For compressed air installation, water is the biggest problem. YUKA's air-water separator can solve this problem simply and efficiently.
Our characteristic is to install the gas-water filter separator in the rear cooler, the gas storage tank and the downstream of the freeze dryer, as well as the key point of the pipeline engineering installation. YUKA's air-water separator is designed to filter out up to 99% of the moisture in the compressed air, and the maintenance cost is very low.
Our air-water separator uses the effect of centrifugal motion to force liquid water to be separated from compressed air. The rotation causes the condensed water to adhere to the wall of the gas-water separator. When the condensate has enough weight, it will fall to the bottom of the gas-water separator and be stored until it is discharged from the system by the Automatic Drain Valve.
The gas-water separator has an aluminum housing and a polypropylene mechanism. They can withstand operating pressures up to 10 bar g.
Feature & Advantage
· Protect the coalescing filter from a large amount of liquid pollution
· Helps to provide air quality, in line with ISO8573-1:2010, the international standard for compressed air quality
· Suitable for all compressed air applications, suitable for all compressor types
· Low operating cost, low pressure loss, low life cycle cost
· All WS series gas-water separators are covered by a 15-year shell warranty
The Water Separator Filter is compact and beautiful in appearance, durable, and the pressure loss is negligible. And there is an imported Automatic Drain valve inside, no need to replace components. It is not only an ideal component for screw compressors, but also an indispensable water removal device for general air compressor post-processing.
Removal of water in compressed air is the primary task of compressed air purification. The water entrained in compressed air will corrode pipelines, valves, instruments and equipment, resulting in increased production costs.
Scope of Application
1. Separation and recovery of compressed air condensate
2. Condensate separation in steam line
3. Air Separation of inlet/outlet of gas-liquid mixing part
4. Separate and discharge condensate in the vacuum system
5. Condensate separation after water cooling tower
6. Geothermal steam separator
7. Various other gas-liquid separation applications
Technical Specification
Model | Pipe Size | Flow rates | Dimension(mm) | ||||||
L/S | m³/min | cfm | W(Weight) | H(High) | A | B | C (clearance for housing) | ||
TWS009 | RC1/4" | 15.0 | 0.9 | 31.8 | 81 | 197 | 24.6 | 173.9 | 50.5 |
TWS010 | RC3/8" | 25.1 | 1.5 | 53.0 | 81 | 197 | 24.6 | 173.9 | 50.5 |
TWS011 | RC1/2" | 46.8 | 2.8 | 98.8 | 108 | 249 | 30.1 | 220.6 | 53.3 |
TWS012 | RC3/4" | 66.8 | 4.0 | 141.2 | 108 | 249 | 30.1 | 220.6 | 53.3 |
TWS014 | RC3/4" | 86.8 | 5.2 | 183.6 | 108 | 289 | 30.1 | 260.6 | 53.3 |
TWS016 | RC1" | 130.3 | 7.8 | 275.3 | 133 | 332 | 40.7 | 291 | 59.6 |
TWS018 | RC1-1/2" | 175.4 | 10.5 | 370.7 | 133 | 332 | 40.7 | 359.8 | 59.6 |
TWS020 | RC2" | 300.0 | 18.0 | 636.0 | 170 | 617 | 52.92 | 662.97 | 59.6 |
Technical requirements | Maximum operating pressure: 10barg Operating temperature: from 1.5℃ to 80°C |
Pressure | Barg | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | 10 | 11 | 12 | 13 | 14 | 15 | 16 |
Psig | 15 | 29 | 44 | 59 | 73 | 87 | 100 | 116 | 131 | 145 | 160 | 174 | 189 | 203 | 219 | 232 | |
Correction factor | 0.38 | 0.53 | 0.65 | 0.76 | 0.85 | 0.93 | 1.00 | 1.07 | 1.13 | 1.19 | 1.23 | 1.31 | 1.36 | 1.41 | 1.46 | 1.51 |