Global Digital Shipyard Market
市场规模(十亿美元)
CAGR : %
Forecast Period |
2024 –2031 |
Market Size (Base Year) |
USD 1.17 Billion |
Market Size (Forecast Year) |
USD 4.74 Billion |
CAGR |
|
Major Markets Players |
全球数字造船厂市场,按造船厂类型(商业造船厂和军用造船厂)、技术(增强和虚拟现实 (AR 和 VR)、数字孪生和仿真、增材制造、人工智能和大数据分析、机器人过程自动化、工业物联网 (IIoT)、网络安全、区块链、云计算和主数据管理)、产能(小型造船厂、中型造船厂和大型造船厂)、流程(研发、设计和工程、制造和规划、维护和支持、培训和模拟)、数字化水平(全数字造船厂、半数字造船厂和部分数字造船厂)、最终用途(实施、升级和服务)划分 - 行业趋势和预测到 2031 年。
数字造船厂市场分析和规模
在数字造船厂市场中利用 3D 建模涉及创建船舶及其部件的详细数字表示。此应用程序允许设计师和工程师在实际建造开始之前以高精度可视化和改进船舶设计。它通过提供清晰而全面的项目视图,促进利益相关者之间的更好协作。此外,3D 建模有助于在设计阶段早期识别和解决潜在问题,从而减少错误和返工。
2023 年全球数字船厂市场规模价值 11.7 亿美元,预计到 2031 年将达到 47.4 亿美元,2024 年至 2031 年预测期内的复合年增长率为 19.10%。除了市场价值、增长率、细分市场、地理覆盖范围、市场参与者和市场情景等市场洞察外,Data Bridge 市场研究团队策划的市场报告还包括深入的专家分析、进出口分析、定价分析、生产消费分析和 pestle 分析。
报告范围和市场细分
报告指标 |
细节 |
预测期 |
2024-2031 |
基准年 |
2023 |
历史岁月 |
2022 (可定制为 2016-2021) |
定量单位 |
收入(单位:十亿美元)、销量(单位:台)、定价(美元) |
涵盖的领域 |
船厂类型(商用船厂和军用船厂)、技术(增强和虚拟现实(AR 和 VR)、数字孪生和仿真、增材制造、人工智能和大数据分析、机器人过程自动化、工业物联网 (IIoT)、网络安全、区块链、云计算和主数据管理)、产能(小型船厂、中型船厂和大型船厂)、流程(研发、设计和工程、制造和规划、维护和支持、培训和仿真)、数字化水平(全数字化船厂、半数字化船厂和部分数字化船厂)、最终用途(实施、升级和服务) |
Countries Covered |
U.S., Canada, Mexico, Germany, France, U.K., Netherlands, Switzerland, Belgium, Russia, Italy, Spain, Turkey, Rest of Europe, China, Japan, India, South Korea, Singapore, Malaysia, Australia, Thailand, Indonesia, Philippines, Rest of Asia-Pacific, Saudi Arabia, U.A.E., South Africa, Egypt, Israel, Rest of Middle East and Africa, Brazil, Argentina, and Rest of South America |
Market Players Covered |
Siemens (Germany), Dassault Systèmes (France), AVEVA Group PLC (U.K.), Accenture (Ireland), SAP (Germany), BAE Systems (U.K.), Hexagon (Sweden), Altair Engineering, Inc. (U.S.), Wärtsilä (Finland), Inmarsat Global Limited (U.K.), IFS (Sweden), Pemamek (Finland), Aras (U.S.), Kreyon Systems (India), SSi People (U.S.), KUKA AG (Germany), iBASE-t (U.S.), PROSTEP AG (Germany), KRANENDONK (Netherlands), Damen Shipyards (Netherlands) |
Market Opportunities |
|
Market Definition
A digital shipyard leverages advanced digital technologies to enhance the design, construction, and maintenance of ships. Integrating tools such as 3D modeling, IoT, AI, and data analytics optimizes workflows, improves precision, reduces costs, and increases overall efficiency. This modern approach facilitates better collaboration and real-time decision-making throughout the shipbuilding process.
