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Homepage>BS Standards>27 ENERGY AND HEAT TRANSFER ENGINEERING>27.180 Wind turbine systems and other alternative sources of energy>BS EN IEC 61400-12-6:2022 Wind energy generation systems Measurement based nacelle transfer function of electricity producing wind turbines
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BS EN IEC 61400-12-6:2022 Wind energy generation systems Measurement based nacelle transfer function of electricity producing wind turbines

BS EN IEC 61400-12-6:2022

Wind energy generation systems Measurement based nacelle transfer function of electricity producing wind turbines

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Standard number:BS EN IEC 61400-12-6:2022
Pages:64
Released:2022-10-31
ISBN:978 0 539 18336 8
Status:Standard
BS EN IEC 61400-12-6:2022 Wind Energy Generation Systems

BS EN IEC 61400-12-6:2022 Wind Energy Generation Systems

Standard Number: BS EN IEC 61400-12-6:2022

Pages: 64

Released: 2022-10-31

ISBN: 978 0 539 18336 8

Name: Wind energy generation systems Measurement based nacelle transfer function of electricity producing wind turbines

Status: Standard

Overview

The BS EN IEC 61400-12-6:2022 standard is a comprehensive guide for the measurement-based nacelle transfer function of electricity-producing wind turbines. This standard is essential for professionals in the wind energy sector, providing detailed methodologies and guidelines to ensure accurate and reliable measurements.

Key Features

  • Comprehensive Coverage: Spanning 64 pages, this standard offers in-depth information and guidelines.
  • Latest Release: Published on 31st October 2022, it incorporates the most recent advancements and best practices in the field.
  • ISBN: 978 0 539 18336 8, ensuring easy reference and cataloging.
  • Standard Status: Recognized as a standard, it is a trusted and authoritative source for industry professionals.

Why This Standard is Essential

In the rapidly evolving field of wind energy, accurate measurement and data analysis are crucial for optimizing performance and ensuring the reliability of wind turbines. The BS EN IEC 61400-12-6:2022 standard provides a robust framework for measuring the nacelle transfer function, which is vital for:

  • Performance Optimization: By understanding the nacelle transfer function, engineers can fine-tune turbine performance, leading to increased efficiency and energy output.
  • Reliability and Safety: Accurate measurements help in identifying potential issues early, ensuring the long-term reliability and safety of wind turbines.
  • Compliance and Standardization: Adhering to this standard ensures compliance with industry regulations and promotes standardization across the sector.

Detailed Methodologies

This standard outlines detailed methodologies for measuring the nacelle transfer function, including:

  • Measurement Techniques: Step-by-step procedures for conducting accurate measurements.
  • Data Analysis: Guidelines for analyzing measurement data to derive meaningful insights.
  • Calibration and Validation: Methods for calibrating instruments and validating results to ensure accuracy.

Target Audience

This standard is designed for a wide range of professionals in the wind energy sector, including:

  • Wind Turbine Manufacturers: Ensuring their products meet industry standards and perform optimally.
  • Energy Companies: Optimizing the performance and reliability of their wind energy assets.
  • Engineers and Technicians: Providing them with the tools and knowledge to conduct accurate measurements and analyses.
  • Regulatory Bodies: Ensuring compliance with industry standards and promoting best practices.

Benefits of Adopting This Standard

Adopting the BS EN IEC 61400-12-6:2022 standard offers numerous benefits, including:

  • Enhanced Performance: By following the guidelines, wind turbines can achieve optimal performance and efficiency.
  • Increased Reliability: Accurate measurements help in identifying and addressing potential issues, ensuring long-term reliability.
  • Regulatory Compliance: Adhering to this standard ensures compliance with industry regulations, avoiding potential legal and financial penalties.
  • Industry Standardization: Promotes standardization across the sector, facilitating collaboration and knowledge sharing.

Conclusion

The BS EN IEC 61400-12-6:2022 standard is an indispensable resource for professionals in the wind energy sector. By providing detailed methodologies and guidelines for measuring the nacelle transfer function, it ensures accurate and reliable data, leading to optimized performance, increased reliability, and compliance with industry standards. Whether you are a manufacturer, energy company, engineer, or regulatory body, this standard is essential for achieving excellence in wind energy generation.

DESCRIPTION

BS EN IEC 61400-12-6:2022


This standard BS EN IEC 61400-12-6:2022 Wind energy generation systems is classified in these ICS categories:
  • 27.180 Wind turbine energy systems
IEC 61400-12-6:2022 specifies a procedure for measuring the nacelle transfer function of a single electricity-producing, horizontal axis wind turbine, which is not considered to be a small wind turbine in accordance with IEC 61400-2. It is expected that this document be used when a valid nacelle transfer function is needed to execute a power performance measurement according to IEC 61400-12-2. This document specifies how to characterise a wind turbine's nacelle transfer function. The nacelle transfer function is determined by collecting simultaneous measurements of nacelle‑measured wind speed and free stream wind speed (as measured on a meteorological mast) for a period that is long enough to establish a statistically significant database over a range of wind speeds and under varying wind and atmospheric conditions. The procedure also provides guidance on determination of measurement uncertainty including assessment of uncertainty sources and recommendations for combining them. This first edition of IEC 61400-12-6 is part of a structural revision that cancels and replaces the performance standards IEC 61400-12-1:2017 and IEC 61400-12-2:2013. The structural revision contains no technical changes with respect to IEC 61400-12-1:2017 and IEC 61400‑12‑2:2013, but the parts that relate to wind measurements, measurement of site calibration and assessment of obstacle and terrain have been extracted into separate standards.