首页> 外文OA文献 >Modeling hyporheic exchange with unsteady stream discharge and bedform dynamics
【2h】

Modeling hyporheic exchange with unsteady stream discharge and bedform dynamics

机译:用非恒定流排放和床形动力学模拟水流交换

摘要

Water exchange between streams and hyporheic zones is highly dynamic, and its temporal variation is related to the hydrologic fluctuations of stream discharge and groundwater levels. Unfortunately, predictions of temporal patterns of exchange are difficult due to the many involved hydrodynamic and morphodynamic processes and to their complex nonlinear interactions. These processes include the evolution of streambed morphology in response to changing streamflow as well as feedbacks on surface flow induced by drag resistance due to evolving bedforms. We have employed a stochastic method to analyze the temporal dynamics of bedform-driven hyporheic exchange in streams characterized by subcritical flow and daily discharge variations. The method is an extension of previous studies that includes current-induced alterations of bedform size and celerity and their effect on water exchange. The modeling results show that during high flows stream water penetrates deeper and for longer times in the sediments. The predicted water exchange flux per unit streambed area decreases because the streambed area occupied by each bedform increases faster than the volumetric rate of stream water exchange induced by the same bedform. However, the increase in wetted area with discharge may compensate this reduction by providing additional area for water exchange. One the main finding of the study is that the time-averaged values of exchange flux and depths are quite similar to those modeled for a steady mean discharge, while residence times are somewhat lower. Predicted temporal variations of exchange depths and times around their time-averaged values are moderate compared to steady state values
机译:河流与流变区之间的水交换是高度动态的,并且其时间变化与河流水位和地下水位的水文波动有关。不幸的是,由于涉及许多流体动力学和形态动力学过程及其复杂的非线性相互作用,因此很难预测交换的时间模式。这些过程包括响应不断变化的水流而演变的河床形态,以及由于床体演化引起的阻力所引起的表面流反馈。我们采用了一种随机方法来分析以亚临界流量和日流量变化为特征的流中床形驱动的流变交换的时间动态。该方法是先前研究的扩展,包括当前引起的床形大小和速度变化及其对水交换的影响。模拟结果表明,在高流量下,水在沉积物中的渗透时间更长,时间更深。预测的每单位河床面积的水交换通量减少是因为每个床架所占的河床面积的增加速度快于同一床架所引起的河水交换的体积率。然而,随着排出而增加的湿润面积可以通过提供额外的水交换面积来补偿这种减少。该研究的主要发现之一是交换通量和深度的时间平均值与稳态平均放电的模拟值非常相似,而停留时间略短。与稳态值相比,交换深度和时间在其时间平均值附近的预测时间变化适中

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号