Advanced Dry Wet Hybrid Cooling Tower for Efficient Heat Dissipation

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Customization: Available
After-sales Service: Consult Newin Sales Representative
Warranty: Consult Newin Sales Representative
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  • Advanced Dry Wet Hybrid Cooling Tower for Efficient Heat Dissipation
  • Advanced Dry Wet Hybrid Cooling Tower for Efficient Heat Dissipation
  • Advanced Dry Wet Hybrid Cooling Tower for Efficient Heat Dissipation
  • Advanced Dry Wet Hybrid Cooling Tower for Efficient Heat Dissipation
  • Advanced Dry Wet Hybrid Cooling Tower for Efficient Heat Dissipation
  • Advanced Dry Wet Hybrid Cooling Tower for Efficient Heat Dissipation
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  • Overview
  • Features
  • Reference Projects
  • Product Parameters
  • NEWIN Manufacturing Base
  • Packaging & Shipping
Overview

Basic Info.

Model NO.
NCFN-GS
Cooling Method
Dry Wet Hybrid Cooling
Ventilation Mode
Forced Draft
Material
Aluminum Zinc
Air Contact Form
Dry
Air Contact Way
Closed
Tower Shape
Square
Noise Level
Ordinary
Application Fields
Industial & Air Conditioning
Certification
ISO, CE, CTI
Condition
New
Model
Ncfn-GS-L-850/1150/1300
Cooling Capacity
863kw to 1793kw
Free Cooling
Capacity 120kw to 247kw ( Under 12/7/0 Celsius)
Fan Motor Without Silencer
11kw to 37kw
Transport Package
Container
Specification
CE, UL, CTI
Trademark
NEWIN
Origin
Shenzhen China
HS Code
84195000
Production Capacity
1000sets/Month

Product Description

Advanced Dry Wet Hybrid Cooling Tower for Efficient Heat Dissipation 

Advanced Dry Wet Hybrid Cooling Tower for Efficient Heat Dissipation
Features
NCFN-GS Series Dry-Wet Hybrid Forced DraftClosed Cooling Tower

The cooling system of NCFN-GS series integrates the attributes of wet and dry cooling, delivering optimal cooling performance, minimal energy consumption, and water conservation across varying ambient temperatures. It is particularly well-suited for arid desert regions and harsh cold climates. Additionally, its forced draft system allows the low-noise operation and represents the optimal cooling solution for inadequately ventilated and noise-sensitive locations.
Advanced Dry Wet Hybrid Cooling Tower for Efficient Heat Dissipation

ADVANTAGE
 
Advanced Dry Wet Hybrid Cooling Tower for Efficient Heat Dissipation

Dry-Wet Hybrid Cooling Mode

NCFN-GS cooling tower has the capability to adapt its operational modes in response to fluctuations in ambient temperature.

Dry Cooling Mode
When the temperature falls below -10ºC or the output temperature is lower than the set point, the spray pump will cease operation and the cooling tower will switch to dry cooling mode. This minimizes water evaporation during cold seasons and provides ice water in certain working conditions as an alternative to refrigeration, resulting in water and energy savings.

Wet Cooling Mode
When the temperature exceeds a specific threshold (-2ºC), or when the output temperature surpasses a predetermined level, the spray pump initiates operation, causing the cooling tower to function in wet cooling mode. Evaporative cooling guarantees substantial cooling capacity.

 

Water saving, Energy conservation, Environmental protection

> In comparison to conventional wet cooling towers, it has the capability to diminish the utilization of spray water and decrease overall water consumption.
> By implementing intelligent control systems and advanced cooling technology, energy consumption reduction and energy utilization improvement could be achieved, resulting in significant electricity savings.
> Dry-wet hybrid cooling effectively minimize water mist emissions, resulting in a reduced environmental impact and enhanced eco-friendliness.

Advanced Dry Wet Hybrid Cooling Tower for Efficient Heat Dissipation
 
Advanced Dry Wet Hybrid Cooling Tower for Efficient Heat Dissipation

Operation& Maintenance Cost Saving

> The closed-circuit circulation system guarantees the purity of the cooling medium, minimizes water contamination, and decreases water treatment expenses. Furthermore, dry cooling mode is utilized during winter to significantly reduce the risk of freezing for cooling tower components. This not only lowers equipment operation and maintenance costs but also ensures the long-term stable operation of equipment.
> The product is factory assembly, transported and installed conveniently, ultimately saving valuable time and effort.


MAIN PARTS
 

Forced Draft Centrifugal Fan Drive System

Big brand centrifugal fan which is licensed to bear the AMCA Seal for air performance, sound, and FEG , featuring wheel blades, and belt pulley driving. It has undergone rigorous static and dynamic tests and is balanced to G2.5 grade, ensuring optimal cooling tower heat transfer performance with minimal noise. Big air volume, flow range from 1000m3h-100000m3h. The exceptional characteristics include robust stability, remarkable efficiency, minimal noise, and reduced power consumption.

Advanced Dry Wet Hybrid Cooling Tower for Efficient Heat Dissipation
 

Key Parts for Closed Circuit System And Dry-Wet Cooling Modes.

The fluid medium requiring cooling circulates through the 
fin tube heat exchanger and stainless steel heat exchange coil within the closed circuit system, ensuring cleanliness, reducing water treatment and maintenance expenses, and conserving precious water resources while efficiently cooling.

Fin tube heat exchanger and stainless steel heat exchange coil are not only essential components of closed circuit systems, but also key elements of Dry-wet cooling modes.

