Intelligent soot blowing method and system based on image three-dimensional reconstruction

A three-dimensional reconstruction and image technology, applied in combustion methods, lighting and heating equipment, removal of solid residues, etc., can solve the problems of large blindness, large loss, inability to accurately monitor the accumulation of ash and slag, and solve excessive soot blowing. and underblowing, reducing sootblowing power consumption, and optimizing the effect of sootblowing duration

Active Publication Date: 2018-11-20
GUANGZHOU SPECIAL PRESSURE EQUIP INSPECTION & RES INST
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  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the traditional soot blowing system cannot accurately monitor the ash deposit and slagging, so it can only use a regular and quantitative blowing method, which is blind and causes a lot of loss

Method used

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  • Intelligent soot blowing method and system based on image three-dimensional reconstruction
  • Intelligent soot blowing method and system based on image three-dimensional reconstruction
  • Intelligent soot blowing method and system based on image three-dimensional reconstruction

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Embodiment Construction

[0059] see figure 1 , the present invention provides a kind of intelligent soot blowing method based on image three-dimensional reconstruction, it comprises the following steps:

[0060] Step S1: monitoring the heating surface to obtain a two-dimensional image of the heating surface;

[0061] Step S2: performing three-dimensional reconstruction on the two-dimensional image to obtain three-dimensional image information of the heating surface;

[0062] Step S3: performing fuzzy processing on the three-dimensional image information to obtain corresponding control instructions;

[0063] Step S4: Start or stop or maintain the soot blowing operation on the heating surface according to the control instruction.

[0064] see figure 2 , specifically, the step S2 specifically includes the following steps:

[0065] Step S21: Combining the two-dimensional image processing of all different angles of the heating surface to obtain the three-dimensional contour model of the ash on the hea...

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Abstract

The invention relates to an intelligent soot blowing method and an intelligent soot blowing system based on three-dimensional reconstruction of images. The method comprises the following steps: S1: monitoring a heating surface and obtaining the two-dimensional image of the heating surface; S2: carrying out three-dimensional reconstruction on the two-dimensional image to obtain the three-dimensional image information of the heating surface; S3: carrying out fuzzy processing on the three-dimensional image information to obtain a corresponding control instruction; and S4: starting or stopping or maintaining soot blowing operation for the heating surface according to the control construction. According to the invention, online monitoring on overall soot formation and slagging of the heating surface of a boiler is combined with fuzzy control, and therefore, online monitoring on the overall heating surface of the boiler is achieved, and soot blowing is carried out on local heating surface according to requirements, thus effectively optimizing soot blowing, reducing soot blowing duration, reducing soot blowing energy consumption and improving the overall heat efficiency of the boiler.

Description

technical field [0001] The invention relates to the technical field of intelligent soot blowing of coal-fired boilers, in particular to an intelligent soot blowing method and system based on three-dimensional image reconstruction. Background technique [0002] During the operation of coal-fired boilers, the accumulation of dust and slagging on the heating surface is a long-standing problem. Due to the large thermal resistance of ash and slag, the accumulation of ash and slagging on the heating surface of the boiler will not only reduce the thermal efficiency of the heating surface, but also cause the surface temperature of the heating surface to be too high, resulting in super-temperature and high-temperature corrosion of the metal on the heating surface, and even the explosion of the furnace tube. leak. On the other hand, the reduced efficiency of the heating surface will increase the coal consumption of the unit, increase the temperature of the furnace outlet and the fina...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): F23J3/00
CPCF23J3/00F23J2700/001
Inventor 陈志刚黎华李茂东谭超陆继东杨波董进宁徐开华张振顶林金梅
Owner GUANGZHOU SPECIAL PRESSURE EQUIP INSPECTION & RES INST
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