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Heat Transfer Handbook part 140

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Generally, heat transfer per unit of droplet surface area decreases as the droplet grows. The net result of both of these aspects is that the heat transfer can be increasedsubstantially comparedto a corresponding spray column.. 19.4.3 Packed Columns. Packings can also be used in liquid–liquidsystems to assist in removing the wake from the dispersedliquidand increasing the heat transfer.. 19.11. 1390...

Heat Transfer Handbook part 141

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Sons / Page 1399 / 2ndProofs / Heat Transfer Handbook / Bejan. Ice ColdEnergy Storage Using Direct- Contact Phase Change Heat Transfer between Refrigerant andPCM in an Enclosure, Trans.. Gas Hydrate ColdStorage Using Direct-Contact Heat Transfer of Liquid–Vapor Phase Change and Natural Circulation of Refrigerant in Closed Vessel, JSME Int. ForcedConvection Heat Transfer from an Isothermal Sphere to Water, J....

Heat Transfer Handbook part 142

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Haajizadeh, M Habdas, A P Hagen, G, 401, 437 Hagge, J K Haider, S I Haji Sheikh, A, 254, 258 Hakim, E Hall, D E Hall, W B Hamad, G, 230, 258 Hampson, H Han, C Y, 644, 715 Han, C D Han, J C Han, L S Hands, B A, 49, 144. Harmon, T C Harms, T J Harms-Watsenberg,...

Heat Transfer Handbook part 143

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Smith, A N Smith, E M . Altered tube flow arrangement, 1076 Alternating direction explicit methods,. Annularflow condensation in smooth tubes, 737 with partial dryout, 685. Autoclave Autohesion, 1271 Automotive industry, 950 Axial heat flow method, 122 Axially grooved wicks Axisymmetric flows, 469–471 Axisymmetric objects, 510 Azeotropes, 700, 701 Backmixing Baffled columns Ball-bearing resistance, 336. bubble dynamics, 646–651. bubble departure,...

Heat Transfer Handbook part 144

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CFD (computational fluid dynamics) codes, 445. Chato’s correlation Chauvenet’s criterion, 923–924 Chemical reaction fouling, 893 Chen correlation Chen—Engel model, 331, 332 Chevron angle, 882, 883 Chevron corrugation, 880, 881 CHF, see Critical heat flux Chip formation Chip packages, 952–955. Churchill—Usagi method, 334 Churn flow, 663, 664. Circular fin (CF) tubes, 846–847 Circular flux tubes:. Co-current flow, ε − N tu...

Heat Transfer Handbook part 145

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Fahrenheit temperature scale, 917 Falkner—Skan flow, 454–455 Fan-cooled heat sinks, 952 Favorable tilt, 1196. conduction heat transfer with, 201 longitudinal convecting fins, 202–207 longitudinal convecting—radiating fins,. conduction heat transfer of longitudinal convecting, 202–207 longitudinal convecting—radiating, 212 longitudinal radiating, 211–212 optimum dimensions, 212–215 radial convecting, 206–209. heat transfer with, 11. forced convection on an isoflux, 959, 960 forced convection on an...

Heat Transfer Handbook part 146

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tions Jet in steam flow, 1371 Jet in vessel, 1371 Joints, 264. Kattan—Thome—Favrat flow pattern map . Kirchhoff transformation, 196, 197 Kline-McClintock model, 930 Kozeny flow model, 1135 Krypton, 79–80. Laminarboundary layerflow, 452–455 Laminarcross flow, 509. Laminarflow:. flow entrance region, 396–399 fully developed flow region, 399–401 hydraulic diameter and pressure drop,. isothermal flat plate in uniform, 508–509 natural convection. external,...

Heat Transfer Handbook part 147

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infinitely long semi-infinite hollow cylinder with periodic surface temperature, 242–243. semi-infinite solid with periodic ambient temperature, 240–241. semi-infinite solid with periodic surface heat flux, 240. semi-infinite solid with periodic surface temperature, 239–240. longitudinal finned double-pipe heat exchangers, see Longitudinal finned double-pipe heat exchangers Pipe flow, 31–33. location-dependent energy generation, 198–199. temperature-dependent energy generation, 200. Plate and frame heat exchangers, 878–886...