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Numerical simulation of scour around fixed and sagging pipelines using a two-phase model.

机译:使用两相模型对固定管线和下垂管线的冲刷进行数值模拟。

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摘要

A key aspect of design and the maintenance of underwater pipelines is the assessment of local scour and its propagation. Scouring around objects placed on a sandy bottom is very complex because it involves two-phase turbulent flows and a myriad of sediment transport modes. This dissertation addresses two principal configurations of scour around pipelines in two parts. First, clear-water scour around a long fixed pipeline placed just above a non-cohesive sandy bed is numerically simulated. Second, live-bed scour around a fixed pipeline and scour below a sagging pipeline are investigated. These two simulations are conducted by using an Eulerian two-phase model that implements Euler-Euler coupled governing equations for fluid and solid phases and a modified k - epsilon turbulence closure for the fluid phase, the modeling system being a part of software FLUENT. Both flow-particle and particle-particle interactions are considered in the model. During the simulations, the interface between sand and water is specified using a threshold volume fraction of sand, and the evolution of the bedforms is studied in detail.For clear-water scour around a fixed pipeline, the predictions of bedform evolution are in agreement with previous laboratory measurements. Investigations into the mechanisms of scour reveal that three sediment transport modes (bed-load, suspended-load and laminated-load) are associated with the scour development. While some previously proposed scour development formulae for cylindrical objects are in good agreement with the simulations, scour predictions based on some operational mine-burial models show disparities with present simulations.For investigations of live-bed scour and scour under a sagging pipeline, the flow and pipeline evolve in two steps: (1) the local live-bed scour around the pipeline developed around a fixed pipeline and (2) the pipeline is lowered to the scour hole in controlled fashion until it reaches the bottom of the scour hole. Three sagging velocities are simulated, and predicted scour profiles agree well with the laboratory data. General characteristics of flow fields, including turbulence, suspension of particles and sediment transport, are described paying attention to their dependence on pipeline sagging. Scour profiles simulated are also in agreement with a LES-based numerical study reported earlier.
机译:水下管道设计和维护的关键方面是对局部冲刷及其传播的评估。围绕放置在沙底上的物体进行冲刷非常复杂,因为它涉及两相湍流和无数的沉积物传输模式。本文分两部分论述了管道冲刷的两种主要配置。首先,对位于非粘性砂层上方的长固定管道周围的清水冲刷进行了数值模拟。其次,研究了固定管线周围的活床冲刷和下垂管线下方的冲刷。这两个仿真是通过使用欧拉两相模型进行的,该模型实现了针对流体和固相的Euler-Euler耦合控制方程和针对流体相的改进的k-ε湍流闭塞,该建模系统是软件FLUENT的一部分。在模型中同时考虑了流-颗粒和颗粒-颗粒之间的相互作用。在模拟过程中,使用砂的阈值体积分数指定了砂和水之间的界面,并详细研究了床形的演化。对于固定管道周围的清水冲刷,床形演化的预测与以前的实验室测量值。对冲刷机理的研究表明,三种沉积物运移模式(床荷载,悬浮荷载和层状荷载)与冲淤发展有关。虽然先前提出的一些圆柱形物体冲刷发展公式与模拟结果非常吻合,但基于一些可操作的地雷埋葬模型的冲刷预测显示出与当前模拟的差异。对于流化床下的活床冲刷和冲刷,流量管道的发展分为两个步骤:(1)围绕固定管道展开的管道周围的局部活床冲刷;(2)管道以受控方式降低到冲刷孔,直到到达冲刷孔的底部。模拟了三个下垂速度,并且预测的冲刷曲线与实验室数据非常吻合。描述了流场的一般特征,包括湍流,颗粒的悬浮和沉积物的运输,并注意它们对管道垂度的依赖性。模拟的冲刷剖面也与先前报道的基于LES的数值研究一致。

著录项

  • 作者

    Zhao, Zhihe.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Engineering Mechanical.Physics Fluid and Plasma.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 86 p.
  • 总页数 86
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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