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Variability of water storage and instream temperature in beaded Arctic streams.

机译:串珠状北极水流的储水量和流入温度的变化。

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摘要

The purpose of this study is to investigate variation in water export and instream temperatures throughout the open water season in a beaded Arctic stream, consisting of small pools connected by shallow chutes. The goals are to better understand heat and mass movement through these systems, how this may impact chemical and biological processes, and the resulting shifts with changes in climate. This is accomplished by first examining the extent and variability of water storage and export through qualitative analysis of observational data. Further, heat fate and transport is examined through development of an instream temperature model. The model formulation, a simple approach to model calibration and validation, and information regarding residence and characteristic times of different pool layers are presented. Using temperatures measured at high spatial resolution within the pools and surrounding bed sediments as well as other supporting data (e.g., instream flow, specific conductivity, weather data, and bathymetry), various types of storage within the pools, banks, and marshy areas within the riparian zone, including subsurface flow paths that connect the pools, were found. Additionally, data illustrated that some pools will stay stratified during higher flow periods under certain weather conditions. Through modeling efforts, the dominant heat sources were found to vary between stratified layers. It was also found that potential increases in thaw depths surrounding these pools can shift stratification and mixing patterns. These shifts can further influence mass export dynamics and instream water quality. Given the amount and different types of storage within these systems and the influence of stratification patterns on the residence times in the pools, Imnavait Basin and similar beaded Arctic watersheds will likely experience delayed export of nutrients that are limiting in most Arctic systems.
机译:这项研究的目的是调查整个珠三角水流在整个开放水域中的出水量和河水温度的变化,该水流由由浅溜槽连接的小水池组成。目的是更好地了解通过这些系统的热量和质量运动,这如何影响化学和生物过程,以及随之而来的气候变化。这是通过首先对观测数据进行定性分析来检查储水量和出口量的程度和可变性来实现的。此外,通过建立流内温度模型检查热量的归宿和运输。提出了模型公式,模型校准和验证的简单方法,以及有关不同池层的停留时间和特征时间的信息。使用在池和周围床沉积物中以高空间分辨率测得的温度以及其他支持数据(例如,入流,比电导率,天气数据和测深法),池内,池内和沼泽区域内的各种类型的存储发现河岸带,包括连接水池的地下流动路径。此外,数据还表明,在某些天气条件下,某些水库在较高流量期间会保持分层状态。通过建模工作,发现分层层之间的主要热源不同。还发现这些水池周围的融化深度可能增加,从而改变分层和混合模式。这些转变会进一步影响大规模出口的动态和溪流水质。考虑到这些系统中储存的数量和类型不同,以及分层模式对池中停留时间的影响,Imnavait盆地和类似的串珠北极流域可能会遇到养分延迟出口的情况,这在大多数北极系统中都是有限的。

著录项

  • 作者

    Merck, Madeline F.;

  • 作者单位

    Utah State University.;

  • 授予单位 Utah State University.;
  • 学科 Hydrology.;Engineering Environmental.
  • 学位 M.S.
  • 年度 2011
  • 页码 96 p.
  • 总页数 96
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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