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Map to map: Converting a NEXRAD rainfall map into a flood inundation map.

机译:映射到地图:将NEXRAD降雨图转换成洪水淹没图。

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摘要

The spatial nature of flood hazards makes GIS a proper means to address and integrate flood damage assessment components. Geography, relational databases, and engineering models are proposed as central elements to develop an end-to-end integrated and dynamic regional watershed modeling system for flood information support: the Map2Map application. Using ArcGIS 9 customization language and visual environment for batch geoprocessing, ArcObjects and ModelBuilder, respectively, a methodology for converting a NEXRAD rainfall map time series into a flood inundation map has been developed. The methodology integrates HEC-HMS and HEC-RAS modeling systems through flow exchange points in the stream network georeferenced in the Arc Hydro data model for water resources. The georeferenced flow change points allow the transfer of simulated runoff hydrographs from HEC-HMS into HEC-RAS by means of spatial relationships between hydrograph entry points in HEC-HMS and their closest downstream cross sections in HEC-RAS. To support this integration, spatially-referenced time series exchanges were achieved via custom designed applications for the two way transfer of time series between the HEC-DSS system and the Arc Hydro data model. The system achieves integration, not only by means of data exchange, but also by means of a centrally managed and unified execution of chained tasks representing the modeling workflow of the involved processes and datasets. The coupling of these external modeling systems (HEC-HMS and HEC-RAS) via a common geographic framework enables streamlined dynamic and seamless end-to-end simulations for historical, real time and planning analysis that overcomes a conventionally tedious and error-prone step-wise approach. The aforementioned integrating approach was implemented in the San Antonio River basin, Texas as part of a regional watershed modeling system being developed by the San Antonio River Authority, the City of San Antonio, and Bexar County. In particular, the Salado and Rosillo creeks have been used to test a prototype version of the proposed geographically based modeling integration.
机译:洪水灾害的空间性质使GIS成为解决和整合洪水灾害评估组成部分的适当手段。地理,关系数据库和工程模型被提议作为开发洪水信息支持的端到端集成和动态区域流域建模系统的核心要素:Map2Map应用程序。使用ArcGIS 9自定义语言和可视环境分别进行批处理地理处理,ArcObjects和ModelBuilder,已开发出一种将NEXRAD降雨图时间序列转换为洪水淹没图的方法。该方法通过在Arc Hydro数据模型中对水资源进行地理参考的流网中的流交换点将HEC-HMS和HEC-RAS建模系统集成在一起。地理参考的流量变化点允许通过HEC-HMS中水文入口和它们在HEC-RAS中最下游的横截面之间的空间关系,将模拟径流水文从HEC-HMS转移到HEC-RAS。为了支持这种集成,通过定制设计的应用程序在HEC-DSS系统和Arc Hydro数据模型之间进行时间序列的双向传递,实现了空间参考时间序列的交换。该系统不仅通过数据交换,而且通过集中管理和统一执行代表所涉及流程和数据集的建模工作流的链式任务,来实现集成。这些外部建模系统(HEC-HMS和HEC-RAS)通过通用的地理框架进行耦合,可以简化用于历史,实时和计划分析的动态,无缝的端到端仿真,从而克服了传统的繁琐且容易出错的步骤明智的方法。前述集成方法是在德克萨斯州圣安东尼奥流域实施的,是圣安东尼奥河管理局,圣安东尼奥市和比克萨尔县开发的区域分水岭建模系统的一部分。特别是,使用了Salado和Rosillo小河来测试所提出的基于地理的建模集成的原型版本。

著录项

  • 作者

    Robayo, Oscar.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 242 p.
  • 总页数 242
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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