Loss of native forest changes the biophysical dynamics of the water cycle: a brief review

J. S. da Costa, Maria da Glória Gonçalves de Melo, Maria Astrid Rocha Liberato, Ligia Silveira Funch
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Abstract

This is a brief review of advances in understanding the forest-water relationship, particularly how the loss of native forests affects biophysical aspects of the water cycle. Initially, we address the participation of forests in the water cycle, especially in intracontinental systems, and how changes in land use and land cover can lead to water insecurity. Next, we present a synthesis of the advanced studies on the influence of evapotranspiration on the availability of water vapour to the atmosphere, and how diverse this process is in tropical ecosystems, which makes the possibility on inferences on an intercontinental and global scale complex. We also compiled information on the influence of the presence of native forests on atmospheric circulation and on the formation of condensation nuclei. Finally, we discuss some implications of forest fragmentation and what some studies point out, as well as considerations about the need to include biological aspects in the design and implementation of scientific models and institutional arrangements at local, regional, and transcontinental scales for understanding and maintenance of a resilient water cycle.
原生森林的丧失改变了水循环的生物物理动力学:简要回顾
这是对了解森林-水关系的进展的简要回顾,特别是原生森林的丧失如何影响水循环的生物物理方面。首先,我们将讨论森林在水循环中的参与,特别是在大陆内系统中的参与,以及土地利用和土地覆盖的变化如何导致水不安全。接下来,我们综合了关于蒸散发对大气中水蒸气有效性的影响的先进研究,以及热带生态系统中这一过程的多样性,这使得洲际和全球尺度上的推论变得复杂。我们还汇编了关于原生森林的存在对大气环流和凝结核形成的影响的资料。最后,我们讨论了森林破碎化的一些影响和一些研究指出的问题,以及在设计和实施科学模型和在地方、区域和跨大陆尺度上的制度安排时考虑将生物方面纳入理解和维持弹性水循环的必要性。
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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