EPCM Solutions for Power Plants & Critical Energy Infrastructure

Delivering engineering, procurement, construction management, and lifecycle execution for reliable, scalable energy systems.

Full-Lifecycle EPCM Expertise

Prismecs brings OEM-agnostic expertise, advanced digital monitoring, and comprehensive lifecycle contracts to gas turbines, BESS and solar power systems delivering cost efficient and measurable outcomes at every project stage.

Engineering & design services

End-to-End Supply Chain & Procurement Solutions

Construction Management & Site Execution Solutions

Commissioning & Startup Services

Reliability Meets Innovation

End-to-End EPCM Services Across the Complete Power Generation Lifecycle

From scoping studies and engineering design to installation, grid synchronization, digital monitoring, and O&M support, we execute cost efficient projects with precision and long-term value.

01

PROJECT INITIATION & SCOPING STUDIES

  • Scoping Studies
  • End-User Power Demand & Load Profile Analysis
  • Site Identification & Initial Feasibility
02

LAND & REGULATORY DUE DILIGENCE

  • Land Use & Zoning Analysis
  • Protected Resources Assessment
  • Environmental Due Diligence
  • Permitting Due Diligence
03

ENVIRONMENTAL & TECHNICAL ASSESSMENTS

  • Power Output & Noise Analysis
  • Emissions Assessment
  • Compliance with Environmental Regulations
  • Selection of Emission Control Technologies:
    • SCR (Selective Catalytic Reduction)
    • NSCR (Non-Selective Catalytic Reduction)
04

FUEL STRATEGY & RESOURCE PLANNING

  • Sourcing of Reliable Fuel Supply
  • Fuel Logistics & Supply Chain Planning
  • On-Site Storage Design:
    • Fuel Storage Tanks
    • Water Storage Systems
    • Fuel & Water Treatment Systems
05

ENGINEERING & DESIGN (EPC CORE)

  • Mechanical Engineering Design
  • Electrical Engineering Design
  • Grid Interconnection Planning
  • Voltage & Load Matching as per Client Requirements
  • Compliance with International Codes & Standards
06

EQUIPMENT SELECTION & TECHNOLOGY OPTIMIZATION

  • Selection of Generation Equipment (Engines/Turbines)
  • Technology Selection based on: (Efficiency, Emission Compliance, Reliability)
  • Key Electrical Components: (Transformers, Switchgear, Panels, Cabling)
07

HSE & COMPLIANCE IMPLEMENTATION

  • Adherence to Highest HSE Standards
  • Compliance with Local & International Safety Codes
  • Environmental Protection Measures
  • Risk Assessment & Mitigation Planning
08

CONSTRUCTION & INSTALLATION

  • Civil Works & Infrastructure Development
  • Mechanical Installation
  • Electrical Installation
  • System Integration
09

TESTING, COMMISSIONING & GRID SYNCHRONIZATION

  • Equipment Testing & Validation
  • Performance Testing
  • Grid Synchronization
  • Compliance Verification
10

DIGITAL MONITORING & CONTROL SYSTEMS

  • Real-Time Equipment Monitoring Systems
  • SCADA / Automation Integration
  • Predictive Analytics for Performance Optimization
11

OPERATIONS & MAINTENANCE (O&M EXCELLENCE)

  • Best-in-Class O&M Practices
  • Preventive Maintenance Programs
  • Reliability-Centered Maintenance (RCM)
  • Performance Optimization Strategies
12

POWER DELIVERY & OPERATIONAL OPTIMIZATION

  • Continuous & Stable Power Supply
  • Real-Time Coordination with Demand
  • Adaptive Operational Regimes
  • Power Quality & Voltage Management

EPCM Project Life CYCLE

Integrated Engineering, Procurement, Construction Solutions

Proven Execution on a global scale

Prismecs delivers high-stakes projects with speed, precision, and full-scope accountability. Here's why industry leaders choose us.

1,500 MW+ Projects Delivered

Project capacity delivered across critical infrastructure

2x Faster

Delivery vs. standard benchmarks on critical infrastructure with integrated procurement and controls.

99.2% Scope and Schedule Adherence

Maintaining schedule adherence with zero commissioning failures and full regulatory compliance.

OUR PROJECTS

Power plants, turbine arrays, and modular grids. Prismecs delivers infrastructure designed for uptime, scale, and sustained reliability across the energy landscape.

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Frequently Asked Questions (FAQs)

These are the questions we hear more often.

Prismecs starts with load profile analysis and site conditions to match generation technology to actual operational demand. Gas turbines suit baseload and fast-start applications, reciprocating engines handle distributed and load-following scenarios, and BESS layers in frequency regulation or renewable integration where required.
Prismecs conducts power demand analysis, load profile mapping, and site feasibility covering land use, zoning, and protected resource assessments before engineering begins. This phase eliminates the permitting and site selection surprises that derail schedules and budgets during construction.
Fuel storage is sized against peak consumption rates, supply chain lead times, and grid independence requirements, covering fuel tanks, water storage, and treatment systems as integrated infrastructure. A poorly sized fuel system is one of the most common causes of forced derating and unplanned outages on well-executed power plants.
Energized and partially operational sites require adherence to local regulatory codes and international HSE standards, with site-specific risk assessments executed before ground is broken. Gaps in HSE implementation at this phase are the primary driver of regulatory holds, insurance disputes, and schedule losses.
SCR applies to gas-fired plants with strict NOx limits under regulated permitting environments, while NSCR suits rich-burn reciprocating engines requiring simultaneous reduction of NOx, CO, and hydrocarbons. The wrong specification at engineering stage creates costly retrofit obligations at commissioning or post-COD compliance audits.
POI voltage levels, fault current contribution, protection relay coordination, and grid code compliance are validated through load flow, short circuit, and transient stability studies before electrical design is finalized. Deferring these to construction is the primary cause of rework and schedule slippage at grid synchronization.
Individual equipment validation precedes integrated system testing, followed by performance testing of heat rate, net output, and ramp rates against contractual guarantees. Grid synchronization is executed with utility coordination under controlled conditions, with full witnessed documentation to satisfy owner, lender, and regulatory requirements.
SCADA captures turbine temperatures, vibration signatures, fuel consumption, and generator output from first synchronization, establishing a clean performance baseline for all future maintenance decisions. Predictive analytics on this data identify compressor degradation, combustion instability, and electrical anomalies before they force unplanned outages.

Consult with Our EPCM Experts

Whether it's a fast-track build, outage recovery, or complex infrastructure project, Prismecs delivers full-cycle EPCM execution with precision engineering and guaranteed schedule performance.

Minimize delays & budget overruns

Enhance project coordination

Mitigate quality & compliance risks