Fangkuai oil-fired hot water boiler series adopts a new deep coupling technology of combustion and heat transfer, which breaks the limitation of the burner. It is no longer a combination of boiler + burner, but through computer simulation to adjust the flame according to the heating surface of the boiler. And matching, make the gas boiler a complete thermal energy system, the combustion and heat transfer are customized and optimized, the boiler operation is more efficient, more energy-saving, higher stability, faster response speed, and low nitrogen emissions At the same time, the efficiency of use is further improved.
The oil heating boiler is combined into a complete thermal energy system, while ensuring low nitrogen emissions, the thermal efficiency is increased to 106%.
The oil hot water boiler adopts diffusion combustion, which can meet the technical requirements of large tonnage. The nitrogen oxide emission is less than 30 mg, which meets the strict air emission standard.
The self-developed wing heat exchange element, compared with ordinary condensing vacuum boilers, reduces the floor area by more than 20%.
The oil heating boiler is equipped with modules such as high-color touch screen, dynamic graphic display, multi-level menu and authority, and automatic failure record saving, which is very user-friendly.
The deep coupling technology of combustion and heat transfer refers to the deep coupling of the heat transfer system and the combustion system, breaking the limitation of the burner, and no longer sacrificing the key characteristics of the boiler (that is, the heat transfer system) to adapt to the characteristics of the burner (that is, the heat transfer system). System), so that the gas boiler becomes a complete thermal energy system, and the efficiency is further improved while obtaining low nitrogen emissions.
The brand-new "Ultraten" technology heat transfer element - the fin tube, its condensation heat transfer is a process of coexistence of mass transfer and heat transfer, and the professional fin tube heat transfer element greatly improves the flue gas condensation rate. The highly advanced condensation technology ensures the high efficiency of energy utilization. By fully absorbing the latent heat of vaporization in the flue gas generated after the combustion of gas, the energy can be effectively utilized, which not only saves energy, but also improves efficiency.
Types | Thermal power | Steam pressure | Steam temperature | Thermal efficiency | Fuel | Length * Width * Height | Hot water production |
---|---|---|---|---|---|---|---|
Unit | Mw | MPa | °C | % | mm | t/h; 10/60°C | |
T7-2800 | 2.8 | -0.02 | 93.5 | 105.50% | Natural gas | 4800 * 1870 * 2530 | 48 |
T7-4200 | 4.2 | 5700 * 2080 * 2880 | 72 | ||||
T7-7000 | 7 | 7400 * 2750 * 3500 | 120 |
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