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Method of super-long term reservoir inflow forecasting
The invention discloses a method of super-long term reservoir inflow forecasting. The method adopts multiple indexes and comprehensively takes the indexes into account, so accuracy is greatly improved, and the method can be effectively applied to reservoir scheduling for beneficial use and flood control scheduling and creates great power benefits for enterprises and huge flood control and disaster reduction benefits for the society. The method of super-long term reservoir inflow forecasting includes the steps that firstly, factors for reservoir inflow forecasting are determined, 28 astronomical and related indexes such as lunar calendar time when 24 solar terms happen, the Beginning Day of Spring, an intercalary month in the lunar calendar, the relative sunspot number and the declination of the moon are selected based on the sun, earth, moon moving trajectory characters, the solar radiation energy and the lunar tide-generating force; secondly, a 24 solar term process similarity comparison model is established; thirdly, a calendar aid decision making model is established; fourthly, an astronomy factor aid decision making model is established.
Method of super-long term reservoir inflow forecasting
The invention discloses a method of super-long term reservoir inflow forecasting. The method adopts multiple indexes and comprehensively takes the indexes into account, so accuracy is greatly improved, and the method can be effectively applied to reservoir scheduling for beneficial use and flood control scheduling and creates great power benefits for enterprises and huge flood control and disaster reduction benefits for the society. The method of super-long term reservoir inflow forecasting includes the steps that firstly, factors for reservoir inflow forecasting are determined, 28 astronomical and related indexes such as lunar calendar time when 24 solar terms happen, the Beginning Day of Spring, an intercalary month in the lunar calendar, the relative sunspot number and the declination of the moon are selected based on the sun, earth, moon moving trajectory characters, the solar radiation energy and the lunar tide-generating force; secondly, a 24 solar term process similarity comparison model is established; thirdly, a calendar aid decision making model is established; fourthly, an astronomy factor aid decision making model is established.
Method of super-long term reservoir inflow forecasting
LI WENLONG (Autor:in) / LU ZHEN GANG (Autor:in) / GUO XIHAI (Autor:in) / LI XIUBIN (Autor:in) / WANG YONGFENG (Autor:in) / WANG JIN (Autor:in) / TIAN WENMING (Autor:in) / NIU ZHIWEI (Autor:in)
24.06.2015
Patent
Elektronische Ressource
Englisch
IPC:
E02B
HYDRAULIC ENGINEERING
,
Wasserbau
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