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首页> 外文期刊>Hydrological Processes >Patterns in stream longitudinal profiles and implications for hyporheic exchange flow at the H.J. Andrews Experimental Forest, Oregon, USA
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Patterns in stream longitudinal profiles and implications for hyporheic exchange flow at the H.J. Andrews Experimental Forest, Oregon, USA

机译:美国俄勒冈州H.J.安德鲁斯实验森林中河流纵向剖面的模式及其对流变交换流的影响

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There is a need to identify measurable characteristics of stream channel morphology that vary predictably throughout stream networks and that influence patterns of hyporheic exchange flow in mountain streams. In this paper we characterize stream longitudinal profiles according to channel unit spacing and the concavity of the water surface profile. We demonstrate that: (1) the spacing between zones of upwelling and downwelling in the beds of mountain streams is closely related to channel unit spacing; (2) the magnitude of the vertical hydraulic gradients (VHGs) driving hyporheic exchange flow increase with increasing water surface concavity, measured at specific points along the longitudinal profile; (3) channel unit spacing and water surface concavity are useful metrics for predicting how patterns in hyporheic exchange vary amongst headwater and mid-order streams. We use regression models to describe changes in channel unit spacing and concavity in longitudinal profiles for 12 randomly selected stream reaches spanning 62 km~2 in the H.J. Andrews Experimental Forest in Oregon. Channel unit spacing increased significantly, whereas average water surface concavity (AWSC) decreased significantly with increasing basin area. Piezometer transects installed longitudinally in a subset of stream reaches were used to measure VHG in the hyporheic zone, and to determine the location of upwelling and downwelling zones. Predictions for median pool length and median distance between steps in piezometer reaches bracketed the median distance separating zones of upwelling in the stream bed. VHG in individual piezometers increased with increasing water surface concavity at individual points in the longitudinal profile along piezometer transects. Absolute values of VHG, averaged throughout piezometer transects, increased with increasing AWSC, indicating increased potential for hyporheic exchange flow. These findings suggest that average hyporheic flow path lengths increase—and the potential for hyporheic exchange flow in stream reaches decreases—along the continuum from headwater to mid-order mountain streams.
机译:有必要确定流道形态的可测量特征,这些特征在整个流域网络中可预测地变化,并且会影响山区河流中低渗交换流的模式。在本文中,我们根据通道单元间距和水面轮廓的凹度来表征河流的纵向轮廓。我们证明:(1)山streams河床上涌和下涌区域之间的间距与河道单元间距密切相关; (2)驱动水流交换流量的垂直水力梯度(VHGs)的大小随水面凹度的增加而增加,在沿纵向剖面的特定点处进行测量; (3)河道单元间距和水面凹度是有用的度量标准,可用于预测水流交换方式在源头和中阶水流之间如何变化。我们使用回归模型来描述俄勒冈州H.J.安德鲁斯实验林中12条随机选择的河流的跨度在纵向剖面中的通道单位间距和凹度变化,这些河流跨越62 km〜2。河道单位间距显着增加,而平均水面凹度(AWSC)随着流域面积的增加而显着下降。纵向安装在河段子集中的压力计样条用于测量流变带中的VHG,并确定上升流区和下降流区的位置。池长中位数和压强计中各步之间的中值距离的预测在括号中表示了在河床中上升流分隔区域的中值距离。各个压力计中的VHG随沿压力计断面的纵剖面中各个点处水表面凹度的增加而增加。随着AWSC的增加,整个测压曲线平均的VHG绝对值都增加,表明流变交换流量的潜力增加。这些发现表明,从上游源头到中部山区河流的连续流,平均河水流径长度增加了,而河水流中河水交换流的潜力减小了。

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