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University of Heat Exchanger Process Design – Practical Series Course Serials Summary. Lecturer: wiseboy (UID: 146194). University of Heat Exchanger Process Design – Practical Series Course Serials (01): Heat Balance of Phase-Less Heat Exchangers (This Building). University of Heat Exchanger Process Design – Practical Series Course Serials (02): Effective Heat Transfer Temperature Difference. University of Heat Exchanger Process Design – Practical Series Course Serials (03): Heat Transfer and Structural Calculations for Phase-Less Heat Exchangers – Structural Estimation. University of Heat Exchanger Process Design – Practical Series Course Serials (04): Heat Transfer and Structural Calculations for Phase-Less Heat Exchangers – Calculation of Heat Transfer Coefficient. University of Heat Exchanger Process Design – Practical Series Course Serials (05): Heat Transfer and Structural Calculations for Phase-Less Heat Exchangers – Calculation of Overall Heat Transfer Coefficient and Tube Length (Area). University of Heat Exchanger Process Design – Practical Series Course Serials (06): Pressure Drop Calculation for Phase-Change Heat Exchangers. University of Heat Exchanger Process Design – Practical Series Course Serials (07): Summary of Phase-Less Heat Exchangers. University of Heat Exchanger Process Design – Practical Series Course Serials (08): The So-Called Wall Temperature. University of Heat Exchanger Process Design – Practical Series Course Serials (09): Reference Materials – Software Calculation Results. University of Heat Exchanger Process Design – Practical Series Course Serials (10): Process Design of Steam Condensation Heat Exchangers – Single-Component Condensation in the Shell Side. University of Heat Exchanger Process Design – Practical Series Course Serials (11): Process Design of Steam Condensation Heat Exchangers – Multi-Component Condensation. University of Heat Exchanger Process Design – Practical Series Course Serials (12): Process Design of Steam Condensation Heat Exchangers – Multi-Component Condensation with Inert Gases. University of Heat Exchanger Process Design – Practical Series Course Serials (13): Process Design of Steam Condensation Heat Exchangers – Wiseboy’s Theory on Resistance and Film Thickness for Multi-Component Condensation with Inert Gases. University of Heat Exchanger Process Design – Practical Series Course Serials (14): Process Design of Steam Condensation Heat Exchangers – Single-Component Condensation Inside the Tubes. University of Heat Exchanger Process Design – Practical Series Course Serials (15): Errors in the Condensation Film Coefficient and Their Impact on the Overall K Value. University of Heat Exchanger Process Design – Practical Series Course Serials (16): Two Operating Conditions of Air Coolers (1) – Calculation of Condensate Water. University of Heat Exchanger Process Design – Practical Series Course Serials (17): Two Operating Conditions of Air Coolers (2) – Calculation of Condensate Water. University of Heat Exchanger Process Design – Practical Series Course Serials (18): Coiled Tubing Heat Exchangers – Thermal Calculations for Typical Heat Transfer Oil Heating Circulation Systems. University of Heat Exchanger Process Design – Practical Series Course Serials (19): Coiled Tubing Heat Exchangers – Geometric Dimensions. University of Heat Exchanger Process Design – Practical Series Course Serials (20): Coiled Tubing Heat Exchangers – Example Problems. University of Heat Exchanger Process Design – Practical Series Course Serials (21): Combinations of Fluid Phases in Heat Exchangers. University of Heat Exchanger Process Design – Practical Series Course Serials (22): Heat Transfer Efficiency of Heat Exchangers (1). University of Heat Exchanger Process Design – Practical Series Course Serials (23): Fin-to-Tube Ratio and Calculation of Various Areas. University of Heat Exchanger Process Design – Practical Series Course Serials (24): Box-Type Heat Exchangers (1) – Introduction. University of Heat Exchanger Process Design – Practical Series Course Serials (25): Box-Type Heat Exchangers (2) – Example of a Typical Large-Scale Heat Exchanger. (To be continued…) I’d like to share these good courses with everyone; I hope they’re useful. I’m not sure if the formatting is correct
I’m not sure if such sharing is compliant
Very good material! Thanks for sharing:P