해양 추진 시장

Marine Propulsions Market

상품코드AUTR2541
발행기관DataM Intelligence
발행일2023.05.01
페이지 수180 Pages
포맷PDF + EXCEL
커버리지Global

6,525,00011,775,000

보고서 요약(국문)

시장 개요
해양 추진 엔진 시장 규모는 2022년 XX백만 달러였으며, 예측 기간(2023~2030년) 동안 연평균 3.8%의 성장률을 보이며 2030년에는 XX백만 달러에 이를 것으로 예상됩니다.
해양 추진 엔진은 전 세계에서 가장 비싸고 큰 엔진 중 하나입니다. 오늘날 선박 추진은 단순히 배를 물 위에서 움직이게 하는 것 이상의 의미를 지닙니다. 해양 생태계의 안전성을 높이고 비용을 절감하면서 가장 효율적인 추진 시스템을 사용하는 것이 중요합니다.
더 빠르고, 더 깨끗하며, 연료 효율이 높은 엔진에 대한 수요가 해양 추진 엔진 시장을 견인하고 있습니다. 탄소 배출량이 적은 대안들이 관련 법규를 준수하면서 개발되고 있습니다. 현재 가장 널리 사용되는 추진 시스템은 디젤 엔진입니다. 디젤 엔진은 효율성 측면에서 증기 터빈보다 우수합니다. 가스 터빈 엔진은 속도가 중요한 해군 함정에 주로 사용됩니다.
가스 터빈은 다른 엔진 유형과 함께 사용되는 경우가 많습니다. 전 세계 화물을 운송하는 거대한 선박에 동력을 공급하기 때문에 해양 추진 시스템/엔진 분야가 주목받고 있습니다.

시장 동향
해양 부문의 온실가스 감축 요구가 해양 추진 엔진 시장 점유율 증가를 견인하고 있습니다.

