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Head- and Flow-Based Formulations for Frequency Domain Analysis of Fluid Transients in Arbitrary Pipe Networks

机译:任意管网中流体瞬态频域分析的基于头和流的公式

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摘要

Applications of frequency-domain analysis in pipelines and pipe networks include resonance analysis, time-domain simulation, and fault detection. Current frequency-domain analysis methods are restricted to series pipelines, single-branching pipelines, and single-loop networks and are not suited to complex networks. This paper presents a number of formulations for the frequency-domain solution in pipe networks of arbitrary topology and size. The formulations focus on the topology of arbitrary networks and do not consider any complex network devices or boundary conditions other than head and flow boundaries. The frequency-domain equations are presented for node elements and pipe elements, which correspond to the continuity of flow at a node and the unsteady flow in a pipe, respectively. Additionally, a pipe-node-pipe and reservoir-pipe pair set of equations are derived. A matrix-based approach is used to display the solution to entire networks in a systematic and powerful way. Three different formulations are derived based on the unknown variables of interest that are to be solved: head-formulation, flow-formulation, and head-flow-formulation. These hold significant analogies to different steady-state network solutions. The frequency-domain models are tested against the method of characteristics (a commonly used time-domain model) with good result. The computational efficiency of each formulation is discussed with the most efficient formulation being the head-formulation.
机译:频域分析在管道和管网中的应用包括共振分析,时域仿真和故障检测。当前的频域分析方法仅限于串联管道,单分支管道和单回路网络,不适用于复杂的网络。本文提出了任意拓扑和大小的管网中频域解决方案的许多公式。这些表述着眼于任意网络的拓扑结构,除了水头和水流边界以外,不考虑任何复杂的网络设备或边界条件。给出了节点元素和管道元素的频域方程,分别对应于节点处的流动连续性和管道中的非恒定流动。另外,导出了管-节点-管道和储层-管道对方程组。基于矩阵的方法用于以系统和强大的方式显示整个网络的解决方案。根据要解决的未知变量,得出三种不同的公式:水头公式,水流公式和水头公式。这些与不同的稳态网络解决方案有着明显的类比。针对特征方法(常用的时域模型)对频域模型进行了测试,结果良好。讨论了每种配方的计算效率,最有效的配方是头部配方。

著录项

  • 来源
    《Journal of Hydraulic Engineering》 |2011年第5期|p.556-568|共13页
  • 作者单位

    Hydrology Group, Water Planning Sciences, Environment and Resource Sciences, Dept. of Environment and Resource Management, Queensland Government, Australia (corresponding author);

    Dept. of Civil Engineering, Univ. of Canterbury, Christchurch, New Zealand;

    School of Civil and Environmental Engineering, Univ. of Adelaide, Adelaide, Australia;

    Professor, School of Civil and Environmental Engineering, Univ. of Adelaide, Adelaide, Australia;

    Professor, School of Civil and Environmental Engineering, Univ. of Adelaide, Adelaide, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    transients; unsteady flow; pipes; networks; numerical analysis; fourier analysis;

    机译:瞬态不稳定流量管道;网络;数值分析;傅立叶分析;
  • 入库时间 2022-08-18 00:21:44

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