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首页> 外文期刊>Journal of Hydrology >Water balance and water movement in unsaturated zones of Sphagnum hummocks in Fuhrengawa Mire, Hokkaido, Japan
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Water balance and water movement in unsaturated zones of Sphagnum hummocks in Fuhrengawa Mire, Hokkaido, Japan

机译:日本北海道富仁川流域泥炭藓山岗非饱和区的水分平衡和水分运动

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摘要

This study examined the hydrological conditions and water balance of a tall hummock in Fuhrengawa mire for 2 years. We clarified the hydrological processes by which Sphagnum can survive on hummocks of a mixed mire. Surface-layer water content was almost constant irrespective of continuous sunny days and heavy-rain days. Water content of deeper layers and the overall water level fluctuated more widely. Estimates of water balance showed that an almost identical amount of water that was lost to evapotranspiration was re-supplied from deeper layers to the surface on sunny days. Conversely, during rainy periods, rainwater rapidly infiltrated through unsaturated layers to deeper layers. Thereby, some fraction of the rainwater was stored in deeper layers or as groundwater. These water movements are attributable to the physical properties of Sphagnum peat, which forms hummocks. During our 2-year observation, precipitation was 1.1-1.5 times higher than the evapotranspiration. The longest period without rainfall was 11 days. Such a frequent and abundant rainwater supply, which exceeds evapotranspiration loss, maintains wet conditions and quantitative predominance of rainwater in hummocks. Accordingly, Sphagnum hummocks in the Fuhrengawa mire maintain their wet and ombrotrophic conditions because of the physical properties of peat and humid climate. Sphagnum survives because of these suitable conditions for growth. (C) 2005 Elsevier Ltd All rights reserved.
机译:这项研究调查了富仁川沼泽高高的山丘2年的水文条件和水分平衡。我们弄清了水藓在杂种泥沙丘上生存的水文过程。无论连续晴天还是大雨天,表层水含量几乎都是恒定的。更深层的水含量和整体水位波动更大。水平衡的估算表明,在晴天,由于蒸散而损失的水几乎是相同量的水,从较深的层重新供应到地表。相反,在雨季,雨水通过不饱和层迅速渗入更深的层。因此,一部分雨水被存储在更深的层中或作为地下水。这些水的运动归因于泥炭藓泥炭的物理性质,形成了山岗。在我们的两年观察中,降水量比蒸散量高1.1-1.5倍。没有降雨的最长时间是11天。如此频繁而丰富的雨水供应量超过了蒸散损失,维持了湿润的条件,并在山岗中保持了雨水的定量优势。因此,由于泥炭的物理特性和潮湿的气候,Fuhrengawa泥潭中的泥炭藓小丘保持了其湿润和营养营养状态。由于这些合适的生长条件,水藓得以幸存。 (C)2005 Elsevier Ltd保留所有权利。

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