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Direct Calculation of Unsteady-State Weymouth Equations for Gas Volumetric Flow Rate with Different Friction Factors in Horizontal and Inclined Pipes

机译:水平和倾斜管道中具有不同摩擦系数的气体体积流量的非稳态韦茅斯方程的直接计算

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Direct calculations of unsteady-state Weymouth equations for gas volumetric flow rate occur more frequently in the design and operation analysis of natural gas systems. Most of the existing gas pipelines design procedures are based on a particular friction factor and steady-state flow analysis. This paper examined the behavior of different friction factors and the need to develop model analysis capable of calculating unsteady-state gas flow rate in horizontal and inclined pipes. The results show different variation in flow rate with Panhandle A and Panhandle B attaining stability in accurate time with initial unsteadiness at the instance of flow. Chen and Jain friction factors have opposition to flow with high flow rate: The prediction also reveals that Colebrook-White degenerated to Nikuradse friction factor at high Reynolds number. The horizontal and inclined flow equations are considerably enhanced on the usage of different friction factors with the aid of Matlab to handle these calculations.
机译:在天然气系统的设计和运行分析中,针对气体体积流量的非稳态韦茅斯方程的直接计算更加频繁。现有的大多数天然气管道设计程序都基于特定的摩擦系数和稳态流量分析。本文研究了不同摩擦系数的行为,并需要开发能够计算水平和倾斜管道中非稳态气体流量的模型分析。结果表明,流速不同,Panhandle A和Panhandle B可以在准确的时间内达到稳定,并且在流动时会出现初始不稳定。 Chen和Jain摩擦因数在高流速下与流动相反:该预测还表明,高雷诺数下,Colebrook-White退化为Nikuradse摩擦因数。借助Matlab来处理这些计算,通过使用不同的摩擦系数,可以大大提高水平和倾斜流动方程。

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