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Practical technology of small wind power generation

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Practical Technology of Small Wind Power Published: 2013
"New Energy Application Series: Practical Techniques for Small Wind Power Generation" has a total of 10 chapters, which comprehensively introduce the basic knowledge related to small wind power generation systems from the perspective of practical applications, mainly involving engineering technicians and users in the practical application of off-grid wind power generation. A large number of practical issues that need to be understood and mastered, including wind resource assessment, equipment selection, installation of wind turbines, and debugging and fault handling of wind power generation systems. The characteristics and composition of complementary power generation systems are specifically introduced for off-grid power generation technologies, Operation management, system maintenance and data collection. "New Energy Application Series: Practical Techniques for Small Wind Power Generation" also introduces the application of wind power in distributed power generation, smart grids, and new areas of wind power applications. "New Energy Application Series: Practical Techniques for Small Wind Power Generation" focuses on practical applications, suitable for technical personnel engaged in wind power generation work and individuals interested in applying small wind power generation systems, and can also be used as a project for renewable energy off-grid power generation projects Reference books for technical staff, related management staff, power plant maintenance staff, and related professional teachers and students of colleges and universities.

Chapter 1 Status Quo and Application Prospects of Small Wind Power Industry
1.1 Introduction to Small Wind Power
1.1.1 Definition of small wind power
1.1.2 Main application methods of small wind power generation
1.1.3 Technical Features of Small Wind Power
1.1.4 Potential Market for Small Wind / Photovoltaic Hybrid Power Generation
1.1.5 Problems in China's Small Wind Power Industry
1.2 Status of Small Wind Power Industry at Home and Abroad
1.2.1 Global Small Wind Turbine Installations Statistics
1.2.2 Main Application Markets of Small Wind Turbines
1.2.3 Market Drivers
1.2.4 Market Forecast
1.3 Application Status and Prospects of Small Wind Power Generation in China
1.3.1 Status of China's Small Wind Power Generation Industry
1.3.2 Favorable conditions for the development of China's small wind power industry
1.3.3 Current Status of China's Small Wind Power Market Chapter 2 Wind Energy and Wind Resource Assessment
2.1 Basic concepts and classification of wind
2.1.1 Wind
2.1.2 Classification of wind
2.2 Main parameters of wind
2.2.1 Wind speed
2.2.2 Wind direction
2.2.3 Commonly used wind speed units and their conversion
2.2.4 Wind level
2.3 Main parameters related to wind energy
2.3.1 Wind energy density
2.3.2 Average wind energy density
2.3.3 Effective wind energy density
2.3.4 Wind frequency and wind frequency distribution
2.4 Other characteristics of wind and wind energy
2.4.1 Effects of airflow characteristics and local topography on wind speed
2.4.2 Wind Shear
2.4.3 Turbulence and disturbances
2.5 Wind Energy Distribution in my country
2.5.1 Main wind zones
2.5.2 Main Factors Affecting China's Wind Energy Resources
3.1 Types of wind turbines
3.1.1 Horizontal axis wind turbine
3.1.2 Vertical axis wind turbine
3.2 Composition and working principle of power generation system
3.2.1 System composition
3.2.2 Working principle
3.3 Charge and discharge controller
3.3.1 Controller functions
3.3.2 Controller working principle
3.4 Energy storage equipment
3.4.1 Lead-acid batteries
3.4.2 Nickel Cadmium Battery
3.4.3 Lithium battery
3.5 Inverter equipment
3.5.1 Inverter working principle
3.5.2 Main technical parameters of the inverter
3.5.3 Inverter types
3.6 System Load
3.6.1 DC load and AC load
3.6.2 Load characteristics
3.6.3 Load Application Chapter 4 Selection of Small Wind Power Generation System and Main Equipment
4.1 Impact of wind resources on generating units
4.2 Impact of load on wind turbine
4.3 Factors in choosing a wind turbine
4.4 Battery Selection
4.5 Selection of controller and inverter
4.5.1 Controller
4.5.2 Inverter
4.6 Determination of the operation mode of wind turbines
4.7 Application Examples and Optimization Chapter 5 Installation of Small Wind Turbines
5.1 Wind turbine installation position
