Eternity Insights has published a new study on Global Space Propulsion System Market focusing on key segments as by Type (Solid Fuel Chemical Propulsion, Liquid Fuel Chemical Propulsion, Cold-Gas Chemical Propulsion, Other), by Application (Space Simulation, Rocket Launch, Others), and by region. This deep dive re-search report highlights the market and competitive intelligence across the key segments of the mar-ket. The report also considers the impact of COVID-19 on the global Space Propulsion System Market.
The report considers 2018-2020 as historic period, 2021 as base year, and 2022-2028 as forecast period. The report includes quantitative analysis of the market supported by the market drivers, challenges, and trends to accurately map the market scenario and competition. Moreover, key insights related to market having direct impact on the market will also be covered.
Space Propulsion System Market report is based on robust research methodology designed using blend of research ap-proaches developed using secondary/desk research and validated through the primary research and expert insights. Eternity Insights also uses paid data bases such as FACIVA, Hoovers, and other bench-marking and forecasting tools to provide accurate statistical analysis of supply and demand trends.
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Geographically, the market is categorized in to five regions as North America, Europe, Asia Pacific, Latin America, and the Middle East and Africa. North America region dominates the global Space Propulsion System market in terms of demand generation. The Space Propulsion System market in Asia Pacific region is expected to grow at significantly high growth rate. The regional market is further sub-segmented and analyzed at granular level across key countries. The report will include market size and forecast for Space Propulsion System market for below listed coun-tries across each region.
North America (U.S. and Canada), Europe (Germany, France, Italy, UK, Spain, and Rest of Europe), Asia Pacific (China, India, Japan, Australia, and Rest of Asia Pacific region); Latin America (Brazil, Mexico, and rest of the Latin America); Middle East and Africa (GCC, South Africa, and Rest of the Middle East and Africa).
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The global Space Propulsion System market analysis report covers detailed analysis of competitive scenario across globe. The report includes profiles of leading players covering below details
Report Attributes | Details |
The market size value in 2021 | USD XX.XX Million |
CAGR (2021 - 2028) | XX.XX % |
The Revenue forecast in 2028 | USD XX.XX Million |
Base year for estimation | 2021 |
Historical data | 2018-2019 |
Forecast period | 2022-2028 |
Quantitative units |
|
Report coverage | Revenue forecast, company ranking, competitive landscape, growth factors, and trends |
Segments covered | By Type Outlook, Application Outlook, Regional Outlook |
By Type Outlook | Solid Fuel Chemical Propulsion, Liquid Fuel Chemical Propulsion, Cold-Gas Chemical Propulsion, Other |
By Application Outlook | Space Simulation, Rocket Launch, Others |
Regional scope | North America, Europe, Asia Pacific, Latin America, Middle East & Africa |
Country scope | U.S., Canada, U.K., Germany, France, BENELUX, China, India, Japan, South Korea, Brazil, Saudi Arabia, UAE, Turkey |
Key companies profiled | IHI, Aerojet Rocketdyne, Northrop Grumman, Lockheed Martin, Avibras, BAE Systems, NPO Splav, Hanwha |
Customization Available | Yes, the report can be tailored to meet your specific requirements. |
