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市場調查報告書
商品編碼
1878405
軸帶式發電機市場-2025年至2030年預測Shaft Generator Market - Forecasts from 2025 to 2030 |
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預計軸發電機市場將從 2025 年的 16.66 億美元成長到 2030 年的 23.45 億美元,複合年成長率為 7.08%。
受高效經濟發電需求激增、船舶作業日益擴張以及對減少排放重視等因素的推動,軸流發電機市場預計將在預測期內實現顯著成長。軸流發電機透過電氣方式直接與原動機(例如蒸氣渦輪、燃氣渦輪機或柴油引擎)的旋轉軸連接,將機械旋轉轉化為電能。這種配置無需單獨的引擎驅動發電機,從而降低了系統品質、空間佔用和運作效率。其主要應用領域包括船舶、發電設施以及各種工業流程,在這些領域,與現有機械的整合能夠提高整體系統效率。
航運業對電力需求的不斷成長要素,也因此促進了軸帶發電機的廣泛應用。船舶營運,包括導航、通訊和貨物管理,都高度依賴可靠的船上電力。傳統發電機組消費量高、廢氣排放大,而軸帶發電機則利用推進引擎的旋轉發電,顯著降低了消費量和環境影響。這些裝置通常透過齒輪箱與主機連接,使貨船、貨櫃船和散裝貨船能夠與推進軸的旋轉同步發電。預計市場擴張將主要得益於新造船舶擴大採用軸帶發電機以及運作中船隊進行軸帶發電機改造。
預計亞太地區將在整個預測期內保持市場主導地位。該地區以中國、日本、韓國和新加坡為中心,蓬勃發展的海洋生態系統正在推動軸帶發電機的應用,因為船東優先考慮永續且成本效益高的技術。區域性措施也支持此趨勢。中國政府的粵港澳大灣區策略旨在促進海洋經濟成長、生態系統保護和技術創新。日本政府決定在五年內投資2兆日元,用於自主導航技術、智慧海洋系統和港口開發。在政府補貼的支持下,例如韓國船級社與現代重工的聯合計劃,先進的軸帶發電機設計正在推廣,以提高燃油效率並減少排放氣體。這些政策主導的投資和發展協同效應有望加速軸帶發電機的應用,並鞏固其在區域市場的主導地位。
亞太地區對船舶電氣化效率的重視、減少排放的迫切需求以及各項策略性海事舉措,共同為軸帶發電機市場的發展奠定了堅實的基礎。這種融合使得軸帶發電機成為最佳化輔助電源供應的關鍵元件,尤其是在整合推進系統架構中,有助於在嚴苛的海洋環境中實現更廣泛的脫碳和營運最佳化目標。
企業使用我們的報告的目的是什麼?
產業與市場分析、機會評估、產品需求預測、打入市場策略、地理擴張、資本投資決策、法規結構及影響、新產品開發、競爭情報
Shaft Generator Market is projected to expand at a 7.08% CAGR, attaining USD 2.345 billion by 2030 from USD 1.666 billion in 2025.
The shaft generator market is poised for notable advancement across the forecast period, propelled by surging electricity requirements met through streamlined and economical power generation methodologies, the broadening scope of marine operations, and heightened emphasis on emission mitigation. Shaft generators, electrically coupled directly to the rotating shafts of prime movers such as steam turbines, gas turbines, or diesel engines, transform mechanical rotation into electrical output. This configuration obviates standalone engine-driven generators, yielding reductions in system mass, spatial demands, and operational inefficiencies. Predominant deployments span the marine sector, power generation frameworks, and diverse industrial processes, where integration with extant machinery enhances overall system efficacy.
A principal growth catalyst resides in the marine industry's escalating electrical power needs, which are increasingly addressed via shaft generators. Maritime operations-encompassing navigation, communication, and cargo management-depend critically on reliable onboard electricity. Conventional generator sets entail elevated fuel usage and exhaust outputs, whereas shaft generators leverage propulsion engine rotation to produce power, substantially curtailing consumption and environmental impact. Typically interfaced with the main engine through a gearbox, these units enable electricity generation synchronous with shaft propulsion in cargo vessels, container ships, and bulk carriers. Both new-build incorporations and retrofits of operational fleets are projected to rise, invigorating market expansion.
Geographically, the Asia-Pacific region is anticipated to secure a commanding market portion throughout the forecast horizon. The area's burgeoning maritime ecosystem, centered in China, Japan, South Korea, and Singapore, is fostering shaft generator adoption as vessel owners prioritize sustainable, cost-optimized technologies. Regional initiatives underscore this trajectory: the Chinese government's strategy for the Guangdong-Hong Kong-Macao Greater Bay Area advances maritime economic growth, ecological safeguards, and technological innovation. Japan has committed substantial funding-2 trillion yen over five years-to autonomous shipping, intelligent maritime systems, and port upgrades. Collaborative efforts, such as those between the Korean Register of Shipping and Hyundai Heavy Industries, target advanced shaft generator designs for enhanced fuel economy and lower emissions, supported by governmental grants. These policy-driven investments and developmental synergies are set to accelerate shaft generator proliferation and regional market dominance.
Collectively, the alignment of efficiency-oriented marine electrification, emission-reduction imperatives, and Asia-Pacific's strategic maritime enhancements establishes a firm foundation for the shaft generator market's progression. This convergence positions shaft generators as vital components in optimizing auxiliary power delivery, particularly within propulsion-integrated architectures, thereby supporting broader decarbonization and operational optimization objectives in high-demand marine environments.
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