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The Viscous

The Viscous
Author: Freddie Mason
Publisher: punctum books
Total Pages: 275
Release: 2020-05-20
Genre: Technology & Engineering
ISBN: 1950192865

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Slime, goo, gunge, gloop, gels, sols, globules, jellies, emulsions, greases, soaps, syrups, glues, lubricants, liquid crystals, moulds, plasmas, and protoplasms - the viscous is not one thing, but rather a quality of resistance and flow, of stickiness and slipperiness. It is a state of matter that oozes into the gaps of our everyday existence, across age groups, between cultures and disciplines.Since the large-scale extraction of petroleum in the 19th century, the viscous has witnessed a proliferation in the variety of its forms. Mechanized industry required lubricants and oil distillation produced waste products that were refined to form Vaseline. From this age, new viscous forms and technologies emerged: products from plastic (and plastic explosives) to cosmetics, glycerine, asphalt, sexual lubrication, hydro- and aero-gels, and even anti-climb paint.Based on unique and wide-ranging research, The Viscous is the first major investigation of encounters with and possibilities of the viscous over the course of the last century, not simply as a material state, but also as an imaginative event. We enter into a story of matter at its most wayward, deviant, hesitant, and resistant.From asphalt lakes to industrial molasses tanks, from liquid crystals squirming in our screens to milk fetishes, The Viscous discloses gooeyness as a peculiarly modern phase of matter. "Everything oozes," as Beckett's Estragon famously proclaims in Waiting for Godot. Viscous dynamics are exposed as not only hugely various in a post-industrial age, but particularly useful ways of thinking, feeling, writing, and making in a time of ecological anxiety. Freddie Mason is a writer, researcher, and filmmaker living in London. He received his doctorate from the Royal College of art in 2019, on the history and futures of semi-states. Before The Viscous, he published Ada Kaleh (Little Island Press, 2016).


Viscous Flow

Viscous Flow
Author: Hilary Ockendon
Publisher: Cambridge University Press
Total Pages: 130
Release: 1995-01-27
Genre: Mathematics
ISBN: 9780521458818

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Many of the topics in inviscid fluid dynamics are not only vitally important mechanisms in everyday life but they are also readily observable without any need for instrumentation. It is therefore stimulating when the mathematics that emerges when these phenomena are modelled is novel and suggestive of alternative methodologies. This book provides senior undergraduates who are already familiar with inviscid fluid dynamics with some of the basic facts about the modelling and analysis of viscous flows. It clearly presents the salient physical ideas and the mathematical ramifications with exercises designed to be an integral part of the text. By showing the basic theoretical framework which has developed as a result of the study of viscous flows, the book should be ideal reading for students of applied mathematics who should then be able to delve further into the subject and be well placed to exploit mathematical ideas throughout the whole of applied science.


Slow Viscous Flow

Slow Viscous Flow
Author: William E. Langlois
Publisher: Springer Science & Business Media
Total Pages: 333
Release: 2014-04-15
Genre: Mathematics
ISBN: 3319038354

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Leonardo wrote, “Mechanics is the paradise of the mathematical sciences, because by means of it one comes to the fruits of mathematics”; replace “Mechanics” by “Fluid mechanics” and here we are. - From the Preface to the Second Edition Although the exponential growth of computer power has advanced the importance of simulations and visualization tools for elaborating new models, designs and technologies, the discipline of fluid mechanics is still large, and turbulence in flows remains a challenging problem in classical physics. Like its predecessor, the revised and expanded Second Edition of this book addresses the basic principles of fluid mechanics and solves fluid flow problems where viscous effects are the dominant physical phenomena. Much progress has occurred in the half a century that has passed since the edition of 1964. As predicted, aspects of hydrodynamics once considered offbeat have risen to importance. For example, the authors have worked on problems where variations in viscosity and surface tension cannot be ignored. The advent of nanotechnology has broadened interest in the hydrodynamics of thin films, and hydromagnetic effects and radiative heat transfer are routinely encountered in materials processing. This monograph develops the basic equations, in the three most important coordinate systems, in a way that makes it easy to incorporate these phenomena into the theory. The book originally described by Prof. Langlois as "a monograph on theoretical hydrodynamics, written in the language of applied mathematics" offers much new coverage including the second principle of thermodynamics, the Boussinesq approximation, time dependent flows, Marangoni convection, Kovasznay flow, plane periodic solutions, Hele-Shaw cells, Stokeslets, rotlets, finite element methods, Wannier flow, corner eddies, and analysis of the Stokes operator.


