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Basic Modes of Heat Transfer |
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1 | (72) |
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The Relation of Heat Transfer to Thermodynamics |
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1 | (3) |
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4 | (13) |
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17 | (4) |
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21 | (3) |
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Combined Heat Transfer Systems |
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24 | (17) |
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41 | (6) |
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Heat Transfer and the Law of Energy Conservation |
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47 | (6) |
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53 | (4) |
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57 | (16) |
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58 | (1) |
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59 | (14) |
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73 | (98) |
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73 | (1) |
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74 | (6) |
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Steady Heat Conduction in Simple Geometries |
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80 | (15) |
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95 | (11) |
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Multidimensional Steady Conduction |
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106 | (10) |
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Transient Heat Conduction |
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116 | (18) |
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Charts for Transient Heat Conduction |
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134 | (16) |
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150 | (21) |
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151 | (1) |
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152 | (19) |
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Numerical Analysis of Heat Conduction |
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171 | (62) |
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171 | (1) |
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One-Dimensional Steady Conduction |
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172 | (12) |
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One-Dimensional Unsteady Conduction |
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184 | (15) |
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Two-Dimensional Unsteady and Steady Conduction |
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199 | (17) |
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216 | (2) |
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218 | (4) |
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222 | (11) |
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223 | (1) |
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223 | (10) |
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Analysis of Convection Heat Transfer |
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233 | (68) |
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233 | (1) |
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233 | (3) |
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Boundary-Layer Fundamentals |
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236 | (2) |
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Conservation of Mass, Momentum, and Energy for Laminar Flow over a Flat Plate |
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238 | (4) |
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Dimensionaless Boundary-Layer Equations and Similarity Parameters |
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242 | (4) |
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Evaluation of Convection Heat Transfer Coefficients |
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246 | (1) |
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247 | (8) |
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Analytic Solution for Laminar Boundary-Layer Flow over a Flat Plate |
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255 | (9) |
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Approximate Integral Boundary-Layer Analysis |
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264 | (6) |
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Analogy Between Momentum and Heat Transfer in Turbulent Flow over a Flat Surface |
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270 | (6) |
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Reynolds Analogy for Turbulent Flow over Plane Surfaces |
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276 | (1) |
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277 | (3) |
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Special Boundary Conditions and High-Speed Flow |
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280 | (5) |
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285 | (16) |
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287 | (1) |
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288 | (13) |
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301 | (54) |
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301 | (2) |
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Similarity Parameters for Natural Convection |
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303 | (9) |
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Empirical Correlation for Various Shapes |
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312 | (15) |
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Rotating Cylinders, Disks, and Spheres |
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327 | (2) |
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Combined Forced and Natural Convection |
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329 | (4) |
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333 | (5) |
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338 | (17) |
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343 | (2) |
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345 | (10) |
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Forced Convection Inside Tubes and Ducts |
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355 | (66) |
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355 | (10) |
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Analysis of Laminar Forced Convection in a Long Tube |
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365 | (10) |
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Correlations for Laminar Forced Convection |
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375 | (14) |
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Analogy Between Heat and Momentum Transfer in Turbulent Flow |
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389 | (4) |
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Empirical Correlations for Turbulent Forced Convection |
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393 | (11) |
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Forced Convection and Cooling of Electronic Devices |
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404 | (3) |
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407 | (14) |
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410 | (2) |
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412 | (9) |
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Forced Convection over Exterior Surfaces |
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421 | (64) |
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421 | (2) |
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Cylinders, Spheres, and Other Bluff Shapes |
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423 | (18) |
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441 | (4) |
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Tube Bundles in Cross-Flow |
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445 | (15) |
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460 | (11) |
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471 | (14) |
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473 | (2) |
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475 | (10) |
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485 | (54) |
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485 | (1) |
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Basic Types of Heat Exchangers |
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485 | (8) |
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Overall Heat Transfer Coefficient |
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493 | (4) |
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Log Mean Temperature Difference |
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497 | (7) |
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Heat Exchanger Effectiveness |
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504 | (10) |
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Heat Transfer Enhancement |
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514 | (8) |
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522 | (17) |
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524 | (1) |
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525 | (14) |
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Heat Transfer by Radiation |
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539 | (88) |
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539 | (2) |
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541 | (12) |
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553 | (18) |
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The Radiation Shape Factor |
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571 | (10) |
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Enclosures with Black Surfaces |
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581 | (4) |
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Enclosures with Gray Surfaces |
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585 | (6) |
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591 | (12) |
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Radiation Properties of Gases and Vapors |
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603 | (9) |
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Radiation Combined with Convection and Conduction |
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612 | (4) |
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616 | (11) |
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617 | (1) |
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618 | (9) |
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Heat Transfer with Phase Change |
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627 | |
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627 | (1) |
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627 | (22) |
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Boiling in Forced Convection |
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649 | (14) |
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663 | (10) |
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673 | (1) |
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674 | (13) |
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687 | |
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692 | (3) |
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695 | |
Appendix 1 The International System of Units |
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A3 | |
Appendix 2 Tables |
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A6 | |
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A7 | |
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Thermodynamic Properties of Liquids |
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A14 | |
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A23 | |
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A24 | |
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Thermodynamic Properties of Gases |
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A26 | |
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Miscellaneous Properties, Computer Codes, and Error Function |
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A37 | |
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Correlation Equations for Physical Properties |
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A46 | |
Appendix 3 Tridiagonal Matrix Computer Program |
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A51 | |
Appendix 4 The Heat Transfer Literature |
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A54 | |
Appendix 5 Mathcad Problems |
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A55 | |
Index |
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I1 | |