市場調查報告書
商品編碼
1577133
到 2030 年大型燃氣渦輪機服務市場預測:按服務類型、渦輪機容量、渦輪機類型、最終用戶和地區進行的全球分析Heavy Duty Gas Turbine Service Market Forecasts to 2030 - Global Analysis By Service Type (Maintenance and Repair Services, Upgrades and Retrofit Services, Spare Parts Supply and Overhaul), Turbine Capacity, Turbine Type, End User and By Geography |
根據Stratistics MRC的數據,2024年全球大型燃氣渦輪機服務市場規模為185.6億美元,預計將以10.5%的複合年成長率成長,到2030年達到337.9億美元。
用於發電的大型燃氣渦輪機的維護、修理和大修 (MRO) 服務是重型燃氣渦輪機服務業務的主要重點。這些關鍵組件的容量通常超過 75MW,並提供可靠、有效的發電。性能最佳化、升級、零件更換、檢查都可以在市場上找到。老化的機隊、渦輪機技術的進步以及對可靠發電的日益成長的需求是成長的關鍵驅動力。
根據國際能源總署 (IEA) 的數據,到 2019年終,全球天然氣消費量總量將相當於約 7,601 萬太焦耳 (TJ-gross)。該機構也宣布,總攝取量較 2018 年約 7,459 萬太焦成長,與前一年同期比較去年同期增加約 142 萬太焦。
發電需求不斷成長
新興國家和人口成長導致的發電需求不斷成長是推動大型燃氣渦輪機市場的因素。隨著經濟發展和人口成長,電力需求不斷增加,促使新電廠的建設和現有電廠的擴建。與其他基於石化燃料的技術相比,燃氣渦輪機因其有效性、可靠性和相對較低的排放氣體而成為越來越受歡迎的發電選擇。為了維持最佳性能和運轉率,燃氣渦輪機發電廠需要增加維護、修理和大修服務。
天然氣價格波動
天然氣價格波動對營業成本和投資決策有重大影響。由於天然氣是燃氣渦輪機的主要燃料,價格波動導致發電設備的營業成本增加。為了節省資金,隨著價格上漲,營運商可能會透過改進維護和服務選項來最大限度地提高渦輪機效率。另一方面,較低的天然氣價格可能會鼓勵對渦輪機技術的投資並提高運轉率。為了在不斷變化的市場環境中保持可靠性和效率,服務提供者必須不斷改進其產品。
政府提高能源效率的舉措
世界各國政府正透過各種措施提高大型燃氣渦輪機服務市場的能源效率。這包括設定最低效率要求,為安裝或改造更節能的渦輪機提供財政獎勵,贊助研究和開發舉措,教育公眾有關能源效率的好處,並鼓勵燃氣渦輪機營運商報告並建立法律體制確保遵守能源效率準則。這些舉措的目標是減少使用燃氣渦輪機發電時產生的能源使用和溫室氣體排放。
技術複雜性和技能短缺
技術複雜性和技術純熟勞工的缺乏給大型燃氣渦輪機維修作業帶來了挑戰。現代設計和材料正在增加對專業維護和維修的需求。然而,退休、勞動力變化和疫情造成了合格技術人員的嚴重短缺。結果,服務提供者被迫僱用缺乏經驗的員工或依賴分包商,這可能會降低服務品質。需要創新的培訓解決方案和人力資源開發來確保可靠的渦輪機操作和維護。
COVID-19 的影響
大型燃氣渦輪機維護產業受到COVID-19疫情的嚴重影響,造成供應鏈和營運困難。由於停工和社交距離措施,工業活動受到干擾,對渦輪機效率至關重要的維護和維修服務也被推遲。此外,疫情期間能源需求的減少迫使許多設施限制營運能力,導致對燃氣渦輪機服務的需求減少。然而,隨著疫苗宣傳活動的進展和企業恢復營運,由於對可靠能源來源的需求,我們預計服務需求將穩定復甦。
大型渦輪機產業預計將成為預測期內最大的細分市場
由於對可靠、高效能源來源的需求不斷成長,尤其是在石油、天然氣和發電行業,大型渦輪機領域預計將是最大的。重型渦輪機因其多功能性和高功率而在減少污染物和提高工業運作效率方面受到青睞。清潔能源解決方案的監管要求進一步推動了對大型渦輪機的投資,使其對於當前和未來各種應用的能源供應至關重要。
預計發電業在預測期內複合年成長率最高
由於能源消耗增加、經濟擴張以及對環境問題的擔憂,發電行業預計在預測期內複合年成長率最高。隨著經濟和人口的成長,對能源的需求增加,導致新發電廠的建設和現有發電廠的開發增加。與其他石化燃料的技術相比,燃氣渦輪機因其可靠性、效率和相對較低的排放而成為發電的流行選擇。
由於快速的都市化和工業化以及能源消耗的增加,預計亞太地區將在預測期內佔據最大的市場佔有率。中國和印度等國家正在投資燃氣渦輪機技術,以滿足其不斷成長的電力需求。該行業也受到法律規範和環境問題的推動。政府電氣化和基礎設施維修計畫需要定期維護和改進,以確保最大效率並遵守環境法規。
由於對節能發電的需求不斷成長,預計北美在預測期內的複合年成長率最高。更環保的能源來源和更嚴格的環境要求的趨勢正在推動工業界採用先進的渦輪機技術,以減少排放並提高效率。主要製造商和服務供應商目前正在推動行業創新和競爭,幫助市場蓬勃發展。
According to Stratistics MRC, the Global Heavy Duty Gas Turbine Service Market is accounted for $18.56 billion in 2024 and is expected to reach $33.79 billion by 2030 growing at a CAGR of 10.5% during the forecast period. The maintenance, repair, and overhaul (MRO) services for large-scale gas turbines used in power production are the main emphasis of the heavy-duty gas turbine service business. These vital parts, which often have capacities greater than 75 MW, provide dependable and effective energy generation. Performance optimization, upgrades, component replacements, and inspections are all available in the market. Aging fleets, advances in turbine technology, and the growing need for dependable power generation are the main drivers of growth.
