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PUBLISHER: Global Market Insights Inc. | PRODUCT CODE: 1858879

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PUBLISHER: Global Market Insights Inc. | PRODUCT CODE: 1858879

Power Generation Steam Turbine Market Opportunity, Growth Drivers, Industry Trend Analysis, and Forecast 2025 - 2034

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The Global Power Generation Steam Turbine Market was valued at USD 1.04 billion in 2024 and is estimated to grow at a CAGR of 23.9% to reach USD 2.92 billion by 2034.

Power Generation Steam Turbine Market - IMG1

This substantial growth is driven by expanding industrial activities and the growing need for reliable, uninterrupted electricity, which is accelerating demand for captive power generation. As industries scale up, they require stable energy sources, encouraging the adoption of efficient steam turbine systems. A gradual industry shift toward combined cycle configurations, along with the declining reliance on outdated thermal power units, continues to reshape the market. Steam turbines used in power generation convert the thermal energy of steam into mechanical energy, which is then transformed into electricity. With supportive government policies targeting emissions reduction, alongside increasing investments in cogeneration and hybrid energy models, the market outlook remains highly favorable. Rising infrastructure development and efforts to balance electricity demand and supply further contribute to the demand for these systems. Many developing economies are making notable transitions toward gas-based and renewable power generation, enhancing the role of steam turbines within hybrid setups and contributing to their expanding application across multiple regions.

Market Scope
Start Year2024
Forecast Year2025-2034
Start Value$1.04 Billion
Forecast Value$2.92 Billion
CAGR23.9%

The segment featuring 3 MW steam turbines is forecast to reach USD 280 million by 2034. These turbines are compact and serve as efficient power sources for industrial sites, off-grid locations, and combined heat and power solutions. Manufacturers are introducing modular turbine configurations that streamline installation, reduce complexity, and cut down on maintenance. These features make them particularly attractive in rural zones and regions with developing infrastructure, where ease of deployment is crucial.

In 2024, the non-condensing steam turbine segment was valued at USD 648.7 million. This category benefits from rapid industrial upgrades and policy-led efforts focused on energy efficiency. Both public and private initiatives are pushing the adoption of steam turbines that lower thermal losses while delivering essential process steam. These turbines are central to combined heat and power applications, which produce both electricity and thermal energy. Their efficiency makes them suitable for heavy-duty industrial operations. With improvements in materials, blade design, and thermodynamic processes, non-condensing turbines now offer better durability and lower maintenance requirements, improving lifecycle economics and overall efficiency.

North America Power Generation Steam Turbine Market is projected to reach USD 165 million by 2034. Growth in this region is primarily fueled by expanding use of cogeneration systems across industries. However, conventional steam turbine deployment in thermal plants may see a slowdown, as many nations are phasing out coal-fired facilities in favor of cleaner alternatives, creating a mixed landscape for growth.

Key companies actively operating in the Global Power Generation Steam Turbine Market include Sumitomo Heavy Industries, Triveni Turbine, Mitsubishi Heavy Industries, Turbotech Precision Engineering, MAN Energy Solutions, Siemens Energy, EBARA CORPORATION, Trillium Flow Technologies, Fuji Electric, Hangzhou Turbine Power Group, GE Vernova, Kawasaki Heavy Industries, NCON Turbo Tech, Doosan Skoda Power, Toshiba Energy Systems & Solutions Corporation, Shin Nippon Machinery, Chart Industries, Ansaldo Energia, Bharat Heavy Electricals, and Chola Turbo. To strengthen their presence, companies in the power generation steam turbine market are focusing on strategic innovation and global partnerships. Key approaches include expanding R&D to develop turbines that operate efficiently under varied load conditions and environmental standards. Firms are also enhancing their service capabilities, offering end-to-end support including installation, digital monitoring, and predictive maintenance. Several players are entering joint ventures to co-develop hybrid systems combining renewable and thermal power generation.

Product Code: 14845

Table of Contents

Chapter 1 Methodology & Scope

  • 1.1 Research design
    • 1.1.1 Research approach
    • 1.1.2 Data collection methods
  • 1.2 Base estimates and calculations
    • 1.2.1 Base year calculation
    • 1.2.2 Market estimates & forecast parameters
  • 1.3 Forecast model
    • 1.3.1 Key trends for market estimates
    • 1.3.2 Quantified market impact analysis
      • 1.3.2.1 Mathematical impact of growth parameters on forecast
    • 1.3.3 Scenario analysis framework
  • 1.4 Primary research and validation
    • 1.4.1 Some of the primary sources (but not limited to)
  • 1.5 Data mining sources
    • 1.5.1 Paid Sources
    • 1.5.2 Sources, by region
  • 1.6 Research trail & scoring components
    • 1.6.1 Research trail components
    • 1.6.2 Scoring components
  • 1.7 Research transparency addendum
    • 1.7.1 Source attribution framework
    • 1.7.2 Quality assurance metrics
    • 1.7.3 Our commitment to trust
  • 1.8 Market definitions

Chapter 2 Executive Summary

  • 2.1 Industry synopsis, 2021 - 2034
    • 2.1.1 Business trends
    • 2.1.2 Design trends
    • 2.1.3 Exhaust trends
    • 2.1.4 Fuel trends
    • 2.1.5 Capacity trends
    • 2.1.6 Technology trends
    • 2.1.7 Regional trends

