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1D unified mathematical model for environmental flow applied to steady aerated mixed flows

机译:一维统一的环境流量数学模型应用于稳定的充气混合流量

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摘要

Hydraulic models available in literature are unsuccessful in simulating accurately and efficiently environmental flows characterized by the presence of both air-water interactions and free-surface/pressurized transitions (aka mixed flows). The purpose of this paper is thus to fill this knowledge gap by developing a unified one-dimensional mathematical model describing free-surface, pressurized and mixed flows with air-water interactions. This work is part of a general research project which aims at establishing a unified mathematical model suitable to describe the vast majority of flows likely to appear in civil and environmental engineering (pure water flows, sediment transport, pollutant transport, aerated flows...). In order to tackle this problem, our original methodology consists in both time- and space-averaging the Local Instant Formulation, which includes field equations for each phase taken separately and jump conditions, over a flow cross-section involving a free-surface. Subsequently, applicability of the model is extended to pressurized flows as well. The first key result is an original 1D Homogeneous Equilibrium Model which describes two-phase free-surface flows. It is proven to be fundamentally multiphase, to take into account scale heterogeneities of environmental flow and to be very easy to solve. Next, applicability of this free-surface model is extended to pressurized flows by using the classical Pre-issmann slot concept. A second key result here is the introduction of an original negative Preissmann slot to simulate sub-atmospheric pressurized flows. The model is then closed by using constitutive equations suitable for air-water flows. Finally, this mathematical model is discretised by means of a finite volume scheme and validated by comparison with experimental results from a physical model in the case of a steady flow in a large scale gallery.
机译:文献中可用的水力模型在准确有效地模拟以空气-水相互作用和自由表面/压力过渡(aka混合流量)为特征的环境流量方面没有成功。因此,本文的目的是通过建立一个统一的一维数学模型来填补这一知识空白,该数学模型描述了具有空气-水相互作用的自由表面,增压流和混合流。这项工作是一项普通研究项目的一部分,该项目旨在建立一个统一的数学模型,以描述可能在土木和环境工程中出现的绝大多数流量(纯水流量,沉积物传输,污染物传输,充气流量...)。 。为了解决这个问题,我们的原始方法包括对时域和时域求平均的局部瞬时公式,其中包括在涉及自由表面的流动横截面上,每个相的场方程和跳跃条件。随后,该模型的适用性也扩展到了压力流。第一个关键结果是原始的一维均质平衡模型,该模型描述了两相自由表面流。考虑到环境流量的规模异质性并且很容易解决,事实证明该方法基本上是多相的。接下来,通过使用经典的Pre-issmann缝隙概念,将该自由表面模型的适用性扩展到加压流。此处的第二个关键结果是引入了原始的负Preissmann缝隙,以模拟低于大气压的压力流。然后通过使用适用于空气-水流的本构方程来关闭模型。最后,该数学模型通过有限体积方案离散化,并在大型画廊中稳定流动的情况下,通过与物理模型的实验结果进行比较来进行验证。

著录项

  • 来源
    《Advances in Engineering Software》 |2011年第9期|p.660-670|共11页
  • 作者单位

    Research Unit of Hydrology, Applied Hydrodynamics and Hydraulic Constructions (HACH), ArGEnCo Department, University of Liege, 1 allie chevreuils, 4000 liege, Belgium,Belgian Fund for Scientific Research, F.RS-FNRS, Belgium;

    Research Unit of Hydrology, Applied Hydrodynamics and Hydraulic Constructions (HACH), ArGEnCo Department, University of Liege, 1 allie chevreuils, 4000 liege, Belgium;

    Research Unit of Hydrology, Applied Hydrodynamics and Hydraulic Constructions (HACH), ArGEnCo Department, University of Liege, 1 allie chevreuils, 4000 liege, Belgium,Belgian Fund for Scientific Research, F.RS-FNRS, Belgium;

    Research Unit of Hydrology, Applied Hydrodynamics and Hydraulic Constructions (HACH), ArGEnCo Department, University of Liege, 1 allie chevreuils, 4000 liege, Belgium;

    Belgian Fund for Scientific Research, F.RS-FNRS, Belgium;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    finite volume method; homogeneous equilibrium model; preissmann slot; local instant formulation; air-entrainment; civil engineering; hydraulic engineering;

    机译:有限体积法;均质平衡模型;Preissmann狭缝;局部瞬时公式;引气;土木工程;液压工程;

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