Gas Turbine Market Size and Forecast (2020 - 2033), Global and Regional Growth, Trend, Share and Industry Analysis Report Coverage: By Technology (Open Cycle, Combined Cycle), By Capacity (≤200 MW, >200 MW), By End-use (Power & Utility, Industrial), and Geography
2025-10-14
Automotive & Transportation (Mobility)
Description
Gas Turbine Market Overview
The global Gas Turbine Market is projected to grow steadily from USD 26.8 billion in 2025 to USD 36.9 billion by 2033, registering a CAGR of 4.2% during the forecast period. Growth is driven by rising demand for efficient, flexible, and reliable power generation solutions across multiple industries. Gas turbines are widely used in power generation, aviation, oil and gas, and various industrial applications due to their favorable power-to-weight ratio, high efficiency, and ability to operate under diverse load conditions.
A major factor propelling market
growth is the global shift toward decarbonization and the adoption of
low-emission technologies. Compared to coal-fired power plants, gas turbines,
especially in combined cycle configurations, produce significantly fewer
greenhouse gas emissions, aligning with international climate policies and
energy transition goals. Their use in distributed power generation and
cogeneration plants is also expanding, as they enhance efficiency while
reducing operating costs.
Gas Turbine Market
Drivers And Opportunities
Rising Demand For Cleaner
Power Generation Technologies Is Anticipated To Lift The Gas Turbine Market
During The Forecast Period
The increased focus on cutting greenhouse gas
emissions and switching to cleaner fuels is strongly driving the market for gas
turbines. During combined-cycle operations, gas turbines emit much less carbon
dioxide than their counterparts in conventional coal-based power plants. As
regulatory pressures mount with governments and international environmental
agencies, such as the Paris Agreement, and industries and utilities turn to gas
turbine technology as a transitional bridge between renewable and fossil fuels,
significant investments are pouring in. Technological innovations have also
spurred the creation of high-efficiency gas turbines that operate efficiently
with natural gas and alternative fuels like hydrogen to meet the requirements
of sustainability. This clean energy benefit is especially appealing to those
nations aiming to decarbonize their power grid without giving away reliability
or efficiency. In developing markets where the power source is still fueled by
coal, gas turbines are a good alternative to meet near-term emissions targets.
In regions where renewable power like solar and wind is intermittent and cannot
be relied upon to feed power to baseloads, gas turbines' adaptability to
complement such power works in their favor. As worldwide shifts continue in
favor of greener power infrastructures, the market is expected to see a steady
growth in demand for sophisticated, low-emitting gas turbines, strengthening
this segment as a key player in power-generation practices.
Increased Global Electricity Consumption And Infrastructure
Expansion Is Vital Drivers for Influencing The Growth Of The Global Gas Turbine
Market
The steady growth in power demand, fueled by
industrialization, population growth, and urbanization, especially in emerging
economies, is a key driver boosting the market for gas turbines. Developing
economies in Asia, Africa, and the Middle East are investing aggressively in power-generating
assets to meet power shortages and facilitate economic growth. Gas turbines,
with their faster start-up and high-efficiency operations, are well-suited to
meet peak power demands and maintain grid stability. Additionally, various
development programs by the governments in the areas of power generation and
distribution that include gas turbine technology are upgrading and expanding
their energy sectors. In areas where there are rich natural gas reserves, like
North America and the Middle East, the availability of indigenous resources also
encourages the deployment of gas turbines as an economic and reliable source of
power. In addition, the versatility of gas turbines with combined heat and
power and distributed power applications also increases their market potential
in catering to localized power demand. As the development of infrastructures
will continue to be a pillar of national development strategies, the adoption
of gas turbines in power projects will see a surge with the prospect of
long-term market expansion and investment.
