Prediction system of circulating fluidized bed household garbage burning boiler furnace outlet flue gas oxygen content and method thereof
A technology for domestic waste incineration and flue gas oxygen content, which is applied in the field of energy engineering and can solve problems such as high computing loads
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Embodiment 1
[0088] refer to figure 1 , figure 2 , image 3 , a system for predicting the oxygen content of flue gas at the furnace outlet of a circulating fluidized bed domestic waste incineration boiler provided by the present invention, comprising a circulating fluidized bed domestic waste incineration boiler, a distributed control system for operating control of the boiler, and a data communication interface , database and host computer. The database reads data from the distributed control system through the data communication interface, and is used for training, learning and testing of the upper computer. The upper computer performs data exchange with the distributed control system through the data communication interface. The upper computer includes online learning, online update, Validation part and online prediction part. Specifically include:
[0089] Signal acquisition module. This module is used to collect the operating condition parameters and operating variables of the C...
Embodiment 2
[0143] refer to figure 1 , figure 2 , image 3 , a method for predicting the oxygen content of flue gas at the furnace outlet of a circulating fluidized bed domestic waste incineration boiler provided by the present invention, the method comprises the following steps:
[0144] 1) Analyze the operating mechanism of the circulating fluidized bed domestic waste incineration boiler and the change mechanism of the oxygen content of the flue gas, and select the waste feed rate, coal feed rate, primary air volume, secondary air volume, bed temperature, and furnace dilute-phase zone temperature and furnace negative pressure as the input variables of flue gas oxygen content prediction model.
[0145] Domestic municipal solid waste is mostly collected in a mixed manner, resulting in complex components of waste entering factories and furnaces. Generally, it mainly includes main components such as kitchen waste, paper, plastic, rubber, fabric, wood, bamboo and inorganic substances, sho...
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