BasinMaker 3.0: A GIS toolbox for distributed watershed delineation of complex lake-river routing networks

IF 4.8 2区 环境科学与生态学 Q1 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS Environmental Modelling & Software Pub Date : 2023-06-01 DOI:10.1016/j.envsoft.2023.105688
Ming Han , Hongren Shen , Bryan A. Tolson , James R. Craig , Juliane Mai , Simon G.M. Lin , Nandita B. Basu , Frezer S. Awol
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Abstract

Hydrological modelling efforts tend to ignore the impacts of lakes or explicitly simulate the behavior of only the largest lakes in a watershed as deriving information required to explicitly represent thousands of lakes is difficult. We introduce an open-source GIS toolbox (BasinMaker) that can efficiently build vector-based hydrological routing networks including an arbitrary number of rivers and lakes, with attributes (e.g., network topology, subbasin and lake geometry, channel characteristics) that provide the inputs required for hydrological routing models. BasinMaker functionality is demonstrated to build two high-resolution vector-based lake-river routing products each defining a collection of routing networks across large regions: the North American Lake-River Routing and Ontario Lake-River Routing Products. Each includes all lakes over 10 ha identified in the HydroLAKES dataset. BasinMaker is unique in terms of lake representation and is especially helpful for modelers who need to explicitly represent numerous lakes in their watershed simulation models.

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BasinMaker 3.0:用于复杂湖泊-河流路线网络的分布式流域划定的GIS工具箱
水文建模工作往往忽略湖泊的影响,或者明确地模拟流域中最大湖泊的行为,因为很难获得明确代表数千个湖泊所需的信息。我们介绍了一个开源的GIS工具箱(BasinMaker),它可以有效地构建基于向量的水文路由网络,包括任意数量的河流和湖泊,具有属性(例如,网络拓扑结构,子流域和湖泊几何形状,通道特征),为水文路由模型提供所需的输入。BasinMaker功能被证明可以构建两个高分辨率的基于矢量的湖河路由产品,每个产品都定义了一组跨大区域的路由网络:北美湖河路由和安大略湖河路由产品。每个都包括所有在HydroLAKES数据集中确定的超过10公顷的湖泊。BasinMaker在湖泊表示方面是独一无二的,对于需要在流域模拟模型中明确表示众多湖泊的建模者特别有帮助。
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来源期刊
Environmental Modelling & Software
Environmental Modelling & Software 工程技术-工程:环境
CiteScore
9.30
自引率
8.20%
发文量
241
审稿时长
60 days
期刊介绍: Environmental Modelling & Software publishes contributions, in the form of research articles, reviews and short communications, on recent advances in environmental modelling and/or software. The aim is to improve our capacity to represent, understand, predict or manage the behaviour of environmental systems at all practical scales, and to communicate those improvements to a wide scientific and professional audience.
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