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Structural Consultancy (R.C.C & Steel Consultant)
Structural engineers ensure structures can withstand the stresses and pressures imposed by use and the environment. They calculate stability, strength and rigidity and make sure the right materials are used for each project, whether it is a new-build, conversion or renovation.
Learn moreStrength and Building
The capacity of the individual elements, which together make up a structural system, to withstand the load that are applied to them. Stability. the capability of a structural system to transmit various loadings safely to the ground.
Learn moreStructural Audit
Structural audits include a comprehensive check of buildings and premises, including: Verification of Load Conditions. Evaluation of the Structural System of the Building. Detection of Structural Defects, Damages, Distress, Deformation or Deterioration. Plan and Alignment Check.
Learn moreProject Consulting Management(PMC)
Comprehensive wide ranging PMC services from planning to commissioning are provided in the entire spectrum of Projects. PMC services are provided for construction of Railways Sidings, Highways, Railway and Road over Bridges, Buildings etc.
Learn moreSite Visit
Construction site visits are interactive experiences that enhance students' understanding of real construction practices. Site visits create an interactive learning environment for students and provide exposure to a real-world spatiotemporal experience of a construction project.
Learn moreConstruction with Material
What does material mean construction? Construction material means an article, material, or supply brought to the construction site by the Contractor or a subcontractor for incorporation into the building or work. The term also includes an item brought to the site preassembled from articles, materials, or supplies.
Learn moreThe process of strengthening the Sindi Railway Nagar Parishad building
The process of strengthening the Sindi Railway Nagar Parishad building involves several crucial steps to ensure its stability and safety. Here's a comprehensive overview of the process:
Assessment and Analysis:
Conduct a thorough structural assessment of the existing building's condition to determine the extent of damage caused by rainwater. Analyze the load-bearing capacity of the current structure to evaluate its suitability for adding an additional floor and accommodating the new steel sections.
Structural Design:
Engage structural engineers to design the necessary modifications and reinforcements. Design steel beams and columns that will be introduced to provide additional support to the building. The design will be based on the load requirements, building codes, and safety standards.
Demolition (If Required):
If any severely damaged portions of the building are beyond repair, carry out controlled demolition to remove those sections while ensuring safety.
Foundation Preparation:
Check the foundation's condition and strengthen it if necessary to support the added load from the new floor and the steel sections
Steel Beam Installation for Slab Strengthening:
Install steel beams on the ground floor to support the existing slab and the new floor above. These beams will distribute the load more effectively and prevent further deterioration due to water damage.
Column Strengthening:
Introduce additional steel columns strategically to enhance the building's load-bearing capacity. These columns will provide crucial support to the newly added floor and redistribute the load.
Beam Installation for New Floor:
Install steel beams on the existing structure to support the load of the newly added floor. These beams will be integrated with the building's framework to ensure stability and structural integrity.
Floor Construction:
Construct the new floor on top of the steel beams using appropriate materials that meet safety and quality standards
Waterproofing and Drainage:
Implement effective waterproofing measures to prevent rainwater from causing further damage. Ensure proper drainage systems are in place to redirect rainwater away from the building's foundation.
Quality Assurance:
Regularly inspect and assess the construction progress to ensure that the work is being carried out according to the designed plans and structural engineering principles.
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