CN219796899U - Gasification heating binary SCV gasifier - Google Patents

Gasification heating binary SCV gasifier Download PDF

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Publication number
CN219796899U
CN219796899U CN202321357065.2U CN202321357065U CN219796899U CN 219796899 U CN219796899 U CN 219796899U CN 202321357065 U CN202321357065 U CN 202321357065U CN 219796899 U CN219796899 U CN 219796899U
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gasification
temperature type
air temperature
bin
sump
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CN202321357065.2U
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Chinese (zh)
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俞斌
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Wuxi Triumph Gases Equipment Co ltd
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Wuxi Triumph Gases Equipment Co ltd
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Abstract

The utility model discloses a gasification heating two-element type SCV gasifier, which relates to the technical field of gasifiers, and comprises an energy-saving unit and a high-efficiency unit; when the external environment temperature is higher, the electromagnetic valves of the high-efficiency unit and the second gasification water bin are closed, only the energy-saving unit works, so that the four air-temperature type gasifiers perform heat exchange gasification, when the environment temperature is not very high, the electromagnetic valves of the high-efficiency unit and the second gasification water bin are opened, the electromagnetic valves of the first air-temperature type gasification assembly and the second air-temperature type gasification assembly, which are directly led to an air outlet pipe, are closed, the combustion bin works, the liquid to be gasified is led to the first gasification water bin and the second gasification water bin, and the liquid in the two gasification pipes is subjected to high-efficiency heat exchange in a water bath mode.

