树木地貌学作为描述热带水文地貌过程的工具

Q4 Earth and Planetary Sciences
A. Quesada-Román
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引用次数: 1

摘要

气候和人为变化导致哥斯达黎加独特的生态系统被剥夺,改变了气候、生态和地貌条件。哥斯达黎加和热带地区的高热带生物多样性适合于提高对水文地貌过程动力学的了解,并在数据稀少的地区产生关于过去灾害的基线数据。将热带地区的自然灾害与树木年代学联系起来的主要动机是希望创造出能够减少其暴露和脆弱性的方法。本研究的主要目的是提供参考数据,以提高对水文地貌过程的认识,并探索热带树木在树木年代学方面的应用潜力。本文结合了遥感、气象评估、树木年代学分析、水力建模和风险评估。这项创新研究描述了对哥斯达黎加与过去灾害及其与气候的联系有关的树木年轮分析的了解有所减少。这项研究可能有助于在灾害风险研究中实施新的方法,并将促进世界上生物多样性最丰富的地区未来的适应战略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dendrogeomorphology as a tool to depict hydrogeomorphic processes in the tropics
Climatic and anthropogenic changes cause the deprivation of distinct ecosystems in Costa Rica, transforming climatic, ecological, and geomorphic conditions. The high tropical biodiversity of Costa Rica and the tropics is suitable to improve the understanding of hydrogeomorphic process dynamics and to produce baseline data on past disasters in scarce-data regions. The principal motivation to connect natural hazards and dendrochronology on tropics is the desire to create methods that can reduce its exposure and vulnerability. The principal research aim of this study is to give reference data that can improve the understanding of hydrogeomorphic processes and to explore the potential of tropical trees in dendrochronological applications. This paper combines remote sensing, meteorological assessments, and dendrochronology analyses, hydraulic modelling, and risk assessments. This innovative research describes the reduced understanding in tree-ring analysis in Costa Rica related with past disasters and their linkage to climate. This study will likely contribute to the implementation of new methodologies in disaster risk research, and it will promote future adaptation strategies in the most biodiverse region of the world.
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来源期刊
CiteScore
0.90
自引率
0.00%
发文量
8
审稿时长
6 weeks
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