Numerical Modelling of Astrophysical Turbulence

Nonfiction, Science & Nature, Science, Physics, Mathematical Physics, Astrophysics & Space Science
Cover of the book Numerical Modelling of Astrophysical Turbulence by Wolfram Schmidt, Springer International Publishing
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Author: Wolfram Schmidt ISBN: 9783319014753
Publisher: Springer International Publishing Publication: September 20, 2013
Imprint: Springer Language: English
Author: Wolfram Schmidt
ISBN: 9783319014753
Publisher: Springer International Publishing
Publication: September 20, 2013
Imprint: Springer
Language: English

In this "SpringerBrief" the author considers the underlying problems and questions that are common to numerical models of turbulence in different astrophysical systems.

Turbulence has emerged as an important research topic in several areas of astrophysics. Understanding and modeling turbulence is particularly important for the dynamics of the interstellar medium, but also for the intergalactic medium, as well as in stars. The advancement of methods for numerical simulations of astrophysical turbulence, however, is still challenging because of gravity, strong compressibility, magnetic fields, and other effects.
The book begins with a review of general aspects of numerical simulations of turbulence. In the main part the author presents findings from his numerical studies on astrophysical turbulence and discusses the astrophysical implications. He also explains in detail the numerical schemes utilized.
Readers will find that this book offers a compact yet comprehensive introduction.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

In this "SpringerBrief" the author considers the underlying problems and questions that are common to numerical models of turbulence in different astrophysical systems.

Turbulence has emerged as an important research topic in several areas of astrophysics. Understanding and modeling turbulence is particularly important for the dynamics of the interstellar medium, but also for the intergalactic medium, as well as in stars. The advancement of methods for numerical simulations of astrophysical turbulence, however, is still challenging because of gravity, strong compressibility, magnetic fields, and other effects.
The book begins with a review of general aspects of numerical simulations of turbulence. In the main part the author presents findings from his numerical studies on astrophysical turbulence and discusses the astrophysical implications. He also explains in detail the numerical schemes utilized.
Readers will find that this book offers a compact yet comprehensive introduction.

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