Seite - 237 - in Book of Full Papers - Symposium Hydro Engineering
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4.2 THE INFLUENCE OF RAISING INITIAL WATER LEVEL ON THE FULL STORAGE RATE
OF TGR.
Since 2008, TGR started for the first time to carry out 175m experimental
water storage,according to the principle of “ safety, science, reliable and
Gradualism”.In view of the runoff reduction in the impoundment period, the
simultaneous storage of the upstream reservoir and the increase of the water
demand in the lower reaches, the contradiction between the water storage and the
discharge is outstanding.After fully demonstrating the flood control safety and
sedimentation of pre-impoundment, the impounding mode of the Three Gorges
reservoir has been further studied, and a water storage way to undertake the flood
control stage and raise the water level has been put forward.TGR have achieved
175m water target for 8 consecutive years from 2010 to 2017 after further
optimizing the storage scheme, and the discharge standard increased from about
5500m3/s to 8000m3/s during October.
Practice in recent years has also shown that storing flood resources and
raising the initial water level TGR, were effective measures to improve the full
storage rate. Based on the simulated runoff of Three Gorges dam site after the
operation of cascade reservoirs in different levels, the storage rate of TGR under
different storage levels was calculated.
In the prospective level year, TGR began to store water in September 10th
and when the initial water level reached 152m, the full storage rate could reach
over 90%. If the water storage started in early September 1st, the storage level
from 148m to 152 had little effect on the full storage rate of TGR.The influence of
different initial water level on the full storage rate of TGR is shown in table 2.
Table 2
The influence of different initial water level on the full storage rate of TGR
Date Initial water level Year of non-full Full storage rate
2017 prospective 2017 prospective
Sep.10 148 6 13 94.5% 88.2%
150 6 12 94.5% 89.1%
152 4 10 96.4% 90.9%
155 4 7 96.4% 93.6%
Sep.1st 148 4 11 96.4% 90.0%
150 3 11 97.3% 90.0%
152 3 10 97.3% 90.9%
155 2 6 98.2% 94.5%
237
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