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Impact of COVID-19 Induced Lockdown on Environmental Quality in Four Indian Megacities Using Landsat 8 OLI and TIRS-Derived Data and Mamdani Fuzzy Logic Modelling Approach

机译:Covid-19诱导锁定在四个印度大不乘品环境质量锁定使用Landsat 8 Oli和TIRS衍生数据和Mamdani模糊逻辑建模方法的环境质量

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The deadly COVID-19 virus has caused a global pandemic health emergency. This COVID-19 has spread its arms to 200 countries globally and the megacities of the world were particularly affected with a large number of infections and deaths, which is still increasing day by day. On the other hand, the outbreak of COVID-19 has greatly impacted the global environment to regain its health. This study takes four megacities (Mumbai, Delhi, Kolkata, and Chennai) of India for a comprehensive assessment of the dynamicity of environmental quality resulting from the COVID-19 induced lockdown situation. An environmental quality index was formulated using remotely sensed biophysical parameters like Particulate Matters PM 10 concentration, Land Surface Temperature (LST), Normalized Different Moisture Index (NDMI), Normalized Difference Vegetation Index (NDVI), and Normalized Difference Water Index (NDWI). Fuzzy-AHP, which is a Multi-Criteria Decision-Making process, has been utilized to derive the weight of the indicators and aggregation. The results showing that COVID-19 induced lockdown in the form of restrictions on human and vehicular movements and decreasing economic activities has improved the overall quality of the environment in the selected Indian cities for a short time span. Overall, the results indicate that lockdown is not only capable of controlling COVID-19 spread, but also helpful in minimizing environmental degradation. The findings of this study can be utilized for assessing and analyzing the impacts of COVID-19 induced lockdown situation on the overall environmental quality of other megacities of the world.
机译:致命的Covid-19病毒引起了全球流行性健康紧急情况。这个Covid-19在全球范围内传播其武器到200个国家,而世界的巨型巨大的感染和死亡尤其受到影响,这仍然在一天中仍然增加。另一方面,Covid-19的爆发极大地影响了全球环境恢复健康。本研究采用了印度的四种兆(孟买,德里,加尔各答,钦奈),以全面评估Covid-19诱导锁定情况导致的环境质量的动态性。使用远程感测的生物物理参数配制了环境质量指标,如颗粒物质PM 10浓度,陆地表面温度(LST),归一化不同的水分指数(NDMI),归一化差异植被指数(NDVI)和归一化差异水指数(NDWI)。模糊AHP是多标准决策过程,已被利用来导出指标和聚合的重量。结果表明,Covid-19以人类和车辆运动的限制的限制形式的锁定和经济活动降低的形式提高了所选印度城市环境的整体质量,以便短时间跨度。总的来说,结果表明,锁定不仅能够控制Covid-19传播,而且还有助于最小化环境退化。本研究的结果可用于评估和分析Covid-19诱导锁定状况对世界其他巨大的整体环境质量的影响。

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