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A Diffusion Hydrodynamic Model
  • Language: en
  • Pages: 90

A Diffusion Hydrodynamic Model

The Diffusion Hydrodynamic Model (DHM), as presented in the 1987 USGS publication, was one of the first computational fluid dynamics computational programs based on the groundwater program MODFLOW, which evolved into the control volume modeling approach. Over the following decades, others developed similar computational programs that either used the methodology and approaches presented in the DHM directly or were its extensions that included additional components and capacities. Our goal is to demonstrate that the DHM, which was developed in an age preceding computer graphics/visualization tools, is as robust as any of the popular models that are currently used. We thank the USGS for their approval and permission to use the content from the earlier USGS report.

The Best Approximation Method in Computational Mechanics
  • Language: en
  • Pages: 259

The Best Approximation Method in Computational Mechanics

With the overwhelming use of computers in engineering, science and physics, the approximate solution of complex mathematical systems of equations is almost commonplace. The Best Approximation Method unifies many of the numerical methods used in computational mechanics. Nevertheless, despite the vast quantities of synthetic data there is still some doubt concerning the validity and accuracy of these approximations. This publication assists the computer modeller in his search for the best approximation by presenting functional analysis concepts. Computer programs are provided which can be used by readers with FORTRAN capability. The classes of problems examined include engineering applications, applied mathematics, numerical analysis and computational mechanics. The Best Approximation Method in Computational Mechanics serves as an introduction to functional analysis and mathematical analysis of computer modelling algorithms. It makes computer modellers aware of already established principles and results assembled in functional analysis.

Excel in Complex Variables with the Complex Variable Boundary Element Method
  • Language: en
  • Pages: 290

Excel in Complex Variables with the Complex Variable Boundary Element Method

  • Type: Book
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  • Published: 2021-09-22
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  • Publisher: WIT Press

Using the familiar software Microsoft ® Excel, this book examines the applications of complex variables. Implementation of the included problems in Excel eliminates the “black box” nature of more advanced computer software and programming languages and therefore the reader has the chance to become more familiar with the underlying mathematics of the complex variable problems. This book consists of two parts. In Part I, several topics are covered that one would expect to find in an introductory text on complex variables. These topics include an overview of complex numbers, functions of a complex variable, and the Cauchy integral formula. In particular, attention is given to the study of ...

Stochastic Integral Equations and Rainfall-Runoff Models
  • Language: en
  • Pages: 401

Stochastic Integral Equations and Rainfall-Runoff Models

The subject of rainfall-runoff modeling involves a wide spectrum of topics. Fundamental to each topic is the problem of accurately computing runoff at a point given rainfall data at another point. The fact that there is currently no one universally accepted approach to computing runoff, given rainfall data, indicates that a purely deter ministic solution to the problem has not yet been found. The technology employed in the modern rainfall-runoff models has evolved substantially over the last two decades, with computer models becoming increasingly more complex in their detail of describing the hydrologic and hydraulic processes which occur in the catchment. But despite the advances in includi...

The Best Approximation Method An Introduction
  • Language: en
  • Pages: 185

The Best Approximation Method An Introduction

The most commonly used numerical techniques in solving engineering and mathematical models are the Finite Element, Finite Difference, and Boundary Element Methods. As computer capabilities continue to impro':e in speed, memory size and access speed, and lower costs, the use of more accurate but computationally expensive numerical techniques will become attractive to the practicing engineer. This book presents an introduction to a new approximation method based on a generalized Fourier series expansion of a linear operator equation. Because many engineering problems such as the multi dimensional Laplace and Poisson equations, the diffusion equation, and many integral equations are linear oper...

Monthly Catalogue, United States Public Documents
  • Language: en
  • Pages: 980

Monthly Catalogue, United States Public Documents

  • Type: Book
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  • Published: 1994-04
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  • Publisher: Unknown

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Monthly Catalog of United States Government Publications
  • Language: en
  • Pages: 1032

Monthly Catalog of United States Government Publications

  • Type: Book
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  • Published: Unknown
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  • Publisher: Unknown

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Advances in the Complex Variable Boundary Element Method
  • Language: en
  • Pages: 402

Advances in the Complex Variable Boundary Element Method

As well as describing the extremely useful applications of the CVBEM, the authors explain its mathematical background -- vital to understanding the subject as a whole. This is the most comprehensive book on the subject, bringing together ten years of work and can boast the latest news in CVBEM technology. It is thus of particular interest to those concerned with solving technical engineering problems -- while scientists, graduate students, computer programmers and those working in industry will all find the book helpful.

The Complex Variable Boundary Element Method in Engineering Analysis
  • Language: en
  • Pages: 397

The Complex Variable Boundary Element Method in Engineering Analysis

The Complex Variable Boundary Element Method (CVBEM) has emerged as a new and effective modeling method in the field of computational mechanics and hydraulics. The CVBEM is a generalization of the Cauchy integral formula into a boundary integral equation method. The model ing approach by boundary integration, the use of complex variables for two-dimensional potential problems, and the adaptability to now-popular microcomputers are among the factors that make this technique easy to learn, simple to operate, practical for modeling, and efficient in simulating various physical processes. Many of the CVBEM concepts and notions may be derived from the Analytic Function Method (AFM) presented in v...

U.S. Army Register
  • Language: en
  • Pages: 404

U.S. Army Register

  • Type: Book
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  • Published: 1968
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  • Publisher: Unknown

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