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RESEARCH OF RESERVOIR EMPTYING DESIGN OF HIGH DAMS IN CHINA
Liu Chao
China renewable energy engineering institute, Beijing 100120, China
Zhao Quansheng
China renewable energy engineering institute, Beijing 100120, China
Zhou Jianping
Power Construction Cooperation of China, Ltd, Beijing 100048, China
ABSTRACT
Emptying facilities of high dams play an important role for overhauling during
operation period and lowering water level in case of emergency so as to reduce
risk of the whole projects. Based on summarizing of present design status of
reservoir emptying, the key technology problems of lower discharge facilities are
analyzed firstly. Secondly, this paper puts forward that characteristics of reservoir
and projects as well as hydrologic conditions should all be considered when
emptying design to help choosing a reasonable emptying scale and depth. At the
last, this paper indicates that the basin cascade dispatching and forewarning,
manage systems of dams safety adapting to construction and economic level, as
well as dams lifecycle safety management and risk distinction system suited to
national conditions, should all be established as soon as possible, in order to
minimize risk of basin cascading dams failure.
KEY WORDS
reservoir emptying; lower discharging; underwater overhaul; emergency
management; basin cascade
PREFACE
Till 2017, more than 20 super high dams over 200m have been built or were under
construction in China, which play an important role in the national economy
development. After reservoirs impounding, it not only bring up benefit of flood
controlling, irrigation and generating electricity, etc., but also pose a threat to
downstream areas. There's no dam failure of large reservoirs occurred in China
since 1980s, stood tests of big flood in 1998 and Wenchuan Earthquake in 2008,
Ya'an Earthquake and so on. Especially Zipingpu CFRD of 156m height which is
only 17km far from the epicenter of Wenchuan Earthquake and Shapai RCC arch
948
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