Thermoelectric environment-friendly production management system

By designing combustion components to flip biomass feedstock and optimizing gas supply components, the problem of incomplete combustion caused by biomass feedstock accumulation was solved, achieving more efficient and environmentally friendly thermal power production.

CN223688281UActive Publication Date: 2025-12-19CHUZHOU CHUNENG THERMAL POWER CO LTD
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Patent Information

Application Number
CN202520044118.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-09
Publication Date
2025-12-19
Estimated Expiration
2035-01-09

AI Technical Summary

Technical Problem

Biomass feedstock tends to accumulate during combustion in gasification boilers, leading to incomplete combustion, energy waste and loss, and reduced efficiency of thermal power production.

Method used

Design a thermal power environmental protection production management system that uses combustion components to rotate biomass raw materials, combines gas supply components to optimize gas supply, prevents accumulation and promotes complete combustion, and uses collection boxes to collect ash to improve combustion efficiency.

Benefits of technology

It effectively prevents the accumulation of biomass raw materials, improves the combustion efficiency of biomass raw materials, reduces energy waste, and enhances the environmental protection effect of thermal power production.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a thermoelectric environment-friendly production management system which comprises a production frame, a combustion assembly is arranged in the production frame, and a gas supply assembly is arranged on one side of the production frame. The combustion assembly comprises supporting blocks fixedly installed on the two sides of the inner wall of the production frame, a supporting rod is rotationally installed between the supporting blocks, the outer surface of the supporting rod is sleeved with a circular filter plate, a supporting frame is fixedly installed on the outer surface of the supporting rod, an annular filter plate is fixedly installed on one side of the supporting frame, and the circular filter plate and the annular filter plate are fixedly connected. A turnover plate is arranged on the inner surface of the annular filter plate. The biomass raw materials can be driven to turn over through the arranged combustion assembly, so that the situation that the biomass raw materials are accumulated in the annular filter plate and are not fully combusted, and consequently energy waste and loss are caused is prevented, and the environment-friendly production effect of thermoelectricity is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of thermoelectric environmental protection, specifically relates to a thermoelectric environmental protection production management system. BACKGROUND

[0002] Thermoelectric environmental protection production management involves multiple links, from the preparation of raw materials to the final energy output, each link needs strict control and management to ensure efficient and clean production process, and a gasification boiler needs to be used in the process of thermoelectric environmental protection production, which can gasify renewable resources such as biomass to generate synthesis gas, and then use the gas to produce heat and electricity.

[0003] When producing heat and electricity, suitable biomass raw materials are sent into the gasification boiler, the biomass raw materials are burned in the gasification boiler to generate synthesis gas, the synthesis gas enters the purification device to purify the tar, dust and other impurities therein, the purified synthesis gas enters the combustion chamber to be ignited, high-temperature flame is generated, the high-temperature flue gas generated by combustion is transferred to water through the heat exchanger, so that the water is heated to become steam, part of the steam is directly used for industrial production or heating, and the other part of the steam drives the steam turbine to rotate, the turbine drives the generator to generate electricity, so as to convert heat into electricity.

[0004] Because the biomass raw materials will accumulate during the combustion process in the gasification boiler, fuel residues will be generated, which will lead to insufficient overall combustion of the biomass raw materials, resulting in waste and loss of energy, and thus reducing the effect of thermoelectric environmental protection production, so it is urgent to design a thermoelectric environmental protection production management system to solve the above problems. INVENTION CONTENTS

[0005] The utility model aims at providing a thermoelectric environmental protection production management system to solve the above-mentioned deficiencies in the prior art.

[0006] In order to achieve the above-mentioned purpose, the utility model provides the following technical scheme:

[0007] Including production frame, be provided with combustion subassembly in the production frame, production frame one side is provided with gas supply subassembly;

[0008] The combustion subassembly comprises support blocks fixedly installed on the inner walls of the production frame, a support rod rotatably installed between the support blocks, a circular filter plate sleeved on the outer surface of the support rod, a support frame fixedly installed on the outer surface of the support rod, an annular filter plate fixedly installed on one side of the support frame, and a turnover plate arranged on the inner surface of the annular filter plate.

[0009] The combustion assembly can drive the biomass raw material to overturn, so that the biomass raw material is prevented from being accumulated in the annular filter plate and being insufficiently combusted, energy waste and loss are avoided, and the environmental protection production effect of the thermal power is improved.

[0010] The production frame is fixedly provided with a combustion motor on one side.

[0011] The production frame is provided with a first notch on one side, and a door plate is rotatably arranged in the first notch.

[0012] The production frame is provided with a heat exchange pipe on the top of the inner wall, a purification device on one side, and a combustion device on one side of the purification device.

[0013] The gas supply assembly comprises a jet head, a circular ring plate, a rubber plug, a first one-way air valve, a second one-way air valve, an electric push rod, an L-shaped plate and a controller.