전 세계 상품의 거의 90%가 해상으로 운송되는 상황에서, 전 세계 해운업은 전 세계 CO2 배출량의 약 3%를 차지하며, 업계는 더욱 친환경적으로 변모해야 한다는 압력을 받고 있습니다. 주요 석유 기업과 항만 당국을 포함한 여러 주요 기업 및 단체는 전 세계 해운 산업이 2050년까지 완전히 탈탄소화될 것을 촉구하며, 각국 정부에 신속한 조치를 요구하고 있습니다. 화석 연료를 재생 연료로 대체함으로써 해양 엔진의 온실가스 배출량을 크게 줄일 수 있지만, 수송용 바이오 연료 공급에는 한계가 있습니다.
유해한 온실가스 배출을 최소화하는 것이 최우선 과제이며, 동시에 선박 엔진의 성능과 추진 효율을 희생하지 않는 것 또한 중요합니다. 따라서, 선박 운영사와 선주들은 선대의 미래 지속가능성을 확보하기 위해 선박의 탄소 발자국을 최소화하는 추진 엔진 개발에 힘쓰고 있습니다. 해양 추진 부문에서 온실가스 배출량을 최소화하려면 기존 엔진 개발뿐 아니라 적절한 신기술을 시장에 도입하는 등 모든 이해관계자의 협력적인 노력이 필요합니다.
반 오르드(Van Oord)는 파리 협정에 따라 2050년까지 탄소 중립을 달성하기 위해 노력하고 있습니다. 2021년, 반 오르드는 FUELSAVE와 협력하여 신규 및 기존 선대의 탄소 발자국을 줄이기 위한 지속 가능하고 실현 가능한 방안을 추진했습니다. 2021년, 반 오르드는 해양 디젤 엔진의 연료 소비와 유해 배출물을 줄이는 특허 솔루션인 UELSAVE FS MARINE을 설치했습니다. 이 솔루션을 통해 반 오르드는 기존 선박에서 이산화탄소, 질소산화물, 미세먼지 및 블랙 카본 배출량을 크게 줄일 수 있습니다.
엄격한 환경 규제는 해양 추진 엔진의 성장에 큰 어려움을 야기하고 있습니다.
해상 운송은 세계 무역의 핵심으로 여겨집니다. 영국 국제해운회의소(International Chamber of Shipping)에 따르면 전 세계 무역의 약 90%가 해상을 통해 이루어집니다. 해상 운송은 철도나 도로 운송보다 비용 효율성이 높습니다. 저렴하고 광범위한 항공 여행이 발달했음에도 불구하고, 화물선은 여전히 ​​대량의 상품을 안전하고 신뢰할 수 있게 운송하는 주요 수단입니다.
결과적으로, 전 세계 해상 운송 산업은 운송 부문에서 온실가스 배출의 가장 큰 원인입니다. 끊임없이 증가하는 세계 무역량과 해상 화물 운송량은 온실가스 배출량을 더욱 증가시키고 있습니다. 각국 정부와 국제기구는 온실가스 배출을 억제하기 위해 엄격한 환경 규제를 시행하고 있습니다.
SOx, NOx, CO2와 같은 유해 가스의 배출 강도는 선박 종류에 따라 다릅니다. 예를 들어, 국제해사기구(IMO)는 2005년에 NOx 배출 제한 및 저유황 연료 사용 의무화를 규정한 MARPOL 부속서 VI를 발표했습니다. 이 규정은 미국 해역 및 북미 해안에서 200해리 이내(북미 배출 통제 구역, ECA)에서 운항하는 선박에 적용됩니다. EU는 EU 항구에 정박하는 선박에 대해 유사한 배출가스 규제법을 제정했습니다.
해양 추진 엔진은 주로 화석 연료로 작동하며 상당한 온실가스를 배출합니다. 엄격한 환경 규제는 시장 성장에 있어 주요 과제입니다.
COVID-19 영향 분석
전 세계 해양 추진 엔진 시장은 COVID-19의 영향으로 2020년에 감소세를 보였습니다. 전 세계 정부는 2020년 3월부터 COVID-19 팬데믹 확산을 억제하기 위해 다양한 기간 동안 엄격한 봉쇄 및 이동 제한 조치를 시행했습니다.
팬데믹으로 인해 2020년 전 세계 해운이 완전히 중단되었습니다. 항구가 폐쇄되고 국제 선원들에게 엄격한 격리 조치가 시행되었습니다. 크루즈 산업은 팬데믹으로 인해 완전히 붕괴되었고, 크루즈선은 전 세계 항구에 정박했습니다. COVID-19 팬데믹은 심각한 영향을 미쳤습니다.
전 세계 조선 산업은 수요가 거의 완전히 붕괴되었습니다. 많은 해운 회사는 팬데믹으로 인한 경제적 불확실성 때문에 대규모 자본 지출을 연기하거나 취소했습니다. 봉쇄 조치 및 기타 이동 제한으로 인해 건조 중이던 선박의 완공이 지연되었습니다. 국가 안보에 중요한 국방 관련 선박 건조만 제한 조치 하에서도 지속되었으며, 이는 팬데믹 기간 동안 시장 성장에 기여했습니다.
세그먼트 분석
글로벌 해양 추진 엔진 시장은 엔진 유형, 선박 유형, 적용 분야 및 지역별로 세분화됩니다.
디젤 엔진은 뛰어난 연료 효율성과 출력으로 인해 글로벌 해양 추진 엔진 시장에서 가장 높은 시장 점유율을 차지하고 있습니다.
글로벌 해양 추진 엔진 시장은 기존 엔진, 가스 터빈 엔진, 디젤 엔진 및 기타 엔진으로 세분화됩니다. 디젤 엔진은 언급된 엔진 유형 중 시장을 지배하고 있습니다. 전 세계 화물의 70% 이상을 운송하는 선박은 가장 연료 효율적인 화물 운송 수단입니다. 연료 효율이 가장 높은 디젤 엔진은 이러한 선박의 대부분에 동력을 공급합니다.
가장 널리 사용되는 해양 동력 기술은 디젤 엔진으로, 소형 보트 및 레저 보트를 포함한 다양한 선박에 사용됩니다. 디젤 추진 엔진은 소형 보트부터 대형 해양 선박에 이르기까지 크기와 용도가 다양한 많은 선박에서 찾아볼 수 있습니다. 최초의 추진 선박이 등장한 이후(1912년), 디젤 엔진은 상선 산업을 지배해 왔습니다. 2행정 사이클로의 전환, 소기 장치 추가, 터보차저 장착, 프로펠러와의 직접 연결, 기타 구조적 변경과 같은 시간 경과에 따른 개선 덕분에 디젤 엔진 추진 시스템은 경제성, 단순성, 신뢰성을 바탕으로 이 분야에서 지배적인 위치를 유지할 수 있었습니다.
경제적인 이유로, 이 엔진들은 해상용 디젤유 또는 유황 함량이 높은 중유를 연료로 사용합니다. 다양한 해양 분야에서 고객들은 디젤 엔진, 전기 모터, 배터리의 조합을 통해 이점을 얻고 있습니다. 효율성, 환경 친화성, 추진 시스템의 유연성이 가장 중요한 요소입니다.
4행정 사이클 디젤 엔진은 중대형 상선에 사용되며, 엔진 회전수는 250~850RPM입니다. 여객선이나 보트와 같이 선실 내부 공간이 제한적인 선박에서는 엔진이 선호되는 추진 방식입니다.

