Below is a structured overview of our core engineering disciplines and service areas. Each section highlights specialized capabilities, technical expertise, and project experience across multiple sectors, from aviation fuel systems to hydrogen production and advanced simulations.
Aviaton
JIG and EI Standards: Ensuring adherence to rigorous fuel quality and safety protocols
Intoplane Fuelling: Providing seamless and reliable aircraft refueling operations
Depots and Hydrants: Designing efficient fuel storage and distribution systems
Inspection of Smaller Airports: Conducting expert assessments to guarantee operational safety
CFD (Computional Fluid Dynamics)
Vortex Analysis of Suction from Storage Tank Sump: Enhancing suction efficiency by analyzing vortex flow
Pump Cavitation Analysis: Improving pump reliability through cavitation risk assessment
Tank Diffuser Analysis: Ensuring uniform fluid distribution for system efficiency
Tank Mixer Analysis: Guaranteeing consistent blending for fluid quality
Detail Engineering
System Design and Optimization: Streamlining system performance through innovative design solutions
Process Engineering: Enhancing efficiency with tailored process development
Standards Compliance: Ensuring adherence to industry regulations and standards
Inspection and Validation: Verifying system integrity through rigorous assessments
3D Services
3D Modeling: Creating precise digital representations for design accuracy
Prototype Visualization: Visualizing concepts for effective design validation
Integration and Documentation: Seamlessly combining models with comprehensive documentation
Isometrics Production: Generating detailed isometric drawings for accurate piping layouts
MTO List Production: Producing precise material take-off lists for efficient project planning
Layout Drawing Generation: Creating clear layout drawings for streamlined design implementation
FEA-Finite Element Analysis
Structural Analysis: Evaluating the strength and reliability of complex structures using finite element methods
Thermal Simulation: Optimizing designs by precisely analyzing heat transfer and temperature distribution
Dynamic Vibration Analysis: Enhancing performance and longevity by studying the vibration behavior of machines and structures
Fluid Dynamics Modeling: Maximizing system efficiency by simulating liquid and gas flows
Firefighting
Fire Protection System Design: Developing tailored fire suppression and detection systems for refineries and tank farms
Hydraulic Analysis for Firefighting Systems: Optimizing water and foam delivery systems for effective fire suppression
Storage Tank Fire Safety Engineering: Designing tank cooling and foam systems to mitigate fire risks in storage facilities
Piping Design for Firefighting Infrastructure: Creating reliable piping layouts for firewater and foam distribution networks
Compliance with Fire Safety Standards: Ensuring designs meet international codes like NFPA and local regulations
Firefighting System Field Testing: Performing on-site flow and pressure tests using ultrasonic flowmeters for firefighting systems
Hydraulic Analysis
Pipeline Flow Analysis: Optimizing fluid flow efficiency and pressure drop in pipeline systems
Pump System Performance Evaluation: Assessing pump sizing and performance for reliable fluid transport
Fluid Distribution System Hydraulics: Ensuring adequate flow and pressure for fluid distribution networks
Tank Inlet/Outlet Flow Optimization: Designing efficient flow paths for storage tank filling and discharge operations
Pressure Surge Analysis: Mitigating water hammer and surge risks in piping systems
Hydrogen Process
Thermochemical Process Design: Developing efficient systems for hydrogen production via thermochemical cycles or reforming
Electrolytic Process Optimization: Designing and enhancing electrolysis systems for reliable hydrogen generation
Direct Solar Water Splitting System Development Creating innovative setups for hydrogen production using solar-driven water splitting
Biological Process Engineering: Supporting bio-based hydrogen production through tailored process designs
Hydrogen Piping and Storage Solutions: Designing safe piping networks and storage systems for hydrogen from diverse processes
Safety and Regulatory Compliance: Ensuring adherence to safety standards across all hydrogen production methods
Process Safety
HAZOP, QRA, LOPA Studies: Conducting risk assessments to identify and mitigate process hazards effectively
SIL Level Determination: Defining Safety Integrity Levels to ensure reliable safety system performance
Explosion Protection Document Preparation: Developing comprehensive documents to address explosion risks and compliance
Atex Zone Classification: Mapping hazardous areas to ensure safe equipment and operational practices
Process Safety System Design: Creating robust safety systems to enhance operational reliability and compliance
Tank Car Design and Optimization: Developing specialized tank cars for safe and efficient transport of fuels like crude oil and LPG
Loading and Unloading System Design: Creating streamlined systems for rapid and secure fuel transfer at rail terminals
Piping and Infrastructure Design Designing robust piping networks for fuel handling at rail depots and terminals
Safety and Hazmat Compliance: Ensuring adherence to hazardous material regulations and safety standards for fuel transport
3D Modeling and Layout Planning Generating detailed 3D models and layout drawings for rail fuel facilities and infrastructure
Traverser System Design for Railcar Maintenance: Designing traverser (or transpalet) systems for efficient movement of wagons and locomotives in maintenance facilities
Stress Analysis
Piping Stress Analysis: Analysis of piping systems under thermal and mechanical loads
Nozzle Load Assessment: Verification of equipment nozzle loads for code compliance
Support & Hanger Design: Design of appropriate support and hanger systems
Flexibility & Routing Check: Evaluation of pipe flexibility and routing
Expansion Joint Evaluation: Assessment of expansion joints and bellows design
Seismic & Wind Load Analysis: Analysis of seismic and wind effects on piping systems
Vibration & Fatigue Review: Examination of vibration and fatigue-related risks
Code Compliance: Ensuring compliance with ASME and relevant standards
Technical Reporting: Preparation of analysis reports and recommended actions
Rotating Equipment Design and Compliance: Designing pumps and rotating machinery in line with API 610 and managing nozzle forces/moments
Other services
Storage Tank Engineering: Designing tanks with nozzles, platforms, ladders, and structures per API 620/650/653.
• Tank Electrical & Instrumentation Design: Integrating lighting, grounding, ATG, and level instruments in tank systems.
• Pressure Vessel Design and Analysis: Calculating wall thickness, nozzles, and heads per ASME Sec.VIII or EN 13445.
• Heat Exchanger Engineering: Performing thermal calculations, specs (MR & DS), and validation per API 660.
• Basic Engineering Documentation: Providing FEED, BOD, BFD, PFD, and P&ID for early project phases.
• Civil & Structural Engineering: Designing steel structures, layouts, and planning per ASCE, EN 1993, and local codes.
• Traverser System Design for Railcar Maintenance: Designing traverser systems with 3D models and layouts for railcar movement.
• Equipment Verification Studies: Verifying equipment designs using numerical methods and software for reliability.