Description

Gasification heating binary SCV gasifier
Technical Field
The utility model relates to the technical field of gasifiers, in particular to a gasification heating two-element SCV gasifier.
Background
And means for heating the liquid gas in the gasifier until it is gasified (turned into gas). In short, the cold liquid gas is changed into a gaseous gas after passing through the gasifier. The heating may be indirect (steam heating type gasifier, hot water bath type gasifier, natural ventilation air bath type gasifier, forced ventilation type gasifier, electric heating type gasifier, solid heat conduction type gasifier or heat transfer fluid) or direct (hot gas or submerged combustion).
The variety of gasifiers is many, and each type of gasifier has different characteristics, and the hollow temperature type gasifier has the characteristics of energy conservation and environmental protection, but when the external environment temperature is lower, the heat exchange efficiency is lower, and the production requirement cannot be met, and the submerged combustion type gasifier is not influenced by the external environment temperature, so that the heat exchange effect is good, but the combustion needs to consume a large amount of energy sources, and is not energy-saving enough, and when the existing gasifier faces different environments and production requirements, the working mode (energy conservation or high efficiency) cannot be switched, so that the gasification heating two-element type SCV gasifier is needed.
Disclosure of Invention
The present utility model solves the problems of the prior art with the following technical structure.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the gasification heating two-element SCV gasifier comprises a liquid inlet pipe, an energy-saving unit, a high-efficiency unit and an air outlet pipe, wherein the output end of the liquid inlet pipe is respectively provided with a first branch pipe leading to the energy-saving unit and a second branch pipe leading to the high-efficiency unit;
the energy-saving unit comprises a first air temperature type gasification component and a second air temperature type gasification component, wherein the first air temperature type gasification component and the second air temperature type gasification component are connected with a first branch pipe through pipelines, the first air temperature type gasification component and the second air temperature type gasification component are connected in parallel through pipelines, and the first air temperature type gasification component and the second air temperature type gasification component are connected with an air outlet pipe through pipelines;
the high-efficiency unit comprises a first gasification water sump, a second gasification water sump, a combustion bin and two gasification pipes, wherein the combustion bin is arranged between the first gasification water sump and the second gasification water sump, the combustion bin supplies heat for the first gasification water sump and the second gasification water sump, the two gasification pipes are respectively arranged in the first gasification water sump and the second gasification water sump, the inlet ends of the gasification pipes in the first gasification water sump are connected with the second branch pipes, the inlet ends of the gasification pipes in the second gasification water sump are connected with the first air temperature type gasification assembly and the second air temperature type gasification assembly through pipelines, and the outlet ends of the gasification pipes in the first gasification water sump and the second gasification water sump are connected with the air outlet pipes through pipelines.
It is further characterized in that,
the first air temperature type gasification assembly comprises two first air temperature type gasifiers which are connected in parallel through pipelines.
The second air temperature type gasification assembly comprises two second air temperature type gasifiers which are connected in parallel through pipelines.
The gasification pipe is a coiled pipe.
The two sides of the bottom of the combustion bin are respectively provided with a heat distribution component for distributing heat from the combustion bin to the first gasification water bin and the second gasification water bin, and the two heat distribution components respectively extend to the bottoms of the first gasification water bin and the second gasification water bin.
And overflow ports are formed at the top of one side, away from each other, of the first gasification water bin and the second gasification water bin.
And drain outlets are arranged at the bottoms of one sides of the first gasification water bin and the second gasification water bin, which are mutually far away.
The structure of the utility model can achieve the following beneficial effects:
(1) When the external environment temperature is higher, close the solenoid valve of high-efficient unit and second gasification water sump, only energy-conserving unit work, make and carry out heat transfer gasification through four air temperature formula gasifiers, when ambient temperature is not very high, air temperature formula gasifiers heat transfer effect is poor, open the solenoid valve of high-efficient unit and second gasification water sump, close the solenoid valve on first air temperature formula gasification subassembly and the direct air outlet duct pipeline of second air temperature formula gasification subassembly, combustion chamber work, the liquid that waits to gasify leads to first gasification water sump and second gasification water sump, carry out high-efficient heat transfer to the liquid in two gasification pipes through the mode of water bath, and the liquid that waits to gasify in entering second gasification water sump has passed through energy-conserving unit in advance and has carried out preliminary heat transfer, make the heat that needs consume in the second gasification water sump reduce, further play energy-conserving environmental protection's effect.
(2) And the first air temperature type gasification assembly and the second air temperature type gasification assembly of the device are connected in parallel, when the workload is smaller, the electromagnetic valve of the first air temperature type gasification assembly can be closed, so that only the second air temperature type gasification assembly works, and the energy-saving characteristic of the device is further improved.
Drawings
Fig. 1 is a schematic structural view of the present embodiment;
fig. 2 is a schematic diagram of a high-efficiency unit structure in the present embodiment.
In the figure: 1. an efficient unit; 11. a first gasification sump; 12. a second gasification sump; 13. a combustion bin; 14. a gasification pipe; 15. a heat distribution assembly; 16. an overflow port; 17. a sewage outlet; 2. a first air temperature gasification assembly; 21. a first air temperature gasifier; 3. a second air temperature gasification assembly; 31. a second air temperature gasifier; 4. a liquid inlet pipe; 41. a first branch pipe; 42. a second branch pipe; 5. and an air outlet pipe.
Detailed Description
