MD1), April 18, 2018 (MD2) and Feb 3, 2020 (MD3)) and one date over the lockdown (April 14, 2020 (MD4)), and Wuhan for three pre-lockdown dates (Dec 17, 2017 (WD1), March 23, 2018 (WD2) and Dec 7, 2019 (WD3)) and one lockdown date (Feb 9, 2020 (WD4)) were used. First, pressure-state-response (PSR) framework parameters including index-based built-up index (IBI), vegetation cover (VC), vegetation health index (VHI), land surface temperature (LST) and Wetness were calculated. Second, by combining the PSR framework parameters based on comprehensive ecological evaluation index (CEEI), the USES were modeled on different dates. Thirdly, the USES during the COVID-19 lockdown was compared with the USES for pre-lockdown. The mean (standard deviation) of CEEI for Milan on MD1, MD2, MD3 and MD4 were 0.52 (0.12), 0.60 (0.19), 0.57 (0.13) and 0.45 (0.16), respectively. Also, these values for Wuhan on WD1, WD2, WD3 and WD4 were 0.63 (0.14), 0.67 (0.15), 0.60 (0.13) and 0.57 (0.13), respectively. Due to the lockdowns, the mean CEEI of built-up, bare soil and green spaces for Milan and Wuhan decreased by [0.18, 0.02, 0.08], [0.13, 0.06, 0.05], respectively. During the lock-down period, the USES improved substantially due to the reduction of anthropogenic activities in the urban environment.
机译:Covid-19大流行导致对我们社会的前所未有的负面影响,然而,证据表明对环境的人为压力降低。由于环境条件对人类生活质量的高度高,这对模拟Covid-19锁定对环境条件的影响至关重要。因此,本研究的目的是模拟Covid-19锁定对城市表面生态状态(用)的影响。为此,陆地卫星-8三个预先锁定日期米兰的图像(2018年2月13日(MD1),2018年4月18日(MD2)和2020年2月3日(MD3))和一个日期上的锁定(四月14,2020(MD4))和武汉进行三个预锁定日期(2017年12月17日(WD1),2018年3月23日(WD2)和2019年12月7日(WD3))和一个锁定日期(2月9日,2020年2月9日) (WD4))被使用。首先,计算压力 - 响应(PSR)框架参数,包括基于索引的内置索引(IBI),植被覆盖(VC),植被健康指数(VHI),陆表面温度(LST)和湿度。其次,通过组合基于综合生态评估指数(CEEI)的PSR框架参数,该用途在不同的日期上进行了建模。第三,将Covid-19锁定期间的用途与用于预锁定的用途进行了比较。 MD1,MD2,MD3和MD4上米兰的CEEI的平均值(标准偏差)分别为0.52(0.12),0.60(0.19),0.57(0.13)和0.45(0.16)。此外,WD1,WD2,WD3和WD4上的武汉的这些值分别为0.63(0.14),0.67(0.15),0.60(0.13)和0.57(0.13)。由于锁定,米兰和武汉的建筑,裸土和绿地的平均CEEI分别下降[0.02,0.08],[0.13,0.06,0.05]。在锁定期间,该用途基本上改善了城市环境中的人为活动的降低。

著录项

  • 来源
    《Journal of Environmental Management》 |2021年第15期|112236.1-112236.10|共10页
  • 作者单位

    Department of Remote Sensing and G1S Faculty of Geography University of Tehran Tehran Iran;

    Faculty of Agriculture and Natural Resources University of Mohaghegh Ardabili Ardabil Iran;

    Department of Remote Sensing and G1S Faculty of Geography University of Tehran Tehran Iran;

    Geoinformatics Research Group Department of Planning and Development Aalborg University Copenhagen AC. Meyers Vcenge 15 DK-2450 Copenhagen Denmark;

    Agrohydrology Research Group College of Agriculture Tarbiat Modares University Tehran 14115-336 Iran Department of Mining Engineering Faculty of Engineering Tarbiat Modares University Tehran 14115 Iran;

    Department of Remote Sensing and G1S Faculty of Geography University of Tehran Tehran Iran;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Environment; Lockdown; Comprehensive ecological evaluation index; Anthropogenic activities; Remote sensing;

    机译:环境;封锁;综合生态评价指标;人为活动;遥感;
  • 入库时间 2022-08-19 02:11:14

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