Adoption Of Hydrogen And Low-Carbon Fuels In Gas Turbines Is
Poised To Create Significant Opportunities In The Global Gas Turbine Market
The international quest to decarbonize is unveiling new frontiers for gas turbines with the use of hydrogen and other low-carbon fuels. Natural gas turbines are being redesigned to burn a blend of natural gas and hydrogen, with some OEMs producing turbines that burn 100% hydrogen. Hydrogen, when created by renewable power (green hydrogen), is a zero-emissions fuel and justifies hydrogen-ready gas turbines as a key technology in power system future-proofing. Hydrogen-focused investments are underway in many markets, especially in the markets of Europe and Asia-Pacific, in terms of hydrogen infrastructures such as production, storage, and distribution to back the commercialization of hydrogen-based gas turbine offerings. Incentives and investments by the government to promote clean hydrogen projects, and special allocations of funds to encourage research and development and early installations of hydrogen-fueled turbines, are also driving R&D and early installations. Not only do these innovations cut carbon emissions, but by combining with renewable resources, they also offer a flexible energy storage mechanism. The capability to retrofit current gas turbines to be hydrogen-compatible makes this prospect all the more compelling by enabling utilities to decarbonize their installed power assets at a relatively affordable cost. As hydrogen emerges as a global energy transport medium, hydrogen-capable and built or retrofitted gas turbines stand to benefit from robust demand, enabling a new wave of market growth.
Gas Turbine Market Scope
Report Attributes |
Description |
Market Size in 2025 |
USD 26.8 Billion |
Market Forecast in 2033 |
USD 36.9 Billion |
CAGR % 2025-2033 |
4.2% |
Base Year |
2024 |
Historic Data |
2020-2024 |
Forecast Period |
2025-2033 |
Report USP |
Production, Consumption, company share, company heatmap, company
production capacity, growth factors, and more |
Segments Covered |
●
By Technology ●
By Capacity ●
By End-use |
Regional Scope |
●
North America, ●
Europe, ●
APAC, ●
Latin America ●
Middle East and Africa |
Country Scope |
1)
U.S. 2)
Canada 3)
U.K. 4)
Germany 5)
France 6)
Italy 7)
Spain 8)
Russia 9)
China 10)
India 11)
Japan 12)
South Korea 13)
Australia 14)
Brazil 15)
Argentina 16)
Saudi Arabia 17) UAE |
Gas Turbine Market Report Segmentation Analysis
The Global Gas Turbine Market
Industry Analysis Is Segmented By Technology, By Capacity, By End-Use, And By
Region.
The Open Cycle Segment Is Anticipated To Hold The Highest
Share Of The Global Gas Turbine Market During The Projected Timeframe
The global gas turbine market is segmented by technology into open cycle and combined cycle, with open cycle systems projected to dominate with 72.3% market share during the forecast period. These turbines are favored for their rapid power generation, making them ideal for peak load demand, emergency backup, and grid stabilization. Their quick start-up time, operational flexibility, and lower upfront costs give them an edge in regions with urgent energy needs or limited infrastructure. Additionally, their minimal water usage makes them well-suited for arid environments, while their simpler maintenance and reliability are critical for off-grid or remote applications. As developing economies and grid-constrained areas prioritize fast, adaptable power solutions, open-cycle gas turbines remain the preferred choice.
The >200 MW Segment Dominated The Market In 2025 And Is
Predicted To Grow At The Highest CAGR Over The Forecast Period.
The global gas turbine market is
segmented by capacity into ≤200 MW and >200 MW, with the >200 MW segment
leading in 2024 and expected to grow at the highest CAGR during the forecast
period. This dominance is driven by rising demand for high-efficiency,
large-scale power generation in industrialized and urbanized regions, where
utility-scale plants require a stable, high-output electricity supply. The
>200 MW turbines excel in combined cycle applications, delivering superior
thermal efficiency and lower emissions—key factors supporting global
decarbonization efforts.
The Power & Utility Segment Is Predicted To Grow At The
Highest CAGR Over The Forecast Period
The
global gas turbine market is segmented by end-use into Power & Utility and
Industrial sectors, with the Power & Utility segment expected to register
the highest CAGR during the forecast period. This growth is fueled by surging
global electricity demand, especially in fast-urbanizing regions, where
reliable and scalable power generation is critical. Gas turbines are gaining
prominence in utility-scale power plants as they offer high energy output with
lower carbon emissions compared to conventional coal-based systems. Their
operational flexibility enables quick ramp-up to meet peak demand—and
compatibility with renewable integration further solidifies their role in the
energy transition.
The following segments are part of an in-depth analysis of the global
gas turbine market:
Market Segments |
|
By Technology |
●
Open Cycle ●
Combined Cycle |
By Capacity |
●
≤200 MW ●
>200 MW |
By End-use |
●
Power & Utility ●
Industrial |
Gas Turbine Market Share
Analysis By Region
Asia Pacific Is Projected
To Hold The Largest Share Of The Global Gas Turbine Market Over The Forecast
Period.
