Product Introduction
The heating surface of the heat transfer oil furnace is arranged reasonably, the organic heat carrier (heat transfer oil) has a long service life, high temperature and low pressure, and can achieve high working temperature at lower operating pressure. Liquid phase transportation of thermal energy, organic heat carriers (thermal oil) with a temperature below 300 ℃ have a saturated vapor pressure 70-80 times lower than that of water, greatly reducing the pressure conditions of thermal equipment and lowering equipment costs.
The thermal oil furnace has a reasonable structure, advanced technology, small footprint, small external volume, beautiful appearance, easy management, high thermal efficiency, significant energy-saving effect and economic benefits. Compared with similar foreign products, the structure has unique features. The temperature regulation of the thermal oil furnace is precise and reliable, equipped with complete operation control and safety monitoring devices, with high degree of automation, low labor intensity for workers, and energy saving and consumption reduction. Compared with steam heating, it can save energy by 1 to 1.5 times, and compared with electric heating, it can save energy by 0.8 to 1.3 times, significantly saving operating costs. It can be widely used in various industrial heating processes. Replace heating with electricity, steam, etc. to improve productivity.
Performance advantages
1. Strong adaptability to different fuels
The combustion equipment and upper furnace body are designed separately, and the furnace structure can be designed separately according to the different properties of solid fuel;
2. Diversity of grate structure
This structure grate has two forms: fixed and fully automatic chain grate. Depending on the nature of the fuel, manual or mechanical feeding can be used.
3. Square tube combustion chamber
The combustion chamber of the boiler consists of a refractory furnace chamber and square coils, providing ample space for fuel combustion, complete combustion, and high thermal efficiency.
4. Optimal coil design
The radiation section is made of square coil tubes, while the convection section is made of serpentine tubes. The heating surface tubes have good thermal expansion performance, low stress, and are safe and reliable.
5. Best Process Design
The flue gas passes through the convection and radiation coils in three stages, with uniform flow velocity and safe and stable operation.
6. Adequate output
The heating surface is arranged reasonably, with a large area, good heat transfer effect, high efficiency, stable and sufficient output.
7. Improve automatic control measures
Accurate control of oil outlet temperature, multiple control protections for medium temperature, pressure, and over smoke temperature are set to ensure safe and reliable operation.
8. Leading in automatic control level
The boiler controller adopts Siemens/Delixi electrical components, which have reliable performance. There are three forms of controllers: ordinary type, Chinese English menu type with LCD display, and touch screen type with human-machine dialogue remote control. The standard configuration is the regular type.
technical parameter
Project and Parameters model |
Rated thermal power (KW) | Rated working pressure (MPa) | Maximum operating temperature (℃) |
apply Fuel |
Oil content in furnace (m ³) |
Circulating oil quantity (M³/h) |
Inlet and outlet pipe diameter (DN) |
Transport weight (t) |
Maximum transport size L×B×H(mm) |
|||
YGW series |
YGW-1200MA | 1200 | 1 | <350 | 0.75 | 80 | 125 | 12 | 4220 | 2480 | 2800 | |
YGW-1400MA | 1400 | 1 | <350 | Solid fuels such as biomass pellet fuel and Class II bituminous coal | 1.2 | 100 | 125 | 13.5 | 4500 | 2550 | 2810 | |
YGW-1800MA | 1800 | 1 | <350 | 1.5 | 100 | 150 | 14.5 | 4550 | 2730 | 3010 | ||
YGW-2400MA | 2400 | 1 | <350 | 2.1 | 160 | 150 | 17 | 5200 | 2730 | 2960 | ||
YGW-3000MA | 3000 | 1 | <350 | 2.4 | 160 | 150 | 20 | 6000 | 2730 | 3240 | ||
YGW-3500MA | 3500 | 1 | <350 | 2.6 | 200 | 200 | 25 | 6400 | 2770 | 3470 |
YLW Organic Heat Carrier Furnace
Project and Parameters model |
Rated thermal power (KW) | Rated working pressure (MPa) | Maximum operating temperature (℃) |
apply Fuel |
Oil content in furnace (m ³) |
Circulating oil quantity (M³/h) |
Inlet and outlet pipe diameter (DN) |
Transport weight (t) |
Maximum transport size L×B×H(mm) |
|||
YLW series | YLW-1400MA | 1400 | 1 | <350 | Solid fuels such as biomass pellet fuel and Class II bituminous coal | 1.2 | 100 | 125 | 14 | 4121 | 1900 | 2900 |
YLW-1800MA | 1800 | 1 | <350 | 1.5 | 100 | 150 | 20 | 4400 | 2400 | 3000 | ||
YLW-2400MA | 2400 | 1 | <350 | 2.1 | 160 | 150 | 25 | 5680 | 2480 | 3240 | ||
YLW-3000MA | 3000 | 1 | <350 | 2.4 | 160 | 150 | 30 | 6000 | 2650 | 3240 | ||
YLW-3500MA | 3500 | 1 | <350 | 2.6 | 200 | 200 | 35 | 6400 | 2770 | 3470 | ||
YLW-4200MA | 4200 | 1 | <350 | 2.8 | 250 | 200 | 40 | 6900 | 2820 | 3470 | ||
YLW-4700MA | 4700 | 1 | <350 | 3.0 | 250 | 200 | 44 | 7680 | 2985 | 3715 | ||
YLW-6000MA | 6000 | 1 | <350 | 4.8 | 350 | 250 | 48 | 7900 | 3200 | 3475 | ||
YLW-7000MA | 7000 | 1 | <350 | 7 | 460 | 250 | 50 | 8400 | 3300 | 3475 | ||
YLW-10000MA | 10000 | 1 | <350 | 9.5 | 540 | 300 | 70 | 9200 | 3300 | 3550 | ||
YLW-12000MA | 12000 | 1 | <350 | 12.8 | 600 | 350 | 142 | 12600 | 3820 | 3630 |