지리적 분석
유럽에서는 디젤 연소 엔진을 추진 수단으로 사용하는 화물선이 대다수를 차지하므로 이 지역의 제품 수요가 높습니다.
유럽 규정 2016/1628(NRMM)은 내륙 수로용 엔진, 특히 선박용 엔진에 대한 주요 표준으로 자리 잡았습니다. NRMM 규정의 목적은 내륙 수로에서 발생하는 대기 오염 물질을 줄이는 것입니다. NRMM 규정은 내륙 수로용 엔진의 일산화탄소, 탄화수소 및 질소산화물 배출량에 대한 제한값을 설정합니다. 또한, 미세먼지(PM) 배출량 기준 외에도 고형 입자상 물질(SPF) 배출량 기준도 설정했습니다. PM 배출량은 기존 CCR-II 엔진 기준보다 92.5%, NOx 배출량은 70~84% 낮습니다. 2019년부터 내륙 수로용 선박에 사용되는 모든 신형 엔진은 유럽 연합의 NRMM 5단계 배출 기준을 준수해야 했습니다.
바르질라는 EU의 5단계 기준을 충족하여 해양 부문 상업 인증을 획득했습니다. Stage V 법규는 비도로용 엔진 및 장비에 대한 제한을 강화했습니다. 이 인증은 배기가스 후처리 장치와 Wärtsilä 14 엔진 시스템을 포함한 전체 솔루션에 적용되며, Wärtsilä는 2021년에 인증을 획득했습니다.
Stage V 인증은 약 17,500척의 선박에 필요합니다. 승인된 Wärtsilä 14 엔진의 첫 번째 납품은 Shiptec AG가 스위스 회사인 General Navigation Company를 위해 건조한 2척의 새로운 여객선에 탑재될 예정입니다. 이 여객선은 제네바 호수를 가로질러 스위스와 프랑스 사이를 운항하며, 2022년 12월에 운항을 시작할 것으로 예상됩니다.
경쟁 환경
전 세계 해양 추진 엔진 시장은 지역 및 글로벌 주요 업체들이 경쟁하는 매우 치열한 시장입니다. Yanmar Holdings Co., Ltd, Cummins Inc, Wärtsilä, Caterpillar 및 DAIHATSU DIESEL MFG는 시장 성장에 기여하는 주요 업체입니다. CO., LTD., 현대전기에너지시스템즈, 스카니아, MAN 에너지 솔루션, 롤스로이스 파워 시스템즈 AG, 미쓰비시중공업그룹 등이 주요 기업입니다.

이들 주요 기업들은 신제품 출시, 인수, 협력 등 다양한 성장 전략을 통해 세계 해양 추진 엔진 시장의 성장에 기여하고 있습니다.

예를 들어, MAN 에너지 솔루션은 2021년 11월 29일 4행정 엔진 제품군을 개선하여 고객들이 선박 및 발전소 운영에 다양한 친환경 합성 연료를 사용할 수 있도록 했습니다.
얀마 홀딩스
개요: 얀마 홀딩스는 일본에 본사를 둔 산업 장비 제조 전문 기업입니다. 이 회사는 공조 시스템, 농업 및 건설 장비, 다양한 용도의 엔진을 제조합니다. 얀마 홀딩스는 농업 기계 및 설비, 건설 장비, 에너지 시스템, 산업용 엔진, 대형 엔진, 해양 및 부품의 8개 부문에서 제품과 서비스를 제공합니다. 또한, 이 회사는 상용 선박 엔진 제품군에 선박 추진 엔진을 포함하고 있습니다. 얀마 홀딩스(Yanmar Holdings Co., Ltd.)는 2021년 연결 순매출 75만 달러(9천만 엔)를 기록했습니다.
제품 포트폴리오: 추진 엔진(고속): 이 회사는 GM 시리즈, YM 시리즈, JH 시리즈, CHE 시리즈, HA 시리즈, LY 시리즈, CXB 시리즈, HY 시리즈, AY 시리즈 및 AYE 시리즈를 제공합니다. 출력 범위는 8.8kW에서 1,340kW까지입니다.
주요 개발 사항
• 2022년 1월 28일, 얀마 홀딩스 자회사인 얀마 엔진 매뉴팩처링 인디아(Yanmar Engine Manufacturing India Pvt. Ltd.)가 인도 타밀나두 오리진스 산업단지에 위치한 새로운 산업용 엔진 제조 공장에서 생산을 시작했습니다.

보고서 요약(영어 원문)