[0014] The L-shaped plate is fixedly arranged on one side of the production frame, the electric push rod is fixedly arranged on one side of the L-shaped plate, the rubber plug is slidably arranged on the inner surface of the circular ring plate, the rubber plug is fixedly connected with the output end of the electric push rod, and the controller is arranged on the front side of the production frame.

[0015] In the above technical scheme, the thermal power environmental protection production management system has the following beneficial effects:

[0016] 1. The combustion assembly can drive the biomass raw material to overturn, so that the biomass raw material is prevented from being accumulated in the annular filter plate and being insufficiently combusted, energy waste and loss are avoided, and the environmental protection production effect of the thermal power is improved.

[0017] 2. The collection box can collect the ash after the biomass raw material is combusted, so that the ash can be conveniently treated by the staff.

[0018] 3. The gas supply assembly can conveniently adjust the gas supply amount in the production frame according to actual needs, so that the biomass raw material can be more fully combusted, and the environmental protection production effect of the thermal power is improved. BRIEF DESCRIPTION OF DRAWINGS

[0019] In order to more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments. Obviously, the drawings described below are only some embodiments of the present application, and other drawings can also be obtained by those skilled in the art based on these drawings.

[0020] Figure 1 The present application provides a heat and electricity environmental protection production management system structure schematic diagram.

[0021] Figure 2 The present application provides a heat and electricity environmental protection production management system structure schematic diagram.

[0022] Figure 3 The present application provides a gas supply assembly structure schematic diagram.

[0023] Figure 4 The present application provides a combustion assembly structure schematic diagram.

[0024] 1, production frame; 2, combustion assembly; 3, gas supply assembly; 4, support block; 5, support rod; 6, circular filter plate; 7, support frame; 8, annular filter plate; 9, turnover plate; 10, combustion motor; 11, first notch; 12, door plate; 13, inclined plate; 14, second notch; 15, collection box; 16, heat exchange pipe; 17, purification device; 18, combustion device; 19, air jet head; 20, circular ring plate; 21, rubber plug; 22, first one-way air valve; 23, second one-way air valve; 24, electric push rod; 25, L-shaped plate; 26, controller; 27, first groove; 28, second groove. DETAILED DESCRIPTION

[0025] In order to make those skilled in the art better understand the technical solutions of the present application, the present application will be further described in detail below with reference to the drawings.

[0026] As shown in Figures 1-4 The present application provides a heat and electricity environmental protection production management system.

[0027] The present application provides a heat and electricity environmental protection production management system.

[0028] The combustion assembly 2 comprises support blocks 4 fixedly installed on the two sides of the inner wall of the production frame 1, a support rod 5 rotatably installed between the support blocks 4, a circular filter plate 6 sleeved on the outer surface of the support rod 5, a support frame 7 fixedly installed on the outer surface of the support rod 5, an annular filter plate 8 fixedly installed on one side of the support frame 7, and the circular filter plate 6 and the annular filter plate 8 are fixedly connected, and the inner surface of the annular filter plate 8 is provided with a turnover plate 9.

[0029] The combustion assembly 2 can drive the biomass raw materials to be turned over, so that the biomass raw materials are not accumulated in the annular filter plate 8 and are not insufficiently combusted, and the waste of energy and loss of resources is avoided, and the environmental protection production effect of the thermoelectricity is improved.

[0030] With reference to Figure 2 The production frame 1 is provided with a combustion motor 10 on one side, and the support rod 5 is connected to the output end of the combustion motor 10

[0031] The production frame 1 is provided with a first slot 11 on one side, and the door plate 12 is rotatably installed in the first slot 11.

[0032] The collection box 15 can collect the ash after the biomass raw materials are combusted, so that the ash can be conveniently treated by the workers.

[0033] The production frame 1 is provided with a heat exchange pipe 16 on the top of the inner wall, a purification device 17 on one side, and a combustion device 18 on one side of the purification device 17.

[0034] With reference to Figure 3The air supply assembly 3 of the embodiment comprises a jet head 19, a circular ring plate 20, a rubber plug 21, a first one-way air valve 22, a second one-way air valve 23, an electric push rod 24, an L-shaped plate 25, and a controller 26. The jet head 19 is fixedly installed in the production frame 1. The circular ring plate 20 is fixedly installed on one side of the production frame 1. A first recess 27 is formed on one side of the production frame 1. A second recess 28 is formed on the outer surface of the circular ring plate 20. The first one-way air valve 22 is fixedly installed in the first recess 27. The second one-way air valve 23 is fixedly installed in the second recess 28. The parameters of the electric push rod 24 are adjusted by the controller 26 according to actual needs. The electric push rod 24 drives the rubber plug 21 to move. The rubber plug 21 sucks air into the circular ring plate 20 through the second one-way air valve 23 and blows the air into the jet head 19 through the first one-way air valve 22. The jet head 19 blows the air to the burning biomass raw material.

