Unveiling the Complexity of Earth's Dynamic Ecosystems: Harnessing the Power of Remote Sensing for Environmental Analysis

Ahmad Basir Ahmadi, Mustafa Mohammadi, Zabihullah Nadry, Abdulrazaq Nazari, Sohaila Arghawan
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Abstract

Remote sensing has become an indispensable tool within geographic studies, fundamentally reshaping our understanding of the Earth's dynamic processes and surface. This comprehensive review article explores the diverse and multifaceted applications of remote sensing across various geographic disciplines. It commences by providing a comprehensive overview of the evolution and underpinning technology of remote sensing. Subsequently, the paper proceeds to delve into the methodological intricacies commonly employed in remote sensing studies, followed by an in-depth and systematic review of relevant literature. This meticulous review elucidates key findings and pioneering advancements and highlights the prevalent challenges experienced in diverse geographic domains. The empirical outcomes of this review underscore the profound importance of remote sensing as an invaluable tool for mapping vegetation areas. Furthermore, the findings gleaned from this extensive inquiry underscore the considerable contribution of remote sensing in enhancing our understanding of urban studies. This manifests through its capacity to furnish detailed insights into urban morphology, land use patterns, and the dynamic urban growth processes. The research outcomes vividly illustrate that water resources management derives substantial benefits from the intrinsic capabilities of remote sensing. Its capacity to capture and provide crucial water quality parameters and aquatic ecosystems empowers water resource professionals with a wealth of indispensable data. Moreover, the findings of this comprehensive review concretely establish the irreplaceable role of remote sensing in assessing natural hazards, spanning from landslides to volcanic activity. The empirical evidence presented is a testament to the importance of integrating remote sensing data with Geographic Information Systems (GIS). This interaction has revolutionized spatial data analysis and visualization, underscoring the transformative potential of combining these two technological domains.
揭示地球动态生态系统的复杂性:利用遥感技术进行环境分析
遥感已成为地理研究中不可或缺的工具,从根本上重塑了我们对地球动态过程和地表的认识。这篇综合评论文章探讨了遥感技术在各个地理学科中的多样化和多层面应用。文章首先全面概述了遥感技术的演变和基础技术。随后,文章深入探讨了遥感研究中通常采用的复杂方法,并对相关文献进行了深入系统的综述。这篇细致的综述阐明了主要研究成果和开创性进展,并强调了在不同地理领域所遇到的普遍挑战。本综述的实证成果强调了遥感作为绘制植被区域图的宝贵工具的深远重要性。此外,这次广泛调查的结果还强调了遥感在提高我们对城市研究的认识方面做出的巨大贡献。这表现在遥感技术能够提供有关城市形态、土地利用模式和动态城市增长过程的详细见解。研究成果生动地表明,水资源管理从遥感的内在能力中获得了巨大的好处。遥感技术能够捕捉和提供重要的水质参数和水生生态系统,为水资源专业人员提供了大量不可或缺的数据。此外,本综述的研究结果还具体证实了遥感技术在评估从山体滑坡到火山活动等各种自然灾害方面所发挥的不可替代的作用。所提供的经验证据证明了将遥感数据与地理信息系统(GIS)相结合的重要性。这种互动彻底改变了空间数据分析和可视化,凸显了这两个技术领域相结合的变革潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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