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Screening variability and change of soil moisture under wide-ranging climate conditions: Snow dynamics effects

机译:在广泛的气候条件下筛选变异性和土壤水分的变化:雪动力学效应

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摘要

Soil moisture influences and is influenced by water, climate, and ecosystem conditions, affecting associated ecosystem services in the landscape. This paper couples snow storage-melting dynamics with an analytical modeling approach to screening basin-scale, long-term soil moisture variability and change in a changing climate. This coupling enables assessment of both spatial differences and temporal changes across a wide range of hydro-climatic conditions. Model application is exemplified for two major Swedish hydrological basins, Norrström and Piteälven. These are located along a steep temperature gradient and have experienced different hydro-climatic changes over the time period of study, 1950–2009. Spatially, average intra-annual variability of soil moisture differs considerably between the basins due to their temperature-related differences in snow dynamics. With regard to temporal change, the long-term average state and intra-annual variability of soil moisture have not changed much, while inter-annual variability has changed considerably in response to hydro-climatic changes experienced so far in each basin.Electronic supplementary materialThe online version of this article (doi:10.1007/s13280-014-0583-y) contains supplementary material, which is available to authorized users.
机译:土壤水分会影响水,气候和生态系统条件并受其影响,从而影响景观中相关的生态系统服务。本文将储雪融化动力学与分析建模方法相结合,以筛选流域规模,长期土壤湿度变化和气候变化中的变化。这种耦合使得能够评估各种水文气候条件下的空间差异和时间变化。瑞典的两个主要水文盆地,北风和皮特尔文都以模型应用为例。它们位于陡峭的温度梯度上,在1950-2009年的研究期间经历了不同的水文气候变化。在空间上,由于流域温度相关的雪动力学差异,平均水分年际变化在流域之间存在很大差异。就时间变化而言,土壤水分的长期平均状态和年内变化没有太大变化,而响应于每个盆地迄今为止经历的水文气候变化,年间变化已经发生了很大变化。本文的在线版本(doi:10.1007 / s13280-014-0583-y)包含补充材料,授权用户可以使用。

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