[0035] The air supply assembly 3 can facilitate the staff to adjust the air supply amount in the production frame 1 according to actual needs, so that the biomass raw material is more fully burned, thereby improving the environmental protection production effect of the heat and electricity.

[0036] The L-shaped plate 25 is fixedly installed on one side of the production frame 1. The electric push rod 24 is fixedly installed on one side of the L-shaped plate 25. The rubber plug 21 is slidingly installed on the inner surface of the circular ring plate 20. The rubber plug 21 is fixedly connected with the output end of the electric push rod 24. The controller 26 is arranged on the front side of the production frame 1.

[0037] Working principle: first, the biomass raw material is poured into the annular filter plate 8 from the first slot 11 through the inclined plate 13 and ignited. The door plate 12 is closed. The controller 26 starts the combustion motor 10. The combustion motor 10 drives the circular filter plate 6 and the annular filter plate 8 to rotate through the support rod 5 and the support frame 7. The annular filter plate 8 drives the biomass raw material and the turnover plate 9 to move. The turnover plate 9 turns over the biomass raw material. The ash after the biomass raw material is burned falls into the collection box 15 through the circular filter plate 6 and the annular filter plate 8. The parameters of the electric push rod 24 are adjusted by the controller 26 according to actual needs. The electric push rod 24 drives the rubber plug 21 to move. The rubber plug 21 sucks air into the circular ring plate 20 through the second one-way air valve 23 and blows the air into the jet head 19 through the first one-way air valve 22. The jet head 19 blows the air to the burning biomass raw material. The heat generated by the biomass raw material is converted by the heat exchange pipe 16. The synthesis gas produced by the biomass raw material is purified in the purification device 17. The purified synthesis gas is ignited in the combustion device 18 to generate high-temperature flame. The high-temperature flue gas produced by combustion is transferred to water through the heat exchanger to heat the water into steam. Part of the steam is directly used for industrial production or heating. Another part of the steam drives the steam turbine to rotate. The turbine drives the generator to generate electricity, thereby converting heat energy into electrical energy.

[0038] The above has only described certain exemplary embodiments of the present application by way of illustration, and it is needless to say that the described embodiments can be modified in various ways without departing from the spirit and scope of the present application for those skilled in the art. Therefore, the above drawings and descriptions are illustrative in nature, and should not be understood as limiting the scope of protection of the claims of the present application.

Claims

1. A thermoelectric environmentally friendly production management system comprising a production framework (1), characterized in that, The production frame (1) is provided with a combustion assembly (2), and one side of the production frame (1) is provided with a gas supply assembly (3); The combustion assembly (2) comprises support blocks (4) fixedly installed on the inner walls of the production frame (1) on both sides, a support rod (5) rotatably installed between the support blocks (4), a circular filter plate (6) sleeved on the outer surface of the support rod (5), a support frame (7) fixedly installed on the outer surface of the support rod (5), an annular filter plate (8) fixedly installed on one side of the support frame (7), and a turnover plate (9) fixedly connected between the circular filter plate (6) and the annular filter plate (8).

2. The thermoelectric environmentally friendly production management system of claim 1, wherein, One side of the production frame (1) is fixedly provided with a combustion motor (10), and the support rod (5) is connected with the output end of the combustion motor (10).

3. The thermoelectric environmentally friendly production management system of claim 1, wherein, A first notch (11) is formed in one side of the production frame (1), a door plate (12) is rotatably installed in the first notch (11), an inclined plate (13) is fixedly installed in the production frame (1), a second notch (14) is formed in the front side of the production frame (1), and a collection box (15) is arranged in the second notch (14).

4. The thermoelectric environmentally friendly production management system of claim 1, wherein, A heat exchange pipe (16) is arranged on the top of the inner wall of the production frame (1), a purification device (17) is arranged on one side of the production frame (1), and a combustion device (18) is arranged on one side of the purification device (17).

5. The thermoelectric environmentally friendly production management system of claim 1, wherein, The gas supply assembly (3) comprises a jet head (19), a circular ring plate (20), a rubber plug (21), a first one-way air valve (22), a second one-way air valve (23), an electric push rod (24), an L-shaped plate (25), and a controller (26), the jet head (19) is fixedly installed in the production frame (1), the circular ring plate (20) is fixedly installed on one side of the production frame (1), a first groove (27) is formed on one side of the production frame (1), a second groove (28) is formed on the outer surface of the circular ring plate (20), the first one-way air valve (22) is fixedly installed in the first groove (27), and the second one-way air valve (23) is fixedly installed in the second groove (28).

6. The thermoelectric environmentally friendly production management system of claim 5, wherein, The L-shaped plate (25) is fixedly installed on one side of the production frame (1), the electric push rod (24) is fixedly installed on one side of the L-shaped plate (25), the rubber plug (21) is slidably installed on the inner surface of the circular ring plate (20), the rubber plug (21) is fixedly connected with the output end of the electric push rod (24), and the controller (26) is arranged on the front side of the production frame (1).