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首页> 外文期刊>Journal of Hydrology >Soil water depletion and recharge patterns in mixed and pure forest stands of European beech and Norway spruce
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Soil water depletion and recharge patterns in mixed and pure forest stands of European beech and Norway spruce

机译:欧洲山毛榉和挪威云杉混合林和纯林林分的土壤水分枯竭和补给方式

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Automated time domain reflectometry (TDR) measurements in high resolution over soil depth and over time were performed in a mixed beech-spruce and a spruce stand during two hydrologically contrasting seasons. Soil drying was more intensive and reached deeper soil layers in the mixed stand, which on the other hand allowed more stand precipitation, compensating for the higher evapotranspiration rates. These results were confirmed by a large number of spatially distributed TDR measurements along grids of different spacing, which additionally covered a beech stand. Spatial water depletion patterns of the topsoil in spring appeared to be largely congruent with tree species distribution and reflected the higher water consumption of fully foliated beech. Variability was highest in the mixed stand, where a spatial correlation within a range of about 7 in was observed. The pure stands lacked spatial correlation. The effect of the mixed stand on soil water depletion and recharge turned out to be non-additive as compared to the pure stands of beech and spruce: changes of soil water storage under the mixed stand almost equalled the values measured in the beech stand. During selected drying periods in 2000 average daily water extraction rates from the uppermost 60 cm of soil amounted to 1.65 mm in the beech as well as in the mixed stand, which is about 45% more than under pure spruce. Maximum differences of up to 84% occurred in periods with high evaporative demand. The over-proportionate evapotranspiration of the mixed stand was exclusively attributable to beech, which deepened and intensified its fine-root system in mixture, while spruce rooted more shallowly. The mixed stand extracted a higher percentage of water from deeper soil layers than the pure stands. (C) 2003 Elsevier B.V. All rights reserved. [References: 68]
机译:在两个水文截然不同的季节,在混合的山毛榉云杉和云杉林中,对土壤深度和时间进行高分辨率的自动时域反射仪(TDR)测量。在混合林中,土壤干燥更加密集,到达更深的土壤层,另一方面,林分中的降水增加,从而弥补了较高的蒸散速率。这些结果通过沿着不同间距的网格进行的大量空间分布TDR测量得到了证实,该网格还覆盖了山毛榉林。春季表层土壤的空间耗水方式似乎与树种分布基本吻合,反映出全叶山毛榉的耗水量较高。混合林分的变异性最高,观察到的空间相关性约为7 in。纯林缺乏空间相关性。与山毛榉和云杉的纯林分相比,混合林对土壤水分耗竭和补给的影响被证明是非累加的:混合林下土壤蓄水量的变化几乎等于在山毛榉林中测得的值。在2000年的选定干燥期中,山毛榉和混合林中最上层60厘米土壤的平均日取水率达到1.65毫米,比纯云杉下高约45%。在高蒸发需求期间,最大差异高达84%。混合林的过高蒸散量完全归因于山毛榉,山毛榉加深并增强了其细根系统的混合,而云杉根系较浅。与纯林相比,混合林从更深的土壤层中提取的水分比例更高。 (C)2003 Elsevier B.V.保留所有权利。 [参考:68]

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