• ACCUEIL
  • À PROPOS
  • PRODUITS
  • SOLUTIONS
  • BLOG
  • CONTACTEZ-NOUS

Désolé, votre identifiant n'est peut-être pas correct. Assurez-vous que l'élément sélectionné est développé avec Swiper.

Refroidisseur à vis

Catalogy:Air Cooled Chillers

Exemple de texte surligné Cooling capacity: 1.51 - 42.8 kW
Vis

Déterminez la capacité de refroidissement adaptée à votre installation en estimant les besoins en kilowatts par heure. 🤓


KAYDELI

Principe de fonctionnement de base des refroidisseurs

Les groupes frigorifiques fonctionnent sur la base d'un cycle du réfrigérant pour assurer un refroidissement efficace en extrayant la chaleur des zones désignées. Ce cycle comprend quatre étapes principales :

Compression

Le réfrigérant est comprimé, ce qui augmente sa pression et sa température et le transforme en gaz à haute pression.
Flèches de direction
Étape 01

Condensation

Ce gaz passe dans le condenseur, où il libère de la chaleur et se transforme en un liquide à haute pression.
Flèches de direction
Étape 02

Expansion

Le réfrigérant passe par un détendeur, où sa pression et sa température chutent, le transformant en un liquide à basse pression et basse température.
Flèches de direction
Étape 03

Évaporation

Dans l'évaporateur, le réfrigérant absorbe de la chaleur, se retransforme en gaz et le cycle se répète.
Étape 04

Ce processus permet aux refroidisseurs de fournir un refroidissement constant dans diverses applications industrielles et commerciales en éliminant continuellement la chaleur de l'environnement.

KAYDELI

Qu'est-ce qu'un refroidisseur à vis ?

A Refroidisseur à vis est un type de refroidisseur industriel qui utilise un compresseur à vis, lequel fonctionne avec un mécanisme rotatif unique pour comprimer le réfrigérant et obtenir un refroidissement efficace. Le compresseur à vis à l'intérieur de ces refroidisseurs est constitué de deux rotors hélicoïdaux (souvent appelés vis) qui tournent ensemble. En tournant, le gaz réfrigérant est aspiré dans l'espace entre les rotors, compressé au fur et à mesure que les rotors se déplacent, puis expulsé à haute pression. Ce processus comprime efficacement le réfrigérant et fournit un refroidissement constant pour les applications à forte demande.

Conception d'un refroidisseur à vis
Conception d'un refroidisseur à vis

Principales caractéristiques des refroidisseurs à vis

Grande capacité: Les refroidisseurs à vis sont connus pour gérer de grandes charges de refroidissement, ce qui les rend idéaux pour les applications qui nécessitent un refroidissement continu et puissant, telles que les centres de données, les grands bâtiments commerciaux et les processus industriels.

Efficacité énergétique: Bien qu'ils consomment beaucoup d'énergie, les compresseurs à vis fonctionnent efficacement à des charges élevées, et de nombreux modèles comprennent des options de vitesse variable pour optimiser l'utilisation de l'énergie lorsque la pleine capacité n'est pas nécessaire.

Fonctionnement continu: Les compresseurs à vis sont conçus pour durer et être utilisés en continu, avec moins de pièces mobiles que les compresseurs alternatifs, ce qui réduit l'usure et les besoins de maintenance.

Fonctionnement silencieux: Comparés à d'autres refroidisseurs de grande capacité, les refroidisseurs à vis sont relativement silencieux, ce qui est bénéfique pour les environnements où la réduction du bruit est essentielle.

KAYDELI

Comparison with Other Types of Air-Cooled Chillers

Different air-cooled chillers—like Scroll, Piston, Screw, Low Temperature, Dual-Use, PCB, and Oil Cooling—offer specific cooling advantages. Scroll and Piston Chillers deliver versatile, quiet cooling for offices and factories, while other types are specialized for intense cooling needs or precision applications. The table below highlights each chiller type’s unique benefits.

