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Criteria of minimum shear stress vs. minimum velocity for self-cleaning sewer pipes design

机译:最小剪切应力的标准与自清洁下水道管设计的最小速度

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Sedimentation in Urban Drainage Systems is a huge problem that allow changes in cross-sectional area, and therefore changes in pipe's roughness. The increase of suspended solids deposition and consolidation in pipes affect the velocity and shear stress distribution inside these elements [1]. Some authors have proposed methodologies to prevent sedimentation phenomena in sewer pipes. However, such methodologies requires variables estimation that result very difficult in most cases and their estimation could affect the resulting network pipes design. This paper aims to evaluate different methodologies and equations proposed to ensure self-cleaning in sewer and pluvial pipes systems design. Comparison was made by graphical analysis of values established in literature in order to assess restrictions of each design. Three methodologies were compared: Traditional criteria, Equation of Macke (1982), and Tractive Force Methodology (ASCE). A design methodology was proposed as an optimization problem considering a cost variability analysis using cost functions. Results shows that self-cleaning criteria during design process must be included in cases where the relation between pipes' flow and terrain slope exceeds the relation found by this study.
机译:城市排水系统中的沉降是一个巨大的问题,允许在横截面积变化,因此管道粗糙度的变化。管道中悬浮固体沉积和固结的增加会影响这些元素内的速度和剪切应力分布[1]。一些作者提出了方法论以防止下水道管道中的沉降现象。然而,这种方法需要在大多数情况下,在大多数情况下,结果非常困难,并且它们的估计可能影响得到的网络管道设计。本文旨在评估所提出的不同方法和方程,以确保下水道和普拉维管系统设计中的自清洁。通过在文献中建立的值的图形分析来进行比较,以评估每个设计的限制。比较了三种方法:传统标准,麦克(1982)的等式,以及牵引力方法(ASCE)。考虑使用成本函数的成本可变性分析,提出了一种设计方法作为优化问题。结果表明,在管道流动和地形斜率与地形斜坡之间的关系超过本研究的关系的情况下,必须包括在设计过程中的自清洁标准。

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