Published January 2018 | Version v1
Journal article

An Improved "Dynamic Control Operation Module" for Cascade Reservoirs

  • 1. China Institute of Water Resources and Hydropower Research, State Key Laboratory of Simulation and Regulation of Water Cycle in River Basin (China)

Description

Reservoirs are one of the most efficient projects for water resources management, and also play an important role in flood control and conservation. Dynamic control of the reservoir flood limited water level (FLWL) is considered as an effective factor to ensure safety of the flood control during the flood season. The maximum allowed water level of cascade reservoirs is also a fundamental key element for implementing reservoir water level dynamic control operation. In this paper, we discussed and improved "Dynamic Control Operation Module for Cascade Reservoirs" (DCOMR). Therefore, a set of new formulas and new methodologies were proposed (NDCOMR) which considers intermediate variables forecast information, the release of the upstream reservoir and interval flow forecast information in effective lead times, which is applied to the dynamic operation of the maximum allowed water level of cascade reservoirs. The Bikou and Miaojiaba cascade reservoirs were selected as a case study. Based on numerical experiment results, the maximum allowed water level of cascade reservoirs at current time determined by NDCOMR was much safer than that determined by DCOMR. The NDCOMR is more rational and safer than DCOMR for flood control, without the need of reducing flood control standard.

Additional details

Identifiers

Publishing Information

Journal Title
Water Resources Management
Journal Volume
32
Journal Issue
2
Journal Page Range
p. 449-464
ISSN
0920-4741

INIS

Country of Publication
Netherlands
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
50032560
Subject category
S13: HYDRO ENERGY;
Descriptors DEI
EXPERIMENT RESULTS; FLOOD CONTROL; MANAGEMENT; SEASONS; WATER RESERVOIRS; WATER RESOURCES
Descriptors DEC
CONTROL; RESOURCES; SURFACE WATERS

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Copyright
Copyright (c) 2017 Springer Science+Business Media B.V.