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The Climate Energy Nexus: Understanding the Relationship between Energy Production Systems and Climate Trends

Autor Mark Mba Wright
en Limba Engleză Paperback – 9 sep 2024
The Climate Energy Nexus: Understanding the Relationship between Energy Production Systems and Climate Trends offers fundamental material on energy and climate systems, progressing to establishing advanced and integrated energy-climate models. Describing the motivation and key challenges in the climate-energy modeling community, this reference looks at the fundamentals of climate and energy systems before integrating them into a cohesive analysis framework. The book presents various energy production optimization case studies spanning urban and national scales, annual to multi-decade long timescales, and various economic and environmental considerations Practitioners and students interested in climate and energy systems will gain a foundational platform from which to develop informed assessments of future energy use. As making informed energy planning decisions requires a better understanding of how climate trends, extreme events, and public policy could impact energy production performance, cost, and emissions, this book is an ideal resource for readers.


  • Includes an accessible introduction and detailed advances on climate and energy system models
  • Provides relevant and real case studies that can be adapted to practical applications
  • Presents examples using free, open-source frameworks for easy implementation
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Specificații

ISBN-13: 9780323952156
ISBN-10: 0323952151
Pagini: 194
Dimensiuni: 152 x 229 mm
Greutate: 0.45 kg
Editura: ELSEVIER SCIENCE

Public țintă

The primary audience for this book includes undergraduate and graduate engineering and environmental science students.
Researchers and professionals in energy, renewable energy and environmental engineering

Cuprins

1. Introduction to climate and energy systems
2. Fundamentals of energy systems: theory and components
3. Fundamentals of energy systems: systems and assessments
4. Fundamentals of climate models
5. Modelling and Optimization of climate-energy systems
6. Climate-energy system models and energy policy