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ContentsPart 1. Introduction (30 pages )Chapter 1. Introduction to refrigeration (Pages: 30; Figs.:23; Ref. 12)1-1) A Sample of Refrigeration System-Spilt Room Air Conditioner(1)1-2) Definition and Scope of Refrigeration (2)1-3) Main Applications of Refrigeration (4)1-4) History of Refrigeration in the world (18)1-5) Refrigeration in China (22)1-6) Academic Organizations and Journals of Refrigeration in the world (24)1-7) Academic Organizations and Journals of Refrigeration in China (27)References (30)Part 2. The Principles of Refrigeration ( 116 pages)Chapter 2. Thermodynamic Analysis of refrigeration cycle (Pages: 15; Figs.:4; Ref.7; Eqs: 28)2-1) The laws of Thermodynamics and Their Relation to refrigeration (31)2-2) The Refrigeration Cycle and its Main Components (34)2-3) The Performance of Refrigeration System (37)2-4) Entropy Analyses Method of Refrigeration System (39)2-5) Work and Heat Operated Refrigerators (42)2-6) Lorenz Cycles for Variable Temperature Heat Source and sink (44)Reference(45)Chapter 3. Methods of Decreasing Temperature ( I ) -relative to gas and liquid refrigerants (Pages: 24; Figs: 17; Ref: 11; Tabs: 3; Eqs: 24)3-1) Decreasing Temperature by Adiabatic throttlingJ-T Effect (46)3-2) Decreasing Temperature by Pressure Reduction in Two Phase Region ( 51 )3-3) Decreasing Temperature by Adiabatic Expansion of Gas ( 53 )3-4) Decreasing Temperature by Adiabatic Vortex Ranque Effect ( 57 )3-5) Decreasing Temperature by Variable Mass System in Unsteady Flow ( 59 )3-6)Decreasing Temperature by Thermo-Acoustic Effect ( 66 )References (69)Chapter 4. Methods of Decreasing Temperature ( II ) -Relative to solid refrigerants(Pages: 17; Figs: 13; Ref: 18; Eqs: 18)4-1) Decreasing Temperature by Thermo-Electric Peltier Effect (70)4-2) Decreasing Temperature by Magnetocaloric Effect (Adiabatic Demagnetization) (75)4-3) Decreasing Temperature by Photo method (81)References (86)Chapter 5. Vapor and Gas Refrigeration Cycles(Pages: 29; Figs: 23; Tabs: 4; Ref: 24; Eqs: 36)5-1) Mechanical Powered Vapor Compression Refrigeration Cycle ( 87)5-2) Heat Powered Vapor Compression Refrigeration CycleVapor Absorption Refrigeration ( 89 )5-3) Heat Powered vapor Compression Refrigeration CycleVapor Adsorption Refrigeration ( 100 )5-4) Heat Powered vapor Compression Refrigeration Cycle Vapor Jet Refrigeration ( 105 )5-5) Refrigeration Cycle by Gas Compression and Adiabatic Expansion ( 109 )References (114)Chapter 6. Cycle Analyses of Vapor Compression Refrigeration(Pages: 31; Figs: 21; Tabs: 7; Ref: 19; Eqs: 30)6-1) Single stage Vapor Compression Refrigeration Systems (116)6-2) Multi-stage Vapor Compression Systems ( 133 )6-3) Cascade Vapor Compression Systems ( 141 )6-4) Auto Cascade Vapor Compression Systems ( 144 )References (146)Part 3. The Working Substances for Refrigeration (74 pages)Chapter 7. Introduction of Refrigerants(Pages: 22; Figs: 6; Tabs: 14; Ref: 10; Eqs: 2)7-1) Refrigerant in vapor compression refrigeration(147)7-2) Refrigeration Characteristics of refrigerant ( 147 )7-3) Some Important Physical/Chemical Properties of Refrigerants(150)7-4) Nomenclature of Refrigerants (156)7-5) Secondary Refrigerants (165)References (168)Chapter 8. Environmental Friendly Refrigerants (Pages: 34; Figs: 8; Tabs: 10; Ref: 16; Eqs: 10)8-1) Ozone depletion by CFCs in stratosphere (169)8-2) Montreal Protocol and its amendments ( 177 )8-3) Greenhouse effect and Global Warming ( 180 )8-4) Kyoto protocol ( 185 )8-5) Global warming impacts of refrigerants ( 189 )8-6) Fluorinated Refrigerants ( 192 )8-7) Natural Refrigerants ( 197 )8-8) Alternative refrigerants ( 200 )References (202)Chapter 9. Psychrometry and Air Processes(Pages: 18 ;Figs.4; Tabs: 3; Ref: 4; Eqs: 27)9-1) Composition and thermal properties of Moist air(203)9-2) Thermal properties of saturated water and saturated moist air ( 206 )9-3) Adiabatic saturation process and wet bulb temperature ( 209 )9-4) Approximate calculation of thermal properties of moist air ( 211 )9-5) Psychrometric chart ( 214 )9-6) Air handing processes ( 216 )9-7) Heat and mass transfer between moist air and solid surface ( 218 )References (220)Part 4. The Equipment for Refrigeration Cycles (71 pages)Chapter 10. Compressors (Pages: 24; Figs: 17; Tabs: 1; Ref. 20)10-1) Main Types of Compressors (221)10-2) Reciprocating compressors ( 222 )10-3) Scroll Compressors ( 230 )10-4) Screw Compressors ( 232 )10-5)Turbo Compressors ( 236 )10-6) Roller Compressors ( 238 )10-7) Vane Compressors ( 239 )10-8) Inverter Technology and Inverter driven Compressors ( 241 )Reference (244)Chapter 11. Condensing Equipment (Pages: 17; Figs: 18; Tabs: 1; Ref: 14)11-1) Function and Classification of Condensers (245 )11-2) Water-Cooled Condensers ( 247 )11-3) Cooling Tower ( 253 )11-4) Air-Cooled Condensers ( 258 )11-5) Evaporative Condensers ( 259 )Reference (261)Chapter 12. Evaporators (Pages: 16; Figs: 14; Tabs: 2; Ref: 14)12-1) Function and Classification of Evaporators (262)12-2) Dry-Expansion Evaporators and Flooded Evaporators ( 263 )12-3) Main types of Evaporator Construction ( 265 )12-4) Air Cooler and Spray Air Cooler ( 272 )12-5) Direct and Indirect Systems ( 275 )Reference (277)Chapter 13. Valves for Refrigerant Flow Control (Page: 14; Ref.12; Tabs: 1; Figs: 14)13-1) Hand Expansion Valves (278)13-2) Capillary tube ( 279 )13-3) Thermostatic expansion Valves- Superheat Control ( 283 )13-4) Automatic Expansion Valves- Evaporator pressure Control ( 285 )13-5) Electronic Expansion Valves ( 287 )13-6) The practical a refrigeration system and its temperature and pressure control ( 290 )Reference (291)Index (292)有 关 内 容 统 计部分章 序页 数图数目表数目公式数参考文献数容 量M起止页码Part 1130
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