...
【24h】

Inverse streamflow routing

机译:逆流路由

获取原文

摘要

The process whereby the spatially distributed runoff (generated through saturation/infiltration excesses, subsurface flow, etc.) travels over the hillslope and river network and becomes streamflow is generally referred to as "routing". In short, routing is a runoff-to-streamflow process, and the streamflow in rivers is the response to runoff integrated in both time and space. Here we develop a methodology to invert the routing process, i.e., to derive the spatially distributed runoff from streamflow (e.g., measured at gauge stations) by inverting an arbitrary linear routing model using fixed interval smoothing. We refer to this streamflow-to-runoff process as "inverse routing". Inversion experiments are performed using both synthetically generated and real streamflow measurements over the Ohio River basin. Results show that inverse routing can effectively reproduce the spatial field of runoff and its temporal dynamics from sufficiently dense gauge measurements, and the inversion performance can also be strongly affected by low gauge density and poor data quality. brbr The runoff field is the only component in the terrestrial water budget that cannot be directly measured, and all previous studies used streamflow measurements in its place. Consequently, such studies are limited to scales where the spatial and temporal difference between the two can be ignored. Inverse routing provides a more sophisticated tool than traditional methods to bridge this gap and infer fine-scale (in both time and space) details of runoff from aggregated measurements. Improved handling of this final gap in terrestrial water budget analysis may potentially help us to use space-borne altimetry-based surface water measurements for cross-validating, cross-correcting, and assimilation with other space-borne water cycle observations.
机译:空间分布的径流(通过饱和/渗透过量,地下流量等产生)流经山坡和河网并变为河流的过程通常称为“径流”。简而言之,径流是径流向径流的过程,河流中的径流是对时间和空间中集成的径流的响应。在这里,我们开发了一种方法,可以通过使用固定间隔平滑来反转任意线性路由模型来反转路由过程,即从流量(例如在标尺站处测量)中推导出空间分布的径流。我们将此流到径流过程称为“逆向路由”。反演实验是使用俄亥俄河流域的合成流量和实际流量进行的。结果表明,逆向路由可以从足够密集的轨距测量中有效地再现径流的空间场及其时间动态,并且反演性能还可能受到轨距密度低和数据质量差的强烈影响。 径流字段是陆地水预算中唯一无法直接测量的部分,并且所有以前的研究都在其位置使用了流量测量。因此,此类研究仅限于可以忽略两者之间的时空差异的尺度。与传统方法相比,逆向路由提供了一种更先进的工具来弥合这一差距,并根据汇总测量结果推断出径流的精细尺度(在时间和空间上)。改进对地面水预算分析中最终差距的处理,可能会潜在地帮助我们将基于星空测高的地表水测量值与其他星载水循环观测值进行交叉验证,交叉校正和同化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

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