Two-dimensional modeling of the Red River Floodway

The flood protection works (Shellmouth Reservoir, Portage Diversion and the Red River Floodway) were designed to protect the City of Winnipeg from a flood event with a peak discharge of 169,000 cfs. The Red River Floodway is the component of the flood control works system with the greatest capacity...

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Main Author: Gonzalez, Ninel S.
Language:en_US
Published: 2007
Online Access:http://hdl.handle.net/1993/1812
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spelling ndltd-LACETR-oai-collectionscanada.gc.ca-MWU.1993-18122014-03-29T03:41:43Z Two-dimensional modeling of the Red River Floodway Gonzalez, Ninel S. The flood protection works (Shellmouth Reservoir, Portage Diversion and the Red River Floodway) were designed to protect the City of Winnipeg from a flood event with a peak discharge of 169,000 cfs. The Red River Floodway is the component of the flood control works system with the greatest capacity and the one offering immediate flood relief to the City from the Red River floodwaters. After the flood of 1997 the adequacy of the floodway to provide protection against a larger flood event became questionable. The role the floodway plays in providing flood protection to the City of Winnipeg cannot be emphasized enough. The safety of the City depends on the adequate and reliable performance of this channel. A numerical model of the floodway channel has been established using the one-dimensional HEC-RAS and the two-dimensional FESWMS programs. The models were calibrated using water level measurements collected during the 1997 flood. The calibrated models were then used to evaluate the performance of the floodwaychannel under high flow conditions. Of particular interest were the flow corresponding to the maximum design discharge of the channel (Q = 100,000 cfs) and the flow associated with an 1826 flood event. (Abstract s ortened by UMI.) 2007-05-18T19:59:31Z 2007-05-18T19:59:31Z 1999-08-01T00:00:00Z http://hdl.handle.net/1993/1812 en_US
collection NDLTD
language en_US
sources NDLTD
description The flood protection works (Shellmouth Reservoir, Portage Diversion and the Red River Floodway) were designed to protect the City of Winnipeg from a flood event with a peak discharge of 169,000 cfs. The Red River Floodway is the component of the flood control works system with the greatest capacity and the one offering immediate flood relief to the City from the Red River floodwaters. After the flood of 1997 the adequacy of the floodway to provide protection against a larger flood event became questionable. The role the floodway plays in providing flood protection to the City of Winnipeg cannot be emphasized enough. The safety of the City depends on the adequate and reliable performance of this channel. A numerical model of the floodway channel has been established using the one-dimensional HEC-RAS and the two-dimensional FESWMS programs. The models were calibrated using water level measurements collected during the 1997 flood. The calibrated models were then used to evaluate the performance of the floodwaychannel under high flow conditions. Of particular interest were the flow corresponding to the maximum design discharge of the channel (Q = 100,000 cfs) and the flow associated with an 1826 flood event. (Abstract s ortened by UMI.)
author Gonzalez, Ninel S.
spellingShingle Gonzalez, Ninel S.
Two-dimensional modeling of the Red River Floodway
author_facet Gonzalez, Ninel S.
author_sort Gonzalez, Ninel S.
title Two-dimensional modeling of the Red River Floodway
title_short Two-dimensional modeling of the Red River Floodway
title_full Two-dimensional modeling of the Red River Floodway
title_fullStr Two-dimensional modeling of the Red River Floodway
title_full_unstemmed Two-dimensional modeling of the Red River Floodway
title_sort two-dimensional modeling of the red river floodway
publishDate 2007
url http://hdl.handle.net/1993/1812
work_keys_str_mv AT gonzalezninels twodimensionalmodelingoftheredriverfloodway
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