High Performance Computing in Biomimetics

Modeling, Architecture and Applications

Mohammad Jawaid (Hrsg.), Tabrej Khan (Hrsg.), Balbir Singh (Hrsg.), Kamarul Arifin Ahmad (Hrsg.), Nor Asilah Wati Abdul Hamid (Hrsg.)

PDF
ca. 181,89
Amazon iTunes Thalia.de Weltbild.de Hugendubel Bücher.de ebook.de kobo Osiander Google Books Barnes&Noble bol.com Legimi yourbook.shop Kulturkaufhaus ebooks-center.de
* Affiliatelinks/Werbelinks
Hinweis: Affiliatelinks/Werbelinks
Links auf reinlesen.de sind sogenannte Affiliate-Links. Wenn du auf so einen Affiliate-Link klickst und über diesen Link einkaufst, bekommt reinlesen.de von dem betreffenden Online-Shop oder Anbieter eine Provision. Für dich verändert sich der Preis nicht.

Springer Nature Singapore img Link Publisher

Naturwissenschaften, Medizin, Informatik, Technik / Sonstiges

Beschreibung

This book gives a complete overview of current developments in the implementation of high performance computing (HPC) in various biomimetic technologies. The book presents various topics that are subdivided into the following parts: A) biomimetic models and mechanics; B) locomotion and computational methods; C) distributed computing and its evolution; D) distributed and parallel computing architecture; E) high performance computing and biomimetics; F) big data, management, and visualization; and G) future of high performance computing in biomimetics. This book presents diverse computational technologies to model and replicate biologically inspired design for the purpose of solving complex human problems. The content of this book is presented in a simple and lucid style which can also be used by professionals, non-professionals, scientists, and students who are interested in the research area of high performance computing applications in the development of biomimetics technologies.

Weitere Titel in dieser Kategorie
Cover KNOWING GOD
ANGELA AIRE OJEIKERE
Cover Lean Six Sigma
Jörg Niemann

Kundenbewertungen

Schlagwörter

Flight Performance of Birds, Biomimetic Model Mechanics, High Performance Computing, Biomechanics Model, Unsteady Aerodynamics, Locomotion Kinematics, Computational Fluid Dynamics, Bio-inspired robotics, Bio-inspired Computing