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COSMO-SkyMed potential to detect and monitor Mediterranean maquis fires and regrowth: a pilot study in Capo Figari, Sardinia, Italy

机译:COSMO-SkyMed具有探测和监视地中海大火和新生的潜力:在意大利撒丁岛Capo Figari进行的一项初步研究

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摘要

Mediterranean maquis is a complex and widespread ecosystem in the region, intrinsically prone to fire. Many species have developed specific adaptation traits to cope with fire, ensuring resistance and resilience. Due to the recent changes in socio-economy and land uses, fires are more and more frequent in the urban-rural fringe and in the coastlines, both now densely populated. The detection of fires and the monitoring of vegetation regrowth is thus of primary interest for local management and for understanding the ecosystem dynamics and processes, also in the light of the recurrent droughts induced by climate change. Among the main objectives of the COSMO-SkyMed radar constellation mission there is the monitoring of environmental hazards; the very high revisiting time of this mission is optimal for post-hazard response activities. However, very few studies exploited such data for fire and vegetation monitoring. In this research, Cosmo-SkyMed is used in a Mediterranean protected area covered by maquis to detect the burnt area extension and to conduct a mid-term assessment of vegetation regrowth. The positive results obtained in this research highlight the importance of the very high-resolution continuous acquisitions and the multi-polarization information provided by COSMO-SkyMed for monitoring fire impacts on vegetation.
机译:地中海马奎斯是该地区一个复杂而广泛的生态系统,本质上容易着火。许多物种已开发出特定的适应性特征以应对火势,从而确保了抵抗力和复原力。由于社会经济和土地用途的最新变化,城乡边缘地区和海岸线的火灾越来越频繁,而这两个地区现在都人口稠密。因此,鉴于气候变化引发的经常性干旱,对于当地管理以及对生态系统的动态和过程的了解,火灾的检测和植被再生的监测是最重要的。 COSMO-SkyMed雷达星座任务的主要目标之一是环境危害的监控。此任务的很高的重新访问时间对于灾后响应活动而言是最佳的。但是,很少有研究将此类数据用于火灾和植被监测。在这项研究中,Cosmo-SkyMed被用于被蚊子覆盖的地中海保护区中,以检测烧伤面积的扩大并进行植被再生的中期评估。这项研究中取得的积极成果突出了高分辨率连续采集和COSMO-SkyMed提供的多极化信息对监测火势对植被的影响的重要性。

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