首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >SENARIET, A WATER HAMMER SOFTWARE FOR ANALYZING HYDRAULIC TRANSIENTS IN COMPLEX CIRCUITS
【24h】

SENARIET, A WATER HAMMER SOFTWARE FOR ANALYZING HYDRAULIC TRANSIENTS IN COMPLEX CIRCUITS

机译:Senariet,一种用于分析复杂电路中的液压瞬变的水锤软件

获取原文

摘要

Water hammer transients are a danger for piping integrity and represent an important safety issue. In the design of pipeline systems it is necessary to take into account the magnitudes of pressure waves associated with water hammer phenomena and, therefore, it is important that these water hammer effects are calculated with the appropriate accuracy. SENARIET is a programme to study fluid transients in pipeline systems to obtain pressure and velocity distributions along a circuit. When a transient process occurs in periods of the same order of the pressure waves' travelling time along a circuit (the order of the circuit length divided by the effective propagation speed), the compressibility effects in liquids have to be considered. Taking this effect into account, the appropriate equations of continuity and momentum are solved by the method of characteristics, to obtain pressure and velocity along pipes as a function of time. The programme considers different devices that usually take part in complex circuits, such as pumps, motorized valves, check valves, elbows, change of sections, bifurcations, vacuum valves, damping devices, reservoirs, etc. The simulated results have been compared to theoretical and experimental ones to validate and evaluate the precision of the software. The results help to perform efficient and accurate predictions in order to define the pipelines.
机译:水锤瞬变是管道完整性的危险,并代表一个重要的安全问题。在管道系统的设计中,需要考虑与水锤现象相关的压力波的大小,因此,重要的是以适当的精度计算这些水锤效应。 Senariet是一种研究管道系统中的流体瞬变的程序,以沿着电路获得压力和速度分布。当瞬态过程在沿着电路的压力波的行进时间相同的顺序(电路长度的顺序除以有效传播速度)时,必须考虑液体中的可压缩效果。考虑到这种效果,通过特性方法解决了连续性和动量的适当方程,以作为时间的函数获得管道的压力和速度。该程序考虑了通常参加复杂电路的不同设备,例如泵,电动阀,止回阀,肘部,部分,分叉,真空阀,阻尼装置,储层等。模拟结果与理论和理论相比已经进行了比较实验组验证和评估软件的精度。结果有助于执行有效和准确的预测,以便定义管道。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号