Project

Overview

Nord Engineers is proud to showcase the Shree Function Hall project, a turnkey endeavour that integrates a steel shed function hall with an adjacent reinforced concrete (RC) building. This ongoing project highlights our expertise in delivering comprehensive, integrated solutions that combine different structural systems to create versatile and functional spaces.

  • ScopeTurnkey project in association with ‘Silver Steps

    Constructions’

  • Shed Area Total Area: 12,000 Sq. Ft
  • Clear Span 75 Feet (Truss)
  • Building Area 3,700 Sq.Ft (G+1)
  • Project Cost ₹3.5 Crores
  • Year 2024 (Ongoing)

Project Highlights

  • Turnkey Execution: Nord Engineers is managing all aspects of design and construction, ensuring seamless integration between the steel shed and RC building
  • Function Hall Shed: The 11,500 Sq. Ft steel shed features a remarkable 75-foot column-free truss span, offering an expansive and unobstructed space ideal for various events.
  • RC Building: The adjacent 3,700 Sq. Ft RC building, with G+1 floors, provides essential supporting spaces, enhancing overall functionality.
  • Versatile Design: Both structures are integrated to create a flexible and functional facility, tailored to meet diverse needs.
  • Innovative Engineering: The project demonstrates our ability to combine steel and RC structures, achieving both aesthetic appeal and structural efficiency.
  • The Shree Function Hall project exemplifies Nord Engineers' commitment to delivering turnkey solutions that meet and exceed client expectations, creating dynamic spaces that cater to diverse needs

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Challenge

Seamless Integration of Steel and RC Structures Combining the steel shed and the RC building posed challenges in ensuring structural compatibility and seamless functionality across the two different construction types.

Solution

Nord Engineers utilized advanced structural modeling to ensure proper load transfer and compatibility between the steel truss system and the RC building. Joint detailing and connection designs were optimized to achieve a cohesive and stable structure.

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