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The Northern Virginia Data Center Market is Segmented by DC Size (Small, Medium, Large, Massive, Mega), Tier Type (Tier 1&2, Tier 3, Tier 4), Absorption (Utilized (Colocation Type (Retail, Wholescale, Hyperscale), End User (Cloud & IT, Telecom, Media & Entertainment, Government, BFSI, Manufacturing, E-Commerce)), and Non-Utilized). The Market Sizes and Forecasts are Provided in Terms of Volume (MW) for all the Above Segments.
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The India Data Center Cooling Market report segments the industry into By Cooling Technology (Air-based Cooling, Liquid-based Cooling), By Type (Hyperscaler (Owned and Leased), Enterprise (On-premise), Colocation), By End-user Industry (IT and Telecom, Retail and Consumer Goods, Healthcare, Media and Entertainment, Federal and Institutional agencies, Other End-user Industries).
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The Japan Data Center Market report segments the industry into Hotspot (Osaka, Tokyo, Rest of Japan), Data Center Size (Large, Massive, Medium, Mega, Small), Tier Type (Tier 1 and 2, Tier 3, Tier 4), and Absorption (Non-Utilized, Utilized). Get five years of historical data plus five-year market forecasts.
India Data Center Cooling Market Size 2025-2029
The data center cooling market size in India is forecast to increase by USD 1.69 billion at a CAGR of 22.5% between 2024 and 2029.
The data center cooling market is experiencing significant growth due to several key trends. The increasing number of data centers, particularly in regions like India, is driving market demand. Additionally, the rise in the adoption of high-performance computing systems, which generate more heat, is increasing the need for efficient cooling solutions. Furthermore, environmental concerns are pushing data center operators to adopt more sustainable cooling technologies, such as liquid cooling and free cooling, to reduce carbon emissions. These trends are expected to continue shaping the market dynamics in the coming years.
High-density server racks and power-hungry IT equipment necessitate advanced cooling systems, as artificial intelligence, big data, and the Internet of Things (IoT) drive digital transformation efforts. However, challenges such as high capital and operational costs, complex installation processes, and the need for regular maintenance remain significant barriers to market growth. Despite these challenges, the market is expected to witness steady growth due to the increasing importance of data centers in the digital economy.
What will be the India Data Center Cooling Market Size During the Forecast Period?
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The market is experiencing significant growth due to the increasing demand for IT and telecommunication services, media and entertainment content, and the proliferation of smart devices and social media. With the internet population continuing to expand and cloud computing and digital transformation efforts gaining momentum, the need for reliable and efficient cooling solutions is more crucial than ever. Two primary cooling technologies dominate the market: air-based cooling and liquid-based cooling. Air-based cooling systems use traditional air conditioning units to regulate temperature, while liquid-based cooling, which includes economizers, cooling towers, and chillers, utilizes liquid to absorb heat and transfer it outside the data center.
Evaporative cooling is another emerging technology that utilizes water to cool data centers through the evaporation process. This method is particularly effective in hot and dry climates, making it an attractive option for colocation DC providers and third-party managed services. The rise of high-density server racks and power-hungry IT equipment has put additional pressure on cooling systems to perform efficiently. Cooling technologies must adapt to meet the demands of the market, which includes managing the heat generated by artificial intelligence and other power-intensive applications. The increasing number of internet-connected devices and the growth of social media require data centers to be constantly available and cooled effectively. As such, cooling technology continues to be a critical component of the IT infrastructure landscape.
How is this market segmented and which is the largest segment?
The market research report provides comprehensive data (region-wise segment analysis), with forecasts and estimates in 'USD billion' for the period 2025-2029, as well as historical data from 2019-2023 for the following segments.
Technology
Liquid-based cooling
Air-based cooling
Product
Air conditioning
Economizers
Cooling towers
Chillers
Others
Type
Room cooling
Rack and row cooling
Geography
India
By Technology Insights
The liquid-based cooling segment is estimated to witness significant growth during the forecast period.
