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Effects of aspen harvesting on groundwater recharge and water table dynamics in a subhumid climate

机译:在半湿润气候下白杨收获对地下水补给和地下水位动态的影响

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摘要

Numerical experiments were developed using different water table depths and soil textures to investigate the impact of aspen harvesting on hydrological processes on the Western Boreal Plain. The effect of harvesting on soil moisture dynamics, fluxes at the water table, and water table fluctuation were compared for different harvesting scenarios simulated under wet and dry climatic cycles. Strong interaction between shallow water tables (i.e., 2 m) and atmospheric variability is observed for all soil textures and is reduced as the vadose zone thickens, particularly after a dry cycle, as a series of positive net atmospheric fluxes are needed to reduce soil moisture storage in order for recharge to occur. Because of harvesting, the water table fluxes can increase by 50 mm month~(-1), while on a yearly basis, this increase can reach 200 mm yr~(-1), with rainfall events taking between 1 and 5 years to become recharge (i.e., time lag). Also, the water table is expected to rise between 1 and 3.5 m, with rainfall-water table rise time lags of 1-3 years; however, the peak manifestation of harvesting on water table elevation can take up to 7 years after harvesting. The effects of aspen harvesting are more pronounced during wet cycles, and the development of forestry activities in the Boreal Plain should consider not only preceding precipitation but also the preceding precipitation-reference evapotranspiration ratio, water table depth, and soil texture. The interaction of these factors needs to be considered in order to develop sustainable forestry plans and avoid waterlogging conditions.
机译:使用不同的地下水位深度和土壤质地进行了数值实验,以调查白杨收获对西部北方平原水文过程的影响。比较了在潮湿和干燥气候循环下模拟的不同收获情景下,收获对土壤水分动力学,地下水位通量和地下水位波动的影响。在所有土壤质地中都观察到了浅水位(即2 m)与大气变化之间的强相互作用,并且在渗流带变厚时(特别是在干旱循环之后)减弱了,因为需要一系列正净大气通量来减少土壤水分存放以便充电。由于收获,地下水位通量可以增加50 mm个月〜(-1),而每年的增加量可以达到200 mm yr〜(-1),降雨事件需要1-5年才能成为充电(即时间滞后)。另外,地下水位预计将上升1至3.5 m,降雨-地下水位上升时间将滞后1-3年。但是,在地下水位升高时,收获的高峰表现可能需要长达7年的时间。在湿循环中,白杨采伐的影响更为明显,在北方平原上开展林业活动时,不仅应考虑先前的降水,而且还应考虑先前的降水参考蒸散量,地下水位和土壤质地。为了制定可持续的林业计划并避免涝灾条件,需要考虑这些因素的相互作用。

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  • 来源
    《Water resources research》 |2011年第5期|p.W05542.1-W05542.18|共18页
  • 作者单位

    Department of Earth and Atmospheric Sciences, University of Alberta,Edmonton, Alberta, Canada Now at Instituto Potosino de Investigation Cientifica y Tecnologica,San Luis Potosi, Mexico;

    Department of Earth and Atmospheric Sciences, University of Alberta,Edmonton, Alberta, Canada;

    Department of Biological Sciences, University of Alberta, Edmonton,Alberta, Canada;

    Department of Geography and Environmental Studies, Wilfrid Laurier University, Waterloo, Ontario, Canada;

    CSIRO Land and Water, Glen Osmond, South Australia, Australia;

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