首页> 外文会议>International conference on nuclear engineering;ICONE-16 >WATER HAMMER CHARACTERISTICS FOR PARALLEL PUMPS WATER SUPPLY SYSTEMS
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WATER HAMMER CHARACTERISTICS FOR PARALLEL PUMPS WATER SUPPLY SYSTEMS

机译:并联泵供水系统的水锤特性

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The water hammer induced by abrupt velocity change of fluid flow is inevitable for nuclear power plant systems because of the sudden opening or closing of valves, the sudden startup or shutdown of the pumps and the rupture of pipes. The water hammer pressure wave can damage the pipes and cause the abnormal shutdown of Nuclear Power Plant(NPP). The object of this study is a Parallel Pumps Water Supply system(PPWS) adopted in a NPP. The PPWS is composed of two parallel mixed-flow pumps connected with a check valve separately, a container, a throttle flap and pipe lines. The Method of Characteristic line(MOC) was adopted to evaluate the water hammer behaviors of the PPWS during the alternate startup and shutoff conditions of two parallel pumps. A code was developed using Fortran language to compute the transient behaviors including he peak pressure, the flow velocity and the movement of the valve plate. The results indicate that the water hammer behaviors under low speed startup condition differ from that of high speed startup condition. The maximum pressure vibration amplitude is up to 5.0MPa occurring under high-high speed startup condition. The computation results are instructive for the optimization design of the PPWS so as to minimize the damage potential induced by water hammer.
机译:由于阀门的突然打开或关闭,泵的突然启动或关闭以及管道的破裂,流体流动的突然速度变化引起的水锤在核电站系统中是不可避免的。水锤压力波会损坏管道并导致核电站(NPP)异常关闭。这项研究的目的是在核电厂中采用并联泵供水系统(PPWS)。 PPWS由两个分别与止回阀,容器,节流阀和管道连接的并联混流泵组成。采用特征线法(MOC)评估了两台并联泵交替启动和关闭条件下PPWS的水锤行为。使用Fortran语言开发了一个代码,以计算瞬态行为,包括峰值压力,流速和阀板的运动。结果表明,水锤在低速启动条件下的行为不同于高速启动条件。在高速启动条件下,最大压力振动幅度高达5.0MPa。计算结果对PPWS的优化设计具有指导意义,可以最大程度地减小水锤引起的潜在破坏。

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