Liquid-based cooling, a sub-segment of cooling technologies, is the most widely adopted method in data centers due to its higher efficiency compared to air-based cooling. Water-cooled racks and servers, which utilize this technique, are common in the data center space. In this method, water is circulated through the hot sides of the cabinet to reduce temperature without coming into contact with the actual components. The water is then stored in basins and circulated through pipes to cooling tower pumps, ultimately lowering the temperature. Advancements in liquid-based cooling technology have led to the emergence of immersion-based cooling and direct-to-chip cooling. This cooling solution is increasingly used in sectors such as smart cities, last-mile connectivity, digital services, disaster recovery services, ecommerce, and cryptocurrency, as they require high-performance and energy-efficient cooling solutions. Water-based cooling is also employed in power lines and servers to maintain optimal operating temperatures.
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Market Dynamics
Our market researchers analyzed the data with 2024 as the base
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The Germany Data Center Market report segments the industry into Hotspot (Frankfurt, Rest of Germany), Data Center Size (Large, Massive, Medium, Mega, Small), Tier Type (Tier 1 and 2, Tier 3, Tier 4), and Absorption (Non-Utilized, Utilized). Get five years of historical data alongside five-year market forecasts.
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The Spain Data Center Market report segments the industry into Hotspot (Madrid, Rest of Spain), Data Center Size (Large, Massive, Medium, Mega, Small), Tier Type (Tier 1 And 2, Tier 3, Tier 4), and Absorption (Non-Utilized, Utilized). Get five years of historical data along with five-year forecasts.
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The Data Center Cooling Solutions market is experiencing robust growth, projected to reach $17.24 billion in 2025 and expand at a Compound Annual Growth Rate (CAGR) of 31.71% from 2025 to 2033. This surge is driven by the escalating demand for data centers globally, fueled by the exponential increase in data generated by businesses and individuals. The rising adoption of cloud computing, big data analytics, and artificial intelligence (AI) significantly contributes to this demand, requiring advanced cooling solutions to maintain optimal operational temperatures and prevent costly downtime. Technological advancements in energy-efficient cooling techniques, such as liquid-based cooling and economizers, are further propelling market expansion. Specific application segments like air conditioning, chillers, and cooling towers witness significant traction, while the air-based cooling technique currently holds a larger market share than liquid-based cooling, although the latter is experiencing rapid growth due to its superior cooling capacity. However, high initial investment costs associated with advanced cooling technologies and concerns regarding environmental impact act as restraining factors. Geographically, APAC, particularly China and India, are projected to dominate the market due to rapid infrastructure development and increasing digitalization. North America and Europe also represent significant market shares, with the US and Germany leading their respective regions. Competition is fierce, with established players like Daikin Industries, Schneider Electric, and Vertiv Holdings vying for market share alongside emerging companies innovating in areas such as immersion cooling. Strategic partnerships, technological advancements, and expansion into emerging markets will be crucial for success in this dynamic and rapidly evolving landscape. The market segmentation reveals a clear preference for certain applications and techniques. Air-based cooling systems currently dominate the market due to their lower initial costs and established infrastructure. However, the liquid-based cooling segment is poised for significant growth, driven by its higher efficiency and ability to handle increasing heat loads generated by high-density computing environments. Regional analysis shows a strong concentration of market growth in the Asia-Pacific region, primarily due to the rapid expansion of data centers in countries like China and India. This growth is further fueled by the increasing adoption of cloud computing services and the rising demand for digital services across various sectors. While North America and Europe continue to hold significant market shares, the Asia-Pacific region’s robust growth trajectory indicates a significant shift in the global distribution of the Data Center Cooling Solutions market in the coming years. Competitive analysis reveals a landscape of established players and innovative newcomers, each employing different strategies to maintain a competitive edge. Key industry risks include fluctuating energy prices, supply chain disruptions, and increasing regulatory pressures related to environmental sustainability.
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Explore the factors leading to a downturn in AI-linked tech stocks, with highlight on Nvidia's upcoming earnings and strategic industry shifts.
The geospatial dataset maps organic carbon (OC) storage (kg OC m-2) and OC stocks (tonnes OC) of surficial soils across 438 Great British saltmarshes. The OC density for the surficial soils (top 10 cm) is mapped across 451.65 km2 of saltmarshes, identified from current saltmarsh maps of Great Britain’s three constituent countries; Scotland, England and Wales The spatial maps are built upon surficial (top 10 cm) soil bulk density and carbon data produced by the NERC C-Side project and Marine Scotland data combined with existing saltmarsh vegetation maps. The work was carried out under the NERC programme - Carbon Storage in Intertidal Environment (C-SIDE), NERC grant reference NE/R010846/1.