Market Overview
Marine Propulsion Engines Market size was worth US$ XX million in 2022 and is estimated to show significant growth by reaching up to US$ XX million by 2030, growing at a CAGR of 3.8% within the forecast period (2023-2030).
Marine propulsion engines are one of the most expensive and biggest engines worldwide. Today, ship propulsion involves more than getting the ship to move on the water. It also entails employing the most efficient propulsion to offer a higher level of safety for the marine ecosystem while saving money.
The demand for faster, cleaner and more fuel-efficient engines drives the marine propulsion engine market. Less carbon-emitting alternatives are evolving since they comply with rules & regulations. Today, the most popular propulsion system is the diesel type. It outperforms the steam turbine in terms of efficiency. Gas turbine engines are mostly employed in naval ships where speed is essential.
Gas turbines are frequently utilized in conjunction with other engine types. Because they power enormous ships that convey freight worldwide, the marine propulsion systems/engine sector is gaining traction.
Market Dynamics
Demand to reduce greenhouse gases from the marine sector is driving the market share for marine propulsion engines.
Demand to reduce greenhouse gases from the marine sector is driving the market share for a marine propulsion engine
With almost 90% of global goods handled by sea, worldwide shipping contributes to nearly 3% of global CO2 emissions and industry is under increasing pressure to become cleaner. Several major corporations and organizations, including oil majors and port authorities, have urged the global shipping industry to be entirely decarbonized by 2050, asking governments to act quickly. By substituting renewable fuels for fossil fuels, major reductions in GHG emissions from marine engines can be accomplished. However, the supply of biofuels for transportation is limited.
Keeping hazardous GHG emissions to a minimum is a top priority. Moreover, it is also significant not to sacrifice ship engine performance and propulsion efficiency. Thus, to secure the future viability of their fleets, operators and ship owners are working on propulsion engines to minimize the carbon footprint of their vessels. Minimizing GHG emissions from marine propulsion needs a coordinated effort from all stakeholders, not only through the traditional development of its engines but also by bringing appropriate new technologies to the market.
Van Oord is devoted to becoming carbon-neutral by 2050, in line with the Paris Agreement. In 2021, Van Oord collaborated with FUELSAVE to facilitate a sustainable and viable initiative to lower the carbon footprint of the new and existing fleet. In 2021, Van Oord installed UELSAVE FS MARINE, a patented solution to reduce the fuel consumption of marine diesel-powered engines and toxic emissions. The solution enables Van Oord to achieve substantial carbon dioxide, nitrogen oxide, particulate matter and black carbon reduction on existing ships.
Stringent environmental regulations create a huge challenging atmosphere for the growth of marine propulsion engines
Maritime transportation is regarded as the backbone of global trade. According to the International Chamber of Shipping (UK), roughly 90% of the sea's global commerce trade is carried out. The marine mode of transportation is the most cost-effective than rail or road. Despite the advent of affordable and extensive air travel, cargo ships remain the primary mode of safe and reliable transport for large quantities of goods.
Consequently, the global marine shipping industry is the largest contributor to greenhouse gas emissions within the transportation sector. The ever-increasing global trade and rising marine freight transport volumes only increase greenhouse gas emissions. Governments and international organizations set strict environmental regulations to curb greenhouse gas emissions.
The intensity of emissions generated by dangerous gases such as SOx, NOx and CO2 varies by ship class. For example, the International Maritime Organization (UK) issued MARPOL Annex VI rules in 2005 that set NOx emission limitations and required the use of low-sulfur fuels. These regulations apply to vessels and ships operating on US seas and within 200 nautical miles of the North American coast, often known as the North American Emission Control Area (ECA). The EU has enacted similar emission laws for ships berthing in EU ports.
Marine propulsion engines mainly run on fossil fuels and cause significant greenhouse gas emissions. The stringent environmental regulations are a key challenge to the market's growth.
COVID-19 Impact Analysis
The global marine propulsion engines market experienced a decline in 2020 owing to COVID-19's impact. Governments globally imposed strict lockdowns and movement restrictions of varying durations starting from March 2020 to curb the spread of the emerging COVID-19 pandemic.
Due to the pandemic, global shipping came to a complete halt in 2020. Ports were closed and strict quarantine measures were implemented for international seafarers. The cruise industry completely collapsed due to the pandemic and cruise ships were berthed in ports worldwide. The COVID-19 pandemic severely impacted
The global shipbuilding industry is due to a near-complete collapse in demand. Many shipping companies postponed or canceled large capital expenditures due to the economic uncertainty brought on due to the pandemic. The completion of under-construction ships was delayed due to lockdowns and other movement restrictions. Only defense shipbuilding continued under restrictions since it is a critical part of national security, adding to the market growth during the pandemic phase.
