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Fluorescent particle tracers for surface hydrology.

机译:用于表面水文学的荧光粒子示踪剂。

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摘要

Surface water processes control downstream runoff phenomena, waste and pollutant diffusion, erosion mechanics, and sediment transport. However, current observational methodologies do not allow for the identification and kinematic characterization of the physical processes contributing to catchment dynamics. Traditional methodologies are not capable to cope with extreme in-situ conditions, including practical logistic challenges as well as inherent flow complexity. In addition, available observational techniques are non-exhaustive for describing multiscale hydrological processes.;This research addresses the need for novel observations of the hydrological community by developing pioneer flow characterization approaches that rely on the mutual integration of traditional tracing techniques and state-of-the-art image-based sensing procedures. These novel methodologies enable the in-situ direct observation of surface water processes through remote and unsupervised procedures, thus paving the way to the development of distributed networks of sensing platforms for catchment-scale environmental sensing. More specifically, the proposed flow characterization methodology is a low-cost measurement system that can be applied to a variety of real-world settings spanning from few centimeters rills in natural catchments to riverine ecosystems. The technique is based on the use of in-house synthesized environmentally-friendly fluorescent particle tracers through digital cameras for direct flow measurement and travel time estimations. Automated image analysis-based procedures are developed for real-time flow characterization based on image manipulation, template-based correlation, particle image velocimetry, and dimensionality reduction methodologies. The feasibility of the approach is assessed through laboratory-designed experiments, where the accuracy of the methodology is investigated with respect to well-established flow visualization techniques. Further, the transition of the proposed flow characterization approach to natural settings is studied through paradigmatic observations of natural stream flows in small scale channel and riverine settings and overland flows in hillslope environments. The integration of the proposed flow sensing system in a stand-alone, remote, and mobile platform is explored through the design, development, and testing of a miniature aerial vehicle for environmental monitoring through video acquisition and processing.
机译:地表水过程控制着下游径流现象,废物和污染物的扩散,侵蚀机理以及沉积物的输送。但是,当前的观测方法不允许对有助于集水区动态的物理过程进行识别和运动学表征。传统方法无法应对极端的现场条件,包括实际的物流挑战以及固有的流程复杂性。此外,可用的观测技术还不能穷尽地描述多尺度水文过程。本研究通过开发依靠传统示踪技术和水文状况相互融合的先驱流量表征方法来满足对水文界新颖观测的需求。最新的基于图像的传感程序。这些新颖的方法能够通过远程和无人监督的程序在原地直接观察地表水的过程,从而为流域规模环境传感的传感平台分布式网络的开发铺平了道路。更具体地说,所提出的流量表征方法是一种低成本的测量系统,可以应用于从自然流域的几厘米小溪到河流生态系统的各种现实环境。该技术基于通过数码相机使用内部合成的环保型荧光粒子示踪剂进行直接流量测量和行程时间估计。基于图像分析,基于模板的相关性,粒子图像测速和降维方法,基于图像分析的自动化程序被开发用于实时流量表征。该方法的可行性通过实验室设计的实验进行了评估,其中相对于公认的流程可视化技术,研究了该方法的准确性。此外,通过对小规模河道和河流环境中的自然水流以及山坡环境中的陆上水流进行范式观察,研究了拟议的流量表征方法向自然环境的过渡。通过设计,开发和测试用于通过视频采集和处理进行环境监测的微型飞行器,探索了将拟议的流量传感系统集成到独立,远程和移动平台中的过程。

著录项

  • 作者

    Tauro, Flavia.;

  • 作者单位

    Polytechnic Institute of New York University.;

  • 授予单位 Polytechnic Institute of New York University.;
  • 学科 Mechanical engineering.;Engineering.;Hydrologic sciences.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 133 p.
  • 总页数 133
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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