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Improved models for surface water-groundwater interactions at the watershed and subcatchment scales: Châteauguay River basin, southwestern Québec

Improved models for surface water-groundwater interactions at the watershed and subcatchment scales: Châteauguay River basin, southwestern Québec
流域和子流域尺度的地表水-地下水相互作用的改进模型:魁北克省西南部的 Châteauguay 河流域
批准号:
319968-2004
负责人:
Paniconi, Claudio
金额:
$6.56万
依托单位国家:
加拿大
项目类别:
Collaborative Research and Development Grants
财政年份:
2008
资助国家:
加拿大
项目状态:
已结题
起止时间:
2008-01-01 至 2009-12-31

项目摘要

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中文摘要
翻译
地表水和地下水资源直接和间接地促进流域社区的社会经济福利。水的供应和质量可能受到自然和人为因素的损害,有时是不可逆转的。因此,正确理解水文循环的大气、地表和地下组成部分之间的持续相互作用对确保水资源的可持续利用至关重要。尽管地表水和地下水之间存在着强烈的相互作用,但这些资源的管理传统上主要集中在地表水、土壤水和地下水上。该项目的主要目标是改进和扩展两个现有的基于物理的水文模型,在子集水区和流域尺度上有效,以便它们可以处理地表-地下相互作用(流域-含水层耦合),并利用新兴的模型校准和数据同化方法。将特别强调地下水补给和低流量的特征和预测。研究区域是位于montrsamal南部的ch<s:1>蒂奥盖河流域和该流域内的rivi<s:1> Noire流域。该项目将受益于并补充几个正在进行的倡议,这些倡议的重点是监测和描述该流域的水文气象和水文地质。将添加到模型中的创新校准和数据同化框架将能够最佳地或最优地利用现有的大量观测数据。该项目的行业合作伙伴hydro - quamesbec积极参与quamesbec南部几个盆地的实时水文预报。该项目带来的更可靠的预测不仅将使hydro - quemail受益,而且将使ch<s:1>蒂古威河流域的所有利益相关者受益。它将为在人口、土地利用和气候变化造成的需求冲突和流动模式变化的情况下可持续利用水资源提供基础。从这个项目得出的模型也将适用于曲海湾南部的其他集水区,而制订的一般办法将适用于大多数水文流域。
英文摘要
Surface and subsurface water resources contribute, directly and indirectly, to the socio-economic well-being of watershed communities. The availability and quality of water can be compromised, sometimes irreversibly, by natural and anthropogenic factors. A proper understanding of the continuous interactions between atmospheric, surface, and subsurface components of the hydrological cycle is thus crucial to ensuring sustainable use of water resources. Despite the strong interactions between surface and subsurface waters, the management of these resources has traditionally focused on surface water, soil water, and groundwater as separate entities. The main goal of this project is to improve and extend two existing physically-based hydrological models, valid at the subcatchment and river basin scales, so that they can treat surface - subsurface interactions (watershed - aquifer coupling) and exploit emerging methodologies for model calibration and data assimilation. Particular emphasis will be placed on characterization and prediction of groundwater recharge and low flows. The study areas are the Châteauguay River basin located south of Montréal and the Rivière Noire subcatchment within this basin. The project will benefit from and complement several ongoing initiatives that are focused on monitoring and characterizing the hydrometeorology and hydrogeology of this river basin. The innovative calibration and data assimilation framework that will be added to the models will enable best or optimal use of the extensive observation data available. The industry partner in this project, Hydro-Québec, is actively involved in real-time hydrological forecasting for several basins in southern Québec. The more reliable forecasting that will result from this project will benefit not just Hydro-Québec but all stakeholders of the Châteauguay River basin. It will provide a basis for the sustainable use of water resources amidst conflicting demands and changing flow patterns as a consequence of demographic, land use, and climate changes. The models deriving from this project will also be applicable to other catchments in southern Québec, whereas the general approach developed will be applicable to most hydrological basins.
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会议论文
Improving process representation and numerics for integrated hydrological modeling at the subsurface/land surface/atmosphere interface
Improving process representation and numerics for integrated hydrological modeling at the subsurface/land surface/atmosphere interface
Improving process representation and numerics for integrated hydrological modeling at the subsurface/land surface/atmosphere interface
Improving process representation and numerics for integrated hydrological modeling at the subsurface/land surface/atmosphere interface
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海外基金
Scalable Learning and Optimization: High-dimensional Models and Online Decision-Making Strategies for Big Data Analysis
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  • 批准号:
    41105105
  • 项目类别:
    青年科学基金项目
  • 资助金额:
    25.0万元
  • 批准年份:
    2011
  • 负责人:
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  • 依托单位:
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  • 批准号:
    10971157
  • 项目类别:
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  • 资助金额:
    24.0万元
  • 批准年份:
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  • 负责人:
    胡亦钧
  • 依托单位:
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