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Spatial distribution of near surface soil moisture and its relationship to microtopography in the Alaskan Arctic coastal plain

机译:阿拉斯加北极沿海平原近地表土壤水分的空间分布及其与微形貌的关系

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摘要

The Arctic coastal plain of Alaska is characterized by marked heterogeneity in microtopography and above ground vegetation productivity at a variety of scales. This heterogeneity may be expected to lead to large variations in near surface soil moisture and have a substantial impact on measured and modeled fluxes of carbon and water. In this study, we hypothesized that microtopography was the primary control over the spatial patterns of near surface soil moisture. Near surface soil moisture measurements were collected in the summers of 2000, 2001, 2002 and 2003 in the fetch of an eddy flux tower (0.5 km~2). Results confirmed the expected relationship between intra- and inter-seasonal variations in near surface soil moisture and variations in precipitation. However, over two time periods, near surface soil moisture increased without corresponding measured precipitation inputs and this was attributed to fog and dew, which are difficult to measure, and/or the melting of the active layer. Spatial variations in near surface soil moisture are largely controlled by microtopography in areas characterized by high centered polygons and troughs. In areas without large variations in microtopography, macrotopography, in the form of drained thaw lakes, has a substantial control over near surface soil moisture.
机译:阿拉斯加的北极沿海平原的特征是微观地形的异质性以及各种规模的地上植被生产力。可以预期这种异质性会导致近地表土壤水分的巨大变化,并对碳和水的测量和模拟通量产生重大影响。在这项研究中,我们假设微地形是对近地表土壤水分空间格局的主要控制。在2000年,2001年,2002年和2003年夏季,在一个涡流通量塔(0.5 km〜2)的采集中收集了近地表土壤水分的测量值。结果证实了近地表土壤水分的季节内和季节间变化与降水变化之间的预期关系。然而,在两个时间段内,近地表土壤水分增加而没有相应的测量降水输入,这归因于难以测量的雾和露和/或活性层的熔化。在以高中心多边形和低谷为特征的区域,近地表土壤水分的空间变化在很大程度上受到微观形貌的控制。在微观形貌变化不大的地区,以排水融化湖形式存在的宏观形貌对近地表土壤水分具有实质性的控制作用。

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