Nuclear Reactor Coolant Pump by Application (Generating Electricity & Propelling Aircraft Carriers), By Reactor Type (Pressurized, Boiling, Gas-Cooled, & Fast Neutron Reactor), By Component Type (Flywheel, Auxiliary Systems, & Impeller), By Region (North America, Europe, APAC and Rest of the World)
Nuclear Reactor Coolant Pump Market revenue shall reach a value of USD Billion in 2026, growing with a CAGR of X.X% during the forecast period of 2018 to 2026. In terms of volume sales, the market is anticipated to reach XX Units.
The nuclear reactor coolant pump is used in several industries to lower down the heat effect caused by nuclear reactors and other related machinery. It helps in transferring the heat produced due to repeated vibrations of machinery to the electrical generator and the environment. Nowadays, a chain of two coolant pumps is used comprehensively in industries as the primary coolant loop takes on short-term radioactivity from the reactor. Also, many countries are setting up nuclear power plants at a significant rate. Further, more than 30 countries are also focusing on launching new nuclear power plants. All these factors are encouraging the nuclear reactor coolant pump market considerably for the last few years.
The raw materials used in manufacturing the nuclear reactor coolant pumps must be of high quality to effective results. Further, this eliminates any possibility of any defect or leakage in coolant pumps. However, the decommissioning of nuclear power plants in emerging countries such as India and Japan may affect the nuclear reactor coolant pump market negatively in the coming years. For instance, due to the tsunami in Japan in March 2011, four reactors in Japan have been shut down. However, the major driving factors for the nuclear reactor coolant pump market growth will overcome all the restraints of the market.
REGIONAL ANALYSIS
By geography, the nuclear reactor coolant pump market has been bifurcated as Europe, North America, Asia-Pacific and Rest of the World. Out of which, Europe has expanded its market size significantly clean in recent years and is expected to grow at a CAGR of 9.4% in the coming years. The notable growth in this region is because of the presence of a large number of nuclear power plants. According to a recent nuclear reactor coolant pump market report, this region deployed more invested more than $720 million in the nuclear reactor coolant pumps market. The overall revenue of this industry is anticipated to reach $1.4 by the end of 2026.
SEGMENT ANALYSIS
The segmentation of the nuclear reactor coolant pump market has been done based on reactor type, application, component type, and region. Based on the nuclear reactor type, pressurized water reactors registered the largest share of the overall market in terms of revenue. They accounted for about 54% of the total market share and are anticipated to cross 65% during the forecast period. Major application areas of nuclear reactor coolant pumps are in generating propelling aircraft carriers, electricity, and propelling nuclear submarines. Out of which, electricity generation garnered the highest market revenue that is about 75% of the overall market revenue. Further, component-wise the industry has been bifurcated flywheel, auxiliary systems, & impeller.
NUCLEAR REACTOR COOLANT PUMP COMPANIES:
Areva, SPX Corporation,Rosatom, Westinghouse Electric Company, GCN, Hitachi GE Nuclear Energy, KSB Pumps, Weir Group PLC, CNNC, Mitsubishi Heavy Industries, Ebara Corporation, Flowserve Corporation, Curtiss-Wright Corporation, Andritz AG, Dongfang Electric Corporation, Shanghai Electric Group Company Limited and Sulzer AG are the top leading industry players investing significantly in the nuclear reactor coolant pump market. New business strategies adopted by these nuclear reactor coolant pump market players reflect the tremendous increase in market sales. Other industries in this domain that are growing at a high CAGR include Global Commercial Drones Market and Global Loan Origination & Servicing Software Market.
