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Significance of Snowpack for Root-zone Water and Temperature Cycles in Subarctic Lapland

机译:积雪对北极拉普兰根区水温循环的意义

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Snowmelt timing is a critical factor for tree growth ill high latitudes, but threshold conditions with respect to Soil Moisture availability and soil temperature for the root-zone processes are not well known. We monitored snowpack thickness, air and soil temperature, and water content in the soil. sapwood, and roots of downy birch (Betula pubescens Roth.) in Finnish Lapland through 1999-2003. An extreme cold event in January 1999 (T-AIR = -49 degrees C) resulted in soil freezing (at 10-cm depth) down to T-10 = -26 degrees C at a snow-free site, but beneath the 50-cm-thick snowpack the soil temperature was T-10 = -0.5 degrees C. Snowmelt water was able to infiltrate partially frozen soil sequences. such that all increase in water content of the soil and birch roots Occurred two to six weeks before soil temperatures rose notably above 0 degrees C. The soil T-10 reached +0 degrees C a week after the disappearance of snow. The increase in water content of birch trunks was coincidental with the air temperature rises notably above 0 degrees C. The systematic interseasonal pattern of water content in the birch root-trunk system, i.e. high peaks in late winter-early spring and fall, Suggests Sap now in downy birch.
机译:融雪时间是在高纬度地区树木生长的关键因素,但是对于根区过程中土壤水分的可利用性和土壤温度的阈值条件尚不清楚。我们监测了积雪的厚度,空气和土壤温度以及土壤中的水分。边材,以及1999年至2003年在芬兰拉普兰的绒毛桦树(Betula pubescens Roth。)的根。 1999年1月发生的极端寒冷事件(T-AIR = -49摄氏度)导致土壤结冰(深度为10厘米),在无雪的地方降到T-10 = -26摄氏度,但低于50-厘米厚的积雪层的土壤温度为T-10 = -0.5摄氏度。融雪水能够渗入部分冻结的土壤序列。因此,土壤和桦木根中所有水分的增加都发生在土壤温度显着升高到0摄氏度以上之前的两到六周。雪后一周,土壤T-10达到+0摄氏度。桦树树干水分含量的增加与气温升高明显同时在0摄氏度以上。桦树根树干系统中水分的系统性季节性变化,即冬末至初春和秋季的高峰值,现在在柔软的白桦树中。

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