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The Australia Data Center Market report segments the industry into Hotspot (Melbourne, Perth, Sydney, Rest of Australia), Data Center Size (Large, Massive, Medium, Mega, Small), Tier Type (Tier 1 and 2, Tier 3, Tier 4), and Absorption (Non-Utilized, Utilized). The report provides historical data and five-year market forecasts.
These experiments were conducted to explore the differences among different bee stock in terms of colony-level behavior, as reflected in colony size, hive weight changes, and within-hive temperature and CO2 concentrations. The bee stocks included Pol-line and Russian bees (both stocks are resistant to Varroa mites and developed by USDA) and an unselected Italian stock obtained from a commercial breeder. Two experiments were conducted.First experiment, 2021-22. In May 2021 eighteen bee colonies in painted, 10-frame, wooden Langstroth boxes (43.7 l capacity) were divided into three groups of six and each group was re-queened with one of three bee stocks: Russian, Pol-line or unselected Italian. Colonies were observed for eggs to ensure that the queens successfully established. The hives were placed on stainless steel electronic scales (Tekfa model B-2418 and Avery Weigh-Tronix model BSAO1824-200) (max. capacity: 100 kg, precision: ±20g; operating temperature: -30ºC to 70ºC) and linked to 16-bit dataloggers (Hobo UX120-006M External Channel datalogger, Onset Computer Corporation, Bourne, MA) with weight recorded every 5 minutes. All hives faced south. Temperature sensors (iButton Thermochron, resolution ±0.06°C, accuracy ±0.5°C , accessed using 1-Wire Drivers x64, version 4.05) enclosed in plastic cassettes (Thermo Fisher Scientific, Waltham, MA) were stapled to the center of the top bar on the middle frame in the bottom box and set to record every 5 min. CO2 probes (model GMP251, Vaisala Inc., Helsinki, Finland), calibrated for 0-20% concentrations, were placed on top of the center frames in the top box of each hive and linked to dataloggers set to record every 5 min.Hives were assessed on 15 June using a published protocol (see Meikle WG, Weiss M (2017) Monitoring colony-level effects of sublethal pesticide exposure on honey bees. Journal of Visualized Experiments (129) e56355. doi:10.3791/56355). Briefly, each hive was opened after the application of smoke, and each frame was lifted out sequentially, gently shaken to dislodge adult bees, photographed using a 16.3 megapixel digital camera (Canon Rebel SL1, Canon USA, Inc., Melville, NY), weighed on a portable scale (model EC15, OHaus Corp., Parsippany, NJ), and replaced in the hive. Frame photographs were analyzed later in the laboratory (see below). During the first assessment all hive components (i.e. lid, inner cover, box, bottom board, frames, entrance reducer, internal feeder) were also shaken free of bees and weighed to yield an initial mass of all hive components. Hives were assessed every 4 weeks thereafter until 3 Nov., after which hives were left undisturbed until the final evaluation 9 Feb. 2022.Second experiment, 2022-23. The experiment described above was repeated in 2022, except that the number of colonies per treatment group was increased to 10. The time period between hive evaluations was increased to 5-6 weeks. At each hive assessment, a sample of 100-150 adult bees was taken from within the brood nest of the colony.for genetic analysis at another laboratory.Adult bee masses are in kg adult beesBrood surface areas are in square cm.Hive weights are in kgTemperatures are in degrees CentrigradeCO2 concentrations are in parts per million. The sensors used were calibrated from 0 to 20% (or 200,000 ppm). At very low values, such as near ambient CO2 concentration (about 400 ppm) the reading may not be accurate, that is, it may show values less than the known ambient CO2 concentration. In general, caution should exercised when interpreting extreme values.
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View LSEG's data from the Center for Research in Security Prices (CRSP), a leading provider of research, historical market data, and returns.
As of May 23, 2025, Microsoft was the leading tech company by market capitalization globally at 3.38 trillion U.S. dollars. Nvidia ranked second at 3.24 trillion U.S. dollars. Tech company stocks were impacted through 2025 as a result of various global tariff threats by the United States government. Apple among the leaders Since its foundation in a Californian garage in 1976, Apple has expanded massively, becoming one of the most valuable companies in the world. The company started its origins in the PC industry with the Macintosh, but soon entered other segments of the consumer electronics market. Today, the iPhone is the most popular Apple product, although Mac, iPad, wearables, and services also contribute to its high revenues. Aiming at innovation, Apple invests every year in research and development, spanning a wide array of technologies from AI through to extended reality. Nvidia's immense growth With a focus that began with origins in gaming, Nvidia's business strategy has been transformed by demand from data centers that sit at the heart of the AI boom. The company's chips have been favored to support in the training and running of a range of large language models, most notably in the development of OpenAI's ChatGPT.