The first embodiment, referring to a gasification heating two-element SCV gasifier shown in fig. 1-2, comprises a liquid inlet pipe 4, an energy-saving unit, a high-efficiency unit 1 and an air outlet pipe 5, wherein the output end of the liquid inlet pipe 4 is respectively provided with a first branch pipe 41 leading to the energy-saving unit and a second branch pipe 42 leading to the high-efficiency unit 1;
the energy-saving unit comprises a first air temperature type gasification component 2 and a second air temperature type gasification component 3, wherein the first air temperature type gasification component 2 comprises two first air temperature type gasifiers 21 which are connected in parallel through pipelines, the second air temperature type gasification component 3 comprises two second air temperature type gasifiers 31 which are connected in parallel through pipelines, the first air temperature type gasification component 2 and the second air temperature type gasification component 3 are connected with a first branch pipe 41 through pipelines, the first air temperature type gasification component 2 and the second air temperature type gasification component 3 are connected in parallel through pipelines, and the first air temperature type gasification component 2 and the second air temperature type gasification component 3 are connected with an air outlet pipe 5 through pipelines;
the high-efficiency unit 1 comprises a first gasification water sump 11, a second gasification water sump 12 and a combustion sump 13, wherein the combustion sump 13 is arranged between the first gasification water sump 11 and the second gasification water sump 12, the combustion sump 13 supplies heat for the first gasification water sump 11 and the second gasification water sump 12, gasification pipes 14 are arranged in the first gasification water sump 11 and the second gasification water sump 12, the inlet ends of the gasification pipes 14 in the first gasification water sump 11 are connected with a second branch pipe 42, the inlet ends of the gasification pipes 14 in the second gasification water sump 12 are connected with the first air temperature type gasification assembly 2 and the second air temperature type gasification assembly 3 through pipelines, and the outlet ends of the gasification pipes 14 in the first gasification water sump 11 and the second gasification water sump 12 are connected with an air outlet pipe 5 through pipelines.
Based on the above structure, when the external environment temperature is higher, close the solenoid valve of high-efficient unit 1 and second gasification water sump 12, only energy-conserving unit work, make and carry out heat transfer gasification through four air temperature formula gasifiers, when the ambient temperature is not very high, when air temperature formula gasifiers heat transfer effect is poor, open the solenoid valve of high-efficient unit 1 and second gasification water sump 12, close the solenoid valve on the direct air outlet duct 5 pipeline of first air temperature formula gasification subassembly 2 and second air temperature formula gasification subassembly 3, combustion storehouse 13 work, treat gasification liquid and lead to first gasification water sump 11 and second gasification water sump 12, carry out high-efficient heat transfer to the liquid in two gasification pipes 14 through the mode of water bath, and the heat that waits to gasify in entering second gasification water sump 12 has passed through energy-conserving unit in advance and has carried out preliminary heat transfer, make the heat in the second gasification water sump 12 that needs to consume, further play energy-conserving environment-friendly effect, this device combines air heat transfer (air temperature formula) and submerged combustion formula (SCV), under the circumstances that does not influence production efficiency, energy saving and environmental protection as far as possible, the cost of production is reduced.
The two sides of the bottom of the combustion bin 13 are respectively provided with a heat distribution component 15 for distributing heat from the combustion bin 13 to the first gasification water bin 11 and the second gasification water bin 12, the heat distribution component 15 can be a disc-shaped cavity with a plurality of through holes formed in the top, the two heat distribution components 15 respectively extend to the bottoms of the first gasification water bin 11 and the second gasification water bin 12, and the heat from the combustion bin 13 can enter the first gasification water bin 11 and the second gasification water bin 12 more uniformly through the heat distribution component 15.
The top of one side of the first gasification water sump 11 and the second gasification water sump 12, which are far away from each other, are provided with overflow ports 16, and the bottom of one side of the first gasification water sump 11 and the second gasification water sump 12, which are far away from each other, are provided with drain ports 17.
The working principle of the utility model is as follows: when the external environment temperature is higher, the electromagnetic valves of the high-efficiency unit 1 and the second gasification water bin 12 are closed, only the energy-saving unit works, so that heat exchange gasification is performed through the four air-temperature type gasifiers, when the environment temperature is not very high, the electromagnetic valves of the high-efficiency unit 1 and the second gasification water bin 12 are opened when the heat exchange effect of the air-temperature type gasifiers is poor, the electromagnetic valves of the first air-temperature type gasification assembly 2 and the second air-temperature type gasification assembly 3 directly lead to the pipeline of the air outlet pipe 5 are closed, the combustion bin 13 works, liquid to be gasified is led to the first gasification water bin 11 and the second gasification water bin 12, the liquid to be gasified in the two gasification pipes 14 is subjected to high-efficiency heat exchange in a water bath mode, and the liquid to be gasified entering the second gasification water bin 12 is subjected to preliminary heat exchange through the energy-saving unit in advance, so that the heat required to be consumed in the second gasification water bin 12 is reduced, and the effects of energy conservation and environmental protection are further played.
And this device first empty temperature formula gasification subassembly 2, the parallelly connected of second empty temperature formula gasification subassembly 3, when the work load is less, can close the solenoid valve of first empty temperature formula gasification subassembly 2, make only the work of second empty temperature formula gasification subassembly 3, further improve the energy-conserving characteristics of this device.
The above is only a preferred embodiment of the present utility model, and the present utility model is not limited to the above examples. It is to be understood that other modifications and variations which may be directly derived or contemplated by those skilled in the art without departing from the spirit and concepts of the present utility model are deemed to be included within the scope of the present utility model.

