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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 61400-50-2:2022 Wind energy generation systems Wind measurement. Application of ground-mounted remote sensing technology
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BS EN IEC 61400-50-2:2022 Wind energy generation systems Wind measurement. Application of ground-mounted remote sensing technology

BS EN IEC 61400-50-2:2022

Wind energy generation systems Wind measurement. Application of ground-mounted remote sensing technology

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Standard number:BS EN IEC 61400-50-2:2022
Pages:48
Released:2022-10-31
ISBN:978 0 539 18339 9
Status:Standard
BS EN IEC 61400-50-2:2022 Wind energy generation systems Wind measurement. Application of ground-mounted remote sensing technology

BS EN IEC 61400-50-2:2022 Wind Energy Generation Systems - Wind Measurement

Application of Ground-Mounted Remote Sensing Technology

Standard Number: BS EN IEC 61400-50-2:2022

Pages: 48

Released: 2022-10-31

ISBN: 978 0 539 18339 9

Status: Standard

Overview

The BS EN IEC 61400-50-2:2022 standard is a comprehensive guide dedicated to the application of ground-mounted remote sensing technology in wind energy generation systems. This standard is essential for professionals in the wind energy sector, providing detailed methodologies and best practices for accurate wind measurement.

Why This Standard is Essential

As the wind energy industry continues to grow, the need for precise and reliable wind measurement becomes increasingly critical. The BS EN IEC 61400-50-2:2022 standard addresses this need by offering a robust framework for the application of ground-mounted remote sensing technology. This technology is pivotal in assessing wind resources, optimizing turbine placement, and ultimately enhancing the efficiency and productivity of wind energy systems.

Key Features

  • Comprehensive Guidelines: The standard provides in-depth guidelines on the use of ground-mounted remote sensing technology, ensuring accurate and reliable wind measurements.
  • Industry Best Practices: It incorporates industry best practices, making it a valuable resource for professionals involved in wind energy projects.
  • Enhanced Accuracy: By following the methodologies outlined in this standard, users can achieve enhanced accuracy in wind measurement, leading to better decision-making and improved project outcomes.
  • Future-Proof: Released on 2022-10-31, this standard reflects the latest advancements and trends in the field, ensuring that users are equipped with up-to-date information.

Who Should Use This Standard?

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

  • Wind Energy Developers: To assess wind resources and optimize turbine placement.
  • Engineers and Technicians: To ensure accurate wind measurement and data collection.
  • Researchers and Academics: To stay informed about the latest methodologies and best practices in wind measurement.
  • Policy Makers and Regulators: To develop and enforce standards that promote the efficient and sustainable use of wind energy.

Detailed Content

The BS EN IEC 61400-50-2:2022 standard spans 48 pages, covering a wide range of topics related to wind measurement using ground-mounted remote sensing technology. Some of the key areas addressed include:

  • Introduction to Remote Sensing Technology: An overview of the principles and applications of remote sensing in wind energy.
  • Measurement Techniques: Detailed methodologies for accurate wind measurement using ground-mounted remote sensing devices.
  • Data Analysis and Interpretation: Guidelines for analyzing and interpreting wind measurement data to inform decision-making.
  • Quality Assurance: Best practices for ensuring the quality and reliability of wind measurement data.
  • Case Studies: Real-world examples illustrating the application of ground-mounted remote sensing technology in wind energy projects.

Benefits of Using This Standard

Adopting the BS EN IEC 61400-50-2:2022 standard offers numerous benefits, including:

  • Improved Project Efficiency: By providing accurate wind measurement data, this standard helps optimize turbine placement and enhance overall project efficiency.
  • Cost Savings: Accurate wind measurement can lead to significant cost savings by reducing the risk of underperforming turbines and minimizing the need for costly adjustments.
  • Enhanced Reliability: The standard's guidelines ensure the reliability and consistency of wind measurement data, leading to more informed decision-making.
  • Compliance with Industry Standards: Adhering to this standard ensures compliance with industry best practices and regulatory requirements.

Conclusion

The BS EN IEC 61400-50-2:2022 standard is an invaluable resource for anyone involved in the wind energy sector. Its comprehensive guidelines and best practices for the application of ground-mounted remote sensing technology make it an essential tool for accurate wind measurement and data collection. By adopting this standard, professionals can enhance the efficiency, reliability, and sustainability of their wind energy projects.

DESCRIPTION

BS EN IEC 61400-50-2:2022


This standard BS EN IEC 61400-50-2:2022 Wind energy generation systems is classified in these ICS categories:
  • 27.180 Wind turbine energy systems
Part 50 of IEC 61400 specifies methods and requirements for the application of instruments to measure wind speed (and related parameters, e.g. wind direction and turbulence intensity). Such measurements are required as an input to some of the evaluation and testing procedures for wind energy and wind turbine technology (e.g. resource evaluation and turbine testing) described by other standards in the IEC 61400 series. Part 50-2 is applicable specifically to the use of ground mounted remote sensing wind measurement instruments, i.e devices which measure the wind at some location generally above and distant from the location at which the instrument is mounted (e.g. sodars, vertical profiling lidars). This document specifically excludes other types of RSD such as forward facing or scanning lidars.