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Issues associated with the creation of regional-scale variably saturated groundwater flow models in irrigated areas.

机译:与在灌溉地区建立区域尺度的可变饱和地下水流模型有关的问题。

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摘要

Recent advances in groundwater modeling codes have created the opportunity to fully model groundwater flow in the saturated and unsaturated zones on the regional scale. These models can be very useful for studying irrigated regions that have a shallow water table since irrigation management is influenced by, and influences, the groundwater system. This dissertation explores three issues associated with the creation of this type of model: vertical spatial discretization and temporal discretization in the root zone, disaggregation of irrigation district deliveries to the field scale, and the effects of the presence of a shallow water table on bare soil evaporation.;Computational power limits the degree to which these problems can be spatially and temporally discretized. Experiments with numerical models are presented which explore the effects of reducing spatial discretization on predictions of flux and moisture content in the root zone. Results indicate that acceptable predictions of flux can be made with model cells that thicken with depth. The error associated with thicker layers in moisture content predictions decreases with depth. Other numerical experiments explore the differences between use of daily versus monthly applied water boundary conditions. The monthly averaged boundary conditions reduce model run times and relax spatial discretization requirements. However, accuracy in calculated flux, moisture contents, and any moisture content based boundary conditions is decreased.;A model is presented that distributes monthly district deliveries to the field scale based on predicted field evapotranspiration and water table depth. This case is demonstrated through a regional-scale variably saturated flow model of the west side of the San Joaquin Valley, CA. Sensitivity of water table extent predictions to monthly and annual updates of water table depth is presented, as is sensitivity of the combined models to the irrigation efficiency---water table depth relationship.;Increased bare soil evaporation due to the presence of a shallow water table can be a significant source of groundwater discharge. The importance of this flux can be illustrated when its magnitude is compared to the net recharge to the groundwater system. The current method for calculating bare soil evaporation due to a shallow water table in MODFLOW assumes that this flux is a linear function of water table depth. Results presented show that in transient irrigated settings, such a model is not accurate on time scales shorter than one year.
机译:地下水建模规范的最新进展为区域范围内饱和和非饱和区的地下水流完全建模提供了机会。这些模型对于研究地下水位较浅的灌溉地区非常有用,因为灌溉管理受到地下水系统的影响,并影响地下水系统。本文探讨了与创建这种模型有关的三个问题:根区的垂直空间离散化和时间离散化,灌溉区输水对田间规模的分解以及浅层地下水位对裸土的影响计算能力限制了这些问题在空间和时间上可以离散的程度。提出了利用数值模型进行的实验,这些实验探索了减少空间离散对根区通量和水分含量预测的影响。结果表明,可以随深度增加的模型单元做出可接受的流量预测。水分含量预测中与较厚层相关的误差随深度而减小。其他数值实验探讨了每天和每月应用水边界条件之间的差异。每月平均边界条件减少了模型运行时间并放宽了空间离散化要求。但是,计算的通量,水分含量和任何基于水分含量的边界条件的准确性降低了。通过加利福尼亚州圣华金河谷西侧的区域规模可变饱和流动模型证明了这种情况。提出了地下水位范围预测对地下水位深度每月和每年更新的敏感性,以及组合模型对灌溉效率与地下水位深度关系的敏感性;由于存在浅水,裸土蒸发增加地下水位可能是地下水排放的重要来源。将通量的大小与地下水系统的净补给量进行比较,就可以说明通量的重要性。当前用于计算由于MODFLOW中的浅水位引起的裸土蒸发的方法假定该通量是水位深度的线性函数。给出的结果表明,在短暂灌溉条件下,这种模型在短于一年的时间范围内是不准确的。

著录项

  • 作者

    Young, Charles Andrew.;

  • 作者单位

    University of California, Davis.;

  • 授予单位 University of California, Davis.;
  • 学科 Hydrology.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 104 p.
  • 总页数 104
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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