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1 Week Training Program

Advanced Wind Turbine Technology & Skills

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1 Week Training Programs

London
20-24 May 2024
New York
3-7 June 2024
Seattle, USA
17-21 June 2024
New Delhi
1-5 July 2024
Kualalumpur
15-19 July 2024
New Delhi
29 July - 2 Aug 2024
London
12-16 Aug 2024
New York
26-30 Aug 2024
Seattle
9-13 Sept 2024
Istanbul
23-27 Sept 2024
New Delhi
7-11 Oct 2024
Kualalumpur
21-25 Oct 2024
New Delhi
4-8 Nov 2024
London
18-22 Nov 2024
New York
2-6 Dec 2024
Seattle, USA
16-20 Dec 2024
London
30 Dec 2024- 3 Jan 2025
Dubai
6-10 Jan 2025
Kualalumpur
20-24 Jan 2025
Dubai
3-7 Feb 2025
London
17-21 Feb 2025
New York
2-6 March 2025
Seattle, USA
16-20 March 2025
Istanbul
30 March-3 April 2025
New York
13-17 April 2025
Dubai
27 April-1 May 2025
Kualalumpur
11-15 May 2025
London
25-29 May 2025




Advanced Wind Turbine Technology & Skills

Advanced Wind Turbine Technology & Skills

Building Multi-discipline Understanding, Knowledge, Process Understanding, Skills, and Competencies to Perform and Improve each of the Work Performance included in the Program Content Below


Program Overview


The Advanced Wind Turbine Technology & Skills program is an intensive and specialized training initiative designed to provide participants with advanced knowledge and skills in wind turbine technology, design, and operation. This program aims to empower wind energy engineers, researchers, technicians, and professionals with expertise in cutting-edge technologies and best practices to maximize the performance, efficiency, and reliability of wind turbine systems. This program goes into advanced concepts and technologies in wind turbine design and operation.

It covers topics such as aerodynamics, control systems, turbine optimization, and the latest developments in wind turbine technology. This program provides further depth and coverage of the advanced concepts and technologies shaping the field of wind turbine technology. Participants will gain a comprehensive understanding of the latest advancements, challenges, and opportunities in the development and deployment of advanced wind turbine systems.


Course Objectives


  1. Advanced Wind Turbine Design: Participants will gain insights into the latest advancements in wind turbine design, including aerodynamics, rotor blade optimization, and load reduction techniques.
  2. Wind Turbine Materials and Manufacturing: The program will cover advanced materials used in wind turbine components and manufacturing processes for enhanced performance and durability.
  3. Wind Farm Layout and Optimization: Participants will learn about advanced wind farm layout optimization, wake effects, and micro-siting strategies to optimize energy production.
  4. Wind Turbine Control Systems: The program will explore advanced control systems, including pitch control, yaw control, and active power control, to improve turbine efficiency and stability.
  5. Wind Turbine Condition Monitoring and Health Assessment: Participants will understand advanced techniques for condition monitoring and health assessment of wind turbine components using data analytics and machine learning.
  6. Gearbox and Drivetrain Technology: The program will address advanced gearbox and drivetrain technologies to reduce mechanical losses and improve reliability.
  7. Wind Turbine Grid Integration Challenges: Participants will explore the challenges and solutions related to grid integration of large-scale wind farms and the role of energy storage in grid stability.
  8. Wind Turbine Performance Analysis and Optimization: The program will cover advanced performance analysis techniques, including power curve analysis and optimization for maximum energy production.
  9. Wind Turbine System Modeling and Simulation: Participants will learn how to use advanced modeling and simulation tools for wind turbine system design and analysis.
  10. Floating Offshore Wind Technology: The program will focus on the latest developments in floating offshore wind technology and its potential for deep-water installations.
  11. Wind Turbine Blade Design and Testing: Participants will understand advanced blade design principles and testing methods, including aerodynamic testing and structural analysis.
  12. Sustainability and Circular Economy in Wind Energy: The program will explore sustainable practices, circular economy concepts, and environmental considerations in wind energy development.

Program Content

Advanced Wind Turbine Technology & Skills


Day 1
  1. Advanced Rotor Design
  2. Next-Generation Wind Turbine Concepts
  3. Turbine Control Systems
  4. Advanced Generator Technologies
Day 2
  1. Power Electronics and Grid Integration
  2. Wind Turbine Condition Monitoring
  3. Noise Reduction and Aerodynamic Noise Control
  4. Structural Health Monitoring
Day 3
  1. Wind Turbine Materials and Manufacturing
  2. Wind Farm Layout Optimization
  3. Offshore Wind Technology
  4. Wind Resource Assessment and Forecasting
Day 4
  1. Wind Energy Conversion Systems
  2. Digitalization and Data Analytics in Wind Energy
  3. Cybersecurity in Wind Turbines
  4. Environmental Sustainability in Wind Technology
Day 5
  1. Economic and Policy Considerations
  2. Emerging Trends and Future Directions
  3. Wind Turbine Load Analysis
  4. Turbulence Modeling and Wind Farm Performance