According to the International Energy Agency (IEA), the total natural gas consumption across the globe equaled about 76.01 million terajoule-gross (TJ-gross) by the end of 2019. The organization also published that the total intake observed a year-on-year increase of around 1.42 million TJ-gross rising from nearly 74.59 million TJ-gross in 2018.
Growing demand for power generation
The growing need for electricity generation driven by emerging economies and growing populations is the factor that propels the market for heavy-duty gas turbine services. The need for electricity rises with economic development and population growth, prompting the building of new power plants and the expansion of existing ones. Because of their effectiveness, dependability, and comparatively low emissions as compared to other fossil fuel-based technologies, gas turbines are an increasingly popular choice for power generation. In order to maintain optimal performance and availability, there is an increasing need for maintenance, repair, and overhaul services for gas turbine power plants.
Fluctuating natural gas prices
Fluctuating natural gas prices significantly influencing operational costs and investment decisions. As natural gas is the main fuel source for these turbines, fluctuations in price can result in higher operating costs for facilities that produce electricity. In order to save expenses, operators may try to maximize turbine efficiency through improved maintenance and service options as prices rise. On the other hand, reduced natural gas prices may promote increased turbine technology investments and utilization rates. In order to maintain dependability and efficiency in the face of shifting market conditions, service providers are always required to modify their products.
Government initiatives for energy efficiency
Governments worldwide are promoting energy efficiency in the heavy-duty gas turbine service market through various initiatives. These include establishing minimum efficiency requirements, offering financial incentives for installing or retrofitting more energy-efficient turbines, sponsoring research and development initiatives, educating the public about the advantages of energy efficiency, and placing in place legal frameworks to guarantee gas turbine operators follow reporting and energy efficiency guidelines. The goal of these initiatives is to lower the energy usage and greenhouse gas emissions that come with using gas turbines to generate electricity.
