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Intermediately Complex Models for the Hydrological Interactions in the Atmosphere-Vegetation-Soil System

机译:大气-植被-土壤系统中水文相互作用的中间复杂模型

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摘要

This paper investigates the hydrological interactions in the atmosphere-evegetation-soil system by using the bucket model and several new simplified intermediately complex models. The results of mathematical analysis and numerical simulations show that these models, despite their simplicity, can very clearly reveal the essential features of the rather complex hydrological system of atmosphere-ecosystem-soil. For given atmospheric variables, these models clearly demonstrate multiple timescales, the "red shift" of response spectra, multi-equilibria and limit cycles, bifurcation, abrupt change, self-organization, recovery, "desertification", and chaos. Most of these agree with observations. Especially, the weakening of "shading effect"of living canopy and the wilted biomass might be a major mechanism leading to the desertification in a relatively short period due to overgrazing, and the desertification in a relatively long period or in climate of change might be due to both Charney's mechanism and the shading effect. These Ideas could be validated with further numerical simulations. In the paper, some methods for improving the estimation of timescales in the soil water evolution responding to the forcing are also proposed.
机译:本文利用桶模型和几种新的简化的中间复杂模型研究了大气-植被-土壤系统中的水文相互作用。数学分析和数值模拟的结果表明,这些模型尽管简单,但可以非常清楚地揭示大气-生态系统-土壤这一相当复杂的水文系统的基本特征。对于给定的大气变量,这些模型清楚地表明了多个时标,响应谱图的“红移”,多重平衡和极限环,分叉,突变,自组织,恢复,“荒漠化”和混乱。这些大多数都与观察一致。特别是,活动冠层的“遮蔽效应”减弱和生物量枯萎可能是由于过度放牧而在较短时间内导致荒漠化的主要机制,而在较长时期内或在变化的气候下荒漠化可能是由于Charney的机制和阴影效果。这些想法可以通过进一步的数值模拟得到验证。本文还提出了一些方法来改善土壤水分演化对强迫的响应时间尺度。

著录项

  • 来源
    《大气科学进展(英文版)》 |2006年第1期|127-140|共14页
  • 作者

  • 作者单位

    The University of Arizona, Tucson, AZ, USA;

    University of Alberta, Edmonton, AB, Canada;

    Institute of Biophysics, Chinese Academy of Sciences, Beijing;

    The University of Arizona, Tucson, AZ, USA;

    University of Alberta, Edmonton, AB, Canada;

    Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing;

    Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing;

    Georgia Institute of Technology, Atlanta, GA, USA;

    The University of Arizona, Tucson, AZ, USA;

    University of Alberta, Edmonton, AB, Canada;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 大气科学(气象学);
  • 关键词

    Atmosphere-vegetation-soil system; hydrological process; multi-equilibria; chaos; desertification; shading effect;

    机译:大气-植被-土壤系统;水文学过程;多平衡;混沌;沙漠化;遮荫效应;
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