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  • 1
    Online Resource
    Online Resource
    London, UK :ISTE Ltd ;
    UID:
    almafu_9961574875202883
    Format: 1 online resource (365 p.).
    ISBN: 9781119482925 , 1119482925 , 9781394296347 , 1394296347
    Series Statement: Energy series. Energy engineering set ; volume 6
    Note: 3.6. Spiral heat exchanger technology , Cover -- Title Page -- Copyright Page -- Contents -- Introduction -- Chapter 1 Available Technologies -- 1.1. Introduction -- 1.2. The simplest form of heat exchanger: single-tube or coaxial -- 1.3. Shell-and-tube heat exchangers -- 1.4. Coil-in-tank heat exchangers -- 1.5. Compact heat exchangers -- 1.5.1. Finned-tube cross-flow heat exchangers -- 1.5.2. Car radiators -- 1.5.3. Plate-fin heat exchangers -- 1.5.4. Plate heat exchangers -- 1.5.5. Spiral heat exchangers -- 1.5.6. Printed-circuit heat exchangers -- 1.6. Rotary regenerative heat exchangers -- 1.7. Phase-change heat exchangers , 1.7.1. Condensers -- 1.7.2. Reboilers and evaporators -- 1.7.3. Heat-pipe heat exchangers -- 1.8. Heat exchangers for power electronics -- 1.8.1. Electronic radiators and heat sinks -- 1.8.2. Forced-convection heat sinks -- 1.8.3. Cold-plate heat exchangers -- 1.8.4. Microchannel coolers -- 1.8.5. Refrigerated heat exchangers -- 1.8.6. Spray heat exchangers: spray coolers -- 1.8.7. Micro heat pipes for electronic systems -- 1.8.8. Evaporation-chamber heat exchangers -- Chapter 2 Tubular Heat Exchanger Design -- 2.1. Introduction -- 2.2. Coaxial tubular heat exchangers , 2.6.5. Longitudinal free area -- 2.6.6. Transverse free area -- 2.6.7. Flowrates -- 2.7. Calculation of the Reynolds number for flow in the shell -- 2.7.1. Use of hydraulic diameter for shells without baffles -- 2.7.2. The Bell-Delaware method for shells with baffles -- Chapter 3 Compact Heat Exchanger Design -- 3.1. Introduction -- 3.2. General parameters of compact heat exchangers -- 3.2.1. Compactness -- 3.2.2. Hydraulic diameter -- 3.2.3. Porosity -- 3.2.4. Relationship between compactness and hydraulic diameter -- 3.3. Finned-tube compact heat exchanger technology and design , 3.3.1. Individually-finned tube heat exchangers -- 3.3.2. Collectively-finned tube heat exchangers -- 3.4. Plate-fin heat exchanger technology and design -- 3.4.1. Flow configuration -- 3.4.2. Fin type and arrangement -- 3.4.3. Fin-plate attachments and exchange modules -- 3.4.4. Geometric parameters -- 3.4.5. Calculation of the hydraulic diameter for plate-fin heat exchangers -- 3.4.6. Calculation of the Reynolds number -- 3.5. Plate heat exchanger technology and design -- 3.5.1. Gasketed-plate heat exchangers -- 3.5.2. Brazed-plate heat exchangers -- 3.5.3. Sizing parameters
    Additional Edition: Print version: Benallou, Abdelhanine Heat Exchangers Newark : John Wiley & Sons, Incorporated,c2022 ISBN 9781786302861
    Language: English
    Library Location Call Number Volume/Issue/Year Availability
    BibTip Others were also interested in ...
  • 2
    Online Resource
    Online Resource
    London, UK :ISTE Ltd ;
    UID:
    edocfu_9961574875202883
    Format: 1 online resource (365 p.).
    ISBN: 9781119482925 , 1119482925 , 9781394296347 , 1394296347
    Series Statement: Energy series. Energy engineering set ; volume 6
    Note: 3.6. Spiral heat exchanger technology , Cover -- Title Page -- Copyright Page -- Contents -- Introduction -- Chapter 1 Available Technologies -- 1.1. Introduction -- 1.2. The simplest form of heat exchanger: single-tube or coaxial -- 1.3. Shell-and-tube heat exchangers -- 1.4. Coil-in-tank heat exchangers -- 1.5. Compact heat exchangers -- 1.5.1. Finned-tube cross-flow heat exchangers -- 1.5.2. Car radiators -- 1.5.3. Plate-fin heat exchangers -- 1.5.4. Plate heat exchangers -- 1.5.5. Spiral heat exchangers -- 1.5.6. Printed-circuit heat exchangers -- 1.6. Rotary regenerative heat exchangers -- 1.7. Phase-change heat exchangers , 1.7.1. Condensers -- 1.7.2. Reboilers and evaporators -- 1.7.3. Heat-pipe heat exchangers -- 1.8. Heat exchangers for power electronics -- 1.8.1. Electronic radiators and heat sinks -- 1.8.2. Forced-convection heat sinks -- 1.8.3. Cold-plate heat exchangers -- 1.8.4. Microchannel coolers -- 1.8.5. Refrigerated heat exchangers -- 1.8.6. Spray heat exchangers: spray coolers -- 1.8.7. Micro heat pipes for electronic systems -- 1.8.8. Evaporation-chamber heat exchangers -- Chapter 2 Tubular Heat Exchanger Design -- 2.1. Introduction -- 2.2. Coaxial tubular heat exchangers , 2.6.5. Longitudinal free area -- 2.6.6. Transverse free area -- 2.6.7. Flowrates -- 2.7. Calculation of the Reynolds number for flow in the shell -- 2.7.1. Use of hydraulic diameter for shells without baffles -- 2.7.2. The Bell-Delaware method for shells with baffles -- Chapter 3 Compact Heat Exchanger Design -- 3.1. Introduction -- 3.2. General parameters of compact heat exchangers -- 3.2.1. Compactness -- 3.2.2. Hydraulic diameter -- 3.2.3. Porosity -- 3.2.4. Relationship between compactness and hydraulic diameter -- 3.3. Finned-tube compact heat exchanger technology and design , 3.3.1. Individually-finned tube heat exchangers -- 3.3.2. Collectively-finned tube heat exchangers -- 3.4. Plate-fin heat exchanger technology and design -- 3.4.1. Flow configuration -- 3.4.2. Fin type and arrangement -- 3.4.3. Fin-plate attachments and exchange modules -- 3.4.4. Geometric parameters -- 3.4.5. Calculation of the hydraulic diameter for plate-fin heat exchangers -- 3.4.6. Calculation of the Reynolds number -- 3.5. Plate heat exchanger technology and design -- 3.5.1. Gasketed-plate heat exchangers -- 3.5.2. Brazed-plate heat exchangers -- 3.5.3. Sizing parameters
    Additional Edition: Print version: Benallou, Abdelhanine Heat Exchangers Newark : John Wiley & Sons, Incorporated,c2022 ISBN 9781786302861
    Language: English
    Library Location Call Number Volume/Issue/Year Availability
    BibTip Others were also interested in ...
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