Technical Studies & Consulting

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Specialized Technical Consulting

Green Energy Feasibility

Analyze solar, wind, hydro, and micro-nuclear options

  • Specialized Technical Consulting – Green Energy Feasibility: Comprehensive assessment of renewable and sustainable energy solutions tailored to project needs.
  • Evaluate potential of solar, wind, hydro, and micro-nuclear power systems based on location, resource availability, and infrastructure readiness.
  • Conduct technical and economic feasibility studies, including capital cost estimates, operational cost projections, and return-on-investment analysis.
  • Model energy output using advanced simulation tools to predict performance under varying environmental conditions.
  • Assess environmental impact, grid integration requirements, and compliance with clean energy regulations.
  • Provide optimized system configurations to maximize efficiency and long-term sustainability.
  • Support clients in preparing proposals, funding applications, and securing regulatory approvals.

3D Engineering Modeling

Full-scale P&ID and equipment layout development

  • 3D Engineering Modeling: Creation of highly accurate, full-scale 3D models for industrial facilities, ensuring precision and efficiency in design and construction.
  • Develop detailed Piping & Instrumentation Diagrams (P&IDs) and complete equipment layouts in compliance with industry standards.
  • Visualize complex plant systems to improve communication between engineering, procurement, and construction teams.
  • Identify design clashes and optimize space utilization before physical construction begins.
  • Integrate structural, mechanical, piping, and electrical components into a unified model.
  • Support virtual walk-throughs and simulations to validate operational workflows and maintenance accessibility.
  • Facilitate faster design approvals and reduce costly on-site modifications.

Pressure Drop & Pipe Sizing

Ensure efficient fluid transport system design

  • Pressure Drop & Pipe Sizing: Accurate analysis and design to ensure optimal fluid transport efficiency in industrial and commercial systems.
  • Calculate pressure losses due to friction, fittings, valves, and elevation changes across pipelines.
  • Select optimal pipe diameters to balance capital cost, pumping power requirements, and operational efficiency.
  • Evaluate different material options considering durability, corrosion resistance, and maintenance needs.
  • Simulate various flow conditions to ensure reliable performance during peak and off-peak operations.
  • Identify and mitigate risks of cavitation, erosion, or vibration in high-velocity sections.
  • Enhance energy efficiency by reducing unnecessary head losses and optimizing pump sizing.

Software Used:

HOMER, PLS-CADD, I-HOGA

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