Segment Analysis
The global marine propulsion engines market is segmented by engine type, ship type, application and region.
Diesel engine holds the highest market share in the global marine propulsion engine market due to excellent fuel efficiency and power
The global marine propulsion engines market is segmented into conventional, gas turbine, diesel engines and others. The diesel engine dominates the market of the mentioned engine types. With ships moving more than 70% of global freight, shipping is the most fuel-efficient freight transportation. Diesel engines, which are the most fuel-efficient, power most of them.
The most prevalent marine power technology is diesel, utilized in vessels, including small and leisure boats. The diesel propulsion engine can be found on many ships, ranging in size and purpose from small boats to massive oceangoing vessels. Since the first propelled ships, diesel engines have commanded the commercial ship industry (1912). Improvements over time, such as the switch to a two-stroke cycle, the addition of scavenging, turbocharging, direct coupling with the propeller and other structural changes, have allowed diesel engine propulsion systems to maintain their dominance in the field, owing to their economy, simplicity and dependability.
For economic reasons, the engines run on marine diesel oil or heavy fuel oil with high sulfur content. In various marine applications, customers benefit from the combination of diesel engines, electric motors and batteries. Efficiency, environmental compatibility and propulsion system flexibility are the most critical.
The four-stroke cycle diesel engine is used in medium to large merchant boats, with engine speeds ranging from 250 to 850 RPM. On vehicles with limited headroom, such as passenger ferries and boats, the engine is the preferred mode of propulsion.
Geographical Analysis
The presence of a majority of the cargo ships utilizing diesel combustion engines for propulsion in Europe escalates the product demand in the region
The European Regulation 2016/1628 has been a major standard in the region for engines intended for non-road machinery, including marine engines. The purpose of NRMM regulation is to reduce air emissions from inland waterways. The NRMM Regulation sets out limit values for carbon monoxide emissions, hydrocarbons and nitrogen oxides for inland waterway engines. In addition to the weight of particulate matter (PM) requirements, it has also been chosen to set standards for the number of solid particulate particles. PM emissions are 92.5% and Nox emissions by 70-84% lower than current requirements for CCR-II engines. In 2019, all-new engines for inland waterway vessels needed to comply with the Stage V emission requirements of the European Union for NRMM.
The Wärtsilä has received marine sector commercial certification for complying with the EU's Stage V standards. The Stage V legislation tightened non-road engines and equipment restrictions. The certification applied to the total solution, including the exhaust after-treatment and Wärtsilä 14 engine system and was received by Wärtsilä in 2021.
Stage V certification is required for approximately 17,500 ships. The first deliveries of the approved Wärtsilä 14 engine will be for 2 new passenger ferries built for the Swiss company General Navigation Company by Shiptec AG. The ferries will work between Switzerland and France across Lake Geneva, with the vessel expected to commence operations in December 2022.
Competitive Landscape
The global marine propulsion engine market is highly competitive with local and global key players. Yanmar Holdings Co., Ltd, Cummins Inc, Wärtsilä, Caterpillar, and DAIHATSU DIESEL MFG are key players contributing to the market's growth. CO., LTD., Hyundai Electric & Energy Systems Co. Ltd., Scania, MAN Energy Solutions, Rolls-Royce Power Systems AG, Mitsubishi Heavy Industries Group, among others.
The major companies are adopting several growth strategies, such as product launches, acquisitions and collaborations, contributing to the global growth of the Marine Propulsion Engines market.
• For instance, On November 29, 2021, MAN Energy Solutions improved its four-stroke engine range, allowing customers to use a variety of synthetically generated, climate-neutral fuels in the operation of ships and power plants.
Yanmar Holdings Co., Ltd
Overview: Yanmar Holdings Co., Ltd is a Japan-based company specializing in manufacturing industrial equipment. The company manufactures climate control systems, agricultural and construction equipment and engines used in different applications. The company serves its products and services into eight (8) segments: agricultural machinery and facilities, construction equipment, energy systems, industrial engines, large engines, and marine and components. Further, the company offers marine propulsion engines under its commercial marine engines. Moreover, Yanmar Holdings Co., Ltd has a consolidated net revenue of US$ 0.75 million (90 million yen) in 2021
Product Portfolio: Propulsion Engines (High Speed): The company offers GM Series, YM Series, JH Series, CHE Series, HA Series, LY Series, CXB Series, HY Series, AY Series and AYE Series under the category. The power ranges from 8.8 kW to 1,340 kW.
Key Development
• On January 28, 2022, Yanmar Engine Manufacturing India Pvt. Ltd., a Yanmar Holdings Co., Ltd subsidiary, began production at its new industrial engine manufacturing factory at the Origins Industrial Estate in Tamil Nadu, India.

