BS ISO 13761:2017
Plastics pipes and fittings. Pressure reduction factors for polyethylene pipeline systems for use at temperatures above 20 °C
Standard number: | BS ISO 13761:2017 |
Pages: | 16 |
Released: | 2017-07-28 |
ISBN: | 978 0 580 89827 3 |
Status: | Standard |
BS ISO 13761:2017 - Plastics Pipes and Fittings
Discover the essential standard for ensuring the reliability and safety of polyethylene pipeline systems operating at elevated temperatures. The BS ISO 13761:2017 is a comprehensive guide that provides crucial pressure reduction factors for polyethylene pipeline systems used at temperatures above 20 °C. This standard is indispensable for engineers, designers, and professionals in the field of pipeline construction and maintenance.
Key Features
- Standard Number: BS ISO 13761:2017
- Pages: 16
- Release Date: July 28, 2017
- ISBN: 978 0 580 89827 3
- Status: Standard
Why Choose BS ISO 13761:2017?
Polyethylene pipelines are widely used in various industries due to their durability, flexibility, and resistance to corrosion. However, when these systems are exposed to temperatures above 20 °C, their pressure handling capabilities can be affected. The BS ISO 13761:2017 standard provides the necessary guidelines to adjust pressure ratings, ensuring that your pipeline systems remain safe and efficient under elevated temperature conditions.
Comprehensive Guidance
This standard offers detailed instructions on calculating pressure reduction factors, which are critical for maintaining the integrity of polyethylene pipelines. By adhering to these guidelines, you can prevent potential failures and extend the lifespan of your pipeline systems.
Industry Relevance
Whether you are involved in the design, installation, or maintenance of pipeline systems, the BS ISO 13761:2017 standard is a valuable resource. It is applicable across various sectors, including water supply, gas distribution, and industrial applications, where polyethylene pipelines are commonly used.
Benefits of Implementing BS ISO 13761:2017
- Enhanced Safety: By following the pressure reduction factors outlined in this standard, you can significantly reduce the risk of pipeline failures, ensuring the safety of both personnel and the environment.
- Cost Efficiency: Properly maintained pipeline systems are less prone to leaks and ruptures, which can lead to costly repairs and downtime. Implementing this standard helps in optimizing operational costs.
- Regulatory Compliance: Adhering to recognized standards like BS ISO 13761:2017 demonstrates your commitment to quality and compliance with industry regulations.
- Longevity of Pipeline Systems: By accurately assessing and adjusting pressure ratings, you can enhance the durability and performance of your pipeline systems, ensuring they serve their intended purpose for longer periods.
Who Should Use This Standard?
The BS ISO 13761:2017 standard is designed for a wide range of professionals, including:
- Pipeline Engineers
- Designers and Architects
- Construction Managers
- Maintenance Technicians
- Quality Assurance Specialists
Conclusion
Incorporating the BS ISO 13761:2017 standard into your pipeline projects is a strategic decision that enhances safety, efficiency, and compliance. With its clear guidelines and industry relevance, this standard is an invaluable tool for anyone involved in the management of polyethylene pipeline systems. Ensure your projects meet the highest standards of quality and reliability by integrating this essential resource into your workflow.
BS ISO 13761:2017
This standard BS ISO 13761:2017 Plastics pipes and fittings. Pressure reduction factors for polyethylene pipeline systems for use at temperatures above 20 °C is classified in these ICS categories:
- 23.040.45 Plastics fittings
- 23.040.20 Plastics pipes
This document specifies a method for the derivation of pressure reduction factors to obtain the allowable operating pressure for operation of polyethylene (PE) pipeline systems at temperatures between 20 °C and 40 °C or 50 °C, dependent on the classification of the material used for manufacture.