BS ISO 21723:2019
Buildings and civil engineering works. Modular coordination. Module
Standard number: | BS ISO 21723:2019 |
Pages: | 16 |
Released: | 2019-09-09 |
ISBN: | 978 0 580 51775 4 |
Status: | Standard |
BS ISO 21723:2019 - Buildings and Civil Engineering Works: Modular Coordination
Welcome to the world of modern construction and civil engineering with the BS ISO 21723:2019 standard. This essential document is a cornerstone for professionals in the field, providing a comprehensive framework for modular coordination in building and civil engineering works. Released on September 9, 2019, this standard is a must-have for anyone looking to enhance their understanding and application of modular coordination principles.
Overview of BS ISO 21723:2019
The BS ISO 21723:2019 standard is a pivotal document that outlines the principles and guidelines for modular coordination in the construction industry. With a focus on enhancing efficiency and consistency, this standard provides a structured approach to the design and construction of buildings and civil engineering works. It is designed to facilitate the integration of various building components, ensuring that they fit together seamlessly and function as intended.
Key Features
- Standard Number: BS ISO 21723:2019
- Pages: 16
- Release Date: September 9, 2019
- ISBN: 978 0 580 51775 4
- Status: Standard
Why Choose BS ISO 21723:2019?
In the ever-evolving world of construction and civil engineering, staying ahead of the curve is crucial. The BS ISO 21723:2019 standard offers numerous benefits that make it an invaluable resource for professionals in the industry:
1. Enhanced Efficiency
By adopting modular coordination principles, construction projects can achieve greater efficiency. This standard provides a clear framework for the integration of building components, reducing the likelihood of errors and rework. As a result, projects can be completed more quickly and with fewer resources.
2. Improved Consistency
Consistency is key in construction, and the BS ISO 21723:2019 standard ensures that all components are designed and constructed to fit together perfectly. This reduces the risk of misalignment and ensures that the final structure meets the highest quality standards.
3. Cost Savings
By minimizing errors and rework, modular coordination can lead to significant cost savings. The BS ISO 21723:2019 standard helps professionals identify potential issues early in the design process, allowing for more accurate budgeting and resource allocation.
4. Flexibility and Adaptability
Modular coordination allows for greater flexibility in design and construction. The principles outlined in this standard enable professionals to adapt to changing project requirements and incorporate new technologies and materials with ease.
Who Should Use BS ISO 21723:2019?
This standard is ideal for a wide range of professionals in the construction and civil engineering industries, including:
- Architects and Designers
- Construction Managers
- Engineers
- Project Managers
- Building Inspectors
Conclusion
The BS ISO 21723:2019 standard is an essential tool for anyone involved in the design and construction of buildings and civil engineering works. By providing a clear framework for modular coordination, this standard helps professionals achieve greater efficiency, consistency, and cost savings. Whether you're an architect, engineer, or construction manager, this standard will enhance your ability to deliver high-quality projects on time and within budget.
Embrace the future of construction with the BS ISO 21723:2019 standard and take your projects to new heights of excellence.
BS ISO 21723:2019
This standard BS ISO 21723:2019 Buildings and civil engineering works. Modular coordination. Module is classified in these ICS categories:
- 91.010.30 Technical aspects
This document establishes the values of basic module, multimodules for horizontal coordinating dimensions and sub-modular increments for use in modular coordination of buildings. This document also specifies preferred vertical modular dimensions, series of preferred multimodular sizes for horizontal dimensions for all types in accordance with general principles and rules for modular coordination.