Air-Cooled Chillers Comparison Table
Chiller Type Description Best Use Difference
Scroll and Piston Type Chillers Efficient, versatile cooling with scroll or piston compressors. Offices, hotels, factories. Quiet operation with high-pressure cooling options.
Refroidisseurs à vis Rotary screws for large-capacity, continuous cooling. Data centers, large industrial facilities. Higher capacity but more energy use and noise.
Refroidisseurs à basse température Engineered for deep cooling at sub-zero temperatures. Pharmaceuticals, chemical processing. Designed for extreme cooling; Scroll/Piston for standard ranges.
Refroidisseurs de température à double usage Switches between heating and cooling as needed. Labs, testing facilities with variable temperature needs. Offers both heating and cooling; Scroll/Piston are for cooling only.
Refroidisseurs pour l'industrie des PCB Precision cooling for printed circuit board manufacturing. Electronics manufacturing, PCB production. Exact temperature control, whereas Scroll/Piston are general-purpose.
Refroidisseurs d'huile Specialized to maintain optimal temperatures for machinery oils. Metalworking, hydraulic systems. Focused on oil cooling; Scroll/Piston focus on air cooling.

Ressources

KAYDELI

Exigences en matière de refroidissement

Besoins en capacité de refroidissement

Selecting the appropriate cooling capacity is crucial to ensure the chiller meets the demands of your application efficiently. Screw Type Chillers are particularly suited for high-capacity cooling needs. Here’s how to calculate the required capacity:

Cooling Capacity Determination
Étape Description
1. Déterminer la charge thermique Évaluez la chaleur totale produite par votre équipement ou votre processus. Cette information figure souvent dans les spécifications de l'équipement.
2. Appliquer les formules de refroidissement Utilisez des formules ou des calculateurs industriels pour convertir la charge thermique en capacité de refroidissement, en tenant compte de la chute de température souhaitée et de la taille de la zone.
3. Choisir en fonction de la capacité Une fois que le nombre de kW ou de TR nécessaires est déterminé, choisissez un refroidisseur d'une capacité suffisante pour gérer efficacement votre charge de refroidissement.

Choosing Screw Type Chillers for High-Demand Applications

Screw Type Chillers are optimized for applications with substantial, continuous cooling needs. Here are some scenarios where Screw Type Chillers are an ideal choice:

Industrial Facilities

For large-scale operations such as plastic injection molding, food processing, and chemical production, Screw Type Chillers provide robust cooling, reducing the risk of overheating and ensuring stable production conditions.

Bâtiments commerciaux

In large commercial spaces like hotels, hospitals, and office buildings, Screw Type Chillers deliver effective climate control and adapt well to varying load demands.

Data Centers and IT Facilities

For facilities with servers and high-tech equipment, reliable and powerful cooling is crucial. Screw Type Chillers meet these demands with consistent, round-the-clock cooling, safeguarding equipment and maintaining operational integrity.

KAYDELI

Exigences en matière de température

Water Temperature Needs

The target water temperature for your application is an essential factor in choosing the right Screw Type Chiller. Screw Type Chillers are highly adaptable and can maintain specific temperatures for various processes, making them suitable for applications that require precise temperature control. Here’s how to determine the correct water temperature needs:

Recommended Temperature Ranges for Industries
Industry Optimal Temperature Range Purpose Temperature Stability
Plastic Processing 7°C to 15°C Used primarily for mold cooling to enhance production efficiency, reduce cycle times, and minimize defects in molded products. Maintaining a stable temperature is critical to avoid quality issues in molded parts and to ensure consistent production rates.
Food and Beverage Storage and Processing 0°C to 5°C Essential for preserving food freshness, controlling fermentation, and ensuring safe storage conditions. Screw Type Chillers are effective in maintaining low, steady temperatures, preventing temperature fluctuations that could impact product quality or safety.
Chemical and Pharmaceutical Manufacturing -5°C to 10°C Used to control reaction temperatures, improve process stability, and prevent overheating in sensitive chemical and pharmaceutical operations. Precise temperature control is essential to maintain consistent reaction rates and ensure product quality and safety in pharmaceutical environments.
Data Centers and IT Facilities 15°C to 20°C Provides consistent cooling to prevent overheating in high-tech equipment, servers, and data storage units. Maintaining a stable temperature is crucial to avoid downtime or equipment failure, especially in high-density data centers.
HVAC Systems for Commercial Buildings 5°C to 15°C for chilled water systems Provides climate control across large spaces, ensuring a comfortable environment for occupants. Screw Type Chillers allow for stable temperature regulation across varying ambient conditions, supporting energy efficiency and occupant comfort.

