Technical Challenges of Safety Emergency Drawdown for High Dam and Large Reservoir Project

Author:

Zheng Xueyu12,Zhang Luchen2,Yang Jiaxiu1,Du Shuaiqun1,Wu Shiqiang2,Luo Shaoze2

Affiliation:

1. Power China Guiyang Engineering Corporation Limited, Guiyang 550081, China

2. State Key Laboratory of Hydrology-Water Resources and Hydraulic Engineering, Nanjing Hydraulic Research Institute, Nanjing 210029, China

Abstract

With the development of a 300 m high dam and large reservoir construction, the emergency drawdown capacity of cascade reservoirs, especially high dams, has become a hot issue of concern to all sectors of society while giving play to huge comprehensive benefits. Based on a thorough investigation of the current situation of drawdown facilities for high dams and large reservoirs with a height of 200 m or more in the world, this paper finds that drawdown facilities currently face difficulties such as insufficient drawdown capacity, poor safety and stability of high head structures, extremely high lift hoisting equipment, and high difficulty in high head water seal technology. It is pointed out that the key technologies that need to be urgently addressed for a deep drawdown of high dams and large reservoirs are the pressure-bearing capacity of gates and the capacity limit of hoists. As a result, the elevation of the bottom tunnel of the drawdown building cannot be arranged and the orifice is limited, and the drawdown depth and discharge capacity are limited.

Funder

National Key Research and Development Program of China

Publisher

MDPI AG

Subject

Water Science and Technology,Aquatic Science,Geography, Planning and Development,Biochemistry

Reference23 articles.

1. Zheng, S. (2012). Dam Construction and Management, Technical Progress in China Dam Association 2012 Annual Meeting of the Academic Papers, Yellow River Water Conservancy Press.

2. Wang, L., Jiang, L., Ma, B., Cai, W., Chen, B., and Hu, Z. (2019). Key technologies of manned submersible in the field of high dam reservoir. China Water Transp. Second. Half, 19.

3. Dam deepwater detection, emergency monitoring, early warning and emergency response of major water conservancy projects;Cai;China’s Environ. Manag.,2017

4. Emergency operation experience and Enlightenment of Baige Barrier Lake in Jinsha River;Chen;People’s Yangtze River,2019

5. Zhou, X., Du, X., and Yao, Y. (2019). Dam break flood analysis of Baige barrier lake in Jinsha River. Hydropower, 45.

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