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Daily time step simulation with a priority order based surface water allocation model.

机译:使用基于优先顺序的地表水分配模型进行每日时间步长仿真。

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摘要

Surface water availability models often use monthly simulation time steps for reasons of data availability, model parameter parsimony, and reduced computational time. Representing realistic streamflow variability, however, requires modeling time steps with sub-monthly or daily temporal resolution. Adding daily time step simulation capability to the Water Rights Analysis Package (WRAP) and the Texas Water Availability Modeling (WAM) System is a growing area of need and interest in water rights permitting, water supply planning, and environmental protection.;This research consisted of the following tasks: 1. Key modeling issues are identified that are relevant to daily time step modeling, but are otherwise not considered with monthly simulations. These key modeling issues include disaggregating monthly naturalized flows into daily flows, routing changes to flow through the stream network, reducing impacts to water availability in a priority order based water right system through the use of streamflow forecasting, distributing water right targets from monthly to daily amounts, and integrating flood control reservoir operations into the existing conservation reservoir modeling framework. 2. Two new programs for WRAP are developed to address the key daily time step modeling issues. The new programs include a pre-processor program, DAY, and a daily simulation program, SIMD. 3. A case study of the Brazos River Basin WAM is presented using daily time steps with SIMD. The purpose of the case study is to present an implementation of the daily modeling capabilities. 4. The case study simulation results are used as a basis to draw conclusions regarding monthly versus daily simulation outcomes.;The research, as presented through the Brazos River Basin WAM case study, illustrated that incorporating realistic daily streamflow variability into the simulation of a priority order based water allocation system can substantially affect the results obtained for time series of critical period reservoir storage contents, the determination of long-term water right reliability, and the distribution of unappropriated and regulated flows. The modeling capabilities developed by this research advance the state of water availability modeling with sub-monthly time steps by addressing the key modeling issues related to streamflow variability and routing.
机译:出于数据可用性,模型参数简约和减少计算时间的原因,地表水可用性模型通常使用每月模拟时间步长。但是,要代表现实的流量变化,就需要使用每月或每天以下的时间分辨率来模拟时间步长。在水权分析程序包(WRAP)和德克萨斯水可用性模型(WAM)系统中增加每日时间步长仿真功能是对水权许可,供水计划和环境保护日益增长的需求和关注的领域。以下任务:1.识别出与每日时间步建模有关的关键建模问题,但在每月模拟中不考虑这些关键建模问题。这些关键的建模问题包括将每月归化流量划分为每日流量,将更改路由到河流网络中,通过使用流量预测在基于优先顺序的水权系统中减少对水可用性的影响,将水权目标从每月分配到每天数量,并将防洪水库运营整合到现有的保护性水库建模框架中。 2.开发了两个新的WRAP程序,以解决关键的每日时间步建模问题。新程序包括预处理程序DAY和每日模拟程序SIMD。 3.使用SIMD的每日时间步长,介绍了布拉索斯河流域WAM的案例研究。案例研究的目的是介绍日常建模功能的实现。 4.案例研究模拟结果被用作得出关于每月模拟结果与每日模拟结果的结论的基础。;通过布拉索斯河流域WAM案例研究进行的研究表明,将现实的日流量变化纳入优先级模拟中基于订单的水分配系统可能会严重影响关键时期水库存储内容的时间序列,长期水权可靠性的确定以及未分配和调节流量的分配所获得的结果。这项研究开发的建模功能通过解决与流量可变性和路由相关的关键建模问题,以每月不到的时间步长推进了水可用性建模的状态。

著录项

  • 作者

    Hoffpauir, Richard James.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Civil.;Water Resource Management.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 321 p.
  • 总页数 321
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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