Claims (7)

1. The gasification heating two-element SCV gasifier is characterized by comprising a liquid inlet pipe (4), an energy-saving unit, a high-efficiency unit (1) and an air outlet pipe (5), wherein the output end of the liquid inlet pipe (4) is respectively provided with a first branch pipe (41) leading to the energy-saving unit and a second branch pipe (42) leading to the high-efficiency unit (1);
the energy-saving unit comprises a first air temperature type gasification component (2) and a second air temperature type gasification component (3), wherein the first air temperature type gasification component (2) and the second air temperature type gasification component (3) are connected with a first branch pipe (41) through pipelines, the first air temperature type gasification component (2) and the second air temperature type gasification component (3) are connected in parallel through pipelines, and the first air temperature type gasification component (2) and the second air temperature type gasification component (3) are connected with an air outlet pipe (5) through pipelines;
the high-efficiency unit (1) comprises a first gasification water sump (11), a second gasification water sump (12), a combustion sump (13) and two gasification pipes (14), wherein the combustion sump (13) is arranged between the first gasification water sump (11) and the second gasification water sump (12), the combustion sump (13) supplies heat for the first gasification water sump (11) and the second gasification water sump (12), the two gasification pipes are respectively arranged in the first gasification water sump (11) and the second gasification water sump (12), the inlet ends of the gasification pipes (14) in the first gasification water sump (11) are connected with the second branch pipes (42), and the inlet ends of the gasification pipes (14) in the second gasification water sump (12) are connected with the first air-temperature type gasification assembly (2) and the second air-temperature type gasification assembly (3) through pipelines, and the outlet ends of the gasification pipes (14) in the first gasification water sump (11) and the second gasification water sump (12) are connected with the outlet pipe (5) through pipelines.
2. A gasification heated two-part SCV gasifier as claimed in claim 1 wherein: the first air temperature type gasification assembly (2) comprises two first air temperature type gasifiers (21) which are connected in parallel through pipelines.
3. A gasification heated two-part SCV gasifier as claimed in claim 1 wherein: the second air temperature type gasification assembly (3) comprises two second air temperature type gasifiers (31) which are connected in parallel through pipelines.
4. A gasification heated two-part SCV gasifier as claimed in claim 1 wherein: the gasification pipe (14) is a coiled pipe.
5. A gasification heated two-part SCV gasifier as claimed in claim 1 wherein: the two sides of the bottom of the combustion bin (13) are respectively provided with a heat distribution assembly (15) for distributing heat from the combustion bin (13) to the first gasification water bin (11) and the second gasification water bin (12), and the two heat distribution assemblies (15) respectively extend to the bottoms of the first gasification water bin (11) and the second gasification water bin (12).
6. A gasification heated two-part SCV gasifier as claimed in claim 1 wherein: and overflow ports (16) are formed in the tops of one sides, far away from each other, of the first gasification water bin (11) and the second gasification water bin (12).
7. A gasification heated two-part SCV gasifier as claimed in claim 1 wherein: and drain outlets (17) are formed in the bottoms of the sides, away from each other, of the first gasification water bin (11) and the second gasification water bin (12).
CN202321357065.2U 2023-05-31 2023-05-31 Gasification heating binary SCV gasifier Active CN219796899U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321357065.2U CN219796899U (en) 2023-05-31 2023-05-31 Gasification heating binary SCV gasifier

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321357065.2U CN219796899U (en) 2023-05-31 2023-05-31 Gasification heating binary SCV gasifier

Publications (1)

Publication Number Publication Date
CN219796899U true CN219796899U (en) 2023-10-03

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ID=88185200

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321357065.2U Active CN219796899U (en) 2023-05-31 2023-05-31 Gasification heating binary SCV gasifier

Country Status (1)

Country Link
CN (1) CN219796899U (en)

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GR01 Patent grant
PE01 Entry into force of the registration of the contract for pledge of patent right
PE01 Entry into force of the registration of the contract for pledge of patent right

Denomination of utility model: A gasification heating binary SCV gasifier

Granted publication date: 20231003

Pledgee: Bank of China Wuxi Binhu sub branch

Pledgor: WUXI TRIUMPH GASES EQUIPMENT Co.,Ltd.

Registration number: Y2024980014779