In 2025, the Asia Pacific
accounted for the largest share of the world gas turbine market, with around
38.2% of the total market. Its dominance is fueled by the region’s robust
energy demand, industrialization, and investments in large power and
infrastructure projects. China, India, Japan, and South Korea are increasingly
adopting gas turbines in place of coal-based power to reduce carbon emissions
and improve efficiency. The region is also witnessing investments in new
gas-fired power plants, encouraged by incentives and policies at the
governmental level. The increasing demand to have a reliable and flexible power
supply to fuel urbanization and electrification, notably in emerging economies,
also contributes to the segment growth. Improved grid networks and integration
of renewable energy systems have further increased demand in the market for gas
turbines that can offer quick-start and backup power to provide stability to
the energy supply.
In contrast, North America will
see the highest CAGR over the forecasted period. This is due to the region’s
transition away from coal towards natural gas, the availability of shale gas
reserves, and a surge in combined cycle gas turbine system adoption to promote
energy efficiency and cut emissions.
Gas Turbine Market
Competition Landscape Analysis
The global gas turbine market is
poised for significant growth, with key players investing heavily in technology
and infrastructure. These companies are actively engaged in research and
development, strategic partnerships, and large-scale project implementations to
enhance their market positions.
Global Gas Turbine Market
Recent Developments News:
●
In February 2023,
Mitsubishi Power, a subsidiary of Mitsubishi Heavy Industries (MHI), secured an
order to supply two M701F gas turbines, two steam turbines, and auxiliary
equipment for the expansion of Uzbekistan’s Talimarjan Thermal Power Plant
(TPP). The project, contracted by Spanish engineering firm Intecsa Ingenieria
Industrial S.A., is set to commence operations in 2025. This marks Mitsubishi
Power’s second major order for the Talimarjan TPP, following its 2013 delivery
of two M701F gas turbines and generators for Unit 1. The expansion reinforces
Mitsubishi Power’s role in enhancing Uzbekistan’s energy infrastructure with
high-efficiency power generation technology.
●
In March 2021, General
Electric (GE) announced the delivery of its first two HA-class gas turbines to
the UAE, set to power what is expected to become the most efficient utility
plant in the Middle East. The project will feature a total of three 9HA.01 gas
turbines, renowned for their high efficiency and flexibility in power
generation. This deployment reinforces GE's leadership in advanced energy
solutions and supports the region's push for cleaner, more reliable electricity
production. The initiative marks a significant milestone in modernizing the
UAE's power infrastructure with cutting-edge technology.
The Global Gas Turbine Market is dominated by a few large
companies, such as
●
GE
●
Siemens
●
Mitsubishi Power
●
Ansaldo Energia
●
Solar Turbines
●
Kawasaki Heavy Industries, Ltd.
●
Doosan Heavy Industries & Construction
●
Bharat Heavy Electrical Limited
●
OPRA Turbines
●
Rolls Royce
●
Vericor Power Systems LLC
●
Others
● Others
Frequently Asked Questions
- Global Gas Turbine Market Introduction and Market Overview
- Objectives of the Study
- Global Gas Turbine Market Scope and Market Estimation
- Global Gas Turbine Overall Market Size (US$ Bn), Market CAGR (%), Market forecast (2025 - 2033)
- Global Gas Turbine Market Revenue Share (%) and Growth Rate (Y-o-Y) from 2020 - 2033
- Market Segmentation
- Technology of Global Gas Turbine Market
- Capacity of Global Gas Turbine Market
- End-use of Global Gas Turbine Market
- Region of Global Gas Turbine Market
- Executive Summary
- Demand Side Trends
- Key Market Trends
- Market Demand (US$ Bn) Analysis 2020 – 2024 and Forecast, 2025 – 2033
- Demand and Opportunity Assessment
- Market Dynamics
- Drivers
- Limitations
- Opportunities
- Impact Analysis of Drivers and Restraints
- Key Product/Brand Analysis
- Technological Advancements
- Key Developments
- Porter’s Five Forces Analysis
- Bargaining Power of Suppliers
- Bargaining Power of Buyers
- Threat of Substitutes
- Threat of New Entrants
