Abstract
By introducing a water depth connecting formula, the hydraulic equations in the dividing channel system were coupled and the relation of discharge distribution between the branches of the dividing channels can be yielded. In this manner, a numerical model for the confluent channels was established to study the variation of backwater effects with the parameters in the channel junction. The meeting of flood peaks in the mainstream and tributary can be analyzed with this model. The flood peak meeting is found to be a major factor for the extremely high water level in the mainstream during the 1998 Yangtze River flood. Subsequently the variations of discharge distribution and water level with channel parameters between each branch in this system were studied as well. As a result, flood evolution caused by Jingjiang River shortcut and sediment deposition in the entrance of dividing channels of the Yangtze River may be qualitatively elucidated. It is suggested to be an effective measure for flood mitigation to enhance regulation capability of reservoirs available upstream of the tributaries and harness branch entrance channels.
Original language | English |
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Pages (from-to) | 1333-1343 |
Number of pages | 11 |
Journal | Applied Mathematics and Mechanics (English Edition) |
Volume | 25 |
Issue number | 12 |
DOIs | |
Publication status | Published - Dec 2004 |
Externally published | Yes |
Keywords
- Backwater effect
- Confluent channels
- Dividing channels
- Flood peak meeting
- The Yangtze River