Siltation and Desilting Practices in A Runoff Reservoir on Heavy Sediment-Laden River
Sediment deposition in the reservoir of run-of-the-river power station is severe, in this paper we take upper Marsyangdi reservoir as an example to analyze sedimentation and desilting process according field data measured from September 2016 when the reservoir had just been impounded in order to fin...
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2018-01-01
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Series: | MATEC Web of Conferences |
Online Access: | https://doi.org/10.1051/matecconf/201824601062 |
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doaj-65a963a80851485f8634ac36c70d133d2021-03-02T09:36:45ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-012460106210.1051/matecconf/201824601062matecconf_iswso2018_01062Siltation and Desilting Practices in A Runoff Reservoir on Heavy Sediment-Laden RiverWang DangweiDeng AnjunJi ZuwenShi Hongling0China Institute of Water Resources and Hydropower ResearchSediment deposition in the reservoir of run-of-the-river power station is severe, in this paper we take upper Marsyangdi reservoir as an example to analyze sedimentation and desilting process according field data measured from September 2016 when the reservoir had just been impounded in order to find strategy for managing reservoir sedimentation. The ratio of Upper Marsyangdi reservoir capacity and volume of sediment into the reservoir is about 0.2. The reservoir arrived silt-stable in a year after impoundment with a depth of 12m deposition at the dam site. Most of sediment deposit in the periods that at the initial and the end of flood reason and it is found the flow rate is the key factor influencing trap efficiency because that due to damming velocity of medium flow decreased significantly compared to natural condition which caused numerous deposition. Based on result of analysis of deposition the desilting condition is determined. Empty flushing is proposed to release deposition after flood season when flow rate is greater than 100m3/s and the new capacity will last to next flood season. In order to reduce sediment concentration into diversion channel a desilting should be done in flood season when flow rate is larger than 200m3/s and flow rate for impound should not be more than 1/10 of that into reservoir which can avoid deposition during impoundment near dam site.https://doi.org/10.1051/matecconf/201824601062 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Wang Dangwei Deng Anjun Ji Zuwen Shi Hongling |
spellingShingle |
Wang Dangwei Deng Anjun Ji Zuwen Shi Hongling Siltation and Desilting Practices in A Runoff Reservoir on Heavy Sediment-Laden River MATEC Web of Conferences |
author_facet |
Wang Dangwei Deng Anjun Ji Zuwen Shi Hongling |
author_sort |
Wang Dangwei |
title |
Siltation and Desilting Practices in A Runoff Reservoir on Heavy Sediment-Laden River |
title_short |
Siltation and Desilting Practices in A Runoff Reservoir on Heavy Sediment-Laden River |
title_full |
Siltation and Desilting Practices in A Runoff Reservoir on Heavy Sediment-Laden River |
title_fullStr |
Siltation and Desilting Practices in A Runoff Reservoir on Heavy Sediment-Laden River |
title_full_unstemmed |
Siltation and Desilting Practices in A Runoff Reservoir on Heavy Sediment-Laden River |
title_sort |
siltation and desilting practices in a runoff reservoir on heavy sediment-laden river |
publisher |
EDP Sciences |
series |
MATEC Web of Conferences |
issn |
2261-236X |
publishDate |
2018-01-01 |
description |
Sediment deposition in the reservoir of run-of-the-river power station is severe, in this paper we take upper Marsyangdi reservoir as an example to analyze sedimentation and desilting process according field data measured from September 2016 when the reservoir had just been impounded in order to find strategy for managing reservoir sedimentation. The ratio of Upper Marsyangdi reservoir capacity and volume of sediment into the reservoir is about 0.2. The reservoir arrived silt-stable in a year after impoundment with a depth of 12m deposition at the dam site. Most of sediment deposit in the periods that at the initial and the end of flood reason and it is found the flow rate is the key factor influencing trap efficiency because that due to damming velocity of medium flow decreased significantly compared to natural condition which caused numerous deposition. Based on result of analysis of deposition the desilting condition is determined. Empty flushing is proposed to release deposition after flood season when flow rate is greater than 100m3/s and the new capacity will last to next flood season. In order to reduce sediment concentration into diversion channel a desilting should be done in flood season when flow rate is larger than 200m3/s and flow rate for impound should not be more than 1/10 of that into reservoir which can avoid deposition during impoundment near dam site. |
url |
https://doi.org/10.1051/matecconf/201824601062 |
work_keys_str_mv |
AT wangdangwei siltationanddesiltingpracticesinarunoffreservoironheavysedimentladenriver AT denganjun siltationanddesiltingpracticesinarunoffreservoironheavysedimentladenriver AT jizuwen siltationanddesiltingpracticesinarunoffreservoironheavysedimentladenriver AT shihongling siltationanddesiltingpracticesinarunoffreservoironheavysedimentladenriver |
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1724239040057704448 |