COVERAGE HIGHLIGHTS
• Revenue Estimation and Forecast (2018 – 2026)
• Production Estimation and Forecast (2018 – 2026)
• Sales/Consumption Volume Estimation and Forecast (2018 – 2026)
• Breakdown of Revenue by Segments (2018 – 2026)
• Breakdown of Production by Segments (2018 – 2026)
• Breakdown of Sales Volume by Segments (2018 – 2026)
• Gross Margin and Profitability Analysis of Companies
• Business Trend and Expansion Analysis
• Import and Export Analysis
• Regional Analysis and Data Breakdown
SEGMENTAL ANALYSIS
By Reactor Type Outlook ($Revenue and Unit Sales, 2018-2026)
• Pressurized
• Boiling
• Gas-Cooled
• Fast Neutron Reactor
By Application Outlook ($Revenue and Unit Sales, 2018-2026)
• Generating Electricity
• Propelling Aircraft Carriers
By Component Outlook ($Revenue and Unit Sales, 2018-2026)
• Flywheel
• Auxiliary Systems
• Impeller
By Regional Outlook ($Revenue and Unit Sales, 2018-2026)
• North America
• Canada
• U.S
• Mexico
• Europe
• Germany
• France
• U.K
• Rest of Europe
• Asia Pacific
• China
• India
• Japan
• Rest of Asia Pacific
• Rest of the World
• Middle East
• Africa
• Latin America
NUCLEAR REACTOR COOLANT PUMP COMPANIES:
• Areva
• SPX Corporation
• Rosatom
• Westinghouse Electric Company
• GCN
• Hitachi GE Nuclear Energy
• KSB Pumps
• Weir Group PLC
• CNNC
• Mitsubishi Heavy Industries
• Ebara Corporation
• Flowserve Corporation
• Curtiss-Wright Corporation
• Andritz AG
• Dongfang Electric Corporation
• Shanghai Electric Group Company Limited
• Sulzer AG
CHAPTER 1: INTRODUCTION
1.1. Research Methodology
1.1.1. Desk Research
1.1.2. Data Synthesis
1.1.3. Data Validation & Market Feedback
1.1.4. Data Sources
CHAPTER 2: EXECUTIVE SUMMARY
2.1. Global Market Outlook
2.2. Core Insights - Reactor Type
2.3. Core Insights – Application
2.4. Core Insights – Component
2.5. Core Insights – Geography
CHAPTER 3: MARKET OVERVIEW
3.1. Market Definition and Scope
3.2. Key Forces Shaping the Industry
3.2.1. Bargaining Power of Suppliers
3.2.2. Bargaining Power of Buyers
3.2.3. Threat of Substitutes
3.2.4. Threat of New Entrants
3.3. Market Dynamics
3.3.1. Drivers
3.3.1.1. Supply-side Drivers
3.3.1.2. Demand-side Drivers
3.3.2. Restraints
3.3.3. Opportunities
3.4. Industry Landscape - PESTEL Analysis
3.4.1. Political Landscape
3.4.2. Environmental Landscape
3.4.3. Social Landscape
3.4.4. Technology Landscape
3.4.5. Economic Landscape
CHAPTER 4: MARKET BACKGROUND
4.1. Industry Value Chain Analysis
4.1.1. Upstream Participants
4.1.2. Downstream participants
4.2. Pricing Analysis and Forecast, 2018-2026
4.2.1. By Type
4.2.2. By Region
CHAPTER 5: GLOBAL NUCLEAR REACTOR COOLANT PUMP MARKET, BY REACTOR TYPE
5.1. Overview
5.1.1. Market Volume and Forecast, 2018-2026
5.1.2. Market Revenue (US$ Million) and Forecast, 2018-2026
5.2. Pressurized
5.2.1. Key Market Trends, Growth Factors and Opportunities
5.2.2. Market Volume and Forecast, By Region
5.2.3. Market Revenue (US$ Million) and Forecast, By Region
5.3. Boiling
5.3.1. Key Market Trends, Growth Factors and Opportunities
5.3.2. Market Volume and Forecast, By Region
5.3.3. Market Revenue (US$ Million) and Forecast, By Region
5.4. Gas-Cooled
5.4.1. Key Market Trends, Growth Factors and Opportunities
5.4.2. Market Volume and Forecast, By Region
5.4.3. Market Revenue (US$ Million) and Forecast, By Region
5.5. Fast Neutron Reactor
5.5.1. Key Market Trends, Growth Factors and Opportunities
