Data Center Cooling Systems Market: By Cooling Strategy; By Data Center; By Industry; By Services; By Geography - Forecast 2013-2018

  • ID: 4531981
  • Report
  • 170 pages
  • IndustryARC
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Data Centers generate immense heat which if not dissipated effectively, may result to severe unrecoverable breakdown of the system. To maintain the temperature of these data farms, exclusive cooling systems are employed which continuously extract heat from the server towers. The selection of data center cooling system is based on the size of the data centers and importance of data stored in these centers. Operating parameters such as Power Usage Efficiency (PUE) and Cooling Capacity Factor (CFF) are considered to monitor the efficiency and cooling capacity of these centers respectively.

The Data Center Cooling System Market has been segmented into three verticals namely: By Liquid Cooling Types, By End User Types and By Ancillary Market. By Liquid Cooling Type the market is further categorized as In-Row Cooling, Overhead Cooling, In-Rack Cooling and Rear Door Cooling. End-User type includes cooling system employed in various types and size of data center. By Ancillary Market it is further analyzed by installation/deployment services, maintenance services and refurbishment services.

The report also incorporates the analysis of Data Center Cooling System market by geographic regions including North America, Europe, Asia Pacific and Rest of the World. The major countries present in this region are further analyzed for market estimation of data center cooling system.

The top five players of this market includes:
Emerson Electric Co. (U.S),
SCHNEIDER ELECTRIC USA, INC. (U.S.),
Rittal GmbH & Co. KG (Germany),
Siemens AG (Germany)
Airedale International Air Conditioning Ltd. (U.K).

The most preferred data center cooling systems used were based on Computer Room Air Conditioning Unit (CRAC) units. But due to its inefficiencies in air distribution it was replaced by systems based on hot aisle-cold aisle technology, which was further replaces by containment based cooling systems. Since an enormous amount of energy is required for cooling new technologies such as adiabatic cooling and free cooling are being developed and gradually being implemented to effectively cater to the escalating cooling demands with reduced energy input.

The research methodology opted for this report is initiated with segmentation of the market. This was followed by collection of number of various data centers present in various region, further the type and size of these data centers were collated. This offered a glimpse of various types of cooling systems employed for those data centers. Further the average selling price of these systems were collected and by bottom-up approach the global market size was analyzed and forecast was done for the required period. Moreover, the market size of the services were similarly estimated and collated with the preceding data. These analyzed and forecast data were further validated by KOLs from various manufacturers, distributors, suppliers, service providers and associations by primary research processes.

The various associations considered for data collection and validation includes:
Association for Computer Operations Management (AFCOM),
Association of Energy Engineers (AEE),
International District Energy Association (IDEA),
Open-IX Association (OIX) and so on.
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1. Global Data Center Cooling Systems Market Overview
2. Executive Summary
3. Global Data Center Cooling Systems Market Landscape
3.1. Market Share Analysis
3.2. Comparative Analysis
3.2.1. End user profiling
3.2.2. Top 5 Financials Analysis
4. Global Data Center Cooling Systems – Market Forces
4.1. Market Drivers
4.2. Market Constraints
4.3. Market Challenges
4.4. Attractiveness of the Data Center Cooling Systems Industry
4.4.1. Power of Suppliers
4.4.2. Power of Customers
4.4.3. Threat of New entrants
4.4.4. Threat of Substitution
4.4.5. Degree of Competition
5. Global Data Center Cooling Systems Market – Strategic Analysis
5.1. Value Chain Analysis
5.2. Pricing Analysis
5.3. Opportunities Analysis
5.4. Product/Market Life Cycle Analysis
5.5. Suppliers and Distributors
6. Data Center Cooling Systems Market by Liquid Cooling Types
6.1. In-Row Cooling
6.2. Overhead Cooling
6.3. In-Rack Cooling
6.4. Rear Door Cooling
7. Data Center Cooling Systems Market by End Use Types
7.1. Data Center Type
7.1.1. Tier 1
7.1.2. Tier 2
7.1.3. Tier 3
7.1.4. Tier 4
7.2. Data Center Size
7.2.1. Colocation
7.2.2. Small and Medium
7.2.3. Hyperscale
8. Data Center Cooling Systems Ancillary Market
8.1. Installation/Deployment Services Market
8.2. Maintenance Services Market
8.3. Refurbishment Market
9. Data Center Cooling Systems Market - Geographic Analysis
9.1. Introduction
9.2. Americas
9.2.1. North America
9.2.2. Brazil
9.2.3. Argentina
9.2.4. Mexico
9.3. Europe
9.3.1. UK
9.3.2. France
9.3.3. Germany
9.4. APAC
9.4.1. China
9.4.2. South Korea
9.4.3. Japan
9.4.4. Australia
9.5. ROW
10. Market Entropy
10.1. New Product Launches
10.2. M&As, Collaborations, JVs and Partnerships
11. Investment Opportunities – Analysis by Target companies/customers, Capital Investments, ROI, Payback Period and Source of Funds.
12. Company Profiles (Overview, Financials, SWOT Analysis, Developments, Product Portfolio)
12.1. Emerson Network Power
12.2. APC
12.3. Rittal Corporation
12.4. Airedale International
12.5. Degree Controls Inc
12.6. Schneider Electric
12.7. Equinix
12.8. Cloud Dynamics Inc
12.9. KyotoCooling BV
12.10. Siemon
12.11. 3M Corp
12.12. Siemens
12.13. Coolcentric
12.14. Latisys
12.15. AST Modular
12.16. Wakefield-Vette Inc
12.17. Mitsubishi Electric
12.18. Raritan Inc
12.19. General Air Products
12.20. CapTherm Systems Inc
*More than 40 Companies are profiled in this Research Report, Complete List available on Request*
"*Financials would be provided on a best efforts basis for private companies"
13. Appendix
13.1. Abbreviations
13.2. Sources
13.3. Research Methodology
13.4. Bibliography
13.5. Compilation of Expert Insights
13.6. Disclaimer
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