市場調查報告書
商品編碼
1354291
飛輪儲能市場規模 - 按技術(絕熱、非絕熱、等溫)、按應用(現場電源、黑啟動、供電能力)、成長促進因素和預測,2023 - 2032 年Flywheel Energy Storage Market Size - By Technology (Adiabatic, Diabatic, Isothermal), By Application (On Site Power, Black Start, Electric Supply Capacity), Growth Drivers & Forecast, 2023 - 2032 |
在再生能源快速整合的推動下,2023年至2032年全球飛輪儲能市場複合年成長率將達2.4%。風能和太陽能等再生能源的日益普及導致間歇性發電。
根據國際能源總署《2023年再生能源預測》,2022年至2027年期間,再生能源裝置容量預計將增加近2,400吉瓦。從這個角度來看,這相當於中國目前的總裝置容量。與前五年相比,這一數字成長了 85%,比去年報告中的預測高出近 30%,這是我們歷史上最顯著的向上修正。飛輪儲能系統透過在發電期間儲存多餘的能量並在需要時釋放它來幫助穩定電網。
整個飛輪儲能市場根據應用和地區進行分類。
由於飛輪儲能在交通運輸應用的獨特優勢,2023-2032年交通運輸領域規模將成長2.1%。飛輪提供快速的能量回收和釋放,使其成為電動和混合動力車輛的再生煞車系統的理想選擇,從而提高能源效率和續航里程。此外,它們的耐用性和承受頻繁充放電循環的能力符合運輸使用的要求。隨著交通運輸產業轉向電氣化和永續發展,飛輪儲能系統在實現這些目標、推動其高需求方面發揮著至關重要的作用。
亞太地區飛輪儲能產業正經歷大幅成長,到2032年可能成長超過14.8%。根據對電網穩定性和可靠性的需求,對再生能源專案的投資不斷增加,推動了對飛輪等儲能解決方案的需求。
在COP26 上,印度宣布了一個雄心勃勃的目標,即在2030 年實現非化石燃料能源發電量達到500 吉瓦。這一目標標誌著印度對太陽能、風能和水力發電等可再生能源的重大承諾,因為該國力求實現減少碳足跡,朝向更永續和生態友善的能源格局過渡。此外,亞太地區快速擴張的城市化和工業化需要可靠的備用電源。飛輪以其快速響應和能源效率而聞名,非常適合滿足這些需求,為該地區該行業的強勁成長做出了貢獻。
Global Flywheel Energy Storage Market will record 2.4% CAGR between 2023 and 2032, driven by the rapid integration of renewable energy. The increasing adoption of renewable energy sources, such as wind and solar, creates intermittent power generation.
According to Renewable Power Forecast 2023 by the International Energy Agency for the period 2022-2027, renewable energy capacity is expected to increase by nearly 2,400 GW. To put this in perspective, it's equivalent to China's current total installed power capacity. This represents an 85% acceleration compared to the previous five years and is nearly 30% higher than what was predicted in last year's report, marking the most significant upward revision in our history. Flywheel energy storage systems help stabilize the grid by storing excess energy during periods of generation and releasing it when needed.
The overall flywheel energy storage market is classified based on application and region.
The transportation segment size will expand at 2.1% over 2023-2032, owing to the unique advantages of flywheel energy storage in transportation applications. Flywheels offer rapid energy recovery and discharge, making them ideal for regenerative braking systems in electric and hybrid vehicles, enhancing energy efficiency and range. Additionally, their durability and ability to withstand frequent charge-discharge cycles align with the demands of transportation use. As the transportation industry shifts towards electrification and sustainability, flywheel energy storage systems play a vital role in meeting these goals, driving their high demand.
Asia Pacific Flywheel Energy Storage Industry is experiencing substantial growth and could exhibit over 14.8% through 2032. Increasing investments in renewable energy projects, in line with the need for grid stability and reliability, have driven demand for energy storage solutions like flywheels.
At COP26, India unveiled an ambitious goal, aiming to achieve 500 GW of non-fossil fuel-based energy by 2030. This target signifies a substantial commitment to renewable energy sources such as solar, wind, and hydroelectric power, as the country seeks to reduce its carbon footprint and transition towards a more sustainable and eco-friendly energy landscape. Moreover, Asia Pacific's rapidly expanding urbanization and industrialization require dependable backup power sources. Flywheels, known for their quick response and energy efficiency, are well-suited to meet these demands, contributing to the industry's robust growth in the region.