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Industrial Energy Audit Course
More than 2 million learners worldwide

Industrial Energy Audit Course

Master the full cycle of industrial energy auditing — from metering and data collection to financial analysis and ISO 50001 compliance. This course equips engineers and energy managers with the technical tools to find real savings in real plants. If you work with industrial facilities and need to cut energy costs, this is the training that delivers results.

Dedika for businesses

What you will learn:

You will learn how to assess every major energy system in an industrial facility, including electrical distribution, steam, compressed air, HVAC, and process heating. You will apply internationally recognised measurement and verification protocols to produce defensible savings estimates. The course covers energy balance construction, Sankey diagrams, and pinch analysis for heat integration. You will also develop skills in carbon accounting, decarbonisation roadmap development, and renewable energy feasibility assessment. Financial analysis tools — including NPV, IRR, and life-cycle costing — are covered in depth so you can prioritise projects and secure management approval.

How you study in practice Industrial Energy Audit Course

How you practise Industrial Energy Audit Course

For companies looking to train their teams

With Dedika for Businesses, the course includes exercises and examples tailored to your own business and the specific needs of your company.

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Course content

8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)

Chapter 1See details

Foundations of Industrial Energy Systems

  • Lesson 1 • Industrial Energy Supply Infrastructure

    Maps the utility systems that deliver energy to plant processes. Provides context for understanding metering points and billing structures.

  • Lesson 2 • Energy Conversion and Loss Mechanisms

    Examines how energy transforms between forms and where losses occur. Connects thermodynamic principles to real plant inefficiencies.

  • Lesson 3 • Regulatory and Standards Landscape

    Surveys mandatory reporting obligations and voluntary efficiency standards relevant to industrial sites. Positions compliance as a driver of audit scope.

  • Lesson 4 • Energy Forms and Industrial Applications

    Covers thermal, electrical, mechanical, and chemical energy as used in manufacturing. Establishes the vocabulary needed for all subsequent audit work.

  • Lesson 5 • Energy Performance Metrics and Benchmarks

    Introduces specific energy consumption, energy intensity, and industry benchmarks. Enables auditors to set baselines and identify underperforming facilities.

Chapter 2See details

Energy Data Collection and Measurement

  • Lesson 1 • Metering Technologies and Selection

    Reviews electrical, thermal, and flow meters used in industrial settings. Guides selection based on accuracy requirements and installation constraints.

  • Lesson 2 • Data Logging and Monitoring Systems

    Explains continuous and interval logging hardware and software platforms. Links real-time monitoring to identifying consumption anomalies.

  • Lesson 3 • Data Quality and Validation

    Establishes methods to detect missing, erroneous, or inconsistent energy data. Ensures audit conclusions rest on reliable evidence.

  • Lesson 4 • Utility Bill Analysis and Interval Data

    Extracts consumption patterns from utility invoices and interval meter data. Reveals demand charges, power factor penalties, and seasonal trends.

  • Lesson 5 • Measurement and Verification Protocols

    Applies internationally recognised M&V frameworks to ensure savings claims are defensible. Teaches boundary setting and baseline period selection.

Chapter 3See details

Conducting the Energy Audit

  • Lesson 1 • Energy Balance and Loss Quantification

    Constructs a facility-wide energy balance to locate and size losses. Provides the quantitative foundation for prioritising improvement opportunities.

  • Lesson 2 • Audit Report Writing and Presentation

    Structures findings, recommendations, and financial analysis into a professional report. Prepares auditors to communicate results to technical and executive audiences.

  • Lesson 3 • On-Site Walkthrough and Inspection

    Guides systematic observation of equipment, controls, and operating practices during site visits. Trains auditors to spot visible waste and anomalies quickly.

  • Lesson 4 • Audit Types and Scope Definition

    Distinguishes walkthrough, preliminary, and detailed audit levels and their deliverables. Aligns audit depth with client objectives and budget.

  • Lesson 5 • Pre-Audit Planning and Preparation

    Covers data requests, site visit scheduling, and team role assignments before fieldwork begins. Reduces on-site time and improves data completeness.

Chapter 4See details

Electrical Systems Efficiency

  • Lesson 1 • Demand Management and Peak Shaving

    Applies load scheduling, storage, and curtailment strategies to reduce peak demand charges. Directly reduces electricity costs without changing total consumption.

  • Lesson 2 • Industrial Lighting Efficiency

    Compares lighting technologies, controls, and daylighting strategies for industrial spaces. Lighting upgrades often deliver fast payback with minimal disruption.

  • Lesson 3 • Compressed Air System Optimisation

    Identifies leaks, pressure mismatches, and control inefficiencies in compressed air systems. Compressed air is among the most expensive industrial utilities per unit of work.

  • Lesson 4 • Power Factor and Reactive Power Management

    Explains causes of poor power factor and methods to correct it. Reducing reactive power lowers utility penalties and frees distribution capacity.

