Press release
Cooling Tower for Data Center Market Expected to Achieve a Strong 10.9% CAGR, to Reach USD 7,440 Mn by 2032
Cooling Tower for Data Center Market IntroductionQYResearch has published its latest market research report titled "Global Cooling Tower for Data Center Market Insights - Industry Share, Sales Projections, and Demand Outlook 2026-2032." The report provides a detailed analysis of global Cooling Tower for Data Center market size, sales volume, revenue forecast, regional demand, competitive landscape, product segmentation, application outlook, technology trends, and strategic opportunities for investors, researchers, manufacturers, data center operators, cooling system suppliers, and infrastructure developers.
The global Cooling Tower for Data Center market was valued at US$3,642 million in 2025 and is anticipated to reach US$7,440 million by 2032, witnessing a strong CAGR of 10.9% during the forecast period 2026-2032. The market is expanding rapidly as AI data centers, cloud computing facilities, hyperscale campuses, high-performance computing infrastructure, and liquid cooling systems create rising demand for advanced outdoor cooling tower solutions.
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Cooling towers used for data center cooling are outdoor thermal management units designed to remove heat from data center cooling loops. Compared with cooling towers used in traditional industrial fields, data center cooling towers typically have higher value, stronger engineering barriers, stricter reliability requirements, and significantly higher unit prices. In some cases, their unit price can reach dozens of times that of ordinary cooling towers due to advanced design, system integration, redundancy, corrosion resistance, water efficiency, and high-performance cooling requirements.
Market Overview
Cooling towers are becoming an essential part of modern data center thermal management strategies. As data centers handle more AI training, cloud computing, enterprise workloads, storage, and high-performance computing tasks, heat generation is increasing at an unprecedented rate. Traditional air-cooling systems are often not enough for high-density AI servers, making liquid cooling and advanced heat rejection systems more important.
Data center cooling towers support liquid cooling systems by helping reject heat from the cooling loop to the outdoor environment. These systems are especially important in large-scale data centers using cold plate liquid cooling or immersion liquid cooling. They help maintain stable operating temperatures, improve system reliability, reduce energy consumption, and support continuous operation of critical digital infrastructure.
The market includes both open cooling towers and closed cooling towers, serving applications such as cold plate liquid cooling systems and immersion liquid cooling systems. The report evaluates the market in terms of sales quantity measured in K units and revenue measured in US$ millions, with 2025 as the base year and forecast data extending through 2032.
Market Key Drivers
One of the strongest drivers of the Cooling Tower for Data Center market is the rapid expansion of AI data centers. AI servers, especially GPU-based computing systems, generate much higher heat loads than conventional servers. As AI workloads increase, data center operators require more powerful and reliable heat rejection systems.
The growing adoption of liquid cooling is another major driver. Cold plate liquid cooling and immersion liquid cooling systems are increasingly being used to manage heat from high-density server racks. Cooling towers play a critical role in these systems by supporting efficient heat transfer and outdoor heat rejection.
Rising focus on data center energy efficiency is also supporting market growth. Cooling can represent a major portion of data center energy consumption. Advanced cooling towers help improve thermal management efficiency, reduce operating costs, and support better power usage effectiveness.
The growth of hyperscale and cloud infrastructure is another important factor. As cloud providers, telecom companies, enterprises, and AI platform operators build larger data center campuses, demand for scalable cooling infrastructure continues to increase. Cooling towers designed for data centers offer high reliability, strong cooling capacity, and long-term operational stability.
Regional Insights
North America is expected to remain a major market for Cooling Tower for Data Center solutions due to strong demand from hyperscale data centers, AI infrastructure, cloud computing, enterprise computing, and colocation facilities. The United States, Canada, and Mexico are included in the regional scope, with the United States expected to remain a key demand center because of rapid AI data center expansion and strong investment in digital infrastructure.
Europe is expected to show steady growth, supported by data center construction, cloud service expansion, energy efficiency requirements, and increasing focus on sustainable cooling systems. Germany, France, the United Kingdom, Italy, and other European markets are expected to create demand for advanced cooling towers that support efficient heat rejection and regulatory compliance.
Asia Pacific is projected to be one of the fastest-growing regional markets during the forecast period. China, Japan, South Korea, India, and Southeast Asia are investing heavily in AI computing, cloud infrastructure, telecom networks, data storage, and digital services. China's AI data center construction is expected to create significant demand for liquid cooling towers, while India and Southeast Asia are also emerging as important data center growth markets.
South America, the Middle East, and Africa are expected to generate gradual opportunities as digital transformation, cloud adoption, smart city projects, and regional data center investments expand. Brazil, Turkey, GCC countries, and selected African markets may create long-term opportunities for cooling tower manufacturers and system integrators.