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The Thailand Data Center Market report segments the industry into Hotspot (Bangkok, Rest of Thailand), Data Center Size (Large, Massive, Medium, Mega, Small), Tier Type (Tier 1 and 2, Tier 3, Tier 4), and Absorption (Non-Utilized, Utilized). Five years of historical data and market forecasts are provided.
This dataset contains carbon and nitrogen stock data from soils collected from Salisbury Plain, UK. The sites were selected to reflect the four main grassland management types on Salisbury Plain ranging from arable cropland to species rich grassland, with six representative grassland plots for each type (24 sites in total). Each site had two replicates for each variable measured. The data collected was intended to illustrate a gradient of ecosystem functioning and vegetation change as the grassland becomes more extensively managed. The field sampling was conducted by the University of Manchester and the Centre for Ecology & Hydrology at Wallingford. Soil C and N were analysed by the University of Manchester. The data includes carbon and nitrogen budgets to depth at all sites.
The data on this spreadsheet were collected aboard the US Coast Guard Cutter Healy during the 2008 Long Spring sea ice BEST cruise. The data measure microzooplankton (15-200 um phagotrophic protist) abundance, carbon biomass and community composition, and grazing impact on phytoplankton via dilution assays.
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Flight Centre Travel stock price, live market quote, shares value, historical data, intraday chart, earnings per share and news.
In the fourth quarter of 2024, the most popular vendor in the cloud infrastructure services market, Amazon Web Services (AWS), controlled ** percent of the entire market. Microsoft Azure takes second place with ** percent market share, followed by Google Cloud with ** percent market share. Together, these three cloud vendors account for ** percent of total spend in the fourth quarter of 2024. Organizations use cloud services from these vendors for machine learning, data analytics, cloud native development, application migration, and other services. AWS Services Amazon Web Services is used by many organizations because it offers a wide variety of services and products to its customers that improve business agility while being secure and reliable. One of AWS’s most used services is Amazon EC2, which lets customers create virtual machines for their strategic projects while spending less time on maintaining servers. Another important service is Amazon Simple Storage Service (S3), which offers a secure file storage service. In addition, Amazon also offers security, website infrastructure management, and identity and access management solutions. Cloud infrastructure services Vendors offering cloud services to a global customer base do so through different types of cloud computing, which include infrastructure as a service (IaaS), platform as a service (PaaS), and software as a service (SaaS). Further, there are different cloud computing deployment models available for customers, namely private cloud and public cloud, as well as community cloud and hybrid cloud. A cloud deployment model is defined based on the location where the deployment resides, and who has access to and control over the infrastructure.
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The Australia Data Center Cooling Market report segments the industry into By Cooling Technology (Air-based Cooling, Liquid-based Cooling), By Type (Hyperscale (Owned and Leased), Enterprise (On-premise), Colocation), By End-user Industry (IT and Telecom, Retail and Consumer Goods, Healthcare, Media and Entertainment, Federal and Institutional Agencies, Other End-user Industries).
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The China Data Center Cooling Market report segments the industry into By Cooling Technology (Air-based Cooling, Liquid-based Cooling), By Type (Hyperscaler (Owned and Leased), Enterprise (On-premise), Colocation), and By End-user Industry (IT and Telecom, Retail and Consumer Goods, Healthcare, Media and Entertainment, Federal and Institutional agencies, Other End-user Industries).
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The Northern Virginia Data Center Market is Segmented by DC Size (Small, Medium, Large, Massive, Mega), Tier Type (Tier 1&2, Tier 3, Tier 4), Absorption (Utilized (Colocation Type (Retail, Wholescale, Hyperscale), End User (Cloud & IT, Telecom, Media & Entertainment, Government, BFSI, Manufacturing, E-Commerce)), and Non-Utilized). The Market Sizes and Forecasts are Provided in Terms of Volume (MW) for all the Above Segments.