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Modelling long-term soil moisture dynamics of urban grassland under South-western Ontario soil and meteorological conditions.

机译:模拟西南安大略省土壤和气象条件下城市草地的长期土壤水分动态。

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摘要

Soil moisture is at the centre of the water balance and is of great concern with regards to crop growth and yield, irrigation planning, fertilization, climate change and non-point source pollution control. Information on soil moisture is not widely available, resulting in researchers relying on mathematical models to gain insight into soil moisture conditions. This thesis primarily focuses on long-term soil moisture characteristics, under given climate, soil and vegetation conditions. Long-term soil moisture characteristics are best described by statistics such as average soil moisture, and its standard deviation and frequency/probability distribution. After an extensive review of existing explicit or implicit soil moisture models, a deterministic water balance model was developed to simulate soil moisture at a point within the root-zone. The hydrological processes involved in the water balance are modelled using well-established methods. The continuous simulation model is unique from other leading deterministic models as it introduces the ecohydrological perspective by modelling actual evapotranspiration as a function of plant access to soil moisture. The validation of the model demonstrates that simplified soil moisture modelling is rational and practical.The main purpose for the development and use of the deterministic model was to better understand the statistics and sensitivity of soil moisture and not as a predictive tool.Soil moisture modelling is dependent on various input parameters related to the climate, soil and vegetation. Both local and global sensitivity analyses were carried out to investigate which input parameters influence the soil moisture regime the most. The analyses concluded that parameters representing soil texture are most important and thereby indicated that evapotranspiration is the most dominant process as it is significantly controlled by these parameters. Due to concerns of the impact of climate change and urban stormwater management, a better understanding of urban area soil moisture dynamics is required. The applicability of the continuous simulation model was demonstrated by investigating the influence of global warming on long-term soil moisture and evapotranspiration. Statistical analyses carried out on the post-simulated long-term soil moisture values clearly showed that even though temperatures are increasing, soil moisture and evapotranspiration have also increased because of the overall increase in precipitation. This phenomenon gives insight into the precipitation characteristics being strong enough to overpower the soil moisture loss process of evapotranspiration. As a part of the overall research, an analysis on antecedent soil moisture values for the purpose of urban stormwater management was performed. Empirical equations were derived to obtain antecedent soil moisture values from soil characteristics. Antecedent soil moisture information is essential in the application of the design storm approach while designing urban stormwater management infrastructure.
机译:土壤水分是水平衡的中心,在作物生长和产量,灌溉计划,施肥,气候变化和面源污染控制等方面都引起了极大关注。关于土壤水分的信息并不广泛,导致研究人员依靠数学模型来深入了解土壤水分状况。本文主要研究在给定的气候,土壤和植被条件下的长期土壤水分特征。长期土壤水分特征最好通过统计学来描述,例如平均土壤水分,其标准偏差和频率/概率分布。在对现有的显式或隐式土壤水分模型进行广泛审查之后,开发了确定性水平衡模型来模拟根域内某点的土壤水分。使用公认的方法对水平衡中涉及的水文过程进行建模。连续模拟模型与其他领先的确定性模型不同,它通过将实际的蒸散量作为植物获取土壤水分的函数进行建模,引入了生态水文学的观点。该模型的验证表明简化的土壤水分模型是合理和实用的。开发和使用确定性模型的主要目的是为了更好地了解土壤水分的统计和敏感性,而不是作为预测工具。取决于与气候,土壤和植被有关的各种输入参数。进行了局部和全局敏感性分析,以调查哪些输入参数对土壤水分状况的影响最大。分析得出结论,代表土壤质地的参数最为重要,因此表明蒸散量是最主要的过程,因为蒸散发受这些参数明显控制。由于担心气候变化和城市雨水管理的影响,需要对市区土壤水分动态有更好的了解。通过研究全球变暖对长期土壤水分和蒸散量的影响,证明了连续模拟模型的适用性。对模拟后的长期土壤水分值进行的统计分析清楚地表明,即使温度升高,由于降水量的整体增加,土壤水分和蒸散量也增加了。这种现象使人们认识到降水特征足够强大,足以克服蒸散的土壤水分流失过程。作为整体研究的一部分,针对城市雨水管理的目的对土壤湿度进行了分析。推导了经验方程,以从土壤特性中获得前期土壤水分值。在设计城市雨水管理基础设施的同时,在设计雨水方法的应用中,之前的土壤湿度信息至关重要。

著录项

  • 作者

    Nishat, Shazia.;

  • 作者单位

    McMaster University (Canada).;

  • 授予单位 McMaster University (Canada).;
  • 学科 Natural Resource Management.Engineering Environmental.Engineering Civil.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 156 p.
  • 总页数 156
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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