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Theoretical Model of the Electric Field of Stray Currents in Underground Installations in Urban Environments

机译:城市环境下地下设施中杂散电流电场的理论模型

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Aims: Paper presents the graphically observe the impact of parameters on equipotential forces. By adjusting the corresponding parameters their operation in the space can be significantly reduced. Graphics of positive and negative features equalizing line is obtained using Wolphram alpha computer program and application support functions.Methodology: The intensity of corrosion and destruction of metal pipes is determined by the difference between the potential of soil and pipes (pipe voltage). The structure and various forms of underground pipe installations make it difficult to solve this task analytically, so that it becomes virtually impossible. Therefore, the first step in solving the task is defining a theoretical model fordetermining the value of electrical potential on the elements of underground installations. Further proceedings can determine the order and the minimum number of elements of cathode protection by which the voltage at the isolation layer of pipe is limited to allowed values.Conclusion: To ensure the potential change along the axis of the tube, the metal surface should be divided into smaller elements of the same length, and to each element of length △l the longitudinal resistance and conductivity should be added.
机译:目的:论文以图形方式展示了参数对等电位力的影响。通过调整相应的参数,可以显着减少其在空间中的运行。使用Wolphram alpha计算机程序和应用程序支持功能获得正负平衡线的图形。方法:金属管道的腐蚀和破坏强度取决于土壤和管道的电位差(管道电压)。地下管道设施的结构和各种形式使其难以解析地解决此任务,因此实际上变得不可能。因此,解决该任务的第一步是定义一个理论模型,用于确定地下设施元件上的电势值。进一步的程序可以确定阴极保护元件的顺序和最少数量,通过该顺序和最小数量,可以将管道隔离层上的电压限制在允许的值内。分成相同长度的较小元素,并向每个长度为△l的元素添加纵向电阻和电导率。

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