The effect of water temperature on in-stream sediment concentration and transport rate

<p> Global climate change may result in rising temperatures. As a result, ecological health and the human use of rivers may be impacted. The hydrologic cycle, watershed hydrology, and in-stream hydraulics are dynamic systems, influenced by human activities, natural events, and climate. Althoug...

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Main Author: Tyrrell, Jennie L.
Language:EN
Published: Michigan Technological University 2016
Subjects:
Online Access:http://pqdtopen.proquest.com/#viewpdf?dispub=10004794
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spelling ndltd-PROQUEST-oai-pqdtoai.proquest.com-100047942016-02-04T04:12:30Z The effect of water temperature on in-stream sediment concentration and transport rate Tyrrell, Jennie L. Civil engineering|Water resources management <p> Global climate change may result in rising temperatures. As a result, ecological health and the human use of rivers may be impacted. The hydrologic cycle, watershed hydrology, and in-stream hydraulics are dynamic systems, influenced by human activities, natural events, and climate. Although known drivers like precipitation and stream velocity govern sediment processes, the effect of water temperature on sediment transport remains unclear. In-stream sediment movement could lead to blocked harbors, flooding, and degradation of vulnerable fish habitat. To better understand how fluctuations in water temperature affect sediment dynamics, six transport models were analyzed on the Niobrara River, with water temperatures ranging 1&deg; to 40&deg; C. The results indicate that as water warms sediment transport decreases, according to an inverse, non-linear law, with the highest reduction at colder water temperatures. The results given here can help predict changes in sediment transport for rivers with similar characteristics at various water temperatures. </p> Michigan Technological University 2016-02-02 00:00:00.0 thesis http://pqdtopen.proquest.com/#viewpdf?dispub=10004794 EN
collection NDLTD
language EN
sources NDLTD
topic Civil engineering|Water resources management
spellingShingle Civil engineering|Water resources management
Tyrrell, Jennie L.
The effect of water temperature on in-stream sediment concentration and transport rate
description <p> Global climate change may result in rising temperatures. As a result, ecological health and the human use of rivers may be impacted. The hydrologic cycle, watershed hydrology, and in-stream hydraulics are dynamic systems, influenced by human activities, natural events, and climate. Although known drivers like precipitation and stream velocity govern sediment processes, the effect of water temperature on sediment transport remains unclear. In-stream sediment movement could lead to blocked harbors, flooding, and degradation of vulnerable fish habitat. To better understand how fluctuations in water temperature affect sediment dynamics, six transport models were analyzed on the Niobrara River, with water temperatures ranging 1&deg; to 40&deg; C. The results indicate that as water warms sediment transport decreases, according to an inverse, non-linear law, with the highest reduction at colder water temperatures. The results given here can help predict changes in sediment transport for rivers with similar characteristics at various water temperatures. </p>
author Tyrrell, Jennie L.
author_facet Tyrrell, Jennie L.
author_sort Tyrrell, Jennie L.
title The effect of water temperature on in-stream sediment concentration and transport rate
title_short The effect of water temperature on in-stream sediment concentration and transport rate
title_full The effect of water temperature on in-stream sediment concentration and transport rate
title_fullStr The effect of water temperature on in-stream sediment concentration and transport rate
title_full_unstemmed The effect of water temperature on in-stream sediment concentration and transport rate
title_sort effect of water temperature on in-stream sediment concentration and transport rate
publisher Michigan Technological University
publishDate 2016
url http://pqdtopen.proquest.com/#viewpdf?dispub=10004794
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