Environmental Temperature Impact

The ambient environment where the chiller operates can significantly affect its efficiency. Screw Type Chillers are designed to perform across a range of temperatures, but high or low ambient temperatures can still impact performance.

Environmental Temperature Impact on Chillers
Facteur Impact Considerations
Operating Efficiency Chillers perform best within a specified ambient temperature range (e.g., air-cooled chillers at ≤35°C). Efficiency decreases if ambient temperatures exceed this range. For ambient temperatures above 43°C, the chiller may enter overload, triggering a shutdown due to high condenser pressure and exhaust temperature.
Cooling Capacity Fluctuations Cooling capacity decreases as ambient temperature rises due to increased condenser pressure. Evaporator pressure remains unchanged, reducing cooling efficiency. Higher outlet temperatures can temporarily boost cooling capacity, but also increase energy consumption. Maintain appropriate outlet temperature in hot conditions.
Equipment Protection High ambient temperatures can cause compressors to intake overheated vapor, potentially leading to equipment failure. Modern chillers often include overheat protection systems that shut down the equipment under unsuitable conditions to prevent damage.
Maintenance Needs Frequent maintenance may be required in high-temperature environments to ensure efficient operation. Regularly clean condensers and check system pressure to sustain performance and prevent overheating.
Equipment Selection Chillers need to be selected based on their design operating range, ensuring compatibility with expected environmental conditions. Select a model rated for high temperatures if necessary, and place air-cooled chillers in ventilated areas away from direct sunlight or other heat sources.
KAYDELI

Installation et entretien

Exigences en matière d'installation

The target water temperature is a key factor in choosing the right chiller. Different applications require specific water temperatures to function optimally. Determining the precise cooling temperature needed for your equipment or process allows you to select a chiller that can consistently maintain that level, ensuring both efficiency and reliability. Scroll and Piston Type Chillers are available in models designed to support a range of water temperatures, making it easy to match your cooling needs.

Exigences en matière d'espace

Exigences en matière d'espace

Ensure there is sufficient space around the unit for ventilation and airflow. For air-cooled chillers, installing in a well-ventilated area is recommended, as this helps maintain efficiency and prevent overheating.

Surface and Positioning

Surface and Positioning

Place the chiller on a stable, level surface to prevent vibrations during operation. Avoid areas with direct sunlight or proximity to other heat sources, as this can impact cooling efficiency.

Configuration électrique

Verify that the site meets the chiller’s electrical requirements, including voltage and power supply stability. Engage a certified electrician for safe and compliant electrical connections.

Une installation correcte permet d'optimiser la durée de vie, l'efficacité et la stabilité opérationnelle du refroidisseur.

Maintenance Tips

L'entretien régulier est essentiel pour préserver l'efficacité et la longévité des refroidisseurs à vis. Voici les étapes essentielles de l'entretien :

Maintenance Guidelines for Screw Type Air-Cooled Chillers
Maintenance Activity Description
Nettoyage régulier Clean the condenser coils and air filters to prevent dust and debris buildup, which can impair cooling efficiency and increase energy consumption.
System Checks Regularly check refrigerant levels, inspect for leaks, and monitor system pressures. Keeping an eye on these elements can help identify potential issues early and prevent costly repairs.
Seasonal Maintenance In warmer seasons or high-demand environments, increase maintenance frequency to ensure reliable operation. Seasonal maintenance can include deep cleaning of condensers, inspecting electrical connections, and testing operational parameters.
Scheduled Professional Maintenance Periodic professional maintenance, such as checking compressor health and calibrating controls, helps keep the chiller operating at peak efficiency. This service can also extend the chiller’s lifespan.

By following these installation and maintenance guidelines, customers can enhance the performance, efficiency, and durability of their Screw Type Air-Cooled Chillers.

