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The Performance Characteristics of Anti-Surge Devices for High Head Cooling Water Systems in 1,000 MW Thermal Power plants  

Kim, Keun-Pil (Korea South-East Power Co.)
Yoo, Hoseon (Department of Mechanical Engineering, Soongsil University)
Publication Information
Plant Journal / v.15, no.4, 2019 , pp. 36-42 More about this Journal
Abstract
In recent, according to the tightening of environment regulation policy, the height of the site of the power plant is increased and the length of the cooling water pipe is increased. This has a serious impact on the stability of the plant. This study analyzes the transient phenomenon using LIQT 7.2, an unsteady state one-dimensional analysis software, to secure the stability of 1,000 MW high-capacity coal-fired power plant cooling water system with high head. To prevent water hammer, The effects on performance characteristics were predicted by individual and combination application. The surge pressure of the cooling water which occurs when the pump was stopped without installing the anti-surge devices was the largest at the pump outlet side. The most effective and simple way to reduce surge pressure in these cooling water systems is to combine a vacuum breaker with a hydraulic non-return valve, which is an essential device for pump protection.
Keywords
Cooing Water System; Anti-Surge Device; Liquid Transient; Surge Pressure; Hydraulic Non-Return Valve; Combination Air Vent Valve; Surge Relief Valve; Vacuum Breaker;
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