Who Should Attend


The program is designed for wind energy engineers, researchers, technicians, project managers, and professionals seeking advanced knowledge and skills in wind turbine technology.
  1. Advanced Wind Turbine Technology Professionals
  2. Wind Energy Engineers: Wind energy engineers can gain insights into the latest advancements in wind turbine technology, including turbine design, aerodynamics, materials, and control systems. They can learn about advanced concepts and techniques used in the development and operation of modern wind turbines.
  3. Wind Turbine Manufacturers: Professionals working for wind turbine manufacturers can stay updated with the latest technological advancements and trends in the industry. They can learn about innovative design features, manufacturing processes, and quality control methods specific to advanced wind turbine technology.
  4. Wind Farm Developers and Operators: Wind farm developers and operators can enhance their understanding of advanced wind turbine technology to optimize the performance and efficiency of their wind farms. They can explore advanced control strategies, predictive maintenance techniques, and data analytics for wind turbine monitoring and operation.
  5. Researchers and Academics: Researchers and academics in fields such as wind energy, mechanical engineering, aerodynamics, and control systems can gain knowledge of advanced wind turbine technologies. They can contribute to research and development efforts, explore new design concepts, and advance the understanding of wind turbine performance and optimization.
  6. Wind Energy Project Managers: Wind energy project managers can benefit from understanding advanced wind turbine technologies in order to effectively plan, execute, and oversee wind energy projects. They can learn about the technical considerations, risk assessment, and project management strategies related to advanced wind turbine systems.
  7. Consultants and Advisors: Consultants and advisors specializing in the wind energy sector can enhance their expertise in advanced wind turbine technologies. This knowledge can enable them to provide guidance and support to clients on topics such as turbine selection, performance optimization, and technology assessment.
  8. Wind Energy Technicians and Maintenance Personnel: Wind energy technicians and maintenance personnel can learn about the advanced features and maintenance requirements of modern wind turbine technologies. They can gain knowledge of troubleshooting techniques, condition monitoring, and repair strategies specific to advanced wind turbine systems.
  9. Energy Managers and Sustainability Professionals: Energy managers and sustainability professionals interested in incorporating wind energy into their energy management strategies can learn about advanced wind turbine technologies. They can explore the technical considerations, grid integration challenges, and sustainability aspects associated with advanced wind turbines.
  10. Students and Future Professionals: Students pursuing degrees in wind energy, mechanical engineering, renewable energy, or related fields can gain a foundational understanding of advanced wind turbine technology. This knowledge can prepare them for careers in wind turbine design, research, project management, or operations and maintenance.

Registration Form

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Optional Fields


Registration & Fee Information

  1. Fee information is also available at:   PROGRAM-FEE-PAGE   Special Discounts May be Available Please email scholarships@eurotraining.com.
  2. To register please send us an official letter confirming registration (on organizational letterhead), or, send us a completed registration form above. GET MSWORD REGISTRATION FORM .
  3. Fees are Payable by Bank Transfer or Bank Draft.
    1. Program Fee for 1 Week (5 day/30 hrs) Training Program is:

      (1) At Dubai, Kuwait, New Delhi, Qatar £4,315 (USD $5,500) per participant.

      (2) At London, US Locations, Europe, Malaysia, Singapore £4,747 (USD $6,050) per participant.

      (3) If Attending Online Training Fee is £2,000 (USD $2,500) per participant.
    2. Fee includes Course Materials, Certificate, Refreshments and Lunch (classroom programs).
    3. Accommodation is not included in Program fee. Special rates may be available at venue hotel for participants.
    4. A Special discount of 10% is offered for participants who pay their fees at least 45 days before start of the program.
    Cancellation & Date Change: No Fee Refund if participant cancels his registration less than 3 weeks before start of the program. Alternate nominations may be allowed if requested atleast 2 weeks before program start. In case of exceptional hardship or emergency participant may be allowed to attend same program at another location or date on payment of 10% of fee.
  4. All participants are required to fill in Participant Information Form and Program Related Questionnaire - on first day of the program.
  5. Each program Undergoes Customization to Better Meet Participant Present and Future Job and Career Needs. Please be prepared to let the Instructor/s know about your organization's Special Needs, Interests or Initiatives.
  6. It is always useful for participants to bring their existing problems or case studies, work-process flow charts or job related problems for discussion - consideration will be at sole discretion of the program director/s.
  7. Provisional Registration : You can make a provisional registration request by sending us an email using an official email account. Provisionsl registration request, when confirmed by Euro Training, will reserve a seat for you for 14 days. After our Confirmation you have 2 weeks to send us an official registration request. Provisional registration is automatically cancelled at the earlier of (1) 2 weeks after Provisional Registration Confirmation if registration is not reconfirmed from your side (2) Two weeks before start of the program. We do request you to inform us ASAP you have decided either way.
  8. Please note All provisional registrations automatically cancel 2 weeks before program start unless confirmed otherwise by us.
  9. Information required for Provisional Registration: Program Title, Location, Dates, Your Organization Name, Your Email Address, Your Mobile Number.

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