Hyperbolic and Viscous Conservation Laws

Hyperbolic and Viscous Conservation Laws
Author: Tai-Ping Liu
Publisher: SIAM
Total Pages: 79
Release: 2000-01-01
Genre: Mathematics
ISBN: 9780898719420

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Here is an in-depth, up-to-date analysis of wave interactions for general systems of hyperbolic and viscous conservation laws. This self-contained study of shock waves explains the new wave phenomena from both a physical and a mathematical standpoint. The analysis is useful for the study of various physical situations, including nonlinear elasticity, magnetohydrodynamics, multiphase flows, combustion, and classical gas dynamics shocks. The central issue throughout the book is the understanding of nonlinear wave interactions.


Numerical Simulation of Viscous Shocked Accretion Flows Around Black Holes

Numerical Simulation of Viscous Shocked Accretion Flows Around Black Holes
Author: Kinsuk Giri
Publisher: Springer
Total Pages: 148
Release: 2014-08-30
Genre: Science
ISBN: 3319095404

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The work developed in this thesis addresses very important and relevant issues of accretion processes around black holes. Beginning by studying the time variation of the evolution of inviscid accretion discs around black holes and their properties, the author investigates the change of the pattern of the flows when the strength of the shear viscosity is varied and cooling is introduced. He succeeds to verify theoretical predictions of the so called Two Component Advective Flow (TCAF) solution of the accretion problem onto black holes through numerical simulations under different input parameters. TCAF solutions are found to be stable. And thus explanations of spectral and timing properties (including Quasi-Period Oscillations, QPOs) of galactic and extra-galactic black holes based on shocked TCAF models appear to have a firm foundation.


Viscous Hypersonic Flow

Viscous Hypersonic Flow
Author: William H. Dorrance
Publisher: Courier Dover Publications
Total Pages: 353
Release: 2017-07-18
Genre: Technology & Engineering
ISBN: 048681288X

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Designed for advanced undergraduate and graduate courses in modern boundary-layer theory, this frequently cited work offers a self-contained treatment of theories for treating laminar and turbulent boundary layers of reacting gas mixtures. 1962 edition.


Asymptotic Theory of Supersonic Viscous Gas Flows

Asymptotic Theory of Supersonic Viscous Gas Flows
Author: Vladimir Neyland
Publisher: Butterworth-Heinemann
Total Pages: 563
Release: 2008-02-06
Genre: Science
ISBN: 0080555772

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This is the first book in English devoted to the latest developments in fluid mechanics and aerodynamics. Written by the leading authors in the field, based at the renowned Central Aerohydrodynamic Institute in Moscow, it deals with viscous gas flow problems that arise from supersonic flows. These complex problems are central to the work of researchers and engineers dealing with new aircraft and turbomachinery development (jet engines, compressors and other turbine equipment). The book presents the latest asymptotical models, simplified Navier-Stokes equations and viscous-inviscid interaction theroies and will be of critical interest to researchers, engineers, academics and advanced graduate students in the areas of fluid mechanics, compressible flows, aerodynamics and aircraft design, applied mathematics and computational fluid dynamics. The first book in English to cover the latest methodology for incopressible flow analysis of high speed aerodynamics, an essential topic for those working on new generation aircraft and turbomachinery Authors are internationally recognised as the leading figures in the field Includes a chapter introducing asymptotical methods to enable advanced level students to use the book