Course Schedules

Classroom 4 Sessions
Online / Live
Live

Training Course Overview

Coherent Planning for the Future of Energy Training Course addresses the profound transformation occurring across the global energy sector. Driven by decarbonisation commitments, technological innovation, evolving consumer expectations, and geopolitical uncertainty, energy organisations require modern strategies that surpass traditional historical forecasting.

Navigating this complex landscape demands an integrated framework that connects long-term strategic objectives with realistic energy scenarios, infrastructure requirements, financial considerations, and environmental targets. Energy professionals must make high-stakes investment and policy choices today while anticipating multi-decade shifts in markets, regulations, and consumption patterns.

This training course provides a structured approach to analyzing demand-supply dynamics, evaluating conventional vs. renewable technologies, and identifying critical transition risks. Through practical exercises, case studies, and collaborative planning workshops, delegates learn to formulate resilient, balanced energy strategies that reconcile energy security, affordability, and sustainability across operations, technology, and policy.

Training Course Objectives

Coherent Planning for the Future of Energy Training Course empowers participants to master strategic foresight, build resilient transition pathways, and lead complex energy transformations. Delegates will develop actionable skills to assess emerging technologies, model future market scenarios, and manage transition risks effectively.

Upon completion of this training course, participants will be able to:

  • Analyse major economic, technological, environmental, and geopolitical forces reshaping energy systems
  • Understand and navigate the trilemma of energy security, affordability, and sustainability
  • Apply strategic foresight and scenario-planning techniques to evaluate future energy decisions
  • Assess energy demand forecasts, supply options, and long-term infrastructure requirements
  • Evaluate conventional, renewable, hydrogen, and emerging low-carbon technologies
  • Identify transition uncertainties, market risks, and high-value investment opportunities
  • Develop integrated energy strategies, resilient systems, and sustainable transition pathways
  • Translate high-level energy objectives into actionable implementation plans and roadmaps

Designed for

Future of Energy Training Course is specifically structured for forward-thinking professionals and leaders navigating energy transitions, infrastructure investments, and decarbonisation strategies. It provides essential insights for decision-makers across the public and private sectors looking to future-proof their operations.

This training course is ideally suited for:

  • Energy planners, policy analysts, and regulatory authority representatives
  • Strategy, corporate planning, and business development managers
  • Oil, gas, power-sector, and utility professionals
  • Renewable energy, decarbonisation, and sustainability specialists
  • Investment, project finance, and asset development managers
  • Senior engineers and technical directors overseeing energy infrastructure
  • Risk managers, energy economists, and strategic advisers

Learning Methods

Future of Energy Training Course employs an interactive, adult-learning methodology designed to maximize knowledge retention and practical application. Expert-led presentations set the foundation for dynamic group discussions, scenario workshops, and real-world case studies. Delegates engage in hands-on collaborative exercises to stress-test energy strategies and build customized implementation roadmaps.

Course Content

Day 1

Understanding the Future Energy Landscape

  • The changing structure of global and regional energy systems
  • Economic, technological, environmental and geopolitical drivers
  • Global energy-demand and supply outlooks
  • The continuing role of oil, natural gas and conventional power
  • Growth prospects for renewable and low-carbon energy
  • Energy security, affordability and sustainability
  • Policy, regulation and international climate commitments
  • Identifying critical uncertainties affecting the energy future 
Day 2

Strategic Foresight and Energy Scenario Planning

  • The role of strategic foresight in long-term energy planning
  • Limitations of traditional forecasting approaches
  • Identifying trends, drivers, disruptions and weak signals
  • Developing alternative energy scenarios
  • Assessing geopolitical and market uncertainties
  • Evaluating technology-development and adoption pathways
  • Stress-testing strategies against different future conditions
  • Practical workshop: Building plausible energy scenarios 
Day 3

Planning Integrated and Resilient Energy Systems

  • Principles of integrated energy-system planning
  • Balancing conventional and renewable energy resources
  • Electricity generation, transmission and distribution requirements
  • Energy storage, grid flexibility and demand-side management
  • Sector coupling across power, transport, buildings and industry
  • Hydrogen, carbon capture and other emerging technologies
  • Building resilience against supply disruptions and climate risks
  • Aligning infrastructure planning with future demand 
Day 4

Economics, Investment and Transition Risk

  • Economic evaluation of future energy options
  • Capital requirements and investment prioritisation
  • Comparing the costs and benefits of energy technologies
  • Carbon pricing and the economics of decarbonisation
  • Market, regulatory, technological and financial risks
  • Managing stranded-asset and transition-risk exposure
  • Sustainable finance and funding mechanisms
  • Developing a balanced energy-investment portfolio 
Day 5

Developing a Coherent Energy Strategy

  • Translating scenarios into strategic choices
  • Defining the organisation’s preferred energy future
  • Establishing strategic priorities and transition pathways
  • Aligning policy, technology, investment and operations
  • Stakeholder engagement and governance arrangements
  • Developing targets, milestones and performance indicators
  • Monitoring progress and adapting to changing conditions
  • Final workshop: Preparing an integrated energy strategy and implementation roadmap 

The Certificate

Recognition
  • Anderson Certificate of Completion for delegates who attend and complete the training course
FREQUENTLY ASKED QUESTIONS

Learn more about this course

The course is suitable for mechanical maintenance engineers, reliability engineers, maintenance technicians, field service engineers, plant operators, production supervisors, condition monitoring specialists, and technical personnel responsible for industrial hydraulic machinery and fluid power equipment.

Yes. Participants who successfully complete the Coherent Planning for the Future of Energy training course will receive a Anderson Certificate of Completion, demonstrating their commitment to professional development and continuous learning. This certificate provides formal recognition of the knowledge and skills gained during the course and can support professional growth and career progression.

Yes. The Coherent Planning for the Future of Energy training course can be customised and delivered exclusively for organisations seeking a tailored learning solution. Course content can be adapted to address specific business objectives, operational challenges, industry requirements, and organisational priorities. Customised training allows teams to focus on the topics most relevant to their roles while supporting wider organisational development goals.

Participants attending the Coherent Planning for the Future of Energy training course gain access to valuable industry insights, practical techniques, and internationally recognised best practices. The course helps professionals improve performance, strengthen confidence, broaden their perspective, and develop skills that contribute to both personal and organisational success. It also provides an excellent opportunity to exchange ideas and experiences with professionals from diverse sectors and backgrounds.

No. The Coherent Planning for the Future of Energy training course is open to professionals from a wide range of backgrounds and experience levels. The course content is structured to provide value to both those who are new to the subject and experienced practitioners seeking to deepen their expertise. While some prior knowledge may enhance understanding of certain concepts, it is not a requirement for participation

The Coherent Planning for the Future of Energy training course combines practical knowledge, current industry practices, and expert guidance to create a highly relevant learning experience. Rather than focusing solely on theory, the course emphasises practical application, enabling participants to develop skills and approaches that can be implemented directly within their organisations. This balance of knowledge and practical relevance helps participants achieve meaningful and lasting professional impact.

The Coherent Planning for the Future of Energy training course uses a variety of learning approaches to maximise participant engagement and knowledge retention. These may include expert-led presentations, practical exercises, case studies, group discussions, scenario-based activities, and collaborative learning opportunities. This approach encourages active participation and helps participants translate learning into practical workplace results.

  Yes. Industrial hydraulic systems are widely used across manufacturing plants, process facilities, heavy machinery, marine operations, utilities, and other industrial environments. The principles covered are relevant to professionals responsible for operating, maintaining, inspecting, or troubleshooting hydraulic equipment across a broad range of applications.  

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