KAYDELI

Consommation d'énergie et rentabilité

Energy Efficiency of Screw Type Air-Cooled Chillers

Screw Type Air-Cooled Chillers are engineered to handle substantial cooling loads while optimizing energy usage. Here are some key energy-related considerations.

Mécanisme de compression efficace

Mécanisme de compression efficace

The screw compressor operates with a continuous rotary mechanism that allows for smooth and steady compression, reducing energy spikes and enabling efficient energy use. This results in a high energy-efficiency ratio (EER), especially under full load conditions.

Variable Capacity Options

Variable Capacity Options

Many Screw Type Chillers are equipped with variable-speed compressors, allowing the system to adjust its cooling capacity based on demand. This adaptability reduces power consumption during low-demand periods, lowering overall energy costs.

Efficacité saisonnière

Screw Type Chillers are built to perform well even in high ambient temperatures, but energy efficiency may vary by season. For environments with temperature fluctuations, choosing a model with a high seasonal energy efficiency ratio (SEER) ensures that energy use remains optimal throughout the year.

Balancing Initial Investment and Operational Costs

Investing in a Screw Type Chiller involves understanding both the upfront cost and long-term savings potential. Here’s what to consider.

pie-chart

Upfront Investment

Screw Type Chillers may have a higher initial cost due to their robust design and high cooling capacity. However, their energy-efficient operation can offset these costs over time, making them a cost-effective choice for high-demand environments.

maintenance

Réduction des coûts de maintenance

Due to fewer moving parts and lower wear, Screw Type Chillers often require less frequent maintenance than other compressor types. This helps lower operational costs and reduces the likelihood of unexpected repairs.

deposit

Long-Term Savings

The combination of energy efficiency, low maintenance requirements, and adaptability to variable cooling demands makes Screw Type Chillers a cost-effective option for long-term use. In high-demand settings, these chillers can significantly lower electricity bills and reduce the total cost of ownership over time.

By balancing the initial investment with operational savings, Screw Type Air-Cooled Chillers provide a financially sound solution for industries that require continuous, energy-efficient cooling.

KAYDELI

Soutien à la marque et au service après-vente

Trusted Brand Reputation

When investing in a Screw Type Air-Cooled Chiller, choosing a reliable brand is key to ensuring product quality and performance. Kaydeli is known for its commitment to durability, efficiency, and innovation in chiller technology. Here’s why brand quality matters:

Proven Performance

Proven Performance

Kaydeli chillers are designed to meet demanding industry standards, offering reliable and efficient performance across a range of applications.

Advanced Technology

Advanced Technology

Kaydeli integrates the latest in screw compressor technology and energy-saving features to optimize cooling efficiency and reduce operational costs.

Pratiques durables

Pratiques durables

With a focus on eco-friendly refrigerants and efficient designs, Kaydeli chillers help reduce environmental impact, supporting customers’ sustainability goals.

Support après-vente complet

Effective after-sales support ensures that customers receive ongoing assistance throughout the chiller’s lifespan. Kaydeli offers comprehensive customer support services, including

Installation Guidance

Installation Guidance

Professional installation support to help customers set up the chiller for optimal performance.

Services de maintenance

Services de maintenance

Scheduled maintenance programs tailored to the chiller’s operating conditions, minimizing downtime and extending equipment life.

Technical Assistance

Technical Assistance

A dedicated technical support team is available to troubleshoot issues and provide solutions, ensuring minimal disruption to operations.

Warranty Protection

Warranty Protection

Kaydeli provides robust warranty options that cover repairs or replacement in case of unexpected issues, giving customers peace of mind.

Choosing a brand with dependable after-sales support enhances the chiller’s operational reliability, reduces maintenance costs, and increases overall customer satisfaction.

KAYDELI

Commentaires des clients et études de cas

L'avis d'autres utilisateurs peut s'avérer précieux pour choisir le bon refroidisseur. Voici quelques exemples de commentaires de clients de diverses industries qui utilisent les refroidisseurs Kaydeli :

GROUPE KAYDELI

Je suis le menu