5.5.2. Market Volume and Forecast, By Region
5.5.3. Market Revenue (US$ Million) and Forecast, By Region
CHAPTER 6: GLOBAL NUCLEAR REACTOR COOLANT PUMP MARKET, BY APPLICATION
6.1. Overview
6.1.1. Market Volume and Forecast, 2018-2026
6.1.2. Market Revenue (US$ Million) and Forecast, 2018-2026
6.2. Generating Electricity
6.2.1. Key Market Trends, Growth Factors and Opportunities
6.2.2. Market Volume and Forecast, By Region
6.2.3. Market Revenue (US$ Million) and Forecast, By Region
6.3. Propelling Aircraft Carriers
6.3.1. Key Market Trends, Growth Factors and Opportunities
6.3.2. Market Volume and Forecast, By Region
6.3.3. Market Revenue (US$ Million) and Forecast, By Region
CHAPTER 7: GLOBAL NUCLEAR REACTOR COOLANT PUMP MARKET, BY COMPONENT
7.1. Overview
7.1.1. Market Volume and Forecast, 2018-2026
7.1.2. Market Revenue (US$ Million) and Forecast, 2018-2026
7.2. Flywheel
7.2.1. Key Market Trends, Growth Factors and Opportunities
7.2.2. Market Volume and Forecast, By Region
7.2.3. Market Revenue (US$ Million) and Forecast, By Region
7.3. Auxiliary Systems
7.3.1. Key Market Trends, Growth Factors and Opportunities
7.3.2. Market Volume and Forecast, By Region
7.3.3. Market Revenue (US$ Million) and Forecast, By Region
7.4. Impeller
7.4.1. Key Market Trends, Growth Factors and Opportunities
7.4.2. Market Volume and Forecast, By Region
7.4.3. Market Revenue (US$ Million) and Forecast, By Region
CHAPTER 8: GLOBAL NUCLEAR REACTOR COOLANT PUMP MARKET, BY GEOGRAPHY
8.1. Overview
8.2. North America
8.2.1. Key Market Trends, Growth Factors and Opportunities
8.2.2. Market Volume and Forecast, By Reactor Type
8.2.3. Market Volume and Forecast, By Application
8.2.4. Market Volume and Forecast, By Component
8.2.5. Market Revenue and Forecast, By Reactor Type
8.2.6. Market Revenue and Forecast, By Application
8.2.7. Market Revenue and Forecast, By Component
8.2.8. Market Revenue and Forecast, By Country
8.2.9. U.S.
8.2.9.1. Market Volume and Forecast
8.2.9.2. Market Revenue and Forecast
8.2.10. Canada
8.2.10.1. Market Volume and Forecast
8.2.10.2. Market Revenue and Forecast
8.2.11. Mexico
8.2.11.1. Market Volume and Forecast
8.2.11.2. Market Revenue and Forecast
8.3. Europe
8.3.1. Market Volume and Forecast, By Reactor Type
8.3.2. Market Volume and Forecast, By Application
8.3.3. Market Volume and Forecast, By Component
8.3.4. Market Revenue and Forecast, By Reactor Type
8.3.5. Market Revenue and Forecast, By Application
8.3.6. Market Revenue and Forecast, By Component
8.3.7. Market Revenue and Forecast, By Country
8.3.8. Germany
8.3.8.1. Market Volume and Forecast, By Reactor Type
8.3.8.2. Market Revenue and Forecast, By Application
8.3.9. UK
8.3.9.1. Market Volume and Forecast, By Reactor Type
8.3.9.2. Market Revenue and Forecast, By Application
8.3.10. France
8.3.10.1. Market Volume and Forecast, By Reactor Type
8.3.10.2. Market Revenue and Forecast, By Application
8.3.11. Italy
8.3.11.1. Market Volume and Forecast, By Reactor Type
8.3.11.2. Market Revenue and Forecast, By Application
8.3.12. Rest of Europe
8.3.12.1. Market Volume and Forecast, By Reactor Type
8.3.12.2. Market Revenue and Forecast, By Application
8.4. Asia-Pacific
8.4.1. Market Volume and Forecast, By Reactor Type
8.4.2. Market Volume and Forecast, By Application
8.4.3. Market Volume and Forecast, By Component
8.4.4. Market Revenue and Forecast, By Reactor Type
8.4.5. Market Revenue and Forecast, By Application
