Adopting the latest technology, it is designed with a combustion chamber with large volume. It is equipped with a world-known burner, making the combustion more sufficient and ensuring higher efficiency and lower failure rate.
It adopts heat transfer and flow resistance technical design of Harbin Institute of Technology, ensuring large heating area and high heat efficiency.
It has protective functions of overtemperature, overpressure, water shortage, leakage detection and flameout, achieving unmanned management and safe and reliable operation.
LHS series steam boiler technology parameter table
Boiler model | Rated evaporating capacity | Nominal steam pressure | Feed temperature | Nominal steam temperature | Fuel consumption | Thermal efficiency | Transportation weight of maximum package | Transportation dimensions of maximum package |
light oil | heavy oil | natural gas | liquefied gas | city gas |
t/h | MPa | ℃ | ℃ | Kg/h | Kg/h | m3/h | m3/h | m3/h | % | t | mm |
LHS0.3-0.4-Y(Q) | 0.3 | 0.4 | 20 | 151 | 19.2 | 19.9 | 25.5 | 9.3 | 53.5 | 89 | 1.2 | Φ988×1956 |
LHS0.5-0.4-Y(Q) | 0.5 | 0.4 | 20 | 151 | 32 | 32.9 | 42.5 | 15.5 | 89.5 | 89.2 | 1.7 | Φ1158×2190 |
LHS0.5-0.7-Y(Q) | 0.5 | 0.7 | 20 | 170 | 32 | 32.9 | 42.5 | 15.5 | 89.5 | 89.2 | 1.7 | Φ1158×2190 |
LHS0.7-0.4-Y(Q) | 0.7 | 0.4 | 20 | 151 | 49.5 | 51 | 64.5 | 22 | 137 | 89.7 | 2.0 | Φ1258×2420 |
LHS0.7-0.7-Y(Q) | 0.7 | 0.7 | 20 | 170 | 49.5 | 51 | 64.5 | 22 | 137 | 89.7 | 2.0 | Φ1258×2420 |
LHS1-0.4-Y(Q) | 1 | 0.4 | 20 | 151 | 65 | 67.5 | 84 | 28 | 176.4 | 90.3 | 2.6 | Φ1358×2468 |
LHS1-0.7-Y(Q) | 1 | 0.7 | 20 | 170 | 65 | 67.5 | 84 | 28 | 176.4 | 90.8 | 2.6 | Φ1358×2468 |
Notes: The lower heating value of the fuel is calculated by the following values, light oil 10240kcal/kg, heavy oil 10000 kcal/kg, natural gas 8000kcal/Nm3, liquefied gas 24000 kcal/Nm3, and city gas 3800 kcal/Nm3. The parameters are for reference only. If the technology is improved, please refer to random technical parameters. |
LHS series hot water boiler technology parameter table
Boiler model | Water pressure rated | Water pressure rated | Rated outlet temperature | Rated the return water temperature | Fuel consumption | Thermal efficiency | Transportation weight of maximum package | light oil |
light oil | heavy oil | natural gas | liquefied gas | city gas |
MW | MPa | ℃ | ℃ | Kg/h | Kg/h | m3/h | m3/h | m3/h | % | t | mm |
LHS0.21-0.4/95/70-Y(Q) | 0.21 | 0.4 | 95 | 70 | 19.2 | 19.9 | 25.5 | 9.3 | 53.5 | 89 | 1.2 | Φ988×1956 |
LHS0.35-0.4/95/70-Y(Q) | 0.35 | 0.4 | 295 | 70 | 32 | 32.9 | 42.5 | 15.5 | 89.5 | 89.2 | 1.7 | Φ1158×2190 |
LHS0.49-0.4/95/70-Y(Q) | 0.49 | 0.4 | 95 | 70 | 49.5 | 51 | 64.5 | 22 | 137 | 89.7 | 2.0 | Φ1258×2420 |
LHS0.7-0.4/95/70-Y(Q) | 0.7 | 0.4 | 95 | 70 | 65 | 67.5 | 84 | 28 | 176.4 | 90.3 | 2.6 | Φ1358×2468 |
Notes: The lower heating value of the fuel is calculated by the following values, light oil 10240kcal/kg, heavy oil 10000 kcal/kg, natural gas 8000kcal/Nm3, liquefied gas 24000 kcal/Nm3, and city gas 3800 kcal/Nm3. The parameters are for reference only. If the technology is improved, please refer to random technical parameters. |