
Sustainable Hybrid Energy Systems
Carbon Neutral Approaches, Modeling, and Case Studies
- English
- ePUB (mobile friendly)
- Available on iOS & Android
Sustainable Hybrid Energy Systems
Carbon Neutral Approaches, Modeling, and Case Studies
About this book
Sustainable Hybrid Energy Systems
Discovering comprehensive approaches to build sustainable hybrid energy systems
Hybridization is the eternal theme of human energy utilization. However, it has never been more important than it is now because of the urgency of promoting energy transition and achieving carbon neutrality. Therefore, exploring the design, combustion, operation, and policy challenges of sustainable hybrid energy systems becomes increasingly important.
Sustainable Hybrid Energy Systems: Carbon Neutral Approaches, Modeling, and Case Studies provides a detailed explanation of these aspects. Dividing hybrid energy systems into three categoriesāco-located, co-combusted, and co-operated, this book emphasizes the deployment optimization, emission quota allocation, scheduling coordination, and renewable portfolio standards implementation of these systems. The results are essential tools for understanding the current and future of multi-input single-output hybrid energy systems.
Sustainable Hybrid Energy Systems readers will also find:
- Clear logical framework that reveals the constitutes of hybrid energy systems.
- Systematic technical scheme for building an economic, environmental, flexible, and resilient future energy system.
- Extensive case studies from single power plant level, multiple power plant level, and grid level.
- Effective guidelines for wider application of the proposed carbon neutral approaches.
Sustainable Hybrid Energy Systems is ideal for power engineers, electrical engineers, scientists in industry, and environmental researchers looking to understand these energy solutions. It will also provide collectible value for libraries.
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Information
Table of contents
- Cover
- Table of Contents
- Title Page
- Copyright
- List of Figures
- List of Tables
- Preface
- 1 Introduction
- 2 Industrial DecarbonizationāOriented Deployment of Hybrid Wind-SolarāStorage System
- 3 Sustainable OperationāOriented Deployment of Hybrid Wind-SolarāStorage System
- 4 Disaster ResilienceāOriented Deployment of Hybrid Wind-SolarāStorageāGas System
- 5 Biālevel Emission Quota Allocation Toward Coal and Biomass Coācombustion
- 6 BiāLevel Emission Quota Allocation Toward Coal and Municipal Solid Waste Coācombustion
- 7 Biālevel Multiāobjective Emission Quota Allocation Toward Coal and Sewage Coācombustion
- 8 Reliable-Economical Scheduling of Hybrid Solar-Hydro System
- 9 Reliable-Economical EquilibriumāBased ShortāTerm Scheduling of Hybrid Solar-Wind-Gas System
- 10 Reliable-Economical-Social EquilibriumāBased Scheduling of Hybrid Solar-Wind-Hydro System
- 11 Optimal RPS Implementation Strategy Considering Both Power Suppliers and Users
- 12 Optimal RPS Implementation Strategy Considering Equity and Economy Equilibrium
- 13 Optimal RPS Implementation Strategy Considering Emission Trade and Green Certificate Trade
- 14 Emerging Hybrid Energy Storage Systems
- Index
- End User License Agreement