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首页> 外文期刊>Journal of Hydrology >Hydrology of subarctic Canadian shield: bedrock upland
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Hydrology of subarctic Canadian shield: bedrock upland

机译:亚北极加拿大盾构的水文:基岩高地

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Runoff generation processes in the Canadian Shield were investigated to reconcile the considerable variability of runoff ratios noted by previous studies. Four bedrock plots near Yellowknife, Northwest Territories, Canada were studied between May 1999 and September 2000. Surface runoff increases with rainfall and snowmelt intensity because higher values of the latter can exceed fracture infiltration capacities. The size distribution of fractures affects infiltration while the fracture network controls the direction of surface flow. Frost has no effect on infiltration since the fractures are seldom ice filled. Storms of long duration and intermittent rainfall provide intervals between rainfalls during which evaporation can reduce the water available to runoff. Available storage in bedrock depressions, both empty and soil filled, retard surface flow and lengthen residence time, in turn enhancing evaporation and infiltration at the expense of runoff. The further downslope available storage is on the slope the more control it has on plot runoff magnitude. These field results show that rainfall-runoff relationships for bedrock slopes in the Canadian Shield should be considered in terms of microtopography, bedrock and soil characteristics and climate. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 23]
机译:对加拿大盾构的径流产生过程进行了研究,以调和先前研究指出的径流比的巨大变化。在1999年5月至2000年9月之间,对加拿大西北地区耶洛奈夫附近的四个基岩地块进行了研究。地表径流随降雨和融雪强度的增加而增加,因为后者的更高值可以超过裂缝的渗透能力。裂缝的尺寸分布影响渗透,而裂缝网络控制地表流向。由于裂缝很少充满冰,因此弗罗斯特对渗透没有影响。持续时间较长且降雨间歇的暴风雨在降雨之间提供间隔,在此期间蒸发会减少可用于径流的水量。可用的存储在空洞和土壤充满的基岩洼地中,延缓了地表流动并延长了停留时间,反过来又增加了蒸发和渗透,却以径流为代价。斜坡上的下坡可用存储空间越远,对地块径流幅度的控制就越大。这些现场结果表明,应从微观地形,基岩,土壤特征和气候等方面考虑加拿大盾构基岩斜坡的降雨-径流关系。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:23]

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