GT Water Cooled Screw Chiller
INDUSTRIAL
CHILLER SYSTEM

GT Water Cooled Screw Chiller

High efficiency full falling film water cooled screw chiller featuring industry-leading twin-rotor screw compressor with environmentally-friendly R134a refrigerant. Ideal choice for large commercial projects with COP up to 6.02 and IPLV up to 7.589.

Cooling Capacity

248.1 - 1650.0 kW

IPLV

6.638 - 7.589 kW/kW

Compressor

Twin-Rotor Screw

Capacity Range

70.55 - 469.3 RT

Technical Specifications

Advanced Twin-Rotor Screw Compressor

Industry-leading twin-rotor screw compressor technology ensures stable and reliable operation with exceptional efficiency.

High Efficiency Heat Exchange

Shell and tube heat exchanger with 2-pass straight water pipe design for easy cleaning. Both side covers can be exchanged.

Advanced Oil System

Special oil separation and return system with built-in separator ensures stability and protects against wear.

Full Falling Film Technology

Full falling film evaporation technology achieves high efficiency for both full loads and partial loads.

Intelligent Control System

Advanced intelligent control monitors all parameters to optimize performance and ensure reliable operation.

Environmentally Friendly

Uses environmentally-friendly R134a refrigerant with IPLV up to 7.589 kW/kW for exceptional energy savings.

Detailed Specifications

Comprehensive technical data for the GT Water Cooled Screw Chiller Series

Performance Data

Cooling Capacity 248.1 - 1650.0 kW
Cooling Capacity (RT) 70.55 - 469.3 RT
COP (kW/kW) 5.80 - 6.02
IPLV (kW/kW) 6.638 - 7.589
Power Input 42.46 - 284.0 kW
Compressor Type Twin-Rotor Screw

System Features

Power Supply 380V-3N-50Hz
Chiller Type Full Falling Film
Refrigerant R134a
Heat Exchanger Shell & Tube (2-Pass)
Oil System Built-in Separator
Control Intelligent Monitoring

Standard Features

Twin-Rotor Screw Compressor
Full Falling Film Evaporator
R134a Refrigerant
Shell & Tube Heat Exchanger
2-Pass Straight Water Pipe
Built-in Oil Separator
Oil Heating System
Intelligent Control System
High Efficiency IPLV 7.589