Digital Shipyard Market Dynamics
Drivers
- Increasing Demand for Efficient Shipbuilding
Global demand for commercial and naval vessels rises due to which shipbuilders are under pressure to optimize their processes for speed and quality. Digital technologies offer solutions to meet these demands by streamlining design, production, and maintenance workflows. Implementing digital tools such as 3D modeling, IoT-enabled sensors, and data analytics enables shipyards to achieve higher levels of efficiency, reducing lead times and costs while maintaining or improving vessel quality. This trend towards efficiency-driven shipbuilding is fueling the adoption of digital solutions across the industry, driving growth in the Digital Shipyard Market.
- Growing Technology Advancements in Digital Shipyard
Advanced technologies enable real-time monitoring, predictive maintenance, and data-driven decision-making, which enhance efficiency and reduce costs. 3D modeling and digital twin technologies allow for detailed virtual prototyping and simulations, minimizing errors and optimizing design processes.
In addition, advancements in automation and robotics streamline production, increase precision, and improve overall productivity in shipyards. These technological improvements are crucial for meeting the growing demands of the maritime industry and maintaining competitive advantage.
Opportunities
- Enhanced Collaboration among Stakeholders
Through digital platforms and tools, such as cloud-based project management systems and real-time communication channels, collaboration becomes seamless and efficient. This allows ship designers, engineers, suppliers, and manufacturers to share information, collaborate on designs, and coordinate tasks more effectively, regardless of geographical location. Enhanced collaboration reduces communication barriers, minimizes delays, and fosters innovation by facilitating the exchange of ideas and expertise throughout the shipbuilding process. Ultimately, it leads to faster project completion, improved quality, and increased customer satisfaction, driving the adoption of digital solutions in the shipyard industry.
- Increased Regulatory Compliance
Compliance with standards set by organizations such as the international maritime organization (IMO) necessitates precise design, construction, and maintenance practices, which digital technologies can facilitate. Digital Shipyard solutions enable shipbuilders to ensure adherence to complex regulatory requirements, such as safety standards, emissions regulations, and sustainability mandates. These technologies provide tools for real-time monitoring, data collection, and reporting, helping shipyards demonstrate compliance efficiently. Growing regulations increases the demand for digital solutions that streamline compliance processes and minimize the risk of regulatory penalties continues to grow which drives the adoption of digital shipyard technologies.
For instance, in December 2022, the Indian government's plan to support its shipbuilding sector through subsidies, tax reductions, and infrastructure status aligns with the drivers of the digital shipyard market. These measures aim to enhance efficiency and competitiveness in ship construction, ensuring compliance with evolving regulations while addressing challenges such as elevated freight rates.
Restraints/Challenges
- High Initial Investment Cost
Shipyards must invest in advanced software, hardware, infrastructure upgrades, and employee training to transition to digital processes effectively. These upfront costs can be prohibitive, particularly for smaller shipyards or those operating on tight budgets. Additionally, the return on investment (ROI) from digitalization initiatives may not be immediately realized, further deterring some shipyards from making the necessary investments. This financial barrier may impede the widespread adoption of digital shipyard solutions, limiting the market's growth potential.
- Lack of a Skilled Workforce
Transitioning to digital shipyard technologies requires personnel proficient in operating and maintaining complex digital systems. However, there is often a shortage of workers with the necessary technical skills and knowledge, particularly in areas such as data analytics, IoT integration, and software development. This shortage can impede the effective implementation and utilization of digital solutions within shipyard operations, leading to delays, inefficiencies, and reduced competitiveness.
This market report provides details of new recent developments, trade regulations, import-export analysis, production analysis, value chain optimization, market share, impact of domestic and localized market players, analyses opportunities in terms of emerging revenue pockets, changes in market regulations, strategic market growth analysis, market size, category market growths, application niches and dominance, product approvals, product launches, geographic expansions, technological innovations in the market. To gain more info on the market contact Data Bridge Market Research for an Analyst Brief, our team will help you take an informed market decision to achieve market growth.
Recent Developments
- In March 2020, Dana launched a series of eight Spicer Torque-Hub drives, expanding their drive and motion technologies for crawler cranes and large tracked vehicles to a broader market. These new drives provide customizable packaging and gear ratios to align with manufacturers' preferences for both tracked and wheeled applications. Torque ratings span from 80,000 N-m to 450,000 N-m, catering to diverse industry needs
Digital Shipyard Market Scope
The market is segmented on the basis of shipyard type, technology, capacity, process, digitization level and end use. The growth amongst these segments will help you analyze meagre growth segments in the industries, and provide the users with valuable market overview and market insights to help them in making strategic decisions for identification of core market applications.
