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High-frequency sensing of Clear Creek water quality: Mechanisms of dissolved oxygen and turbidity dynamics, and nutrient transport.

机译:Clear Creek水质的高频感测:溶解氧和浊度动力学以及养分迁移的机制。

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摘要

The runoff of suspended solids and nutrients from land into the nation's lakes and rivers can have severe impacts on the health of these systems and their uses. High-frequency environmental data from sensors can provide insight into fundamental biogeochemical processes that dictate water quality and provide regulators with valuable knowledge on how to manage critical resources. The goal of this research was to utilize sensor technology, telemetry hardware, cyberinfrastructure, and water quality models to create a sensing system that will allow the investigation of the fate and transport of dissolved oxygen, suspended solids, nutrients, and other water quality parameters throughout a watershed dominated by agricultural activity. Deploying these sensors at multiple locations along the stream enabled the investigation of these processes from the fine scale to the larger watershed scale.;Results from this research addressed both fundamental science and resource management issues regarding water quality. Using high-frequency data, a dramatic diel cycle in dissolved oxygen was observed with nonlinear dynamics which was successfully modeled mathematically, and excursions in water quality criteria were observed. In addition, a diel pattern in turbidity was discovered with higher levels at night likely caused by bioturbation (i.e. nocturnal activity of bottom feeding fishes) which resulted in higher suspended solids loadings during nighttime. Furthermore, the QUAL2K model was successfully calibrated for water quality using sensor measurements and grab samples from volunteer, IOWATER data. Nutrient loading rates (nitrate--N, orthophosphate, and total dissolved solids) were estimated along the entire creek and were similar to other Iowa streams. Volunteer environmental data were found to be helpful in model calibration for some parameters (e.g. TSS and nitrate).;The construction and operation of a sensing system in Clear Creek contributed to water quality science and engineering. Findings from the configuration and field testing of sensing station components such as water quality sensors, power systems and communication hardware will aid the design of future sensing systems and environmental observatories. Integrating the methodology of this research with future observing systems will further our understanding of water quality processes and help maintain the health and value of our nation's water environment.
机译:从土地到国家湖泊和河流的悬浮固体和养分的径流可能对这些系统的健康及其使用产生严重影响。来自传感器的高频环境数据可以洞察决定水质的基本生物地球化学过程,并为监管者提供有关如何管理关键资源的宝贵知识。这项研究的目的是利用传感器技术,遥测硬件,网络基础设施和水质模型来创建一个传感系统,从而可以研究溶解氧,悬浮固体,养分和其他整个水质参数的结局和传输情况以农业活动为主的分水岭。在沿河的多个位置部署这些传感器可以对从精细规模到较大分水岭规模的这些过程进行调查。该研究的结果解决了与水质有关的基础科学和资源管理问题。利用高频数据,通过非线性动力学观察到了溶解氧中剧烈的狄尔循环,该动力学成功地进行了数学建模,并且观察到了水质标准的偏差。此外,发现浊度呈diel模式,夜间可能是由于生物扰动(即底部喂食鱼类的夜间活动)引起的夜间较高水平,这导致夜间悬浮固体含量较高。此外,已使用传感器测量结果成功校准了QUAL2K模型的水质,并从IOWATER自愿数据中获取了样本。整个小溪的养分上样率(硝酸盐-N,正磷酸盐和总溶解固体)与爱荷华州其他河流相似。自愿环境数据被发现有助于某些参数(例如TSS和硝酸盐)的模型校准。; Clear Creek传感系统的建设和运行有助于水质科学和工程。感测站组件(例如水质传感器,电力系统和通信硬件)的配置和现场测试发现,将有助于未来感测系统和环境观测站的设计。将这项研究的方法与未来的观测系统相结合,将进一步加深我们对水质过程的理解,并有助于维护我们国家水环境的健康和价值。

著录项

  • 作者

    Loperfido, John Vincent.;

  • 作者单位

    The University of Iowa.;

  • 授予单位 The University of Iowa.;
  • 学科 Engineering Environmental.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 220 p.
  • 总页数 220
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境污染及其防治;
  • 关键词

  • 入库时间 2022-08-17 11:37:41

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