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首页> 外文期刊>Advances in Water Resources >On the interrelations between topography, soil depth, soil moisture, transpiration rates and species distribution at the hillslope scale
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On the interrelations between topography, soil depth, soil moisture, transpiration rates and species distribution at the hillslope scale

机译:坡度尺度上地形,土壤深度,土壤湿度,蒸腾速率与物种分布之间的相互关系

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Relations between the spatial patterns of soil moisture, soil depth, and transpiration and their influence on the hillslope water balance are not well understood. When determining a water balance for a hillslope, small scale variations in soil depth are often ignored. In this study we found that these variations in soil depth can lead to distinct patterns in transpiration rates across a hillslope. We measured soil moisture content at 0.05 and 0.10 m depth intervals between the soil surface and the soil-bedrock boundary on 64 locations across the trenched hillslope in the Panola Mountain Research Watershed, Georgia, USA. We related these soil moisture data to transpiration rates measured in 14 trees across the hillslope using 28 constant heat sapflow sensors. Results showed a lack of spatial structure in soil moisture across the hillslope and with depth when the hillslope was in either the wet or the dry state. However, during the short transition period between the wet and dry state, soil moisture did become spatially organized with depth and across the hillslope. Variations in soil depth and thus total soil water stored in the soil profile at the end of the wet season caused differences in soil moisture content and transpiration rates between upslope and midslope sections at the end of the summer. In the upslope section, which has shallower soils, transpiration became limited by soil moisture while in the midslope section with deeper soils, transpiration was not limited by soil moisture. These spatial differences in soil depth, total water available at the end of the wet season and soil moisture content during the summer appear responsible for the observed spatial differences in basal area and species distribution between the upslope and midslope sections of the hillslope.
机译:土壤水分,土壤深度和蒸腾作用的空间格局之间的关系及其对山坡水平衡的影响尚不清楚。在确定山坡的水平衡时,通常会忽略土壤深度的小范围变化。在这项研究中,我们发现土壤深度的这些变化可以导致整个山坡上蒸腾速率的不同模式。我们在美国佐治亚州Panola山研究流域的64个位置的土壤表面与土壤-基岩边界之间的深度间隔为0.05和0.10 m的位置测量了土壤水分含量。我们将这些土壤水分数据与使用28个恒定热量流向传感器在14棵横过山坡的树木上测得的蒸腾速率相关联。结果表明,在湿润或干燥状态下,整个山坡土壤水分缺乏空间结构,且随深度增加。但是,在湿润和干燥状态之间的短暂过渡期中,土壤水分的确在空间上随深度分布并横越山坡。土壤深度的变化以及因此在雨季结束时存储在土壤剖面中的总土壤水分的变化导致了夏末上坡段和中坡段之间土壤水分含量和蒸腾速率的差异。在土壤较浅的上坡部分,蒸腾作用受到土壤水分的限制,而在土壤较深的中坡部分,蒸腾作用不受土壤水分的限制。这些土壤深度,湿季末可用总水量和夏季土壤水分含量的空间差异似乎是所观察到的基础面积和山坡上坡与中坡部分之间物种分布的空间差异的原因。

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