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Why should the change in exhaust gas temperature be monitored frequently while the boiler is in operation? What are the common causes of an increase in the exhaust temperature of a boiler? Because the heat loss due to smoke exhaust is the largest among all the heat losses in a boiler, accounting for approximately 6% of the heat supplied ; For every increase of 12–15°C in the flue gas temperature, the heat loss due to flue gases increases by 1% ; At the same time, the flue gas temperature can reflect the operating condition of the boiler; therefore, it is one of the most important indicators during boiler operation and must be closely monitored. The factors that increase the flue gas temperature are as follows: 1) scaling, soot accumulation, and slag formation on the heated surfaces. 2) The excess air coefficient is too high. 3) The air leakage coefficient is too high. 4) An increase in moisture content in the fuel. 5) Boiler load increases. 6) The quality of fuel deteriorates. 7) The operating mode of the coal feeding system is unreasonable. 8) Secondary combustion in the tail flue. 1. Air leakage analysis: Air leakage refers to leakage in the furnace and flue ducts, and it is one of the main reasons for an increase in exhaust gas temperature. It is a problem related to operation management, maintenance, and equipment design. Furnace air leakage mainly refers to air leakage at the furnace roof seal, viewing ports, manway doors, and the seal water tank at the furnace bottom ; Flue gas leakage refers to the leakage of flue gas at the rear section before the oxygen meter. 2. Analysis of the operation status of the grinding system: During operation, increasing the temperature at the outlet of the coal grinder is certainly beneficial for reducing the flue gas temperature. To increase the outlet temperature of the coal grinder, the cold air dampers are generally kept fully closed. However, during operation, a certain amount of cold air must be supplied to maintain the seals of the coal feeder and the coal grinder, which in turn displaces some of the hot primary air. As a result, the amount of air passing through the preheater decreases, leading to an increase in the flue gas temperature. Another factor contributing to a high wind rate, as well as coarser coal powder, can also cause an increase in the flue gas temperature. 3. Analysis of ash accumulation on the heating surfaces Ash accumulation on the boiler’s heating surfaces refers to the buildup of ash and slag there, as well as ash accumulation on the heat transfer elements of the air preheater. Ash accumulation on these heating surfaces reduces their heat transfer efficiency, leading to a decrease in the boiler’s heat absorption, a reduction in the heat released by the flue gases, and an increase in the smoke temperature at the inlet of the air preheater. This, in turn, results in an increase in the exhaust gas temperature ; Dust blockage in the air preheater reduces its heat transfer area, which in turn lowers the amount of heat released by the flue gases and causes the exhaust gas temperature to rise. (Extreme measures such as controlling the flue gas flow rate and maintaining positive pressure in the boiler, as well as the problem of ash accumulation on the heating surfaces at the rear of the boiler that arises during operation) It is important to strengthen boiler soot blowing during operation; when the load permits, the boiler should be thoroughly soot-blown at least once a day. During periods of low load, efforts should be made to increase the frequency of soot blowing to ensure that the boiler’s heating surfaces remain clean. 4. Analysis of ambient air temperature: During actual operation, the ambient wind temperature is higher than the design value; as a result, the wind temperature at the inlet of the air preheater is high, the heat transfer temperature difference in the air preheater is small, which leads to less heat release from the flue gas. Consequently, the exhaust gas temperature increases. Learn *boiler knowledge every day, follow the WeChat official account Boiler Circle. Meanwhile, the amount of hot air required by the coal grinding system decreases, the amount of primary air flowing through the air preheater drops, and the flue gas temperature rises – these are all objective environmental factors. 5. When the feedwater temperature is too high, the temperature difference for heat transfer between the flue gas and the water becomes small, thereby causing the flue gas exhaust temperature to rise. (Activation and deactivation of the turbine high and low pressure heaters! 6. Analysis of the arrangement of heating surfaces: If the fouling coefficient of the furnace is not estimated accurately during boiler design, resulting in an unreasonable arrangement of the heating surfaces, or if the structure is inadequate and thus the heating surfaces are unable to absorb sufficient heat, this will lead to a higher flue gas temperature at the inlet of the air preheater, thereby increasing the exhaust gas temperature. In such cases, redesign and recalculation are necessary; measures such as increasing the number of tubes in the economizer can be taken to reduce the flue gas temperature at the inlet of the air preheater. 7. Analysis of changes in coal quality fed into the furnace: An increase in moisture content in the fuel, as well as a decrease in the lower heating value of the coal supplied to the boiler, both lead to an increase in exhaust gas temperature. Because these changes will increase the flue gas volume and specific heat of the flue gas, reducing the temperature drop of the flue gas in the convection zone and raising the exhaust gas temperature. Therefore, coal with low moisture and high calorific value should be used as much as possible. 8. Measurement and analysis of flue gas temperature: Due to the unevenness of the temperature and velocity fields of the flue gas at the exit of the air preheater, if the positions of the temperature measurement points are not appropriate, the measured temperature values will have certain errors, and the displayed values may be on the high side. 9. The operators should, during low-load operation, strive to keep the total air volume supplied to the boiler and the oxygen level in the furnace at low levels. Ash cleaning of the air preheater should be carried out carefully during each shift, in order to control and reduce the flue gas temperature as much as possible.
The reason for monitoring changes in the boiler’s exhaust gas temperature is that high exhaust gas temperatures indicate significant heat loss, which directly affects the boiler’s thermal efficiency and operating costs. An increase in flue gas temperature may be caused by factors such as fouling on the heated surfaces, an excessive excess air coefficient, air leakage, increased fuel moisture, an increased boiler load, a deterioration in the quality of the fuel, or improper operation of the coal feeding system. Therefore, regularly monitoring the flue gas temperature helps to adjust operating conditions and maintain the equipment in a timely manner, ensuring the safe and efficient operation of the boiler. .