Difference Methods for Initial-Boundary-Value Problems and Flow Around Bodies - Info and Reading Options
By You-Lan Zhu, Xi-chang Zhong, Bing-mu Chen and Zuo-Min Zhang
"Difference Methods for Initial-Boundary-Value Problems and Flow Around Bodies" was published by Springer in 2013 - Berlin, Heidelberg, it has 602 pages and the language of the book is English.
“Difference Methods for Initial-Boundary-Value Problems and Flow Around Bodies” Metadata:
- Title: ➤ Difference Methods for Initial-Boundary-Value Problems and Flow Around Bodies
- Authors: You-Lan ZhuXi-chang ZhongBing-mu ChenZuo-Min Zhang
- Language: English
- Number of Pages: 602
- Publisher: Springer
- Publish Date: 2013
- Publish Location: Berlin, Heidelberg
“Difference Methods for Initial-Boundary-Value Problems and Flow Around Bodies” Subjects and Themes:
- Subjects: ➤ Boundary value problems - Computational intelligence - Numerical analysis - Mathematics - Global analysis (Mathematics) - Chemistry - Engineering - Analysis - Mathematical and Computational Physics Theoretical - Math. Applications in Chemistry
Edition Specifications:
- Weight: 1.040
Edition Identifiers:
- The Open Library ID: OL34378348M - OL25619476W
- ISBN-13: 9783662067093 - 9783662067079
- All ISBNs: 9783662067093 - 9783662067079
AI-generated Review of “Difference Methods for Initial-Boundary-Value Problems and Flow Around Bodies”:
"Difference Methods for Initial-Boundary-Value Problems and Flow Around Bodies" Description:
The Open Library:
Since the appearance of computers, numerical methods for discontinuous solutions of quasi-linear hyperbolic systems of partial differential equations have been among the most important research subjects in numerical analysis. The authors have developed a new difference method (named the singularity-separating method) for quasi-linear hyperbolic systems of partial differential equations. Its most important feature is that it possesses a high accuracy even for problems with singularities such as schocks, contact discontinuities, rarefaction waves and detonations. Besides the thorough description of the method itself, its mathematical foundation (stability-convergence theory of difference schemes for initial-boundary-value hyperbolic problems) and its application to supersonic flow around bodies are discussed. Further, the method of lines and its application to blunt body problems and conical flow problems are described in detail. This book should soon be an important working basis for both graduate students and researchers in the field of partial differential equations as well as in mathematical physics.
Open Data:
Since the appearance of computers, numerical methods for discontinuous solutions of quasi-linear hyperbolic systems of partial differential equations have been among the most important research subjects in numerical analysis. The authors have developed a new difference method (named the singularity-separating method) for quasi-linear hyperbolic systems of partial differential equations. Its most important feature is that it possesses a high accuracy even for problems with singularities such as schocks, contact discontinuities, rarefaction waves and detonations. Besides the thorough description of the method itself, its mathematical foundation (stability-convergence theory of difference schemes for initial-boundary-value hyperbolic problems) and its application to supersonic flow around bodies are discussed. Further, the method of lines and its application to blunt body problems and conical flow problems are described in detail. This book should soon be an important working basis for both graduate students and researchers in the field of partial differential equations as well as in mathematical physics
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