Shipyard Type
- Commercial Shipyards
- Military Shipyards
Technology
- Augmented and Virtual Reality (AR and VR)
- Digital Twin and Simulation
- Additive Manufacturing
- Artificial Intelligence and Big Data Analytics
- Robotic Process Automation
- Industrial Internet of Things (IIoT)
- Cybersecurity
- Blockchain
- Cloud Computing and Master Data Management
Capacity
- Small Shipyards
- Medium Shipyards
- Large Shipyards
Process
- Research and Development
- Design and Engineering
- Manufacturing and Planning
- Maintenance and Support
- Training
- Simulation
Digitalization Level
- Fully Digital Shipyard
- Semi Digital Shipyard
- Partially Digital Shipyard
End Use
- Implementation
- Upgrades
- Services
Digital Shipyard Market Analysis/Insights
The market is analyzed and market size, volume information is provided by country, shipyard type, technology, capacity, process, digitization level, and end use as referenced above.
市场报告涉及的国家包括美国、加拿大、墨西哥、巴西、阿根廷、德国、意大利、英国、法国、西班牙、荷兰、比利时、瑞士、土耳其、俄罗斯、日本、中国、印度、韩国、澳大利亚、新加坡、马来西亚、泰国、印度尼西亚、菲律宾、沙特阿拉伯、阿联酋、南非、埃及和以色列。
由于中国、印度和日本等主要国家的航运业取得了重大现代化和进步,预计亚太地区将占据市场主导地位。这些国家正在大力投资智能技术和自动化,以提高造船效率并降低运营成本。这些国家强劲的经济增长和战略举措进一步巩固了它们在市场上的主导地位。
由于对造船厂升级和开发的投资,欧洲预计将实现大幅增长。基础设施的改善预计将提高该地区的造船能力,推动经济增长并加强欧洲在全球海运业中的地位。现代化努力旨在提高该行业的效率、竞争力和创新能力。
报告的国家部分还提供了影响单个市场因素和国内市场监管变化,这些因素和变化会影响市场的当前和未来趋势。下游和上游价值链分析、技术趋势和波特五力分析、案例研究等数据点是用于预测单个国家市场情景的一些指标。此外,在提供国家数据的预测分析时,还考虑了全球品牌的存在和可用性以及它们因来自本地和国内品牌的大量或稀缺竞争而面临的挑战、国内关税和贸易路线的影响。
竞争格局和数字船厂市场份额分析
市场竞争格局按竞争对手提供详细信息。详细信息包括公司概况、公司财务状况、产生的收入、市场潜力、研发投资、新市场计划、全球影响力、生产基地和设施、生产能力、公司优势和劣势、产品发布、产品宽度和广度、应用主导地位。以上提供的数据点仅与公司对市场的关注有关。
市场上的一些主要参与者包括:
- 西门子(德国)
- 达索系统(法国)
- AVEVA Group PLC(英国)
- 埃森哲(爱尔兰)
- SAP(德国)
- BAE 系统公司(英国)
- 六角形(瑞典)
- Altair Engineering, Inc.(美国)
- 瓦锡兰(芬兰)
- Inmarsat Global Limited(英国)
- IFS(瑞典)
- 佩玛梅克(芬兰)
- 阿拉斯(美国)
- Kreyon Systems(印度)
- SSi People(美国)
- 库卡股份公司(德国)
- iBASE-t(美国)
- PROSTEP AG(德国)
- 克拉嫩东克(荷兰)
- 达门造船厂(荷兰)
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研究方法
Data collection and base year analysis are done using data collection modules with large sample sizes. The stage includes obtaining market information or related data through various sources and strategies. It includes examining and planning all the data acquired from the past in advance. It likewise envelops the examination of information inconsistencies seen across different information sources. The market data is analysed and estimated using market statistical and coherent models. Also, market share analysis and key trend analysis are the major success factors in the market report. To know more, please request an analyst call or drop down your inquiry.
The key research methodology used by DBMR research team is data triangulation which involves data mining, analysis of the impact of data variables on the market and primary (industry expert) validation. Data models include Vendor Positioning Grid, Market Time Line Analysis, Market Overview and Guide, Company Positioning Grid, Patent Analysis, Pricing Analysis, Company Market Share Analysis, Standards of Measurement, Global versus Regional and Vendor Share Analysis. To know more about the research methodology, drop in an inquiry to speak to our industry experts.
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