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| Place of Origin: | Chongqing, China |
|---|---|
| Brand Name: | Sino-NSH |
| Certification: | ISO 9001:2015, CE |
| Model Number: | VFD-100 |
| Minimum Order Quantity: | 1 Set |
| Packaging Details: | Standard export wooden case with vacuum-packed components, anti-rust treatment for metal surfaces |
| Delivery Time: | 25-35 working days |
| Payment Terms: | T/T,L/C |
| Supply Ability: | 50 Sets per Month |
| Flow Rate: | 6000 L/H | Vacuum Degree: | ≤5 Pa |
|---|---|---|---|
| Working Pressure: | ≤0.5 MPa | Temperature Range: | 20-80°C |
| Filtration Precision: | ≤1 μm (Final Stage) | Moisture Content After Treatment: | ≤5 Ppm |
| Dielectric Strength After Treatment: | ≥75 KV | Gas Content After Treatment: | ≤0.1% |
| Power Supply: | 380V 50Hz 3-Phase (Customizable) | Heating Power: | 90 KW |
| Total Power: | 105 KW | Oil Inlet/Outlet: | DN50 |
| Weight: | 2800 Kg | Dimensions: | 3200×1850×2250 Mm |
| Noise Level: | ≤75 DB(A) | ||
| Highlight: | Double-Stage Vacuum Dehydration System,Online Transformer Oil Purification,6000 L/H Substation Oil Treatment |
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The VFD-100 is a double-stage vacuum transformer oil purification system engineered for continuous online operation in substation transformer maintenance. With a rated processing capacity of 6,000 liters per hour, it combines high-vacuum dehydration, multi-stage fine filtration, and rapid degassing in a single integrated skid to restore and maintain insulating oil to IEC 60422 service standards.
Unlike single-stage vacuum systems that rely on a single expansion chamber, the VFD-100 employs a two-stage vacuum separation process. In the first stage, oil is dispersed into a thin film across structured packing with a surface area-to-volume ratio exceeding 250 m²/m³ under a vacuum of ≤200 Pa, driving off the bulk of free and emulsified water. The second stage operates at an ultimate vacuum of ≤5 Pa, targeting dissolved moisture at the molecular level. This staged approach achieves a post-treatment moisture content of ≤5 ppm (ASTM D1533 Karl Fischer method) from inlet conditions as high as 50-80 ppm, without exceeding an oil heating temperature of 65°C — well below the thermal degradation threshold for naphthenic and paraffinic mineral oils.
The system is configured for permanent or semi-permanent installation at the substation, enabling side-stream purification while the transformer remains energized. A valved bypass loop draws 5% to 15% of the total oil volume from the transformer's lower drain valve and returns purified oil to the conservator or top fill port. This continuous circulation maintains oil dielectric strength ≥75 kV (ASTM D877, 2.5 mm gap) and moisture ≤5 ppm on an ongoing basis, eliminating the need for periodic offline treatment campaigns that require transformer de-energization.
Particulate contamination is managed through a three-stage filtration train:
Dissolved gas content in transformer oil — including oxygen, nitrogen, carbon monoxide, and acetylene — directly influences dielectric properties and serves as a diagnostic indicator for incipient faults. The VFD-100 vacuum system reduces total gas content to ≤0.1% by volume (ASTM D3612), restoring the oil's gas-absorption capacity and improving impulse dielectric strength. For transformers with DGA (Dissolved Gas Analysis) results indicating thermal fault or partial discharge activity, the degassing function is a critical step before re-sampling for trend re-baselining.
Oil is heated in stages through a stainless steel shell-and-tube heater bank with a total heating power of 90 kW. Temperature is regulated by a PID controller with a ±1°C steady-state accuracy, maintaining the oil at 55-65°C for optimal dehydration efficiency. A failsafe over-temperature cut-off at 80°C protects the oil from thermal cracking. The heating elements are constructed from 316L stainless steel sheathed Incoloy 800 resistance wire, rated for continuous operation with transformer oil at design temperatures.
The system is operated via a PLC-based control panel with a 7-inch HMI touchscreen. Real-time displays include vacuum level (Pa), oil temperature (°C), oil flow rate (L/H), and differential pressure across each filter stage (kPa). Programmable alarm thresholds trigger visual and audible alerts for high filter differential pressure (indicating element loading), low vacuum, and over-temperature conditions. An automatic shutdown sequence protects the vacuum pump and oil heater in the event of power loss or critical alarm conditions.
| Component | Material | Standard |
|---|---|---|
| Vacuum chambers | 304 stainless steel | ASTM A240 |
| Piping and valves | 304 stainless steel | ASTM A312 |
| Heater shell and tubes | 316L / 304 stainless steel | ASTM A269 |
| Feed pump | Cast iron body, SS impeller | DIN 24255 |
| Vacuum pump | Rotary vane, oil-sealed | ISO 21360 |
| Skid frame | Carbon steel, epoxy coated | ISO 12944 C3 |
| Gaskets and O-rings | Viton (FKM) | ASTM D2000 |
This system is rated for mineral insulating oils conforming to IEC 60296 (Class I and Class II) and is suitable for transformers rated up to 100 MVA at 69-220 kV in the following applications: