How long can a burner flame reach? Many people new to burners have this question, as the flame length often affects the operating environment, production efficiency, and even the selection of a boiler burner! So, how long can a burner flame reach? Today, we'll tell you the factors affecting burner flame length.
For gas burners, the primary factor affecting flame length is the air volume supplied by the fan. A large air volume from the burner fan results in a long flame, while a small air volume from the air intake damper shortens the flame. Another factor is the size of the pressure regulating valve. The valve adjusts the gas pressure. For example, when the gas in a gas stove is running low, the flame shrinks. This is essentially the same principle! For oil burners, the factors affecting flame length are largely the same. However, even with the same burner and pressure, flame lengths will differ depending on the viscosity of the oil. We need to analyze each case individually. Generally, the formula for calculating burner flame length is: Burner flame length = Nozzle flow rate × Fuel pressure × Fan pressure × Correction factor (s). Understanding this formula should allow for accurate flame length calculations. However, in practice, you should still calculate based on actual values, as other factors can also affect flame length.
For oil burners, the factors affecting flame length are largely the same. However, even with the same burner and pressure, flame lengths will differ depending on the viscosity of the oil. We need to analyze each case individually. Generally, the formula for calculating burner flame length is: Burner flame length = Nozzle flow rate × Fuel pressure × Fan pressure × Correction factor (s).
How long can a burner flame reach? Many people new to burners have this question, as the flame length often affects the operating environment, production efficiency, and even the selection of a boiler burner! So, how long can a burner flame reach? Today, we'll tell you the factors affecting burner flame length.
For gas burners, the primary factor affecting flame length is the air volume supplied by the fan. A large air volume from the burner fan results in a long flame, while a small air volume from the air intake damper shortens the flame. Another factor is the size of the pressure regulating valve. The valve adjusts the gas pressure. For example, when the gas in a gas stove is running low, the flame shrinks. This is essentially the same principle! For oil burners, the factors affecting flame length are largely the same. However, even with the same burner and pressure, flame lengths will differ depending on the viscosity of the oil. We need to analyze each case individually. Generally, the formula for calculating burner flame length is: Burner flame length = Nozzle flow rate × Fuel pressure × Fan pressure × Correction factor (s). Understanding this formula should allow for accurate flame length calculations. However, in practice, you should still calculate based on actual values, as other factors can also affect flame length.
For oil burners, the factors affecting flame length are largely the same. However, even with the same burner and pressure, flame lengths will differ depending on the viscosity of the oil. We need to analyze each case individually. Generally, the formula for calculating burner flame length is: Burner flame length = Nozzle flow rate × Fuel pressure × Fan pressure × Correction factor (s).