Technical Complexity and Skill Shortages
Technical complexity and a lack of skilled workers provide difficulties for the heavy-duty gas turbine service business. Modern designs and materials have raised the demand for specialist maintenance and repair expertise. However, a severe lack of qualified technicians has resulted from retirements, changes in the workforce, and the pandemic. As a result, service providers have been forced to engage less experienced staff members or rely on subcontractors, which may lower the quality of their services. Innovative training solutions and workforce development are needed to ensure reliable turbine operations and maintenance.
Covid-19 Impact
The heavy-duty gas turbine servicing sector was severely affected by the COVID-19 epidemic, which resulted in supply chain and operational difficulties. Industrial operations were interrupted as a result of lockdowns and social distancing measures, which delayed maintenance and repair services that are crucial for turbine efficiency. Additionally, reduced energy demand during the pandemic forced many facilities to limit their operational capacity, thus diminishing the requirement for gas turbine services. However, a steady recovery in service demand is expected, driven by the necessity for dependable energy sources, as vaccination campaigns advanced and companies began operating again.
The heavy-duty turbines segment is expected to be the largest during the forecast period
The heavy-duty turbines segment is estimated to be the largest, due to the rising demand for dependable and efficient energy sources, especially in the oil and gas and power generation industries. Heavy-duty turbines are preferred because of their versatility and high output when it comes to reducing pollutants and improving operational efficiency in industries. Heavy-duty turbine investments are further driven by regulatory requirements for cleaner energy solutions, which make them indispensable for supplying energy for a variety of uses in the present and future.
The power generation segment is expected to have the highest CAGR during the forecast period
The power generation segment is anticipated to witness the highest CAGR during the forecast period, as a result of growing energy consumption, expanding economies, and environmental concerns. The need for energy increases as economies and populations rise, which prompts an increase in the building of new power plants and the development of current ones. Due to their dependability, efficiency, and comparatively low emissions as compared to other fossil fuel-based technologies, gas turbines are a common option for power generation.
Asia Pacific is expected to have the largest market share during the forecast period due to the fast-growing urbanization and industrialization, rising energy consumption. Gas turbine technology is being invested in by nations like China and India to meet their increasing electricity demands. The industry is also driven by regulatory frameworks and environmental concerns. Programs for government electrification and infrastructure renovation require routine maintenance and improvements to ensure maximum efficiency and adherence to environmental regulations.
North America is projected to witness the highest CAGR over the forecast period, owing to a rising need for energy-efficient power generation. Advanced turbine technologies that offer reduced emissions and more efficiency are being adopted by industry due to the trend towards greener energy sources and stricter environmental requirements. Major producers and service providers are current, which promotes innovation and competition in the industry and helps the market flourish.
Key players in the market
Some of the key players profiled in the Heavy Duty Gas Turbine Service Market include Ansaldo Energia, General Electric, Siemens Energy, Mitsubishi Power, Rolls-Royce Holdings plc, Kawasaki Heavy Industries, EthosEnergy, Hitachi Zosen Corporation, Baker Hughes, Solar Turbines, MAN Energy Solutions, MTU Aero Engines, Doosan Heavy Industries & Construction, Sulzer Ltd, ABB Group, Wartsila, Centrax Gas Turbines, John Wood Group, Alstom Power, and Shanghai Electric Group.
In April 2023, Mitsubishi launched Tomoni, its suite of AI-driven digital solutions for monitoring and optimizing gas turbine operations, offering real-time insights and predictive maintenance
In March 2023, General Electric introduced hydrogen-ready gas turbine upgrades, allowing existing turbines to run on a hydrogen-natural gas blend to reduce carbon emissions. This launch aligns with GE's strategy to support decarbonization in power generation.
In February 2023, Siemens introduced its SIESTART Hybrid gas turbine solution, integrating battery storage with gas turbines to increase efficiency and support quick response in power generation during peak demand.