Market Segmentation
The Cooling Tower for Data Center market is segmented by type, application, company, and region. By type, the market includes Open Cooling Tower and Closed Cooling Tower.
Open Cooling Towers are widely used where efficient evaporative cooling and large-scale heat rejection are required. They are often selected for data center facilities that prioritize cooling efficiency and large capacity. Closed Cooling Towers are designed to keep process fluids separated from external air, helping improve water quality control, reduce contamination risk, and support high-reliability cooling applications.
By application, the market is segmented into Cold Plate Liquid Cooling System and Immersion Liquid Cooling System. Cold plate liquid cooling is gaining strong adoption in AI servers and high-density computing environments because it transfers heat directly from processors or GPUs through liquid-cooled plates. Immersion liquid cooling is also gaining attention for extremely high-density applications where servers or components are immersed in dielectric fluid for efficient heat removal.
Competitive Landscape
The global Cooling Tower for Data Center market is competitive and engineering-driven. Companies compete based on cooling capacity, energy efficiency, reliability, water efficiency, corrosion resistance, system integration capability, noise control, maintenance convenience, and ability to support high-density data center environments.
Key companies profiled in the report include SPX Cooling Technologies, EVAPCO, KUKEN, Seagull Cooling Technologies, Hamon, Paharpur Cooling Towers, Kelvion, ENEXIO, BRAPU, EBARA, Kobelco Eco-Solutions, China Chemical Engineering Cangzhou Cooling Technologies, Longhua Technology, Yantai Moon Heat Exchange Technology, Shanghai Baofeng Machinery Manufacturing, and Wei Hai Creditfan Ventilator.
Leading manufacturers are focusing on advanced cooling tower design, improved thermal performance, modular systems, lower water consumption, better control systems, and compatibility with liquid cooling architectures. Companies with strong engineering expertise, project execution capability, data center customer experience, and regional service networks are expected to gain competitive advantage.
Market Trends & Dynamics
One major trend in the Cooling Tower for Data Center market is the shift from traditional air cooling toward liquid cooling infrastructure. As AI servers and GPU clusters increase rack power density, liquid cooling systems are becoming essential. Cooling towers are directly benefiting from this transition because they serve as key heat rejection equipment in liquid cooling loops.
Another important trend is the rising demand for high-value cooling towers. Data center cooling towers require higher performance, stronger reliability, and better integration than conventional industrial cooling towers. This creates opportunities for manufacturers offering premium engineered systems.
Water efficiency and sustainability are also becoming important market dynamics. Data center operators are increasingly focused on reducing water usage, improving energy performance, and meeting environmental goals. Cooling tower suppliers are responding with optimized designs, hybrid cooling concepts, improved materials, and smarter controls.
The market also faces challenges, including water availability concerns, project customization, installation complexity, operating cost pressure, and strict uptime requirements. However, the rapid expansion of AI data centers and liquid cooling systems is expected to support strong long-term demand.
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Recent Development
Recent developments in the Cooling Tower for Data Center market show increasing investment in liquid cooling-compatible heat rejection systems. Data center operators are moving toward cooling infrastructure that can support high-density server racks, GPU clusters, AI training workloads, and continuous operation.
Manufacturers are improving cooling tower design through better heat exchange efficiency, corrosion-resistant materials, modular construction, intelligent monitoring, lower noise levels, and simplified maintenance. These features are increasingly important as data centers require reliable cooling systems that can operate efficiently under demanding conditions.
AI data center construction in China and other major digital economies is also creating new growth opportunities. As liquid cooling adoption accelerates, demand for specialized cooling towers is expected to rise significantly across both hyperscale and enterprise data center projects.
Key Executive Benefits
This report provides executives, investors, researchers, and manufacturers with a structured view of the global Cooling Tower for Data Center market from 2026 to 2032. It helps decision-makers understand market size, sales volume, revenue outlook, regional demand, competitive positioning, product segmentation, and application-level opportunities.
For manufacturers, the report supports product development, project targeting, regional expansion, pricing strategy, and competitive benchmarking. For investors, it highlights growth opportunities linked to AI data centers, liquid cooling systems, cloud infrastructure, and high-efficiency thermal management. For researchers and consultants, it provides organized market intelligence for strategic analysis and business planning.
Key Questions Answered in the Report
What is the global Cooling Tower for Data Center market size in 2025?
What will be the market value by 2032?
What is the expected CAGR during 2026-2032?
Which cooling tower types are covered in the market?
Which applications are driving demand?
How is AI data center construction influencing cooling tower demand?
Why are liquid cooling systems increasing the need for advanced cooling towers?
Which regions offer strong growth opportunities?
Who are the major companies operating in the market?
How do open and closed cooling towers differ in data center applications?
What role do cold plate and immersion liquid cooling systems play in market growth?
How can investors, manufacturers, and infrastructure developers benefit from this market outlook?
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