- Competitive Rivalry
- PEST Analysis
- Political Factors
- Economic Factors
- Social Factors
- Technology Factors
- Insights on Cost-effectiveness of Gas Turbine
- Key Regulation
- Global Gas Turbine Market Estimates & Historical Trend Analysis (2020 - 2024)
- Global Gas Turbine Market Estimates & Forecast Trend Analysis, by Technology
- Global Gas Turbine Market Revenue (US$ Bn) Estimates and Forecasts, by Technology, 2020 - 2033
- Open Cycle
- Combined Cycle
- Global Gas Turbine Market Revenue (US$ Bn) Estimates and Forecasts, by Technology, 2020 - 2033
- Global Gas Turbine Market Estimates & Forecast Trend Analysis, by Capacity
- Global Gas Turbine Market Revenue (US$ Bn) Estimates and Forecasts, by Capacity, 2020 - 2033
- ≤200 MW
- >200 MW
- Global Gas Turbine Market Revenue (US$ Bn) Estimates and Forecasts, by Capacity, 2020 - 2033
- Global Gas Turbine Market Estimates & Forecast Trend Analysis, by End-use
- Global Gas Turbine Market Revenue (US$ Bn) Estimates and Forecasts, by End-use, 2020 - 2033
- Power & Utility
- Industrial
- Global Gas Turbine Market Revenue (US$ Bn) Estimates and Forecasts, by End-use, 2020 - 2033
- Global Gas Turbine Market Estimates & Forecast Trend Analysis, by Region
- Global Gas Turbine Market Revenue (US$ Bn) Estimates and Forecasts, by Region, 2020 - 2033
- North America
- Europe
- Asia Pacific
- Middle East & Africa
- Latin America
- Global Gas Turbine Market Revenue (US$ Bn) Estimates and Forecasts, by Region, 2020 - 2033
- North America Gas Turbine Market: Estimates & Forecast Trend Analysis
- North America Gas Turbine Market Assessments & Key Findings
- North America Gas Turbine Market Introduction
- North America Gas Turbine Market Size Estimates and Forecast (US$ Billion) (2020 - 2033)
- By Technology
- By Capacity
- By End-use
- By Country
- The U.S.
- Canada
- North America Gas Turbine Market Assessments & Key Findings
- Europe Gas Turbine Market: Estimates & Forecast Trend Analysis
- Europe Gas Turbine Market Assessments & Key Findings
- Europe Gas Turbine Market Introduction
- Europe Gas Turbine Market Size Estimates and Forecast (US$ Billion) (2020 - 2033)
- By Technology
- By Capacity
- By End-use
- By Country
- Germany
- Italy
- K.
- France
- Spain
- Rest of Europe
- Europe Gas Turbine Market Assessments & Key Findings
- Asia Pacific Gas Turbine Market: Estimates & Forecast Trend Analysis
- Asia Pacific Market Assessments & Key Findings
- Asia Pacific Gas Turbine Market Introduction
- Asia Pacific Gas Turbine Market Size Estimates and Forecast (US$ Billion) (2020 - 2033)
- By Technology
- By Capacity
- By End-use
- By Country
- China
- Japan
- India
- Australia
- South Korea
- Rest of Asia Pacific
- Asia Pacific Market Assessments & Key Findings
- Middle East & Africa Gas Turbine Market: Estimates & Forecast Trend Analysis
- Middle East & Africa Market Assessments & Key Findings
- Middle East & Africa Gas Turbine Market Introduction
- Middle East & Africa Gas Turbine Market Size Estimates and Forecast (US$ Billion) (2020 - 2033)
- By Technology
- By Capacity
- By End-use
- By Country
- UAE
- Saudi Arabia
- South Africa
- Rest of MEA
- Middle East & Africa Market Assessments & Key Findings
- Latin America Gas Turbine Market: Estimates & Forecast Trend Analysis
- Latin America Market Assessments & Key Findings
- Latin America Gas Turbine Market Introduction
- Latin America Gas Turbine Market Size Estimates and Forecast (US$ Billion) (2020 - 2033)
- By Technology
- By Capacity
- By End-use
- By Country
- Brazil
- Argentina
- Mexico
- Rest of LATAM
- Latin America Market Assessments & Key Findings
- Country Wise Market: Introduction
- Competition Landscape
- Global Gas Turbine Market Product Mapping
- Global Gas Turbine Market Concentration Analysis, by Leading Players / Innovators / Emerging Players / New Entrants
- Global Gas Turbine Market Tier Structure Analysis
- Global Gas Turbine Market Concentration & Company Market Shares (%) Analysis, 2024
- Company Profiles
- GE
- Company Overview & Key Stats
- Financial Performance & KPIs
- Product Portfolio
- SWOT Analysis
- Business Strategy & Recent Developments
- GE
* Similar details would be provided for all the players mentioned below
- Siemens
- Mitsubishi Power
- Ansaldo Energia
- Solar Turbines
- Kawasaki Heavy Industries, Ltd.
