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Process-oriented concepts for adaptive water resource management. implications for urban hydrogeology

机译:面向过程的自适应水资源管理概念。对城市水文地质的影响

摘要

The present thesis illustrates process-oriented methods for water resource monitoring, management and protection. The methods have been applied and tested for specific questions arising in the context of urban hydrogeology within selected areas in the region of Basel, Switzerland. The results contribute to an integrated perception of surface and subsurface water resources in urban areas. Although the topics of the investigations may differ in terms of objectives and scales, the concept and methods are characteristic for many hydrogeologic problems in urban environments. The basic principles of adaptive groundwater management include the identification of the current profiles of groundwater systems. The methods applied facilitate the evaluation of the sum of impacts and their interaction in time and space with changing hydrological, operational, technical and even geological boundary conditions.udThe thesis consists of five parts (Parts I-V), including this executive summary, an introduction, a general summary together with the discussion of results and conclusions. Each part represents an already published or submitted scientific article. The investigations address a variety of site-specific questions arising from different scales in the context of urban hydrogeology. All parts deal with impacts of engineering projects and infrastructure development on surface and groundwater systems.udPart I illustrates that, with the aid of groundwater modeling, the dynamics of the groundwa­ter ?ow regime under changing spatial and temporal constraints could be simulated and evaluated successfully during the various project phases of a tunnel highway construction. The results allowed to optimize groundwater monitoring, management and protection and to progressively evaluate different engineering proposals.udThe methods presented in Part II exemplify quantitative data fusion for urban hydrogeology as a practical tool for subsurface characterization. The applied techniques allow integrating different type and quality data into groundwater models and to quantify the effect of groundwater flow budgets and velocities in individual sedimentary structures. Obviously, groundwater flow in heterogeneous media occurs largely through interconnected highly permeable sedimentary structures.udIn Part III process-oriented approaches for adaptive groundwater management in urban areas is illustrated by selected examples in the region of the city of Basel. The concept focuses on the influence of various water engineering projects on the future development of water resources and associated flow regimes. Further emphasis is on the transient character of river-groundwater interaction and the revision of existing protection concepts.udPart IV and V illustrate the results of a project dealing with urban infrastructure maintenance and development at a smaller scale. Subsidence of a river dam and an adjacent highway, both constructed on gypsum-containing rock, required remedial construction measures. This case study presents comprehensive research within a gypsum karst site. Next to universal measurements and monitoring technologies, investigative methods with predictive character are developed that allow long-term predictions on the future evolution of the system and on further subsidence. This part further illustrates that the proposed concept and methods can be used for the setup of monitoring networks and the development of adaptive water management tools on the one hand, but also can be applied for basic research on the development of gypsum karst systems on the other hand. The various investigative methods for karst aquifer characterization complement each other and allow the interpretation of short-term impacts and long-term developments.udThe scientific achievements of this thesis include: (1) the implementation of a concept for adaptive and integrated water resource management; (2) the demonstration of integrating different methods and tools for process-oriented investigations in urban areas (monitoring, modeling, hydrogeophysics, etc.); (3) the fusion of qualitative and quantitative geological and hydrological information of different quality to describe aquifer heterogeneity; (4) the revision of existing protection concepts and approaches for risk assessment; (5) the application of karst evolution modeling based on genuine field data; (6) novel iterative approaches for the setup and combination of groundwater and karst evolution modeling techniques; (7) methods applied to characterize short-term impacts and long-term development of flow regimes in karst areas and (8) suggestions for monitoring strategies, including the development of tools that can be used for prediction in urban hydrogeology.
机译:本文阐述了面向过程的水资源监测,管理与保护方法。该方法已针对在瑞士巴塞尔地区选定区域内城市水文地质学中出现的特定问题进行了应用和测试。结果有助于对城市地区地表和地下水资源的综合认识。尽管调查的主题可能在目标和规模方面有所不同,但概念和方法是城市环境中许多水文地质问题的特征。自适应地下水管理的基本原理包括确定地下水系统的当前状况。所采用的方法有助于评估影响的总和及其在时空中随水文,运营,技术甚至地质边界条件的变化而发生的相互作用。 ud本文由五个部分(第四部分)组成,包括本执行摘要,引言,概述以及对结果和结论的讨论。每个部分代表一个已经发表或提交的科学文章。这些调查解决了在城市水文地质学背景下因规模不同而引起的各种特定地点的问题。所有部分都涉及工程项目和基础设施开发对地表水和地下水系统的影响。 ud第一部分说明,借助地下水建模,可以成功地模拟和评估在时空变化的约束下的地下水流动态。在隧道公路建设的各个项目阶段中。结果可以优化地下水的监测,管理和保护,并逐步评估不同的工程建议。 ud第二部分中介绍的方法举例说明了城市水文地质学的定量数据融合方法,将其作为地下表征的实用工具。应用的技术允许将不同类型和质量的数据集成到地下水模型中,并量化地下水在单个沉积结构中的流量预算和速度的影响。显然,非均质介质中的地下水主要通过相互连接的高渗透性沉积结构发生。第三部分,以过程为导向的城市地区自适应地下水管理方法,以巴塞尔市为例,进行了举例说明。该概念着重于各种水工程项目对水资源和相关流态的未来发展的影响。第四部分和第五部分说明了涉及较小规模的城市基础设施维护和发展项目的结果。都用含石膏的岩石筑筑的河坝和相邻公路的沉降,需要采取补救措施。本案例研究对石膏岩溶场地进行了全面的研究。除了通用的测量和监视技术,还开发了具有预测性的调查方法,可以对系统的未来发展和进一步的沉降进行长期预测。这部分进一步说明,所提出的概念和方法一方面可用于监测网络的建立和自适应水管理工具的开发,另一方面也可用于石膏岩溶系统开发的基础研究。手。岩溶含水层表征的各种研究方法相辅相成,可以解释短期影响和长期发展。 ud本论文的科学成果包括:(1)实施适应性综合水资源管理概念; (2)展示了将不同的方法和工具集成在一起以进行面向过程的城市研究(监控,建模,水文地球物理等)的演示; (3)融合不同质量的定性和定量地质水文信息,描述含水层的非均质性; (4)修订现有的风险评估保护概念和方法; (5)基于真实现场数据的岩溶演化模型的应用; (6)建立和组合地下水与岩溶演化模拟技术的新颖迭代方法; (7)用于表征岩溶地区水流态势的短期影响和长期发展的方法,以及(8)监测策略的建议,包括开发可用于城市水文地质预测的工具。

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    Epting Jannis;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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