Description
The Blower Purge Regenerative Air Dryer is a type of compressed air dryer utilized for eliminating moisture from the compressed air system. It functions through regenerative desiccant technology, where the desiccant material efficiently absorbs moisture from the compressed air and then undergoes regeneration to reuse the moisture-filled desiccant. The dryer is equipped with both a pressure sensor and mechanical pressure switch, offering dual protection and enabling precise adjustment of the compression function. Furthermore, it incorporates valve position and current protection features to ensure safe operation. Additionally, the dryer features a user-friendly PLC+touch screen control interface, providing the convenience of one-click selection without any complicated operations.
Features
The Blower Purge Regenerative Air Dryer incorporates a high-performance pneumatic butterfly valve that is hard-sealed. This valve not only offers excellent sealing adjustment capability but also effectively prevents any leakage. To guarantee optimal performance, the dryer utilizes high-efficiency adsorption desiccant inside. This desiccant has a particle size of 3-5mm, possesses exceptional water resistance properties, and maintains its integrity even when submerged in water. Even under deteriorating working conditions, the dryer can still uphold a high drying effect. Additionally, an air distribution structure is installed at the bottom of the drying tower to ensure that the contact time between the compressed air and adsorbent meets the specified dew point temperature. This structure reduces impact and wear, leading to an extended lifespan for the adsorbent material.
Advantages
High-efficiency cooler
Efficient cooler designed by HTFS software.
Programmable controller
The seven-inch touch screen Siemens programmable controller allows for dynamic monitoring of operating procedures. This innovative device ensures that operators have real-time access to key information, enabling them to effectively oversee and control industrial processes. With its user-friendly interface and advanced functionalities, this programmable controller revolutionizes the way operations are managed. Gone are the days of manual tracking and guesswork; now, operators can easily navigate through the touch screen interface and obtain instant updates on process parameters, alarms, and system performance. This dynamic monitoring capability not only enhances operational efficiency but also improves safety and reliability in industrial environments. With Siemens programmable controller and its advanced touch screen technology, businesses can expect increased productivity, reduced downtime, and optimized performance.
Signal acquisition
Signal acquisition, monitoring, and display are all integrated seamlessly in the most comprehensive system. Our state-of-the-art technology ensures reliable and accurate data capture, continuous monitoring, and real-time visualization. With our solution, you can rest assured that your signal acquisition requirements are met efficiently and effectively. From capturing signals to monitoring their performance, our system provides a holistic approach to signal management. Experience the benefits of a comprehensive solution that brings together all aspects of signal acquisition, monitoring, and display in one advanced platform.
Various temperature control adjustment
Sure, here's a rearranged version of the content:
When analyzing the performance of a system, it is crucial to consider several key factors. These factors include the air outlet temperature, A/B tower pressure, heating temperature, blower pressure, regeneration exhaust gas temperature, and optionally, the dew point temperature.
The air outlet temperature signifies the temperature of the air flowing out of the system. Monitoring this temperature is important as it ensures that the desired level of warmth or cooling is achieved.
A/B tower pressure refers to the pressure exerted within the towers of the system. Keeping track of this pressure allows for precise control and efficient operation of the system.
The heating temperature is a vital parameter that determines the required level of warmth to be delivered. This temperature must be carefully adjusted to meet the desired comfort level for the intended application.
Blower pressure is another significant factor to consider. This pressure measurement shows the force exerted by the blower unit, which plays a crucial role in maintaining proper airflow and circulation within the system.
Regeneration exhaust gas temperature represents the temperature of the gases emitted during the regeneration process. By monitoring this temperature, one can ensure optimal regeneration efficiency and minimize energy wastage.
Lastly, the dew point temperature, though optional, is worth considering. This temperature indicates the point at which air becomes saturated with water vapor, leading to condensation. Taking dew point temperature into account can help prevent moisture-related issues within the system.
In conclusion, monitoring and understanding these factors – air outlet temperature, A/B tower pressure, heating temperature, blower pressure, regeneration exhaust gas temperature, and optionally, the dew point temperature – are integral to maintaining a well-functioning and efficient system.
Technical parameters:
• Fluid used: compressed air
• Inlet temperature: 5°C~42°C
• Ambient temperature: 2°C~38°C
• Outlet dew point: -20°C~-40°C
• Cooling water temperature: 2°C~32°C
• Regeneration gas consumption: 0%
• Power Mode: 380V/3Ph/50Hz
Process flow:
Who we are?
Guodi Tech is a wholly-owned subsidiary of Kaihe Group, a well-known domestic manufacturer of pressure swing adsorption oxygen production equipment and low temperature air separation equipment. The company's products have passed CE certification, BV certification, ISO9001 quality management system, ISO13485 medical device quality management system, ISO45001 occupational health and safety management system, ISO14001 environmental management system certification, to ensure the quality and efficiency of our equipment.
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