Chapter 3 Industry Insights

  • 3.1 Industry ecosystem analysis
    • 3.1.1 Raw material availability & sourcing analysis
    • 3.1.2 Manufacturing capacity assessment
    • 3.1.3 Supply chain resilience & risk factors
    • 3.1.4 Distribution network analysis
  • 3.2 Regulatory landscape
  • 3.3 Industry impact forces
    • 3.3.1 Growth drivers
    • 3.3.2 Industry pitfalls & challenges
  • 3.4 Growth potential analysis
  • 3.5 Porter's analysis
    • 3.5.1 Bargaining power of suppliers
    • 3.5.2 Bargaining power of buyers
    • 3.5.3 Threat of new entrants
    • 3.5.4 Threat of substitutes
  • 3.6 PESTEL analysis
    • 3.6.1 Political factors
    • 3.6.2 Economic factors
    • 3.6.3 Social factors
    • 3.6.4 Technological factors
    • 3.6.5 Legal factors
    • 3.6.6 Environmental factors
  • 3.7 Cost structure analysis of power generation steam turbines
  • 3.8 Price trend analysis (USD/MW)
    • 3.8.1 By region
    • 3.8.2 By capacity
  • 3.9 Emerging opportunities & trends
    • 3.9.1 Digitalization & IoT integration
    • 3.9.2 Emerging market penetration
  • 3.10 Investment analysis & future prospects

Chapter 4 Competitive Landscape, 2025

  • 4.1 Introduction
  • 4.2 Company market share analysis, by region, 2024
    • 4.2.1 North America
    • 4.2.2 Europe
    • 4.2.3 Asia Pacific
    • 4.2.4 Middle East & Africa
    • 4.2.5 Latin America
  • 4.3 Strategic dashboard
  • 4.4 Strategic initiatives
    • 4.4.1 Key partnerships & collaborations
    • 4.4.2 Major M&A activities
    • 4.4.3 Product innovations & launches
    • 4.4.4 Market expansion strategies
  • 4.5 Competitive benchmarking
  • 4.6 Innovation & sustainability landscape

Chapter 5 Market Size and Forecast, By Design, 2021 - 2034 (USD Million & MW)

  • 5.1 Key trends
  • 5.2 Reaction
  • 5.3 Impulse

Chapter 6 Market Size and Forecast, By Exhaust, 2021 - 2034 (USD Million & MW)

  • 6.1 Key trends
  • 6.2 Condensing
  • 6.3 Non-condensing

Chapter 7 Market Size and Forecast, By Fuel, 2021 - 2034 (USD Million & MW)

  • 7.1 Key trends
  • 7.2 Oil & gas
  • 7.3 Waste-to-energy plants
  • 7.4 Biomass

Chapter 8 Market Size and Forecast, By Capacity, 2021 - 2034 (USD Million & MW)

  • 8.1 Key trends
  • 8.2 < 3 MW
  • 8.3 3 MW - 50 MW
  • 8.4 > 50 MW - 100 MW

Chapter 9 Market Size and Forecast, By Technology, 2021 - 2034 (USD Million & MW)

  • 9.1 Key trends
  • 9.2 Steam cycle
  • 9.3 Combined cycle
  • 9.4 Cogeneration

Chapter 10 Market Size and Forecast, By Region, 2021 - 2034 (USD Million & MW)

  • 10.1 Key trends
  • 10.2 North America
    • 10.2.1 U.S.
    • 10.2.2 Canada
    • 10.2.3 Mexico
  • 10.3 Europe
    • 10.3.1 UK
    • 10.3.2 France
    • 10.3.3 Russia
    • 10.3.4 Germany
    • 10.3.5 Spain
    • 10.3.6 Italy
  • 10.4 Asia Pacific
    • 10.4.1 China
    • 10.4.2 Japan
    • 10.4.3 South Korea
    • 10.4.4 India
    • 10.4.5 Australia
    • 10.4.6 Indonesia
    • 10.4.7 Malaysia
    • 10.4.8 Thailand
  • 10.5 Middle East & Africa
    • 10.5.1 Saudi Arabia
    • 10.5.2 UAE
    • 10.5.3 Iran
    • 10.5.4 Egypt
    • 10.5.5 South Africa
    • 10.5.6 Nigeria
    • 10.5.7 Turkiye
    • 10.5.8 Morocco
  • 10.6 Latin America
    • 10.6.1 Brazil
    • 10.6.2 Argentina
    • 10.6.3 Chile

Chapter 11 Company Profiles

  • 11.1 Ansaldo Energia
  • 11.2 Bharat Heavy Electricals Limited
  • 11.3 Chart Industries
  • 11.4 Chola Turbo
  • 11.5 Doosan Škoda Power
  • 11.6 EBARA CORPORATION
  • 11.7 Fuji Electric
  • 11.8 GE Vernova
  • 11.9 Hangzhou Turbine Power Group
  • 11.10 Kawasaki Heavy Industries
  • 11.11 MAN Energy Solutions
  • 11.12 Mitsubishi Heavy Industries
  • 11.13 NCON Turbo Tech
  • 11.14 Shin Nippon Machinery
  • 11.15 Siemens Energy
  • 11.16 Sumitomo Heavy Industries
  • 11.17 Toshiba Energy Systems & Solutions Corporation
  • 11.18 Trillium Flow Technologies
  • 11.19 Triveni Turbine
  • 11.20 Turbotech Precision Engineering
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Christine Sirois

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