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GROUND-SURFACE WATER INTERACTIONS AND THE ROLE OF THE HYPORHEIC ZONE

机译:地表水相互作用及其疗效区的作用

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The hyporheic zone describes a region beneath and lateral to the bed of a stream where groundwater and surface water interact. Although the existence of this zone is well recognised, the flow dynamics and mixing processes within the zone are not well understood. To investigate hyporheic zone behavior, numerical groundwater flow models were developed with MODFLOW and calibrated using data collected at a study site on the Magpie River, near Wawa, Ontario, Canada. These models were used to examine the uncertainties of hyporheic zone behaviour at pool-riffle sequences and the response of the hyporheic zone to stream flow regulation. The hyporheic zone was found to be complex and temporally sensitive to stream stage and to groufidwater fluxes as determined by streambed permeability and the hydrogeological characteristics of adjacent aquifers. The size of the hyporheic zone was found to be inversely proportional to the flux of groundwater moving towards the stream, and rapid changes in river stage were determined to cause short-term reversals of flow within the hyporheic zone which have important implications on hyporheic zone organisms and their need to adapt to changing environmental conditions.
机译:过度的区域描述了地下水和地表水相互作用的流下部和横向的区域。虽然该区域的存在很公认,但区域内的流动动力学和混合过程并不顺利。为了调查低于区的行为,使用Modflow开发了数值地下水流量模型,并使用在Magpie河的研究现场收集的数据进行校准,加拿大安大略省Wawa附近。这些模型用于检测池 - Riffle序列在池 - Riffle序列中的低同位区行为的不确定性以及低于辐射区流动调节的响应。发现过次疗效区复杂,对流阶段复杂,对流阶段敏感,并通过流渗透率和相邻含水层的水文地质特征确定的Groufidwater助熔剂。发现过度区的大小与地下水的通量成反比,朝向流动的磁通量成反比,并且河流阶段的快速变化被确定导致低于过度区内流动的短期逆转,这对低于多发区生物有重要影响他们需要适应改变环境条件。

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