Seite - 431 - in Book of Full Papers - Symposium Hydro Engineering
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Text der Seite - 431 -
Table:3. Prediction of Sediment by Unsteady State Flow Equations
S No. Investigators Predicted
Sediment
ton
Present Studies
Unteady State Flow Equations
1. Exner(1−𝜆 𝑝 ) 𝜕
𝜂
𝜕
𝑡 =− 𝜕 𝑞
𝑏 𝑠
𝜕
𝑥 − 𝜕 𝑞
𝑏 𝑚
𝜕
𝑛 +𝜈
𝑠 (𝑐
?̅? −𝐸
𝑠 ) 112200.20
2. Proposed Unsteady Equation
𝜕
𝑐
𝜕
𝑡 =−5+1.35 (
𝜕
𝑄
𝜕
𝑥 𝑑 𝑥
𝑑 𝑡 )
0.96
+(
𝜕
𝑄
𝜕
𝑥 𝑑 𝑥
𝑑 𝑡 )
−0.5
−(
𝜕
𝑄
𝜕
𝑥 𝑑 𝑥
𝑑 𝑡 )
−0.25 120172.6
Observed 119607.29
Data Analysis and Discussion:
Sediment concentration plays significant role in prediction of sedimentation in the
reservoirs.
Table:4. Gist for Prediction of Sediment
S
No. Investigators Predicted
Sediment
ton
1. Camenen and Larson Method 1194604.32
2. Engelund and Hansen Method 756025.46
3. Ackers and White’s Method 600278.89
4. Meyer-Peter and Muller Method 445292.83
5. Neilsen Method 210378.91
Present Studies
6. Quadratic 0.0004Q2 - 0.0025Q+ 90
Method 342617.84
7. Log-log plot 5e 0.05 ln Q Method 316959.32
8. 𝑃 𝑜 𝑤 𝑒 𝑟 𝐿 𝑎
𝑤 𝐶 =700𝑄 −0.9
127052.40
9. Unsteady Exner 112200.20
10. Unsteady
𝜕
𝑐
𝜕
𝑡 =−5+1.35 ( 𝜕
𝑄
𝜕
𝑥 𝑑
𝑥
𝑑
𝑡 )
0.96
+( 𝜕
𝑄
𝜕
𝑥 𝑑
𝑥
𝑑
𝑡 )
−0.5
−(
𝜕
𝑄
𝜕
𝑥 𝑑
𝑥
𝑑
𝑡 )
−0.25 120172.6
Observed 119607.29
431
Book of Full Papers
Symposium Hydro Engineering
- Titel
- Book of Full Papers
- Untertitel
- Symposium Hydro Engineering
- Autor
- Gerald Zenz
- Verlag
- Verlag der Technischen Universität Graz
- Ort
- Graz
- Datum
- 2018
- Sprache
- englisch
- Lizenz
- CC BY-NC-ND 4.0
- ISBN
- 978-3-85125-620-8
- Abmessungen
- 20.9 x 29.6 cm
- Seiten
- 2724
- Schlagwörter
- Hydro, Engineering, Climate Changes
- Kategorien
- International
- Naturwissenschaften Physik
- Technik