Seite - 875 - in Book of Full Papers - Symposium Hydro Engineering
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The results of the hydraulic flow obtained from the test model still needs a
further study that is to model the flow condition when it returns to the river and to
map scouring pattern in the downstream stilling basin.
Keywords: Cipanundan, test model, hydraulic parameters
1. BACKGROUND
Cipanundan Dam is a dam that is subjected to irrigate the irrigation area in
Kabupaten Cirebon and planned to construct soon. Dam reservoir area is
located in Cipanundan river valley, at el. +26 m until el.+50 m extended from
south to north. Cipanundan Dam axis is located between two hills, stratched
along Cipanundan river.
Type of Cipanundan Dam is homogenous soil type, dam height is about
24 m dan dam length is about 511 m. Spillway Cipanundan Dam located on the
right toe with overflow type, and stilling basin type is USBR type 2.
2. PURPOSE AND OBJECTIVES
The purposes of the hydraulic test model spillway of Cipanundan Dam are:
1) To establish the idea of planning in terms of hydraulic aspects (flow
design and sediment transport) by studying and investigating the flow
symptoms and parameters that occur.
2) To study and verify the layout of spillway designed to obtain hydraulic
design properly,
3) To determine of optimum type, form and dimension of energy dissipator
and appurtenance structure,
The objective of this hydraulic test model spillway of Cipanundan Dam is to
provide a refined recommendation based on hydraulic aspect, so that deviations
may occur during desgining, it can be eliminated from the test model and will
obtain the most optimal hydraulic structures dimension. All of these stages are to
guaranty of dam safety and function.
875
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