8.4.6. Market Revenue and Forecast, By Component
8.4.7. Market Revenue and Forecast, By Country
8.4.8. China
8.4.8.1. Market Volume and Forecast, By Reactor Type
8.4.8.2. Market Revenue and Forecast, By Application
8.4.9. India
8.4.9.1. Market Volume and Forecast, By Reactor Type
8.4.9.2. Market Revenue and Forecast, By Application
8.4.10. Japan
8.4.10.1. Market Volume and Forecast, By Reactor Type
8.4.10.2. Market Revenue and Forecast, By Application
8.4.11. South Korea
8.4.11.1. Market Volume and Forecast, By Reactor Type
8.4.11.2. Market Revenue and Forecast, By Application
8.4.12. Rest of Asia-Pacific
8.4.12.1. Market Volume and Forecast, By Reactor Type
8.4.12.2. Market Revenue and Forecast, By Application
8.5. REST OF THE WORLD
8.5.1. Market Volume and Forecast, By Reactor Type
8.5.2. Market Volume and Forecast, By Application
8.5.3. Market Volume and Forecast, By Component
8.5.4. Market Revenue and Forecast, By Reactor Type
8.5.5. Market Revenue and Forecast, By Application
8.5.6. Market Revenue and Forecast, By Component
8.5.7. Market Revenue and Forecast, By Country
8.5.8. Latin America
8.5.8.1. Market Volume and Forecast, By Reactor Type
8.5.8.2. Market Revenue and Forecast, By Application
8.5.9. Middle East
8.5.9.1. Market Volume and Forecast, By Reactor Type
8.5.9.2. Market Revenue and Forecast, By Application
8.5.10. Africa
8.5.10.1. Market Volume and Forecast, By Reactor Type
8.5.10.2. Market Revenue and Forecast, By Application
CHAPTER 9: COMPETITIVE LANDSCAPE
9.1. Nuclear Reactor Coolant Pump Market Share Analysis, 2018
CHAPTER 10: COMPANY PROFILES
10.1. Areva
10.1.1. Company Overview
10.1.2. Financial Performance
10.1.3. SWOT Analysis
10.2. SPX Corporation
10.2.1. Company Overview
10.2.2. Financial Performance
10.2.3. SWOT Analysis
10.3. Rosatom
10.3.1. Company Overview
10.3.2. Financial Performance
10.3.3. SWOT Analysis
10.4. Westinghouse Electric Company
10.4.1. Company Overview
10.4.2. Financial Performance
10.4.3. SWOT Analysis
10.5. GCN
10.5.1. Company Overview
10.5.2. Financial Performance
10.5.3. SWOT Analysis
10.6. Hitachi GE Nuclear Energy
10.6.1. Company Overview
10.6.2. Financial Performance
10.6.3. SWOT Analysis
10.7. KSB Pumps
10.7.1. Company Overview
10.7.2. Financial Performance
10.7.3. SWOT Analysis
10.8. Weir Group PLC
10.8.1. Company Overview
10.8.2. Financial Performance
10.8.3. SWOT Analysis
10.9. CNNC
10.9.1. Company Overview
10.9.2. Financial Performance
10.9.3. SWOT Analysis
10.10. Mitsubishi Heavy Industries
10.10.1. Company Overview
10.10.2. Financial Performance
10.10.3. SWOT Analysis
10.11. Ebara Corporation
10.11.1. Company Overview
10.11.2. Financial Performance
10.11.3. SWOT Analysis
10.12. Flowserve Corporation
10.12.1. Company Overview
10.12.2. Financial Performance
10.12.3. SWOT Analysis
10.13. Curtiss-Wright Corporation
10.13.1. Company Overview
10.13.2. Financial Performance
10.13.3. SWOT Analysis
10.14. Andritz AG
10.14.1. Company Overview
10.14.2. Financial Performance
10.14.3. SWOT Analysis
10.15. Dongfang Electric Corporation
10.15.1. Company Overview
10.15.2. Financial Performance
10.15.3. SWOT Analysis
10.16. Shanghai Electric Group Company Limited
10.16.1. Company Overview
10.16.2. Financial Performance
10.16.3. SWOT Analysis
10.17. Sulzer AG
10.17.1. Company Overview
10.17.2. Financial Performance
10.17.3. SWOT Analysis
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