The Direct-Pipe Integration Solution
The Insertion High-Pressure High-Temperature Fan, also known as a duct-insertable fan, revolutionizes system design by fitting directly into existing high-pressure, high-temperature process pipelines via flanges or welding. This compact centrifugal unit eliminates the need for a separate foundation, extensive ductwork, and expansion joints, providing exceptional space savings. It is the ideal choice for retrofit or space-critical installations, such as refinery FCCU flue gas energy recovery systems or synthesis gas circulation loops. The innovative product simplifies complex layouts without compromising performance.
Self-Contained Unit for Demanding Service
This fan is a complete, integrated aerodynamic module, containing a short shaft, heat-resistant impeller, compact bearing housing, and minimized volute. Constructed from selected heat-resistant stainless steels or super-alloys through precision casting or welding, it is built to endure extreme conditions. The impeller meets a high G2.5 balance grade for smooth operation at elevated speeds and pressures. Its internal bearing cooling uses high-temperature grease-for-life lubrication or self-cooled sleeve bearings, while a robust sealing system-comprising a metal spiral gasket and mechanical seal-ensures zero process gas leakage. This makes the reliable Insertion High-Pressure High-Temperature Fan a fully sealed and secure inline booster.
Compact Power for Pipeline Boosting
Delivering significant pressure rise within a minimal footprint, the Insertion High-Pressure High-Temperature Fan is ideal for targeted energy recovery and gas circulation. The table below summarizes its performance range for integration into your pressurized system.
Key Performance Parameters
|
Parameter |
Condition |
Range / Value |
|
Volume Flow |
Hot (Operational) |
8,000 - 60,000 m³/h |
|
Total Pressure |
Hot (Operational) |
10,000 - 35,000 Pa |
|
Static Pressure |
Hot (Operational) |
8,000 - 30,000 Pa |
|
Total Efficiency |
Hot (Operational) |
70% - 78% |
|
Shaft Power |
Hot (Operational) |
100 - 600 kW |
|
Total Pressure |
Cold (for Test) |
Typically 12%-18% higher than Hot |
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