Noran Technology Integrated Evaporative Cooling Chiller

2026-03-27 09:24
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As industrial production, data centers, and commercial buildings increasingly demand cooling systems with higher standards for energy efficiency, adaptability, and operational costs, traditional air conditioning equipment continues to struggle with challenges like high temperatures and inefficiency, humidity-related inaccuracies, and complex installation processes. In this context, Anhui Nuolan Technology Co., Ltd. has delivered a groundbreaking solutionthe "Integrated Evaporative Cooling Chiller" it developed has been granted a patent by the National Intellectual Property Administration. This innovation in air conditioning technology, featuring an "intelligent adaptive height adjustment integrated design," redefines performance benchmarks for evaporative cooling units and further demonstrates Nuolan Technology's brand strength in driving industry upgrades through technological breakthroughs.

Breaking the Traditional Dilemma: A Refrigeration Revolution from "Passive Adaptation" to "Active Response"

In the refrigeration equipment sector, the limitations of traditional units continue to hinder industry development. Under high-temperature conditions, air-cooled units experience a sharp drop in coefficient of performance (COP) below 2.5 due to inadequate heat dissipation, resulting in a 30% surge in energy consumption. During humid weather, conventional evaporative cooling units suffer over 20% degradation in heat and moisture exchange efficiency due to ineffective water film control, leading to significant cooling capacity fluctuations. Separately, split-type systems require separate installation of fans, cooling towers, and heat exchanger boxes, with installation cycles lasting 20-30 days. The excessive piping connections also increase refrigerant leakage risks by 60%, while annual operational and maintenance costs place an unbearable burden on enterprises.

Nolan Technology's patented invention product addresses these pain points at their design root. Its core architecture is built around a modular "rack" system, integrating key components such as fans, evaporators, heat exchangers, water pumps, and chilled water storage tanks. The innovative design incorporates a "water film thickness adjustment module," atomizers, and dual temperature-humidity sensors, forming a smart cooling system capable of real-time environmental response. This represents not just equipment integration, but a complete technological loop encompassing "environmental sensing, dynamic regulation, and efficient heat exchange."

Core Advantage 1: Intelligent adaptive regulation for precise temperature and humidity matching across all scenarios

As the core highlight of the patented technology, the water film thickness adjustment component combined with a dual temperature and humidity sensing system enables the unit to achieve a transition from "fixed operation" to "dynamic adaptation." Temperature sensors and humidity sensors within the evaporation chamber continuously collect environmental data and transmit signals to the control system:

(1) High-temperature environment: The system drives the water film thickness adjustment component to increase the water film thickness, thereby enhancing the contact area between air and water film, intensifying evaporation heat absorption, rapidly reducing the temperature of air entering the heat exchanger box, and ensuring stable COP of the unit maintained at 4.0-4.3, achieving over 35% energy savings compared to conventional units.

(2) High-humidity environment: The module precisely reduces water film thickness to prevent "thermal-humidity exchange obstruction" caused by excessive water film formation. Simultaneously, it activates the atomizer to generate micron-scale water mist, uniformly covering the filler surface within the evaporation chamber. This optimizes heat and mass transfer efficiency between air and water film, controlling cooling capacity fluctuations within ±5%, thereby completely resolving the industry-wide challenge of "insufficient cooling capacity" under high-humidity conditions.

This "on-demand adjustment" design enables the unit to overcome geographical and climatic constraints, maintaining optimal operational performance in both high-humidity environments during the southern plum rain season and dry-hot conditions in northern summers.

Core Advantage 2: Integrated Architecture for Cost Reduction and Efficiency Enhancement From Installation to O&M

Leveraging a patent-protected "frame integration solution," Nuolan Technology has consolidated previously dispersed componentsincluding fans, evaporators, heat exchangers, water pumps, and chilled water storage tanksinto a unified steel-frame structure. The airflow circulation is achieved solely through pre-designed air intake channels connecting fans and evaporators, creating a "single-unit complete refrigeration system" configuration.

(1) Improved installation efficiency: Traditional split-type units require sequential equipment hoisting, pipeline welding, and interface commissioning, with a construction period of 15-30 days; whereas this unit only requires "positioning and securing + electrical/water supply connection" upon arrival, completing installation within 3-5 days.

(2) Reduced space occupation: Compared to the traditional combination of "water-cooled units + cooling towers," the integrated design eliminates the need for separate cooling tower installation areas, making it particularly suitable for space-constrained scenarios such as urban commercial buildings and high-density industrial parks.

(3) Reduced operation and maintenance costs: The integrated design minimizes most external pipeline interfaces, significantly lowering the risk of refrigerant leakage compared to traditional units. Additionally, the proximity design between the chilled water storage tank and heat exchanger tank shortens the chilled water circulation path, reduces pump energy consumption, and decreases annual maintenance costs.

Brand Strength Endorsement: Fulfilling Green Refrigeration Commitment Through Technological Innovation

This invention patent reflects Anhui Nuolan Technology's dedication and expertise in the air conditioning equipment sector. As an innovative enterprise located in the Green Coatings Supporting Industrial Park of Mingguang City, Chuzhou, Anhui Province, Nuolan Technology has consistently prioritized "technology-driven green refrigeration" as its core strategy. Led by patent inventor Ma Chao and his R&D team, the project involved over 300 operational condition simulations and 150 rounds of component optimization. Through overcoming two major technical challengesintelligent water film regulation and high integrationthe team successfully transformed laboratory research into practical, high-quality products.

The system has now achieved large-scale deployment across multiple industries, with energy efficiency reaching industry-leading standards for data center cooling systems in China. Compared to traditional systems, the reduced monthly electricity costs during summer peak periods result in significantly higher annual energy savings. These advantages not only validate the practicality of patented technologies but also highlight Norland Technology's commitment to "empowering businesses with innovation to reduce costs and driving carbon neutrality goals through technological solutions."

From patent certification by the National Intellectual Property Administration to rigorous market validation, Norland Technology's integrated evaporative cooling chillers transcend environmental constraints through intelligent self-adaptation, reduce overall costs via integrated design, and fulfill green commitments with exceptional energy efficiency. If you're grappling with challenges like high energy consumption, poor adaptability, and complex maintenance in refrigeration systems, consider Norland Technology's patented solution. This product delivers: authoritative technical certifications, flexible solutions adaptable to all scenarios, and steadfast support for enterprises pursuing "high-efficiency cooling + low-carbon development".