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Pressure Surge Dependence on Valve Operations in a Pipeline Loading System

机译:压力波动与管道加载系统中阀门操作的关系

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This paper discusses the influence of valve operations on pressure surge in a pipeline. The valve is a protective type which remains open in a pipeline loading system during normal operation but shut down the system when there is an emergency such as storm. The data for the study were obtained from measurements at Agbada 1 flow station as well as log sheets. Also, calculations were made using existing and derived formulas to obtain the values of Crude Oil and Pipe parameters that could not be measured directly or derived from data or log sheets. Surge analysis was carried out on the pipeline system to ascertain changes in pressure and flow rates along the pipeline following valve shut down at any time using developed pressure and flow equations. The results of the simulation analysis showed remarkable changes in the fluid pressure and flow rates along the pipe on shut down at any time. The pipeline recorded the highest pressure of 37.4 bar against initial pressure of 25 bar at length 6000 m in 1.5 second valve closure. There is also remarkable pressure drop along the pipe capable of reducing the crude oil pressure below its vapour pressure. The flow is turbulent even before valve operation with Reynolds number as high as 57024.53. The model equations compute changes in pressure and flow rates at different points in a pipeline installed with emergency-relief coupling valve. This enables point of extreme and low pressure to be detected accurately in a pipeline which guides the engineer while positioning surge suppression devices which cushion the effects of pressure surge in any pipeline.
机译:本文讨论了阀门操作对管道压力波动的影响。该阀为保护型,在正常运行期间在管道加载系统中保持打开状态,但在发生紧急情况(如暴风雨)时关闭系统。研究的数据是从Agbada 1流动站的测量值以及测井表获得的。同样,使用现有公式和派生公式进行计算以获得无法直接测量或无法从数据或日志表中得出的原油和管道参数值。在管道系统上进行了喘振分析,以利用已开发的压力和流量方程随时确定阀门关闭后沿管道的压力和流量的变化。模拟分析的结果表明,随时关闭时,沿管道的流体压力和流速都有显着变化。在1.5秒的阀门关闭时间内,管道在6000 m长处记录的最高压力为37.4 bar,而初始压力为25 bar。沿管道的压降也很明显,能够将原油压力降低到其蒸汽压力以下。即使在雷诺数高达57024.53的阀门运行之前,流量也是湍流的。模型方程计算安装了紧急泄压耦合阀的管道中不同点的压力和流量的变化。这使得能够在管道中准确检测到极端压力和低压点,从而在定位喘振抑制装置时引导工程师,该喘振抑制装置可缓冲任何管道中的压力喘振的影响。

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