Our multi-discipline engineering team develops intelligent 3D models that provide detailed engineering information and a complete 360° view of industrial plants.
Ensures clash detection, accurate dimensions, and as-built services for plants and treatment facilities.
Saves time and cost by enabling accurate and efficient engineering insights.
Allows integrated visualization across mechanical, structural, piping, electrical, and instrumentation disciplines.
Widely adopted by EPCs, 3D modelling is now an integral part of the engineering phase.
Optimized models can be used for future expansions, maintenance, and modifications.
Line sizing calculations as per industry standards.
Hydraulic analysis, pressure drop, and PSV/relief/control valve sizing.
Preparation of P&IDs, process datasheets, and operation manuals.
Development of design and control philosophies for optimized plant functioning.
Design calculations for static and pressure vessels, storage tanks, and columns (ASME Sec. VIII Div. 1 & 2, API 650, API 620).
Heat transfer equipment: heat exchangers, fired heaters.
Rotating equipment: compressors, turbines, pumps, mixers.
Preparation of vendor drawings, material requisitions, and bid documents.
Technical bid evaluation and vendor comparison for approval.
Finite Element Analysis (FEA) for mechanical systems.
Design and detailing of foundations, layouts, and structural steel works.
Development of general layouts including accessibility, roads, and fencing.
Fabrication drawings, shop drawings, and IFC drawings.
Structural and concrete support calculations and analysis.
Procurement and construction support, including MTO issuance.
Pressure design of pipes and fittings as per international codes and standards.
Preparation of pipe material specifications, isometrics, and BOMs.
Finite Element Analysis of complete piping systems.
Generation of operating, sustained, and expansion load cases considering dead weight, temperature, seismic, and wind loads.
Leakage testing for flanges and nozzle analysis under bending, axial, and pressure loads.
MTO preparation and final general arrangement drawings (GADs).
Earthing systems, cable routing, and control panels design.
Development of SLDs, electrical specifications, and layouts.
Preparation of cable schedules and load lists.
MTO for control valves, relief valves, and PSVs.
Design of instrumentation layouts, data sheets, and specifications.
Control room sizing and instrumentation cabling.