5.1.1 Site characteristics of different terrains
5.1.2 Selection of installation location for wind turbine
5.1.3 Wind turbine layout in multiple wind power systems
5.2 Manufacturing requirements for tower foundation
5.3 Ground assembly of wind turbines
5.4 Tower assembly method and installation precautions
5.4.1 Precautions during tower installation
5.4.2 Assembly of the Lazota
5.5 Stand-up methods and precautions for different towers
5.5.1 Latower's stand-up method and precautions
5.5.2 Stand-up method of single-column tower and precautions Chapter 6 Commissioning and operation of small wind power system
6.1 Inspection and trial operation of wind turbine after installation
6.2 Acceptance after installation of wind turbine
6.3 Commissioning of wind turbine controller
6.4 Operation and maintenance of wind turbines
6.4.1 Basic principles and requirements for operation and maintenance of wind turbines
6.4.2 Maintenance and inspection regulations and precautions for wind turbines
6.4.3 Routine inspections and inspections of wind turbines
6.4.4 General requirements for regular maintenance and repair of wind turbines
6.4.5 Items for regular maintenance and inspection of wind turbines
6.5 Operational safety of wind power systems
6.5.1 Security Overview
6.5.2 Basic safety information
6.5.3 Site Safety Instructions Chapter 7 Analysis and Treatment of Common Failures
7.1 Common faults and treatment methods of wind turbines
7.2 Common faults and inspection contents of charging controller / inverter
7.2.1 Common faults of the charge controller
7.2.2 Common faults and routine inspections of the inverter
7.3 Battery failure and treatment
7.4 Common faults, causes and treatment methods of local power grids
7.5 Factors Affecting System Efficiency
7.5.1 Measuring input power and output power of wind turbines
7.5.2 Wind Turbine Efficiency
7.5.3 Wind energy utilization factor and overall machine efficiency
7.5.4 Impact of Altitude on Efficiency
7.5.5 Impact of Wind Turbine Installation Height on Efficiency
7.5.6 Impact of installation layout of multiple wind turbines on efficiency
7.6 Ways to Improve System Efficiency
7.6.1 Generator Efficiency
7.6.2 Battery Efficiency
7.6.3 Charge controller efficiency
7.6.4 Reasonable unit maintenance is also a way to improve efficiency
7.7 Ways to Improve the Efficiency of the Inverter
8.1 Types and Characteristics of Complementary Power Generation System
8.1.1 Significance of complementary power generation systems
8.1.2 Principles and Classification of Complementary Power Generation System
8.1.3 Introduction to Photovoltaic Power Generation
8.1.4 Wind / Photovoltaic Hybrid Power Generation System
8.2 Wind / Diesel Hybrid Power Generation System
8.2.1 Features of DC Bus-type Wind / Diesel Hybrid Power Generation System
8.2.2 Features of AC Bus-type Wind / Diesel Hybrid Power Generation System
8.3 Wind / Light / Diesel Hybrid Power Generation System
8.3.1 Components of Wind / Photovoltaic / Diesel Hybrid Power Generation System
8.3.2 Use safety of complementary power generation equipment
8.4 Detection and evaluation of complementary power generation system
8.4.1 Purpose of testing and evaluation
8.4.2 Parameters to be collected for wind / photovoltaic hybrid power generation system
8.4.3 Equipment required for data collection
8.4.4 Data analysis methods and evaluation Chapter 9 Application of small wind power systems
9.1 Household Independent Power Supply System
9.2 Township and village collective independent power supply system
9.3 Independent power supply systems for industries, enterprises and institutions
9.4 Force power
9.5 Applications such as mobile communications, farming, and road (forest) monitoring
9.6 Wind / Light Complementary Street Lights Chapter 10. New Areas for Small Wind Power
10.1 Distributed Generation
10.1.1 Concept of Distributed Generation
10.1.2 Classification of Distributed Power
10.1.3 Distributed Power Supply System
10.1.4 Significance of Developing Distributed Generation
10.2 Smart grid
10.2.1 Smart Grid Concept
10.2.2 The Necessity of Building a Smart Grid
10.2.3 Smart Grid is a Highway Adopting New Energy Distribution Power
10.3 Wind energy desalination
10.3.1 Introduction to Desalination
10.3.2 Desalination Principles
10.3.3 Wind energy desalination
10.3.4 Prospective references for wind energy desalination

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小型风力发电实用技术 Practical technology of small wind power generation

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