1 Methodology and Scope
1.1 Market segmentation & scope
1.2 Information Procurement
1.2.1 Purchased Database
1.2.2 Eternity’s Internal Database
1.2.3 Secondary sources & third-party perspectives
1.2.4 Primary Research
1.3 Information analysis
1.4 Market formulation & data visualization
1.5 Data validation & publishing
2 Executive Summary
3 Space Propulsion System Market Variables, Trends & Scope
3.1 Market Dynamics
3.1.1 Market Driver Analysis
3.1.2 Market Restraints
3.1.3 Market Challenge Analysis
3.1.4 Market Opportunities
3.1.5 Micro & Macro Indicator
3.2 Impact of COVID-19 Pandemic on Global Space Propulsion System Market
3.2.1 Overview of Changing Landscape
3.2.2 Pre-covid & Post-Covid Market Analysis
3.3 Market Attractiveness Analysis
3.4 Regulatory Scenario
3.5 Industry Trend Analysis- Historic and Future Trend Assessment
3.6 Merger & Acquisition
3.7 New System Launch/Approvals
3.8 Market Analysis Tools
3.8.1 Porter’s Five Forces
3.8.2 PEST Analysis
3.8.3 Value Chain Analysis
3.9 Key Company Ranking Analysis, 2020
4 Global Space Propulsion System Market Analysis and Forecast, By Type
4.1 Overview & Definition
4.2 Key Trends
4.3 Global Space Propulsion System Market Value (US$ Mn) Forecast, by Type (2019 – 2028)
4.2.1 Solid Fuel Chemical Propulsion
4.2.2 Liquid Fuel Chemical Propulsion
4.2.3 Cold-Gas Chemical Propulsion
4.2.4 Other
4.4 Type Comparison Matrix
4.5 Global Space Propulsion System Market Attractiveness, By Type
5 Global Space Propulsion System Market Analysis and Forecast, By Application
5.1 Overview & Definition
5.2 Key Trends
5.3 Global Space Propulsion System Market Value (US$ Mn) Forecast, by Application (2019 – 2028)
5.3.1 Space Simulation
5.3.2 Rocket Launch
5.3.3 Others
5.4 Application Comparison Matrix
5.5 Global Space Propulsion System Market Attractiveness, by Application
6 Global Space Propulsion System Market Analysis and Forecast, By Region
6.1 Overview & Definition
6.2 Key Trends
6.3 Global Space Propulsion System Market Value (US$ Mn) Forecast, by Region (2019 – 2028)
6.4 North America
6.5 Europe
6.6 Asia Pacific
6.7 Latin America
6.8 Middle East & Africa
7 Global Space Propulsion System Market Attractiveness, by Region
8 North America Space Propulsion System Market Analysis and Forecast
8.1 Key Findings
8.2 North America Space Propulsion System Market Analysis (US$ Mn) and Forecast, By Type (2019-2028)
8.2.1 Solid Fuel Chemical Propulsion
8.2.2 Liquid Fuel Chemical Propulsion
8.2.3 Cold-Gas Chemical Propulsion
8.2.4 Other
8.3 North America Space Propulsion System Market Analysis (US$ Mn) and Forecast, By Application (2019-2028)
8.3.1 Space Simulation
8.3.2 Rocket Launch
8.3.3 Others
8.4 North America Space Propulsion System Market Analysis (US$ Mn) and Forecast, By Country (2019-2028)
8.4.1 U.S.
8.4.2 Canada
8.4.3 Rest of North America
8.5 North America Space Propulsion System Market Attractiveness Analysis
8.5.1 By Type
8.5.2 By Application
8.5.3 By Country
9 Europe Space Propulsion System Market Analysis and Forecast
9.1 Key Findings
9.2 Europe Space Propulsion System Market Analysis (US$ Mn) and Forecast, By Type (2019-2028)
9.2.1 Solid Fuel Chemical Propulsion
9.2.2 Liquid Fuel Chemical Propulsion
9.2.3 Cold-Gas Chemical Propulsion
9.2.4 Other
9.3 Europe Space Propulsion System Market Analysis (US$ Mn) and Forecast, By Application (2019-2028)
9.3.1 Space Simulation
9.3.2 Rocket Launch
9.3.3 Others
9.4 Europe Space Propulsion System Market Analysis (US$ Mn) and Forecast, By Country (2019-2028)
9.4.1 U.K.
9.4.2 Germany
9.4.3 France
9.4.4 Italy
9.4.5 Rest of Europe
9.5 Europe Space Propulsion System Market Attractiveness Analysis
9.5.1 By Type
9.5.2 By Application
9.5.3 By Country
10 Asia Pacific Space Propulsion System Market Analysis and Forecast
10.1 Key Findings
10.2 Asia Pacific Space Propulsion System Market Analysis (US$ Mn) and Forecast, By Type (2019-2028)
10.2.1 Solid Fuel Chemical Propulsion
10.2.2 Liquid Fuel Chemical Propulsion
10.2.3 Cold-Gas Chemical Propulsion
10.2.4 Other
10.3 Asia Pacific Space Propulsion System Market Analysis (US$ Mn) and Forecast, By Application (2019-2028)
10.3.1 Space Simulation
10.3.2 Rocket Launch
10.3.3 Others
10.4 Asia Pacific Space Propulsion System Market Analysis (US$ Mn) and Forecast, By Country (2019-2028)
10.4.1 China
10.4.2 India
10.4.3 Japan
10.4.4 South Korea
10.4.5 Rest of APAC
10.5 Asia Pacific Space Propulsion System Market Attractiveness Analysis
10.5.1 By Type
10.5.2 By Application
10.5.3 By Country
11 Latin America Space Propulsion System Market Analysis and Forecast
11.1 Key Findings
11.2 Latin America Space Propulsion System Market Analysis (US$ Mn) and Forecast, By Type (2019-2028)
11.2.1 Solid Fuel Chemical Propulsion
11.2.2 Liquid Fuel Chemical Propulsion
11.2.3 Cold-Gas Chemical Propulsion
11.2.4 Other
11.3 Latin America Space Propulsion System Market Analysis (US$ Mn) and Forecast, By Application (2019-2028)
11.3.1 Space Simulation
11.3.2 Rocket Launch
11.3.3 Others
11.4 Latin America Space Propulsion System Market Analysis (US$ Mn) and Forecast, By Country (2019-2028)
11.4.1 Brazil
11.4.2 Rest of Latin America China
11.5 Latin America Space Propulsion System Market Attractiveness Analysis
11.5.1 By Type
11.5.2 By Application
11.5.3 By Country
12 Middle East & Africa (MEA) Space Propulsion System Market Analysis and Forecast
12.1 Key Findings
12.2 Middle East & Africa (MEA) Space Propulsion System Market Analysis (US$ Mn) and Forecast, By Product Type (2019-2028)
12.2.1 Solid Fuel Chemical Propulsion
12.2.2 Liquid Fuel Chemical Propulsion
12.2.3 Cold-Gas Chemical Propulsion
12.2.4 Other
12.3 Middle East & Africa (MEA) Space Propulsion System Market Analysis (US$ Mn) and Forecast, By Application (2019-2028)
12.3.1 Space Simulation
12.3.2 Rocket Launch
12.3.3 Others
12.4 Middle East & Africa (MEA) Space Propulsion System Market Analysis (US$ Mn) and Forecast, By Country (2019-2028)
12.4.1 GCC Countries
12.4.2 South Africa
12.4.3 Rest of MEA
12.5 Middle East & Africa (MEA) Space Propulsion System Market Attractiveness Analysis
12.5.1 By Type
12.5.2 By Application
12.5.3 By Country
13 Competitive Landscape
13.1 Market Players – Competition Matrix
13.2 Market Share Analysis by Key Players, 2020 (%)
13.3 Company Profiles
13.3.1 IHI
13.3.1.1 Company Overview
13.3.1.2 Company Snapshot
13.3.1.3 Financial Overview
13.3.1.4 Product Portfolio
13.3.1.5 Key Developments/Strategies
13.3.2 Aerojet Rocketdyne
13.3.3 Northrop Grumman
13.3.4 Lockheed Martin
13.3.5 Avibras
13.3.6 BAE Systems
13.3.7 NPO Splav
13.3.8 Hanwha
14 Key Takeaways
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