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Structural analysis is employed on structural drawings of building frames, trusses, and bridges to determine the effects of loads on physical structures. It considers all the material properties along with applied mechanics and applied mathematics to compute a structure’s deformations, internal forces, stresses, and support reactions. The results of the analysis are used to verify a structural design’s stability and fitness for use. The analysis team is well-versed in the popular software of the industry such as ETAB, STAAD Pro., SAFE, etc.
Finite element analysis is applied to complex designs of machines for computation of structural and stress analysis. It is an engineering technique by dividing a geometry or a body into multiple small parts of nodes and elements to simulate a physical phenomenon such as structural integrity and behavior using the numerical technique called the Finite Element Method (FEM). Engineers employ it in experiments and optimize components in their design phase to quickly develop better products.
It involves structural analysis techniques where structural members showing higher than permissible values of stress, deflections, etc. are identified. These identified critical sections are then replaced with a suitable member that can transfer the applied forces without exceeding the permissible values for stress, deflection, etc. and remain functional inside the structure. Hence, the whole exercise is intended to produce an optimized design that remains functional for its intended service and reduces project cost. Through the diverse experience of our structural consultants, we have a promising record of providing commercially & technically viable solutions to our clients. Among various alternative plan models, the most feasible design is selected and proposed to our clients for an economical & hassle-free execution.
With changing times, the demands from infrastructure also change and renovation/ extension is a common activity occurring multiple times throughout the life of a structure. Sometimes this change requires the removal of building components like walls, columns, etc. To safely execute this activity, a calculation of acting loads on structural members is carried out with considerations of corresponding load-carrying strength. This structural load calculation determines the adequacy of structural members after removal of walls, columns, etc. Some governing laws also make it mandatory to consult a structural engineer while making such alterations in buildings.
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