 

Advanced Dry Wet Hybrid Cooling Tower for Efficient Heat Dissipation

Finned Tube Heat Exchanger

Fin tube heat exchanger is constructed with stainless steel tubes and aluminum spiral fins, boasting robust anti-corrosion properties and enhanced stability. The structural design of the fin tube is intended to enhance the heat exchange area, optimize efficiency in heat transfer, facilitate complete air exchange with the fin tube, and ultimately achieve water-saving operation of equipment during both dry cooling and wet cooling stages. It can also effectively eliminate the occurrence of "white smoke" during winter operation of the cooling tower, thus ensuring a favorable working environment for the equipment and prolonging its service life.

 


Stainless Steel Heat Exchange Coil

The high-quality heat exchange coil utilizes a stainless steel serpentine bending tube and a sturdy framework, ensuring superior thermal performance and full contact with spray water for efficient heat exchange and effective cooling. The stainless steel heat exchange pipes are not only resistant to corrosion, but also lightweight and recyclable.

Advanced Dry Wet Hybrid Cooling Tower for Efficient Heat Dissipation
 

Advanced Dry Wet Hybrid Cooling Tower for Efficient Heat DissipationOptional Various Additional Functions
Two-speed& VFD variable frequency motor/ Vibration Cut-off Switch/ Electronic descaler/ Water treatment equipment/ Anti-freeze automatic heating system/ Noise reduction upgrade/ External maintenance platform and guardrail/Installation and maintenance boom etc.

 

Cost-effective Anti-Corrosion Solution
NWN-Armour Anti-corrosion Technology

Products coated with NWN-Armour anti-corrosion coating exhibit outstanding resistance to corrosion, approaching the qualities of stainless steel. They serve as a cost-effective alternative to stainless steel.
Advanced Dry Wet Hybrid Cooling Tower for Efficient Heat Dissipation
Reference Projects

Advanced Dry Wet Hybrid Cooling Tower for Efficient Heat Dissipation

Product Parameters

Advanced Dry Wet Hybrid Cooling Tower for Efficient Heat Dissipation

Model Wet Cooling Free Cooling Fan Motor Spray Pump Total Dimension
(without silencer)
Weight
Fluid flow Cooling capacity Capacity
12/7/0ºC
Power Power L W H Shipping Operation
m³/h kW kW kW kW mm mm mm kg kg
NCFN-GS-L-510-F 66 340 77 5.5  2.2  4680 2200 2920 3468 5184
NCFN-GS-L-510-S 66 340 108 7.5  2.2  4680 2200 3040 3636 5421
NCFN-GS-L-640-S 97 499 111 7.5  2.2  4680 2200 3240 3908 5812
NCFN-GS-L-640-E 97 499 142 11.0  2.2  4680 2200 3360 4082 6041
NCFN-GS-L-1000-F 119 612 139 15.0  4.0  6920 2200 2990 5438 8061
NCFN-GS-L-1000-S 119 612 211 18.5  4.0  6920 2200 3110 5647 8213
NCFN-GS-L-1250-S 175 900 218 22.0  4.0  6920 2200 3310 5898 8698
NCFN-GS-L-1250-E 175 900 273 30.0  4.0  6920 2200 3430 6107 9019
NCFN-GS-L-1560-F 225 1158 206 37.0  5.5  7520 2400 3190 6291 9928
NCFN-GS-L-1560-S 225 1158 273 37.0  5.5  7520 2400 3310 6534 10311
NCFN-GS-L-1560-E 225 1158 273 45.0  5.5  7520 2400 3430 6777 10694
Note:
1. Standard Design Working Condition: Fluid in/out temperature: 35/30ºC.
2. Standard design ambient wet/dry bulb temperature: 21/31ºC.
3. Above data sheet based on 40% ethylene glycol solution fluid.
4. Please contact NEWIN sales representative if working condition not same as above standard design condition.

 

NEWIN Manufacturing Base

NEWIN FACTORY covers an area of more than 10,000 square meters.

Cooling Tower Workshops: sheet-metal workshop/ welding workshop/ heat exchange coil workshop/ cooling tower assembly workshop.
Cooling Tower Infills Workshops: Fills production and Adhesive workshop workshop.


NEWIN COOLING TOWERS:

· NWN/ NWF/ NCFN Closed Type Cooling Tower Series
· NSH/ NST Open Type Cooling Tower Series
· NTG Industrial Type Cooing Tower Series
· NECN/NECH Evaporative condenser
· NWFL Dry Air Cooler

NEWIN manufactures and stocks all major cooling tower accessories to meet maintenance and replacement needs of almost any size and types of cooling tower. Please contact us to customize the cooling tower accessories you need. 

CONTAIN:
· Fan drive system (fan/ fan stack/reducer/motor/shaft etc.)
· Water distribution (nozzles/ drift eliminator etc.)
· Heat exchange(PVC infills/ cooling coil etc.)
· Other accessories (air inlet louver/ valve etc.)

Advanced Dry Wet Hybrid Cooling Tower for Efficient Heat Dissipation
Packaging & Shipping

Open type cooling towers shipment

Advanced Dry Wet Hybrid Cooling Tower for Efficient Heat Dissipation
Closed type cooling towers shipment
Advanced Dry Wet Hybrid Cooling Tower for Efficient Heat Dissipation
Advanced Dry Wet Hybrid Cooling Tower for Efficient Heat Dissipation
Advanced Dry Wet Hybrid Cooling Tower for Efficient Heat Dissipation

 

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