Advanced District Heating and Cooling (DHC) Systems: Woodhead Publishing Series in Energy
Editat de Robin Wiltshireen Limba Engleză Hardback – 21 aug 2015
As DHC systems are more efficient and less polluting than individual domestic or commercial heating and cooling systems, the book provides an introduction to DHC, including its potential contribution to reducing carbon dioxide emissions, then reviews thermal energy generation for DHC, including fossil fuel-based technologies, those based on renewables, and surplus heat valorization. Final sections address methods to improve the efficiency of DHC.
- Gives a comprehensive overview of DHC systems and the technologies and energy resources utilized within these systems
- Analyzes the various methods used for harnessing energy to apply to DHC systems
- Ideal resource for those interested in district cooling, teleheating, heat networks, distributed heating, thermal energy, cogeneration, combined heat and power, and CHP
- Reviews the application of DHC systems in the field, including both the business model side and the planning needed to implement these systems
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Specificații
ISBN-13: 9781782423744
ISBN-10: 1782423745
Pagini: 364
Dimensiuni: 152 x 229 x 23 mm
Greutate: 0.73 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Energy
ISBN-10: 1782423745
Pagini: 364
Dimensiuni: 152 x 229 x 23 mm
Greutate: 0.73 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Energy
Public țintă
Academic researchers working in the district heating and cooling (DHC) field and professionals working on improving and developing DHC systems.Cuprins
Part One: Introduction
1 Historical development of district heating and characteristics of a modern district heating system
2 District heating and cooling policies worldwide
Part Two: Energy sources and plant technologies
3 Cogeneration, biomass, waste to energy and industrial waste heat for district heating
4 Deep geothermal energy for district heating: lessons learned from the U.S. and beyond
5 Solar thermal energy for district heating
6 Energy sources for district heating and cooling
7 Energy storage for district energy systems
8 District cooling, current status and future trends
Part Three: Component development, operational efficiency improvement and planning
9 New developments in pipes and related network components for district heating
10 New developments in substations for district heating
11 Temperature optimization in district heating systems
12 District heating monitoring and control systems
13 Prediction and operational planning in district heating and cooling systems
Part Four: Business models and urban planning for heat networks
14 Business models for district heating
15 Development of district heating and cooling in the urban planning context
1 Historical development of district heating and characteristics of a modern district heating system
2 District heating and cooling policies worldwide
Part Two: Energy sources and plant technologies
3 Cogeneration, biomass, waste to energy and industrial waste heat for district heating
4 Deep geothermal energy for district heating: lessons learned from the U.S. and beyond
5 Solar thermal energy for district heating
6 Energy sources for district heating and cooling
7 Energy storage for district energy systems
8 District cooling, current status and future trends
Part Three: Component development, operational efficiency improvement and planning
9 New developments in pipes and related network components for district heating
10 New developments in substations for district heating
11 Temperature optimization in district heating systems
12 District heating monitoring and control systems
13 Prediction and operational planning in district heating and cooling systems
Part Four: Business models and urban planning for heat networks
14 Business models for district heating
15 Development of district heating and cooling in the urban planning context