Waste Heat Recovery, Its Utilization and Performance Assessment: Fundamentals and Applications presents a variety of contemporary waste-heat applications designed for use as a guide to identify, utilize, and assess the performance of otherwise rejected waste heat sources in support of energy efficiency, affordable energy, and a reduced carbon footprint. This reference identifies feasible waste heat recovery opportunities from various sectors, including domestic, commercial, and industrial sources. Researchers, professors, and students in the field of thermal engineering will find this an…mehr
Waste Heat Recovery, Its Utilization and Performance Assessment: Fundamentals and Applications presents a variety of contemporary waste-heat applications designed for use as a guide to identify, utilize, and assess the performance of otherwise rejected waste heat sources in support of energy efficiency, affordable energy, and a reduced carbon footprint. This reference identifies feasible waste heat recovery opportunities from various sectors, including domestic, commercial, and industrial sources. Researchers, professors, and students in the field of thermal engineering will find this an excellent reference to understand waste heat recovery systems, including sources, recovery, conversion technologies, feasibility assessments, case studies, and more.
1. An Overview of Waste Heat Recovery Equipment and Technologies: Fundamentals & Design Aspects 2. Industrial Waste Heat Recovery: Opportunity and Challenges 3. Criteria for Selecting Waste Heat Recovery System in a Step-by-step Methodology 4. Waste Heat Recovery through Organic Rankine cycle: System Layout and Working Fluid Selection 5. Application of CO2 Based Power Cycles in Waste Heat Recover 6. Application Kalina Cycles for Waste Heat Recovery 7. Application of Thermo-electric Generator (TEG) in Waste Heat Recovery 8. Waste Heat Recovery for District Heating 9. Desalination Technologies for Waste Heat Recovery 10. Waste Heat-Driven Cogeneration / Trigeneration Technologies 11. Heat Recovery Steam Generator (HRSG) for Gas Turbine Waste Heat Recovery 12. Technologies to Recover Waste Heat from Abandoned Oil / Gas Well 13. Application of Pinch Analysis in Waste Heat Recovery 14. Waste Heat Recovery from Fuel Cell 15. Waste Heat Recovery from IC Engines 16. Application of Phase Change Material/Battery in Waste Heat Recovery 17. Enhanced Waste Heat Recovery Using Nano Fluid 18. Economic and Environmental Assessment of Waste Heat Recovery Systems: Methodology and Case Study
1. An Overview of Waste Heat Recovery Equipment and Technologies: Fundamentals & Design Aspects 2. Industrial Waste Heat Recovery: Opportunity and Challenges 3. Criteria for Selecting Waste Heat Recovery System in a Step-by-step Methodology 4. Waste Heat Recovery through Organic Rankine cycle: System Layout and Working Fluid Selection 5. Application of CO2 Based Power Cycles in Waste Heat Recover 6. Application Kalina Cycles for Waste Heat Recovery 7. Application of Thermo-electric Generator (TEG) in Waste Heat Recovery 8. Waste Heat Recovery for District Heating 9. Desalination Technologies for Waste Heat Recovery 10. Waste Heat-Driven Cogeneration / Trigeneration Technologies 11. Heat Recovery Steam Generator (HRSG) for Gas Turbine Waste Heat Recovery 12. Technologies to Recover Waste Heat from Abandoned Oil / Gas Well 13. Application of Pinch Analysis in Waste Heat Recovery 14. Waste Heat Recovery from Fuel Cell 15. Waste Heat Recovery from IC Engines 16. Application of Phase Change Material/Battery in Waste Heat Recovery 17. Enhanced Waste Heat Recovery Using Nano Fluid 18. Economic and Environmental Assessment of Waste Heat Recovery Systems: Methodology and Case Study
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