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A Combustion Organization Method in Furnace of Opposed Combustion Pulverized Coal Boiler

A pulverized coal boiler and hedging combustion technology, which is applied in the field of pulverized coal combustion of boilers, can solve the problems of difficult control, complicated design, and cannot effectively solve the high temperature corrosion of the water wall of the boiler side wall, etc. Effects of stability issues

Active Publication Date: 2019-07-12
TSINGHUA UNIV
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  • Abstract
  • Description
  • Claims
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Problems solved by technology

[0004] However, the current research only focuses on the ignition near the jet outlet of the pulverized coal burner and the jet combustion organization in the early stage of combustion (such as setting the nozzle peripheral wind, wall-attached wind, etc.), and the post-combustion organization of the pulverized coal combustion in the direction of the furnace height. (such as adding side burn-out air to the front and rear walls), the design is complex, not easy to control, and cannot effectively solve the problem of high-temperature corrosion of the water-cooled wall of the boiler side wall

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  • A Combustion Organization Method in Furnace of Opposed Combustion Pulverized Coal Boiler
  • A Combustion Organization Method in Furnace of Opposed Combustion Pulverized Coal Boiler
  • A Combustion Organization Method in Furnace of Opposed Combustion Pulverized Coal Boiler

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Embodiment

[0024] Taking a 1000MW counter-combustion pulverized coal boiler as an example, the coal quality of the present invention is mixed combustion of bituminous coal and lean coal. Low nitrogen combustion technology with overfired air.

[0025] In the original boiler design, the primary air carried all the pulverized coal into the furnace, and the total air intake in the furnace was 120% of the theoretical air volume for pulverized coal combustion, of which 85% of the theoretical air volume required for pulverized coal combustion entered into the main combustion zone 4 of the boiler furnace. , wherein the primary air accounts for 24% of the theoretical air volume of pulverized coal combustion, and the secondary air accounts for 61% of the theoretical air volume of pulverized coal combustion; in addition, 35% of the theoretical air volume required for pulverized coal combustion enters through the separate burn-off air nozzle 2 Boiler burnout zone 6 in the upper part of the furnace. ...

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Abstract

The invention discloses an internal combustion organization method of an opposed firing pulverized-coal fired boiler, and belongs to the technical field of boiler pulverized-coal combustion. Accordingto the method, part of fuel for combustion enters a hearth directly in a jet flow mode through a fuel jet nozzle of a lateral wall, is mixed with hot smoke generated by combustors of a front wall anda rear wall and is combusted, and the rest of the fuel enters through the combustors of the front wall and the rear wall and is combusted. The fuel is supplied from the lateral wall, so that mixing of part of the fuel and secondary air is postponed, fractional combustion of the fuel is realized, and the NOx generation amount is further reduced. Meanwhile, through combustion of the fuel near the lateral wall, uniformity of fuel horizontal distribution in a boiler combustion area can be realized, the problem of ash accumulation caused by non-uniform distribution of fly ash of a top horizontal flute inlet due to original combustion organization is relieved, and stable operation of a unit is facilitated. The internal combustion organization method of the opposed firing pulverized-coal fired boiler is simple in design, facilitates combustion organization adjustment, and is low in comprehensive operation cost.

Description

technical field [0001] The invention relates to an internal combustion organization method of a counter-combustion pulverized coal boiler, and belongs to the technical field of boiler pulverized coal combustion. Background technique [0002] In my country, units of 300MW and below are gradually being replaced by large units. Therefore, the proportion of supercritical and ultra-supercritical units of 600MW and above in coal-fired thermal power units has been increasing. Among them, the boilers of most units adopt the opposite combustion method of the front and rear walls. [0003] However, in recent years, with the increasingly stringent environmental protection requirements for pollutant emissions from coal-fired power generation boilers, most generating units adopt low-nitrogen combustion technology and low-nitrogen combustion equipment to meet environmental protection requirements. Among them, the low-nitrogen combustion technology is mainly air staged combustion technolo...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): F23C5/08F23C7/02
Inventor 由长福裴建军
Owner TSINGHUA UNIV
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