Stream Channel stability. Appendix K. Two-Dimensional Finite-Element Model for Routing Water and Sediment in Short Alluvial Channel Reaches,

Abstract

The objective of this study is to develop a new methodology for modeling the phenomenon of sediment movement in irregular alluvial channels, scouring around obstructions, etc. The basic physical principles of conservation of mass and momentum are used to describe the fluid flow. The conservation of mass and semi-empirical equations governing sediment particle movement are adopted to establish the interaction between the sediment movement and the fluid flow. The resulting mathematical model is, unfortunately, highly nonlinear and complex. It is impractical, if not impossible, to solve it analytically. Therefore, the numerical methods of finite element and finite difference are used to obtain approximate solutions of this model. The application of the finite element method (FEM) to model fluid flows has progressed rapidly in recent years from the simplest linear inviscid fluid flow problems (Martin, 1968; Argyris et al., 1969) to slow viscous flows (Tong, 1969; Atkinson et al., 1969; Oden and Sornogyi, 1969), and finally to the solution of full Navier-Stokes equations (Oden, 1970; Skiba, 1970; Olson, 1972; Oden and Wellford, 1972). However, this latter area represents an extremely large and complex field. As such, the research, although very active, can only be referred to as being in its beginning stage (Olson, 1975). A summary of its recent applications to flows through porous media, shallow water circulation, and two-dimensional viscous flows had been presented by Connor and Brebbia (1976).

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Document Details

Document Type
Technical Report
Publication Date
Apr 01, 1981
Accession Number
ADA101396

Entities

People

  • Shu-yi Wang
  • Tsu-yi Su

Tags

Communities of Interest

  • Air Platforms
  • Energy and Power Technologies

DTIC Thesaurus Topics

  • Channel Flow
  • Computational Fluid Dynamics
  • Computational Science
  • Computer Programs
  • Differential Equations
  • Finite Element Analysis
  • Fluid Dynamics
  • Fluid Flow
  • Fluid Mechanics
  • Hydrodynamics
  • Mathematical Models
  • Mechanics
  • Navier Stokes Equations
  • Sedimentation
  • Steady Flow
  • Three Dimensional
  • Two Dimensional

Fields of Study

  • Mathematics

Readers

  • Finite Element Method (FEM) for solving Partial Differential Equations (PDEs)
  • Geotechnical Engineering.
  • Military History