- Doosan Heavy Industries & Construction
- Bharat Heavy Electrical Limited
- OPRA Turbines
- Rolls Royce
- Vericor Power Systems LLC
- Others
- Others
- Research Methodology
- External Transportations / Databases
- Internal Proprietary Database
- Primary Research
- Secondary Research
- Assumptions
- Limitations
- Report FAQs
- Research Findings & Conclusion
Our Research Methodology
"Insight without rigor is just noise."
We follow a comprehensive, multi-phase research framework designed to deliver accurate, strategic, and decision-ready intelligence. Our process integrates primary and secondary research , both quantitative and qualitative , along with dual modeling techniques ( top-down and bottom-up) and a final layer of validation through our proprietary in-house repository.
PRIMARY RESEARCH
Primary research captures real-time, firsthand insights from the market to understand behaviors, motivations, and emerging trends.
1. Quantitative Primary Research
Objective: Generate statistically significant data directly from market participants.
Approaches:- Structured surveys with customers, distributors, and field agents
- Mobile-based data collection for point-of-sale audits and usage behavior
- Phone-based interviews (CATI) for market sizing and product feedback
- Online polling around industry events and digital campaigns
- Purchase frequency by customer type
- Channel performance across geographies
- Feature demand by application or demographic
2. Qualitative Primary Research
Objective: Explore decision-making drivers, pain points, and market readiness.
Approaches:- In-depth interviews (IDIs) with executives, product managers, and key decision-makers
- Focus groups among end users and early adopters
- Site visits and observational research for consumer products
- Informal field-level discussions for regional and cultural nuances
SECONDARY RESEARCH
This phase helps establish a macro-to-micro understanding of market trends, size, regulation, and competitive dynamics, sourced from credible and public domain information.
1. Quantitative Secondary Research
Objective: Model market value and segment-level forecasts based on published data.
Sources include:- Financial reports and investor summaries
- Government trade data, customs records, and regulatory statistics
- Industry association publications and economic databases
- Channel performance and pricing data from marketplace listings
- Revenue splits, pricing trends, and CAGR estimates
- Supply-side capacity and volume tracking
- Investment analysis and funding benchmarks
2. Qualitative Secondary Research
Objective: Capture strategic direction, innovation signals, and behavioral trends.
Sources include:- Company announcements, roadmaps, and product pipelines
- Publicly available whitepapers, conference abstracts, and academic research
- Regulatory body publications and policy briefs
- Social and media sentiment scanning for early-stage shifts
- Strategic shifts in market positioning
- Unmet needs and white spaces
- Regulatory triggers and compliance impact

DUAL MODELING: TOP-DOWN + BOTTOM-UP
To ensure robust market estimation, we apply two complementary sizing approaches:
Top-Down Modeling:- Start with broader industry value (e.g., global or regional TAM)
- Apply filters by segment, geography, end-user, or use case
- Adjust with primary insights and validation benchmarks
- Ideal for investor-grade market scans and opportunity mapping
- Aggregate from the ground up using sales volumes, pricing, and unit economics
- Use internal modeling templates aligned with stakeholder data
- Incorporate distributor-level or region-specific inputs
- Most accurate for emerging segments and granular sub-markets
DATA VALIDATION: IN-HOUSE REPOSITORY
We close the loop with proprietary data intelligence built from ongoing projects, industry monitoring, and historical benchmarking. This repository includes:
- Multi-sector market and pricing models
- Key trendlines from past interviews and forecasts
- Benchmarked adoption rates, churn patterns, and ROI indicators
- Industry-specific deviation flags and cross-check logic
- Catches inconsistencies early
- Aligns projections across studies
- Enables consistent, high-trust deliverables