Advances in Modeling of Fluid Dynamics
by Chaoqun Liu (ed.)
Publisher: InTech 2012
Number of pages: 300
This book contains twelve chapters detailing significant advances and applications in fluid dynamics modeling with focus on biomedical, bioengineering, chemical, civil and environmental engineering, aeronautics, astronautics, and automotive.
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by Philip Magnus - Longmans
This Class-Book is intended for those who have already acquired some elementary knowledge of Mechanics, and are about to commence the study of Hydrostatics and Pneumatics. The author combines the Experimental with the Deductive method.
by Bjorn H. Hjertager (Ed.) - MDPI AG
The topic of engineering fluid dynamics includes both experimental as well as computational studies. Submissions are from the fields of mechanical, chemical, marine, safety, and energy engineering, both original research articles and review articles.
by Joseph M. Powers - University of Notre Dame
These are a set of class notes for a gas dynamics/viscous flow course taught to juniors in Aerospace Engineering. It is expected that the student has some familiarity with concepts such as material derivatives, control volume analysis, etc.
by Matthew Marko - viXra
The author demonstrates a stable Lagrangian solid modeling method, tracking the interactions of solid mass particles, rather than using a meshed grid. This method avoids the problem of tensile instability seen with Smooth Particle Applied Mechanics.