High Temperature Refrigerated Air Dryer

High Temperature Refrigerated Air Dryer

The refrigeration dryers in HP series units feature powerful cooling systems. These include a high quality refrigerant compressor, generously-dimensioned heat exchanger surfaces, as well as cleverly designed cooling air flow. This combination therefore ensures dependable operation even at high temperatures and guarantees stable pressure dew points at all times.
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Description
Technical Parameters
Flow Optimized Piping

 

Efficient performance in drying systems is significantly influenced by the pressure differential within the system. A smaller pressure differential translates to enhanced efficiency. HP dryers are designed with exceptionally low pressure differential values, achieved through the use of high-quality, flow optimized stainless steel piping. This piping system minimizes resistance and ensures smooth, unobstructed airflow, which reduces energy consumption and enhances the overall performance of the dryer. By optimizing the flow within the pipes, the dryer operates more efficiently, leading to cost savings and improved reliability over time.

 

Parameter Details
Capacity 1.2~80 m³/min
Max. Working Pressure ≤4.5 MPa (45 barg)
Max. Inlet Temperature 60℃
Max. Ambient Temperature 50℃
Min. Ambient Temperature 5℃
Max. Cooling Water Temperature 35℃
Cooling Type Air-cooled<br>Water-cooled version from 150 and above
Power Supply 220V/1Ph/50Hz/60Hz (RSLF-12-HP ~ RSLF-150-HP)<br>380V/3Ph/50Hz/60Hz (RSLF-200-HP ~ RSLF-800-HP)
Refrigerant R134a/R407C
Rated Working Pressure 4.0 MPa
Inlet Temperature 38℃
Ambient Temperature 38℃
Cooling Water Temperature 32℃
PDP 3-10℃
Other For pressure of < 0.4 MPa or > 1.5 MPa please contact us

 

High-Efficiency Drain - High Pressure Type

 

The 40 bar HP Series dryer comes equipped with a high pressure drain designed to ensure efficient condensate removal without incurring any pressure loss. This high-pressure drain is a critical component for maintaining the efficiency of the drying process. By effectively removing condensate, it prevents moisture buildup that could otherwise hinder the drying process and reduce the system's efficiency.

 

Additionally, the high-pressure drain contributes to energy savings by ensuring that the system operates at optimal conditions without unnecessary pressure drops. For applications requiring even higher pressure, an electronic condensate drain is available as an optional feature for the 50 bar version. This electronic drain offers precise control over condensate removal, further enhancing efficiency and reliability, and providing an advanced solution for demanding industrial applications.

 

Key Benefits:

 

Low Pressure Differential: Optimized piping design reduces resistance and pressure drops, enhancing energy efficiency and performance.

High-Quality Materials: Stainless steel piping ensures durability, corrosion resistance, and long-term reliability.

Efficient Condensate Removal: High-pressure drain prevents moisture buildup, maintaining system efficiency and preventing pressure loss.

Energy Savings: Reduced pressure differential and effective condensate removal lead to lower energy consumption.

Advanced Options: Electronic condensate drain for higher pressure applications offers precise control and improved efficiency.

 

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