

Add to Cart
WNS Series 10 tons gas Oil Fired Low Nrigon Steam Boiler
Product Description
WNS Series High Efficiency Oil Fired Steam Boiler
The product model is WNS, which is a horizontal internal three return oil (gas) high-speed boiler (gas) integrated boiler with a wet structure at the rear. The first circuit is a wave furnace and a recirculation chamber, the second circuit is a flue gas pipe, and the third circuit is an energy saver and a condenser. The boiler is equipped with a complete set of automatic control devices and safety protection devices to achieve automatic water level control, alarm and shutdown when the water level is reduced; automatic boiler ignition, automatic furnace power adjustment and flame protection ensure safe operation of the boiler.
The boiler demineralized water first enters the condenser, and then is heated in the condenser (while cooling the flue gas), and then returned to the soft water tank. The preheated demineralized water is pumped to the economizer through the feedwater, heated by the economizer, and then sent to the boiler body.
Brief Introduction of Boiler Operating Conditions
The boiler can run stably under 80% -100% working conditions. The
rated load is less than 100%. The operating parameters of the
boiler are: the feed water temperature is 20 C, the rated working
pressure is 1.25 MPa, and 10 tons of water vapor can be generated
within one hour, and the temperature is 193.4C. If the fuel is
natural gas, the calculated thermal efficiency is 98.96%, the
exhaust temperature is 48.93 C, and the fuel consumption is
754.78NM3 / h (using the product one day). The calorific value of
natural gas is low (> 36.36MJ / NM3).
Product Features
1. Reasonable design
2. High efficiency and energy saving
3. Manufacturing specifications
4. Large steam space
5. Longevity and durability
6. Easy maintenance
Technical Parameters
Main Technical parameters of WNS Series Steam Boiler | |||||||||||
Item | Unit | WNS0.5 | WNS1 | WNS2 | WNS3 | WNS4 | WNS6 | WNS10 | WNS15 | WNS20 | |
Steam Capacity | t/h | 0.5 | 1 | 2 | 3 | 4 | 6 | 10 | 15 | 20 | |
Working Pressure | MPa | 1.0 | 1.25 | 1.25 | 1.25 | 1.25 | 1.25 | 1.25 | 1.25 | 1.25 | |
Steam Temperature | ℃ | 184 | 193 | 193 | 193 | 193 | 193 | 193 | 193 | 193 | |
Feed Water Temperature | ℃ | 20 | 20 | 20 | 20 | 20 | 20 | 104 | 104 | 104 | |
Thermal Efficiency | / | ≥96% | |||||||||
Fuel | / | Natural gas, liquefied gas, city gas, light oil | |||||||||
Fuel Consumption | Natural gas | NM3/h | 37 | 73 | 145 | 217 | 289 | 435 | 735 | 1101 | 1467 |
Liquefied gas | Kg/h | 30 | 58 | 117 | 174.5 | 232 | 351 | 589 | 871 | 1151 | |
City gas | NM3/h | 79 | 157 | 309 | 462 | 615 | 943 | 1575 | 2357 | 3147 | |
Light oil | Kg/h | 32 | 61 | 121 | 182 | 243 | 367 | 601 | 906 | 1211 | |
Gas Feed pressure | Natural Gas | mbar | 70-100 | 100-150 | 100-150 | 150-200 | 150-200 | 150-200 | 150-200 | 150-300 | 150-300 |
City Gas | mbar | 100-200 | 100-200 | 100-200 | 150-200 | 150-200 | 150-200 | 150-200 | 150-300 | 150-300 | |
Running water volume | M3 | 0.78 | 3.3 | 3.6 | 5.2 | 6 | 9 | 11.6 | 24.5 | 29 |
Note: the fuel consumption in the table is based on light oil low calorific value 42915KJ/Kg (10260Kcal/Kg), natural gas low calorific value 35588KJ/NM3 (8500Kcal/NM3) and liquefied gas low calorific value 45998KJ/Kg (11000Kcal/Kg). Calculation of low calorific value (16750KJ/NM3 (4000Kcal/NM3) of urban gas.
Shape and Interface Dimensions of WNS Biomass Steam boilers | |||||||
Item | Unit | WNS4 | WNS6 | WNS10 | WNS15 | WNS20 | |
Transport Dimension (L*W*H) | / | mm | 4928*2250*2600 | 5401*2406*2650 | 6280*2640*3176 | 8900*3400*3600 | 7800*3600*4000 |
Mainframe transport weight | / | t | 11 | 18.6 | 20.5 | 42 | 52 |
Main Steam Valve Pipe Diameter | DN | mm | 100 | 125 | 150 | 200 | 200 |
Feed Water Valve | DN | mm | 40 | 50 | 50 | 65 | 65 |
Safety Valve Diameter | DN | mm | 2*50 | 2*80 | 2*80 | 2*80 | 2*100 |
Drain Valve Pipe Diameter | DN | mm | 2*40 | 2*40 | 2*40 | 2*50 | 2*50 |
Chimney Diameter | φ | mm | 400 | 600 | 750 | 1000 | 1100 |
Remarks: We will reserve rights to change the above mentioned data due to continuous policy transformation and product improvement.