상세 목차

1. Methodology and Scope
1.1. Research Methodology
1.2. Research Objective and Scope of the Report
2. Market Definition and Overview
3. Executive Summary
3.1. Market Snippet by Engine Type
3.2. Market Snippet by Ship Type
3.3. Market Snippet by Application
3.4. Market Snippet by Region
4. Market Dynamics
4.1. Market Impacting Factors
4.1.1. Drivers
4.1.1.1. Demand to reduce greenhouse gases from the marine sector is driving the market share for marine propulsion engines
4.1.2. Restraints
4.1.2.1. Stringent environmental regulations create a huge challenging atmosphere for the growth of marine propulsion engines
4.1.3. Opportunity
4.1.4. Impact Analysis
5. Industry Analysis
5.1. Porter's Five Forces Analysis
5.2. Supply Chain Analysis
5.3. Pricing Analysis
5.4. Regulatory Analysis
6. COVID-19 Analysis
6.1. Analysis of COVID-19 on the Market
6.1.1. Before COVID-19 Market Scenario
6.1.2. Present COVID-19 Market Scenario
6.1.3. After COVID-19 or Future Scenario
6.2. Pricing Dynamics Amid COVID-19
6.3. Demand-Supply Spectrum
6.4. Government Initiatives Related to the Market During Pandemic
6.5. Manufacturers Strategic Initiatives
6.6. Conclusion
7. By Engine Type
7.1. Introduction
7.1.1. Market Size Analysis and Y-o-Y Growth Analysis (%), By Engine Type
7.1.2. Market Attractiveness Index, By Engine Type
7.2. Conventional Engine *
7.2.1. Introduction
7.2.2. Market Size Analysis and Y-o-Y Growth Analysis (%)
7.3. Gas Turbine
7.4. Diesel Engine
7.5. Others
8. By Ship Type
8.1. Introduction
8.1.1. Market Size Analysis and Y-o-Y Growth Analysis (%), By Ship Type
8.1.2. Market Attractiveness Index, By Ship Type
8.2. Passenger Ship *
8.2.1. Introduction
8.2.2. Market Size Analysis and Y-o-Y Growth Analysis (%)
8.3. Tanker
8.4. Offshore Vessel
8.5. Bulk Carrier
8.6. Cargo
9. By Application
9.1. Introduction
9.1.1. Market Size Analysis and Y-o-Y Growth Analysis (%), By Application
9.1.2. Market Attractiveness Index, By Application
9.2. Commercial *
9.2.1. Introduction
9.2.2. Market Size Analysis and Y-o-Y Growth Analysis (%)
9.3. Passenger
9.4. Defense
9.5. Others
10. By Region
10.1. Introduction
10.1.1. Market Size Analysis and Y-o-Y Growth Analysis (%), By Region
10.1.2. Market Attractiveness Index, By Region
10.2. North America
10.2.1. Introduction
10.2.2. Key Region-Specific Dynamics
10.2.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Engine Type
10.2.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By Ship Type
10.2.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Application
10.2.6. Market Size Analysis and Y-o-Y Growth Analysis (%), By Country
10.2.6.1. U.S.
10.2.6.2. Canada
10.2.6.3. Mexico
10.3. Europe
10.3.1. Introduction
10.3.2. Key Region-Specific Dynamics
10.3.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Engine Type
10.3.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By Ship Type
10.3.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Application
10.3.6. Market Size Analysis and Y-o-Y Growth Analysis (%), By Country
10.3.6.1. Germany
10.3.6.2. UK
10.3.6.3. France
10.3.6.4. Italy
10.3.6.5. Spain
10.3.6.6. Rest of Europe
10.4. South America
10.4.1. Introduction
10.4.2. Key Region-Specific Dynamics
10.4.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Engine Type
10.4.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By Ship Type
10.4.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Application
10.4.6. Market Size Analysis and Y-o-Y Growth Analysis (%), By Country
10.4.6.1. Brazil
10.4.6.2. Argentina
10.4.6.3. Rest of South America
10.5. Asia-Pacific
10.5.1. Introduction
10.5.2. Key Region-Specific Dynamics
10.5.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Engine Type
10.5.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By Ship Type
10.5.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Application
10.5.6. Market Size Analysis and Y-o-Y Growth Analysis (%), By Country
10.5.6.1. China
10.5.6.2. India
10.5.6.3. Japan
10.5.6.4. South Korea
10.5.6.5. Rest of Asia-Pacific
10.6. Middle East and Africa
10.6.1. Introduction
10.6.2. Key Region-Specific Dynamics
10.6.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Engine Type
10.6.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By Ship Type
10.6.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Application
11. Competitive Landscape
11.1. Competitive Scenario
11.2. Market Positioning/Share Analysis
11.3. Mergers and Acquisitions Analysis
12. Company Profiles
12.1. Yanmar Holdings Co., Ltd *
12.1.1. Company Overview
12.1.2. End-User Portfolio and Description
12.1.3. Key Highlights
12.1.4. Financial Overview
12.2. Cummins Inc
12.3. Wärtsilä
12.4. Caterpillar
12.5. DAIHATSU DIESEL MFG. CO., LTD.
12.6. Hyundai Electric & Energy Systems Co. Ltd
12.7. SCANIA
12.8. MAN Energy Solutions
12.9. Rolls-Royce Power Systems AG
12.10. Mitsubishi Heavy Industries Group(*LIST NOT EXHAUSTIVE)
13. Premium Insights
14. DataM Intelligence
14.1. Appendix
14.2. About Us and Services
14.3. Contact Us

언급된 주요 기업들

Yanmar Holdings Co., Ltd, Cummins Inc, Wärtsilä, Caterpillar, DAIHATSU DIESEL MFG. CO., LTD., Hyundai Electric & Energy Systems Co. Ltd, SCANIA, MAN Energy Solutions, Rolls-Royce Power Systems AG

표 목록 (Tables)

List of Tables

Table 1 Global Marine Propulsion Engines Market Value, By Engine Type, 2021, 2025 & 2029 (US$ Million)

Table 2 Global Marine Propulsion Engines Market Value, By Ship Type, 2021, 2025 & 2029 (US$ Million)

Table 3 Global Marine Propulsion Engines Market Value, By Application, 2021, 2025 & 2029 (US$ Million)

Table 4 Global Marine Propulsion Engines Market Value, By Region, 2021, 2025 & 2029 (US$ Million)

Table 5 Global Marine Propulsion Engines Market Value, By Engine Type, 2021, 2025 & 2029 (US$ Million)

Table 6 Global Marine Propulsion Engines Market Value, By Engine Type, 2020-2029 (US$ Million)

Table 7 Global Marine Propulsion Engines Market Value, By Ship Type, 2021, 2025 & 2029 (US$ Million)

Table 8 Global Marine Propulsion Engines Market Value, By Ship Type, 2020-2029 (US$ Million)

Table 9 Global Marine Propulsion Engines Market Value, By Application, 2021, 2025 & 2029 (US$ Million)

