论文标题
床形式引起的低音交换和地球化学热点
Bed form-induced hyporheic exchange and geochemical hotspots
论文作者
论文摘要
小规模的床形状地形控制着水生沉积物中的低音交换和生物地球化学过程,这最终会影响流域尺度上的水质和营养循环。在本工作中研究了三维(3D)和小规模的床形状形态对低血交换和溶质混合的影响。还研究了床形态形态对增强反应速率区域(即热点)的发展的影响。一个计算流体动力学模型,用于模拟床上的河流流动与地下流动和多组分反应性溶质传输模型相结合。使用几何模型通过控制曲率以及床形波长和振幅的不同参数来生成各种各样的床形状。我们的结果表明,沉积物 - 水界面的压力分布受床形状几何形状的强烈影响。床形状的较高相移导致总体上更高的平均速度,较大的压力和反应速率的区域以及更高量的溶质交换。此外,床形状控制着多种沉积物电导率的反应过程。这项研究促进了对复杂和小规模形态特征对低音交换过程的影响的理解。
Small-scale bed form topographies control hyporheic exchange and biogeochemical processes within aquatic sediments, which ultimately affect water quality and nutrient cycling at the watershed scale. The impact of three-dimensional (3D) and small-scale bed form topographies on hyporheic exchange and solute mixing is investigated in the present work. The effect of bed form morphologies on the development of zones of enhanced reaction rates (i.e., hot spots) is also studied. A computational fluid dynamics model to simulate river flow over bed forms is combined with a subsurface flow and multicomponent reactive solute transport model. A wide variety of bed form topographies are generated using geometric models by varying parameters controlling curvature as well as bed form wavelength and amplitude. Our results show that the pressure distribution at the sediment-water interface is strongly affected by the bed form geometry. Higher phase shifts in bed form shapes result in overall higher average velocity, larger zones of enhanced pressure and reaction rates, and higher amounts of solute exchange. Moreover, the bed form shapes control the reaction process for a wide range of sediment conductivities. This study advances the understanding of the effects of complex and small scale morphological features on hyporheic exchange processes.