  • Lesson 5 • Electric Motor Systems and Drives

    Evaluates motor efficiency classes, loading, and variable-speed drive applications. Motors represent the largest single electrical end use in most plants.

Chapter 5See details

Thermal Systems and Heat Recovery

  • Lesson 1 • Pinch Analysis and Heat Integration

    Applies pinch methodology to minimise external heating and cooling utility demand. Enables systematic identification of heat exchanger network improvements.

  • Lesson 2 • Steam System Optimisation

    Covers steam generation, distribution losses, trap failures, and condensate recovery. Steam systems frequently account for 30–50% of industrial energy use.

  • Lesson 3 • Combustion Systems and Efficiency

    Analyses burner performance, excess air, and flue gas losses in boilers and furnaces. Combustion tuning is often the highest-impact thermal measure.

  • Lesson 4 • Waste Heat Recovery Technologies

    Surveys recuperators, regenerators, economisers, and heat pumps for capturing waste heat. Matches technology to temperature grade and application requirements.

  • Lesson 5 • Process Heating and Furnace Efficiency

    Examines heat transfer modes, furnace atmosphere, and scheduling in high-temperature processes. Targets radiation and convection losses in ovens, kilns, and furnaces.

Chapter 6See details

HVAC and Building Envelope in Industrial Facilities

  • Lesson 1 • Integrated HVAC and Process Heat Strategies

    Explores using process waste heat for space heating and coordinating HVAC with production schedules. Integration multiplies savings beyond individual system improvements.

  • Lesson 2 • Industrial HVAC System Overview

    Maps the components and control logic of industrial ventilation and space conditioning systems. Distinguishes process ventilation from comfort conditioning requirements.

  • Lesson 3 • Building Envelope Thermal Performance

    Quantifies heat gain and loss through walls, roofs, glazing, and doors. Envelope improvements reduce both heating and cooling loads simultaneously.

  • Lesson 4 • Industrial Refrigeration and Cooling Systems

    Analyses chiller, evaporative cooling, and refrigeration system performance. Covers coefficient of performance and opportunities for load reduction.

  • Lesson 5 • Ventilation Efficiency and Heat Recovery

    Evaluates fan efficiency, duct leakage, and air-to-air heat recovery in ventilation systems. Reducing ventilation energy often requires balancing air quality and efficiency.

Chapter 7See details

Energy Management Systems and ISO 50001

  • Lesson 1 • Operational Controls and Competency

    Establishes procedures, training, and behavioural controls for significant energy uses. Ensures efficiency gains are maintained through daily operations.

  • Lesson 2 • Objectives, Targets, and Action Plans

    Translates energy review findings into measurable targets and documented action plans. Connects strategic goals to operational improvement projects.

  • Lesson 3 • EnMS Framework and Plan-Do-Check-Act Cycle

    Introduces the management system structure and the PDCA improvement cycle. Establishes how systematic management sustains efficiency gains over time.

  • Lesson 4 • Energy Review and Significant Energy Uses

    Guides the energy review process to identify significant energy uses and their drivers. Focuses management attention on the highest-impact consumption areas.

  • Lesson 5 • Internal Audit and Management Review

    Prepares organisations to conduct internal EnMS audits and management reviews. Drives continual improvement through structured evaluation and corrective action.

Chapter 8See details

Financial Analysis and Project Prioritisation

  • Lesson 1 • Capital Cost and Implementation Estimation

    Covers methods for estimating equipment, installation, and project management costs. Realistic cost estimates prevent over-optimistic payback projections.

  • Lesson 2 • Portfolio Prioritisation and Roadmap Development

    Ranks multiple projects using multi-criteria scoring and builds a phased implementation roadmap. Enables organisations to sequence investments for maximum strategic impact.

  • Lesson 3 • Financing Mechanisms and Incentives

    Surveys energy performance contracts, green loans, grants, and utility rebate programmes. Financing options can eliminate upfront capital barriers to project implementation.

  • Lesson 4 • Energy Cost and Savings Calculation

    Translates physical energy savings into monetary values using tariff structures. Accurate cost calculations are the foundation of any financial justification.

  • Lesson 5 • Investment Appraisal Techniques

    Applies simple payback, NPV, IRR, and life-cycle cost analysis to efficiency projects. Matches the appraisal method to the decision-maker's financial framework.

Certification

Your valid completion certificate

This course is for you:

  • Mechanical engineer: ready to specialise in plant-level energy optimisation.

  • Facility manager: responsible for reducing operating costs across industrial sites.

  • Sustainability consultant: expanding services to include industrial decarbonisation audits.

  • Electrical engineer: moving into energy efficiency roles within manufacturing environments.

  • Recent engineering graduate: building credentials for an energy auditing career path.

  • Plant operations supervisor: tasked with hitting corporate energy reduction targets.

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