Table 10 Global Marine Propulsion Engines Market Value, By Application, 2020-2029 (US$ Million)

Table 11 Global Marine Propulsion Engines Market Value, By Region, 2021, 2025 & 2029 (US$ Million)

Table 12 Global Marine Propulsion Engines Market Value, By Region, 2020-2029 (US$ Million)

Table 13 North America Marine Propulsion Engines Market Value, By Engine Type, 2020-2029 (US$ Million)

Table 14 North America Marine Propulsion Engines Market Value, By Ship Type, 2020-2029 (US$ Million)

Table 15 North America Marine Propulsion Engines Market Value, By Application, 2020-2029 (US$ Million)

Table 16 North America Marine Propulsion Engines Market Value, By Country, 2020-2029 (US$ Million)

Table 17 South America Marine Propulsion Engines Market Value, By Engine Type, 2020-2029 (US$ Million)

Table 18 South America Marine Propulsion Engines Market Value, By Ship Type, 2020-2029 (US$ Million)

Table 19 South America Marine Propulsion Engines Market Value, By Application, 2020-2029 (US$ Million)

Table 20 South America Marine Propulsion Engines Market Value, By Country, 2020-2029 (US$ Million)

Table 21 Europe Marine Propulsion Engines Market Value, By Engine Type, 2020-2029 (US$ Million)

Table 22 Europe Marine Propulsion Engines Market Value, By Ship Type, 2020-2029 (US$ Million)

Table 23 Europe Marine Propulsion Engines Market Value, By Application, 2020-2029 (US$ Million)

Table 24 Europe Marine Propulsion Engines Market Value, By Country, 2020-2029 (US$ Million)

Table 25 Asia-Pacific Marine Propulsion Engines Market Value, By Engine Type, 2020-2029 (US$ Million)

Table 26 Asia-Pacific Marine Propulsion Engines Market Value, By Ship Type, 2020-2029 (US$ Million)

Table 27 Asia-Pacific Marine Propulsion Engines Market Value, By Application, 2020-2029 (US$ Million)

Table 28 Asia-Pacific Marine Propulsion Engines Market Value, By Country, 2020-2029 (US$ Million)

Table 29 Middle East & Africa Marine Propulsion Engines Market Value, By Engine Type, 2020-2029 (US$ Million)

Table 30 Middle East & Africa Marine Propulsion Engines Market Value, By Ship Type, 2020-2029 (US$ Million)

Table 31 Middle East & Africa Marine Propulsion Engines Market Value, By Application, 2020-2029 (US$ Million)

Table 32 Yanmar Holdings Co., Ltd: Overview

Table 33 Yanmar Holdings Co., Ltd: Product Portfolio

Table 34 Yanmar Holdings Co., Ltd: Key Developments

Table 35 Cummins Inc: Overview

Table 36 Cummins Inc: Product Portfolio

Table 37 Cummins Inc: Key Developments

Table 38 Wärtsilä: Overview

Table 39 Wärtsilä: Product Portfolio

Table 40 Wärtsilä: Key Developments

Table 41 Caterpillar: Overview

Table 42 Caterpillar: Product Portfolio

Table 43 Caterpillar: Key Developments

Table 44 Hyundai Electric & Energy Systems Co. Ltd: Overview

Table 45 Hyundai Electric & Energy Systems Co. Ltd: Product Portfolio

Table 46 Hyundai Electric & Energy Systems Co. Ltd: Key Developments

Table 47 SCANIA: Overview

Table 48 SCANIA: Product Portfolio

Table 49 SCANIA: Key Developments

Table 50 MAN Energy Solutions: Overview

Table 51 MAN Energy Solutions: Product Portfolio

Table 52 MAN Energy Solutions: Key Developments

Table 53 Rolls-Royce Power Systems AG: Overview

Table 54 Rolls-Royce Power Systems AG: Product Portfolio

Table 55 Rolls-Royce Power Systems AG: Key Developments

Table 56 Mitsubishi Heavy Industries Group: Overview

Table 57 Mitsubishi Heavy Industries Group: Product Portfolio

Table 58 Mitsubishi Heavy Industries Group: Key Developments

Table 59 DAIHATSU DIESEL MFG. CO., LTD: Overview

Table 60 DAIHATSU DIESEL MFG. CO., LTD: Product Portfolio

Table 61 DAIHATSU DIESEL MFG. CO., LTD: Key Developments

그림 목록 (Figures)

List of Figures

Figure 01 Global Marine Propulsion Engines Market Share, By Engine Type, 2021 & 2029 (%)

Figure 02 Global Marine Propulsion Engines Market Share, By Ship Type, 2021 & 2029 (%)

Figure 03 Global Marine Propulsion Engines Market Share, By Application, 2021 & 2029 (%)

Figure 04 Global Marine Propulsion Engines Market Share, By Region, 2021 & 2029 (%)

Figure 05 Global Marine Propulsion Engines Market Value, 2020-2029 (US$ Million)

