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000724387 019__ $$a908088539
000724387 020__ $$a9789401791878$$qelectronic book
000724387 020__ $$a9401791872$$qelectronic book
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000724387 0247_ $$a10.1007/978-94-017-9187-8$$2doi
000724387 035__ $$aSP(OCoLC)ocn896116886
000724387 035__ $$aSP(OCoLC)896116886$$z(OCoLC)908088539
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000724387 08204 $$a536.2$$223
000724387 1001_ $$aZappoli, Bernard,$$eauthor.
000724387 24510 $$aHeat transfers and related effects in supercritical fluids$$h[electronic resource] /$$cBernard Zappoli, Daniel Beysens, Yves Garrabos.
000724387 264_1 $$aDordrecht :$$bSpringer,$$c[2015]
000724387 264_4 $$c©2015
000724387 300__ $$a1 online resource :$$billustrations (chiefly color).
000724387 336__ $$atext$$btxt$$2rdacontent
000724387 337__ $$acomputer$$bc$$2rdamedia
000724387 338__ $$aonline resource$$bcr$$2rdacarrier
000724387 4901_ $$aFluid mechanics and its applications ;$$vvolume 108
000724387 504__ $$aIncludes bibliographical references and index.
000724387 5050_ $$aPreface -- 1 General Introduction to Near-Critical and Supercritical Fluids -- I Thermomechanical Effects -- 1 Bridging Gas and Near-Critical Fluid Dynamics -- 2 Bridging Gas and Near-Critical Fluid Dynamics -- 3 Temperature and Density Equilibration -- 4 Heat Transfer -- II Heat Transfer Experiments Performed in Weightless Conditions -- 5 Quick Overview of Some Test Cells -- 6 The Pancake Test Cell -- 7 Heat Transport by the Piston Effect: Experiments -- 8 Coexisting Liquid?Vapor Phases -- III Effects of a Steady-State Acceleration Field -- 9 Interaction Between the Piston Effect and Gravitational Convection -- 10 Rayleigh?B ́enard and Rayleigh?Taylor Instabilities -- 11 Experiments in a weak acceleration field and on Earth -- IV Influence of Time-Dependent Acceleration Fields -- 12 Response to Low-Frequency Vibrations: Solid-Like Behavior -- 13 Thermovibrational Effect -- V Appendices.
000724387 506__ $$aAccess limited to authorized users.
000724387 520__ $$aThis book investigates the unique hydrodynamics and heat transfer problems that are encountered in the vicinity of the critical point of fluids. Emphasis is given on weightlessness conditions, gravity effects and thermovibrational phenomena. Near their critical point, fluids indeed obey universal behavior and become very compressible and expandable. Their comportment, when gravity effects are suppressed, becomes quite unusual. The problems that are treated in this book are of interest to students and researchers interested in the original behavior of near-critical fluids as well as to engineers that have to manage supercritical fluids. A special chapter is dedicated to the present knowledge of critical point phenomena. Specific data for many fluids are provided, ranging from cryogenics (hydrogen) to high temperature (water). Basic information in statistical mechanics, mathematics and measurement techniques is also included. The basic concepts of fluid mechanics are given for the non-specialists to be able to read the parts he is interested in. Asymptotic theory of heat transfer by thermoacoustic processes is provided with enough details for PhD students or researchers and engineers to begin in the field. Key space are described in details, with many comparisons between theory and experiments to illustrate the topics.
000724387 588__ $$aDescription based on online resource; title from PDF title page (viewed December 12, 2014).
000724387 650_0 $$aHeat$$xTransmission.
000724387 650_0 $$aSupercritical fluids.
000724387 7001_ $$aBeysens, Daniel,$$eauthor.
000724387 7001_ $$aGarrabos, Yves,$$eauthor.
000724387 77608 $$iPrint version:$$z9789401791861
000724387 830_0 $$aFluid mechanics and its applications ;$$vv. 108.
000724387 852__ $$bebk
000724387 85640 $$3SpringerLink$$uhttps://univsouthin.idm.oclc.org/login?url=http://link.springer.com/10.1007/978-94-017-9187-8$$zOnline Access$$91397441.1
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000724387 980__ $$aBIB
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000724387 983__ $$aOnline
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