As a Professional Engineer (P.Eng.), I bring engineering discipline to production challenges. My approach combines theoretical knowledge with practical manufacturing experience to deliver solutions that are technically sound, economically viable, and operationally sustainable.
Manufacturing Engineering
Manufacturing process design and optimization
Production line layout and material flow analysis
Equipment selection and specification
Work cell design and ergonomic workstation development
Capacity analysis and bottleneck identification
Design for manufacturability (DFM) reviews
Manufacturing cost reduction through design optimization
Production system validation and commissioning
Production Engineering
Production system design for efficiency and scalability
Production rate analysis and line balancing
Equipment cycle time optimization
Quality control system integration
Production documentation and standard operating procedures
Production problem-solving and root cause analysis
Pressure Vessels
API 510 Pressure Vessel Inspector (Continuing)
Fitness-for-service evaluations and remaining life analysis
Pressure vessel design review and code compliance (ASME Section VIII)
Inspection planning and execution for boilers, tanks, and pressure equipment
Corrosion assessment and integrity management
Repair and alteration engineering calculations
Regulatory compliance and documentation
Coordination with jurisdictional authorities
Mathematical Models and Statistics
Engineering modeling and simulation for process optimization
Statistical analysis for quality control and process capability
Computational fluid dynamics for process systems
Monte Carlo simulation for risk assessment
Design of experiments (DOE) for process optimization
Regression analysis and predictive modeling
Six Sigma statistical methods (hypothesis testing, ANOVA, control charts)
Data-driven decision making and optimization algorithms
Engineering Analysis
Finite element analysis (FEA) for structural applications
Thermal and fluid dynamics analysis for process systems
Failure mode and effects analysis (FMEA) for risk assessment
Engineering modeling and simulation for design validation
Tolerance analysis and stack-up studies for assemblies
Stress analysis and load calculations
Root cause analysis for complex technical failures
CAD & Technical Design
AutoCAD and Revit for facilities and production equipment
2D and 3D modeling for manufacturing systems using SolidWorks
Technical drawings and documentation packages
As-built documentation and record drawings
P&ID (Piping and Instrumentation Diagram) development
Design for manufacturability (DFM) reviews
Engineering change management and revision control
Construction and fabrication drawing sets
Equipment & Automation
Capital equipment evaluation and ROI analysis
Automation feasibility studies and cost-benefit analysis
Machine specification and procurement support
Equipment installation planning and commissioning
Preventive maintenance program development
Equipment performance monitoring and optimization
Reliability-centered maintenance strategies
Vendor evaluation and equipment selection criteria
Subsea Cable Engineering
Subsea cable route design and feasibility studies
Marine survey coordination and route optimization
Cable laying methodology and installation analysis
Environmental impact assessment for subsea installations
Bathymetric data analysis and seabed conditions evaluation
Cable protection design (rock dumping, articulated pipe)
Installation vessel coordination and marine operations
As-built documentation and route surveying
Standards & Compliance
Engineering standards development and documentation
Technical specification writing for procurement and construction
Regulatory compliance (pressure vessels, electrical, mechanical)
Code compliance (ASME, API, CSA, NBC, building codes)
Professional engineer stamp and certification
Permit applications and regulatory submissions
Quality assurance and quality control procedures
Safety compliance and hazard assessments
Construction Engineering
Construction project planning, scheduling, and execution
Site supervision and construction management
Material selection and procurement for construction projects
Construction cost estimating and budget control
Building systems design (mechanical, electrical, plumbing)
Construction quality control and inspection
Contractor coordination and project closeout
Value engineering and constructability reviews
Structural Analysis
Structural design and analysis for buildings and equipment
Steel structure design (beams, columns, connections)
Load calculations and stress analysis
Foundation design and soil-structure interaction
Equipment support structures and platforms
Seismic analysis and wind load calculations
Structural modifications and retrofit design
Finite element analysis (FEA) for complex structures
Retaining Wall Design
Soil pressure calculations and stability analysis
Earth pressure theory applicatio
Bearing capacity and settlement analysis
Drainage design and waterproofing systems
Retaining wall construction details and specifications
Geotechnical investigation coordination
Cost-effective retaining wall solutions for site constraints
AutoCAD (2D/3D design and drafting)
Revit (building information modeling)
SolidWorks (3D modeling and assemblies)
AutoCAD Plant 3D (P&IDs and piping design)
MATLAB (engineering calculations, modeling, and statistical analysis)
Microsoft Project (project scheduling and critical path analysis)
Advanced Excel (engineering calculations, VBA automation, statistical analysis)
FEA Software (structural and thermal analysis)
I bridge the gap between engineering theory and real-world implementation, ensuring designs are not only technically correct but also buildable, maintainable, and cost-effective.
i apply rigorous engineering principles while keeping projects on schedule and within budget. Every engineering decision considers safety, reliability, manufacturability, and total cost of ownership.