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090415s2010 flua ob 001 0 eng d |
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20241108165355.2 |
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|a (OCoLC)ocn456907372
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|a 9781420062076
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|a 1420062077
|q (electronic bk.)
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|z 9781420062038
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|q (Cloth)
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|a 10.1201/9781420062076
|2 doi
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|a (OCoLC)456907372
|z (OCoLC)438246600
|z (OCoLC)903973448
|z (OCoLC)992098984
|z (OCoLC)995035254
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|z (OCoLC)1077389690
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|a 229470
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|a QC320.36
|b .S65 2010eb
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|a TXAM
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| 100 |
1 |
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|a Smirnov, H. F.
|q (Henry F.)
|1 https://id.oclc.org/worldcat/entity/E39PCjKWX7XktPfcwFyvwqdcKd
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| 245 |
1 |
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|a Transport phenomena in capillary-porous structures and heat pipes /
|c Henry Smirnov.
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| 260 |
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|a Boca Raton, FL :
|b CRC Press,
|c ©2010.
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| 300 |
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|a 1 online resource (xx, 384 pages) :
|b illustrations
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| 336 |
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|a text
|b txt
|2 rdacontent
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| 337 |
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|a computer
|b c
|2 rdamedia
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| 338 |
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|a online resource
|b cr
|2 rdacarrier
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| 347 |
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|a data file
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| 504 |
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|a Includes bibliographical references and index.
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|a Print version record.
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|a Hydrodynamics and Heat Transfer at Single-PhaseFlow in Capillary and Slit Channels; Hydrodynamics and Heat Transfer of SteadySingle-Phase Flow in Capillaries and Slits; Hydrodynamics and Heat Transfer of Nonsteady Single-Phase Laminar Flow; Hydrodynamics and Heat Transfer of Single-PhaseTurbulent Flow in Capillaries and Slits; ; Hydrodynamics and Heat Transfer atSingle-Phase Flow through Porous Media; Physical Fundamentals, Models,
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| 505 |
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|a And Equationsof Momentum and Heat Transfer at Single-Flowthrough Porous Media; Effective Thermal Conductivityof Porous Structures; Internal Heat Transfer in Porous Media; Heat Transfer on the PorousStructure External Surface; ; Thermohydrodynamics at Vaporizationinside Capillary-Porous Structures; Vaporization Conditions in Capillariesand Capillary-Porous Structures; Hydrodynamics at Vaporization inCapillary-Porous Structures; Fundamental Principle of "Irreversibility Minimum"in Two-Phase Filtration Modeling; Investigations of Vaporization in Porous Structureswith Internal Heat Generation; Experimental Investigations of Internal Characteristicsand Mechanisms of Thermohydrodynamic Phenomena; ; Thermohydrodynamics at Vaporizationin Slit and Capillary Channels; Experimental Studies on Heat Transfer atBoiling in Slits and Capillary Channels; Hydrodynamic Phenomena and Vaporizationin Slit and Capillary Channels; Experimental Studies of
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| 505 |
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|a Vaporization Mechanismin Plain Slits and Annular Channels; Physical Imaginations and TheoreticalModels for Heat Transfer at Vaporizationin Vertical Slits and Capillaries; Physical Imaginations and Theoretical Modelsfor Heat Transfer at Vaporization in Horizontaland Short Slits and Capillaries; ; Heat and Mass Transfer at Vaporization onSurfaces with Capillary-Porous Coverings; Experimental Investigations of Vaporization HeatTransfer on Surfaces with Porous Coatings; Experiments on Heat Transfer at Vaporization onSurfaces with Sintered Coatings: The MalyshenkoPhenomenological Theory of Boiling; Physical Imaginations and Models of Vaporizationon Surfaces with Porous Coatings; General Model of Vaporization Processeson the Coated Surfaces (the Third Stage); Heat Transfer at Vaporization on SurfacesCovered by Movable Capillary Structures; Models of Heat Transfer inside Evaporators of LHP and Capillary Pumped Loops; ; Heat Transfer Crises at Vaporization
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| 505 |
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|a Inside Slits, Capillaries, and on Surfaces Covered by Capillary-Porous Structures; Physical Explanations and SemiempiricalModels of Boiling Heat Transfer Crisis; Modified Hydrodynamic Theory of Boiling Crises in Restricted Spaces; Experiments on Boiling Heat Transfer Crisis atForced Liquid Flow in Slits and Capillary Tubes; Experimental Research on the CHF at Pool Boiling inSlits, Capillaries, and Corrugated Capillary Channels; Experimental Research on Heat Transfer Crisisat Boiling on Surfaces with Porous Coverings; Maximum Heat Fluxes Inside Heat Pipes; References; Index
|
| 520 |
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|a Two-phase nano- and micro-thermal control device research is now proving relevant to a growing range of modern applications, including those in cryogenics, thermal engineering, MEMS, and aerospace engineering. Until now, researchers have lacked a definitive resource that provides a complete review of micro- and nano-scale evaporative heat and mass transfer in capillaries-porous structures. Transport Phenomena in Capillary-Porous Structures and Heat Pipes covers the latest experiemental research efforts in two-phase thermal control technology research and devel.
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| 650 |
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0 |
|a Ebullition
|x Experiments.
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| 650 |
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|a Heat
|x Transmission
|x Experiments.
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| 650 |
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|a Capillarity
|x Experiments.
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| 650 |
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|a Mesoporous materials
|x Heating
|x Experiments.
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| 650 |
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0 |
|a Heat pipes
|x Experiments.
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| 650 |
|
6 |
|a Ébullition
|x Expériences.
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| 650 |
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6 |
|a Chaleur
|x Transmission
|x Expériences.
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| 650 |
|
6 |
|a Capillarité
|x Expériences.
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| 650 |
|
6 |
|a Matériaux mésoporeux
|x Chauffage
|x Expériences.
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| 650 |
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6 |
|a Caloducs
|x Expériences.
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| 650 |
|
7 |
|a TECHNOLOGY & ENGINEERING
|x Mechanical.
|2 bisacsh
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| 650 |
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7 |
|a Heat
|x Transmission
|x Experiments
|2 fast
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| 655 |
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7 |
|a Electronic books.
|2 local
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| 710 |
2 |
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|a Taylor & Francis.
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| 758 |
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|i has work:
|a Transport phenomena in capillary-porous structures and heat pipes (Text)
|1 https://id.oclc.org/worldcat/entity/E39PCFGRgRr4c7h6DdWRTPR3Qq
|4 https://id.oclc.org/worldcat/ontology/hasWork
|
| 776 |
0 |
8 |
|i Print version:
|a Smirnov, H.F. (Henry F.).
|t Transport phenomena in capillary-porous structures and heat pipes.
|d Boca Raton : CRC Press, ©2010
|z 9781420062038
|w (DLC) 2009014839
|w (OCoLC)318645683
|
| 856 |
4 |
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|u http://proxy.library.tamu.edu/login?url=https://www.taylorfrancis.com/books/9780429148088
|z Connect to the full text of this electronic book
|t 0
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| 955 |
|
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|a Taylor and Francis ENGnetBASE
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| 994 |
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| 952 |
f |
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|a Texas A&M University
|b College Station
|c Electronic Resources
|d Available Online
|t 0
|e QC320.36 .S65 2010eb
|h Library of Congress classification
|
| 998 |
f |
f |
|a QC320.36 .S65 2010eb
|t 0
|l Available Online
|