Figure 06 Global Marine Propulsion Engines Market Y-o-Y Growth, By Engine Type, 2020-2029 (%)

Figure 07 Conventional Engine: Global Marine Propulsion Engines Market Value, 2020-2029 (US$ Million)

Figure 08 Gas Turbine: Global Marine Propulsion Engines Market Value, 2020-2029 (US$ Million)

Figure 09 Diesel Engine: Global Marine Propulsion Engines Market Value, 2020-2029 (US$ Million)

Figure 10 Others: Global Marine Propulsion Engines Market Value, 2020-2029 (US$ Million)

Figure 11 Global Marine Propulsion Engines Market Y-o-Y Growth, By Ship Type, 2020-2029 (%)

Figure 12 Passenger Ship: Global Marine Propulsion Engines Market Value, 2020-2029 (US$ Million)

Figure 13 Tanker: Global Marine Propulsion Engines Market Value, 2020-2029 (US$ Million)

Figure 14 Bulk Carrier: Global Marine Propulsion Engines Market Value, 2020-2029 (US$ Million)

Figure 15 Cargo: Global Marine Propulsion Engines Market Value, 2020-2029 (US$ Million)

Figure 16 Global Marine Propulsion Engines Market Y-o-Y Growth, By Application, 2020-2029 (%)

Figure 17 Commercial: Global Marine Propulsion Engines Market Value, 2020-2029 (US$ Million)

Figure 18 Passenger: Global Marine Propulsion Engines Market Value, 2020-2029 (US$ Million)

Figure 19 Defense: Global Marine Propulsion Engines Market Value, 2020-2029 (US$ Million)

Figure 20 Others: Global Marine Propulsion Engines Market Value, 2020-2029 (US$ Million)

Figure 21 Global Marine Propulsion Engines Market Y-o-Y Growth, By Region, 2020-2029 (%)

Figure 22 North America Marine Propulsion Engines Market Value, 2020-2029 (US$ Million)

Figure 23 North America Marine Propulsion Engines Market Share, By Engine Type, 2021 & 2029 (%)

Figure 24 North America Marine Propulsion Engines Market Share, By Ship Type, 2021 & 2029 (%)

Figure 25 North America Marine Propulsion Engines Market Share, By Application, 2021 & 2029 (%)

Figure 26 North America Marine Propulsion Engines Market Share, By Country, 2021 & 2029 (%)

Figure 27 South America Marine Propulsion Engines Market Value, 2020-2029 (US$ Million)

Figure 28 South America Marine Propulsion Engines Market Share, By Engine Type, 2021 & 2029 (%)

Figure 29 South America Marine Propulsion Engines Market Share, By Ship Type, 2021 & 2029 (%)

Figure 30 South America Marine Propulsion Engines Market Share, By Application, 2021 & 2029 (%)

Figure 31 South America Marine Propulsion Engines Market Share, By Country, 2021 & 2029 (%)

Figure 32 Europe Marine Propulsion Engines Market Value, 2020-2029 (US$ Million)

Figure 33 Europe Marine Propulsion Engines Market Share, By Engine Type, 2021 & 2029 (%)

Figure 34 Europe Marine Propulsion Engines Market Share, By Ship Type, 2021 & 2029 (%)

Figure 35 Europe Marine Propulsion Engines Market Share, By Application, 2021 & 2029 (%)

Figure 36 Europe Marine Propulsion Engines Market Share, By Country, 2021 & 2029 (%)

Figure 37 Asia-Pacific Marine Propulsion Engines Market Value, 2020-2029 (US$ Million)

Figure 38 Asia-Pacific Marine Propulsion Engines Market Share, By Engine Type, 2021 & 2029 (%)

Figure 39 Asia-Pacific Marine Propulsion Engines Market Share, By Ship Type, 2021 & 2029 (%)

Figure 40 Asia-Pacific Marine Propulsion Engines Market Share, By Application, 2021 & 2029 (%)

Figure 41 Asia-Pacific Marine Propulsion Engines Market Share, By Country, 2021 & 2029 (%)

Figure 42 Middle East & Africa Marine Propulsion Engines Market Value, 2020-2029 (US$ Million)

Figure 43 Middle East & Africa Marine Propulsion Engines Market Share, By Engine Type, 2021 & 2029 (%)

Figure 44 Middle East & Africa Marine Propulsion Engines Market Share, By Ship Type, 2021 & 2029 (%)

Figure 45 Middle East & Africa Marine Propulsion Engines Market Share, By Application, 2021 & 2029 (%)

Figure 46 Yanmar Holdings Co., Ltd: Financials

Figure 47 Cummins Inc: Financials

Figure 48 Wärtsilä: Financials

Figure 49 Caterpillar: Financials

Figure 50 Hyundai Electric & Energy Systems Co. Ltd: Financials

Figure 51 SCANIA: Financials

Figure 52 MAN Energy Solutions: Financials

Figure 53 Rolls-Royce Power Systems AG: Financials

Figure 54 Mitsubishi Heavy Industries Group: Financials

Figure 55 DAIHATSU DIESEL MFG. CO., LTD: Financials