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A network-indexbased version of TOPMODEL for use with high-resolution digital topographic dataud

机译:基于网络索引的TOpmODEL版本,用于高分辨率数字地形数据 ud

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摘要

This paper describes the preliminary development of a network index approach to modify and to extend the classic TOPMODEL. Application of the basic Beven and Kirkby (1979) form of TOPMODEL to high resolution (2.0 m) laser altimetric data (based upon the U.K. Environment Agency’s Light Detection and Ranging (LIDAR) system) to a 13.8 km(2) catchment in an upland environment identified large areas of saturated areas that remained unconnected from the drainage network even during an extreme flood event. This is shown to be a particular problem with using high resolution topographic data especially over large spatial scales. To deal with the hydrological consequences of disconnected areas, we present a simple network index modification in which saturated areas only connect when the topographic index is sufficient for there to be zero or negative saturation deficits along a complete flow path. This is combined with an enhanced method for dealing with the problem of pits and hollows which is shown to become more acute with higher resolution topographic data. The paper concludes by noting the implications of the research as presented for both methodological and substantive research that is currently under way.
机译:本文介绍了网络索引方法的初步开发,该方法用于修改和扩展经典的TOPMODEL。将TOPMODEL的基本Beven和Kirkby(1979)形式应用于高分辨率(2.0 m)激光测高数据(基于英国环境局的光探测与测距(LIDAR)系统)到高地13.8 km(2)的集水区环境识别出大面积的饱和区域,即使在极端洪灾事件中,这些区域仍未与排水网络保持连通。使用高分辨率的地形数据,尤其是在较大的空间尺度上,这被证明是一个特殊的问题。为了处理不连续区域的水文后果,我们提出了一种简单的网络指数修改方法,其中饱和区域仅在地形指数足以使整个流动路径上的零或负饱和度不足时才连接。这与处理凹坑和凹陷问题的增强方法相结合,随着高分辨率的地形数据的出现,这种方法变得更加尖锐。本文最后指出了该研究对目前正在进行的方法学研究和实质性研究的影响。

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