首页> 外文会议>Biennial International Pipeline Conference(IPC 2004) vol.3; 20041004-08; Calgary(CA) >THE IMPORTANCE OF ONLINE VISCOSITY MEASUREMENT FOR LEAK DETECTION AND OTHER SIMULATION APPLICATIONS
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THE IMPORTANCE OF ONLINE VISCOSITY MEASUREMENT FOR LEAK DETECTION AND OTHER SIMULATION APPLICATIONS

机译:在线粘度测量在泄漏检测和其他模拟应用中的重要性

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Knowledge of viscosity is an important property in fluid dynamics because it is a key factor in determining the amount of fluid that can be transported in a pipeline during a specific period of time. Dynamic viscosity, defined as the viscosity measured under force induced flow, not only describes the nature of the fluid but is also useful in predicting the behavior of the shear stress with respect to the rate of the angular deformation of the fluid. The addition of the viscous deceleration component in the linear momentum equation is important in describing the real fluid flow in the pipeline. The two factors producing viscosity are cohesion and the rate of transfer of molecular momentum. The Reynolds number, which is based on the viscosity, is an important quantity which engineers use to determine if a flow is laminar or turbulent. Hence viscosity plays a major role in the generation of turbulence. Knowing the viscosity is also essential to improving system performance (volumetric efficiency and mechanical efficiency). Because viscosity typically varies among the different fluids transported in petroleum pipelines, it is widely considered that online measurement can be beneficial to pipeline operations. This is particularly true for complex applications that depend on a real-time fluid mechanics model for leak detection, batch tracking, and power optimization, among others.
机译:粘度知识是流体动力学的重要属性,因为它是确定在特定时间段内可以在管道中输送的流体量的关键因素。动态粘度定义为在力引起的流动下测得的粘度,它不仅描述了流体的性质,而且对于预测剪切应力相对于流体的角变形率的行为也很有用。线性动量方程式中粘性减速度分量的增加对于描述管道中的实际流体流量很重要。产生粘度的两个因素是内聚力和分子动量的转移速率。基于粘度的雷诺数是工程师用来确定流是层流还是湍流的重要量。因此,粘度在湍流的产生中起主要作用。了解粘度对于改善系统性能(体积效率和机械效率)也很重要。由于粘度通常在石油管道中传输的不同流体之间变化,因此人们普遍认为在线测量对管道操作会有所帮助。对于依赖实时流体力学模型进行泄漏检测,批处理跟踪和功率优化等的复杂应用尤其如此。

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