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Vadose zone processes affecting water fluctuations: Conceptualization and modeling considerations.

机译:渗流区过程影响水的波动:概念化和建模方面的考虑。

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摘要

This dissertation focuses on a variety of vadose zone processes that impact water table fluctuations. The development of vadose zone process conceptualization has been limited due to both the lack of recognition of the importance of the vadose zone and the absence of suitable field data. Recent studies have, however, shown that vadose zone soil moisture dynamics, especially in shallow water table environments, can have a significant effect on processes such as infiltration, recharge to the water table, and evapotranspiration. This dissertation, hence, attempts to elucidate approaches for modeling vadose zone soil moisture dynamics. The ultimate objective is to predict different vertical and horizontal hydrological fluxes.;The first part of the dissertation demonstrates a new methodology using soil moisture and water table data collected along a flow transect. The methodology was found to be successful in the estimation of hydrological fluxes such as evapotranspiration, infiltration, runoff, etc. The observed dataset was also used to verify an exponential model developed to quantify the ground water component of total evapotranspiration. This analysis was followed by a study which analyzed the impact of soil moisture variability in the vadose zone on water table fluctuations. It was found that antecedent soil moisture conditions in the vadose zone greatly affected the specific yield values, causing a broad range of water table fluctuations for similar boundary fluxes. Hence, use of a constant specific yield value can produce inaccurate results. Having gained insight into the process of evapotranspiration and specific yield, a threshold based model to determine evapotranspiration and subsequent water table fluctuation was conceptualized and validated.;A discussion of plant root water uptake and its impact on vadose zone soil moisture dynamics is presented in the latter half of this dissertation. A methodology utilizing soil moisture and water table data to determine the root water uptake from different sections of roots is also described. It was found that, unlike traditional empirical root water uptake models, the uptake was not only proportional to the root fraction, but was also dependent on the ambient soil moisture conditions. A modeling framework based on root hydraulic characteristics is provided as well.;Lastly, a preliminary analysis of observed data indicated that, under certain field conditions, air entrapment and air pressurization can significantly affect the observed water table values. A modeling technique must be developed to correct such observations.
机译:本文主要研究影响水位波动的各种渗流带过程。由于缺乏对渗流带重要性的认识以及缺乏合适的现场数据,渗流带过程概念化的发展受到了限制。然而,最近的研究表明,渗流带土壤湿度的动态变化,尤其是在浅水位环境中,对渗透,向地下水位补给和蒸散等过程可能具有重大影响。因此,本论文试图阐明对渗流带土壤水分动力学建模的方法。最终目的是预测不同的垂直和水平水文通量。论文的第一部分演示了一种新的方法,该方法利用了沿流断面收集的土壤水分和地下水位数据。发现该方法在估算水文通量(例如蒸散,入渗,径流等)方面是成功的。所观察到的数据集也用于验证建立的指数模型,以量化总蒸散量中的地下水成分。在进行此分析之后,进行了一项研究,该研究分析了渗流区土壤湿度变化对地下水位波动的影响。研究发现,在渗流带之前的土壤湿度条件极大地影响了单位产量,导致相似边界通量的地下水位波动很大。因此,使用恒定的比产量值可能会产生不准确的结果。在深入了解蒸散过程和单产过程之后,概念化并验证了基于阈值的蒸散和随后的地下水位波动模型;讨论了植物根系吸水及其对渗流区土壤水分动力学的影响。本文的后半部分。还描述了一种利用土壤水分和地下水位数据来确定从根的不同部分吸收根水的方法。结果发现,与传统的经验根系吸水模型不同,吸收不仅与根系成比例,而且还取决于周围土壤的水分条件。还提供了基于根部水力特性的建模框架。最后,对观测数据的初步分析表明,在某些野外条件下,空气夹带和空气加压会显着影响观测到的地下水位值。必须开发一种建模技术来纠正这种观察。

著录项

  • 作者

    Shah, Nirjhar.;

  • 作者单位

    University of South Florida.;

  • 授予单位 University of South Florida.;
  • 学科 Hydrology.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 233 p.
  • 总页数 233
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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