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Convective Heat Transfer [incorrect math symbols]

Convective Heat Transfer [incorrect math symbols]

Kakaç, Sadik, Pramuanjaroenkij, Anchasa, Yener, Yaman
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Front Cover; Contents; Preface; Acknowledgments; Chapter 1: Foundations of Heat Transfer; Chapter 2: Governing Equations of Convective Heat Transfer; Chapter 3: Boundary-Layer Approximations for Laminar Flow; Chapter 4: Heat Transfer in Incompressible Laminar External Boundary Layers:: Similarity Solutions; Chapter 5: Integral Method; Chapter 6: Laminar Forced Convection in Pipes and Ducts; Chapter 7: Forced Convection in Turbulent Flow; Chapter 8: Unsteady Forced Convection in Ducts; Chapter 9: Empirical Correlations for Single-Phase Forced Convection in Ducts.

Chapter 10: Heat Transfer in Natural ConvectionChapter 11: Heat Transfer in High-Speed Flow; Chapter 12: Convective Heat Transfer in Microchannels; Chapter 13: Enhancement of Convective Heat Transfer with Nanofluids; Appendix A: Physical Properties of Metals and Nonmetals; Appendix B: Physical Properties of Air, Water, Liquid Metals, and Refrigerants; Appendix C: Bessel Functions; Back Cover.

Foundations of Heat TransferNomenclatureIntroductory RemarksModes of Heat TransferContinuum ConceptSome Definitions and Concepts of ThermodynamicsGeneral LawsParticular LawsProblemsReferencesSuggested ReadingGoverning Equations of Convective Heat TransferNomenclatureIntroductionContinuity EquationMomentum EquationsEnergy EquationDiscussion of the Fundamental EquationsSimilarities in Fluid Flow and Heat TransferProblemsReferencesBoundary-Layer Approximations for Laminar FlowNomenclatureIntroductionMomentum Equations of the Boundary LayerBoundary-Layer Energy EquationProblemsReferencesHeat Trans.
Abstract: Front Cover; Contents; Preface; Acknowledgments; Chapter 1: Foundations of Heat Transfer; Chapter 2: Governing Equations of Convective Heat Transfer; Chapter 3: Boundary-Layer Approximations for Laminar Flow; Chapter 4: Heat Transfer in Incompressible Laminar External Boundary Layers:: Similarity Solutions; Chapter 5: Integral Method; Chapter 6: Laminar Forced Convection in Pipes and Ducts; Chapter 7: Forced Convection in Turbulent Flow; Chapter 8: Unsteady Forced Convection in Ducts; Chapter 9: Empirical Correlations for Single-Phase Forced Convection in Ducts.

Chapter 10: Heat Transfer in Natural ConvectionChapter 11: Heat Transfer in High-Speed Flow; Chapter 12: Convective Heat Transfer in Microchannels; Chapter 13: Enhancement of Convective Heat Transfer with Nanofluids; Appendix A: Physical Properties of Metals and Nonmetals; Appendix B: Physical Properties of Air, Water, Liquid Metals, and Refrigerants; Appendix C: Bessel Functions; Back Cover.

Foundations of Heat TransferNomenclatureIntroductory RemarksModes of Heat TransferContinuum ConceptSome Definitions and Concepts of ThermodynamicsGeneral LawsParticular LawsProblemsReferencesSuggested ReadingGoverning Equations of Convective Heat TransferNomenclatureIntroductionContinuity EquationMomentum EquationsEnergy EquationDiscussion of the Fundamental EquationsSimilarities in Fluid Flow and Heat TransferProblemsReferencesBoundary-Layer Approximations for Laminar FlowNomenclatureIntroductionMomentum Equations of the Boundary LayerBoundary-Layer Energy EquationProblemsReferencesHeat Trans

კატეგორია:
წელი:
2013
გამოცემა:
3rd
გამომცემლობა:
CRC Press
ენა:
english
გვერდები:
610
ISBN 10:
1466583479
ISBN 13:
9781466583474
სერია:
EBL Schweitzer
ფაილი:
PDF, 14.07 MB
IPFS:
CID , CID Blake2b
english, 2013
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