A liquid gasification device

By designing a liquid gasification device, the heating and injection structures are used to improve the gasification efficiency of the liquid, and through real-time monitoring of humidity sensors and controllers, the problems of low dust removal efficiency and sewage impact of existing wet dust removal technology are solved, achieving more efficient dust removal effect and lower sewage discharge.

CN111035947BActive Publication Date: 2025-06-27XIAN SENLAN SCI & TRADE CO LTD
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Patent Information

Application Number
CN201911423477.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2019-12-31
Publication Date
2025-06-27
Estimated Expiration
2039-12-31

AI Technical Summary

Technical Problem

The dust removal efficiency of existing wet dust removal technology is not high, and the discharged sewage affects construction and slag cleaning transportation.

Method used

A liquid gasification device is designed, including the device body, a cladding layer, an intake pipe, an exhaust pipe, a liquid intake pipe, a liquid discharge pipe, a first water outlet structure, a second water outlet structure, a gas booster device, a temperature sensor, a humidity sensor, an automatic valve, a controller, a heating network, a water storage tank and a liquid pump. The liquid is heated through the heating net, and the spray area of ​​the liquid is expanded using the first and second water effluent structures, and the gasification magnitude is controlled in combination with real-time monitoring of the humidity sensor and controller.

Benefits of technology

It improves the gasification efficiency of the liquid, effectively controls the gasification magnitude, significantly improves the dust removal efficiency of downhole tunnels, and reduces the impact of sewage discharge.

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Abstract

A liquid gasification device provided by an embodiment of the present invention. Air enters the device body through an intake pipe and moves downward under the boosting action of a gas boosting device. Liquid enters from a liquid inlet pipe and is ejected from a first water outlet structure and a second water outlet structure. The ejected liquid is vaporized under the heating action of a heating grid. The vaporized liquid is mixed with air to form a mixed gas. A temperature sensor disposed in the device body monitors the temperature in the device body in real time, and a humidity sensor disposed in the device body monitors the moisture content of the generated mixed gas in real time. The above temperature sensor and humidity sensor send the values sensed by them to a controller. When the above humidity value reaches the standard, the controller controls an automatic valve to open, and the mixed gas exits the device body through an exhaust pipe. By disposing a humidity sensor in the device body, the humidity value of the mixed gas can be monitored in real time, effectively controlling the gasification level, truly gasifying the liquid, and achieving a good gasification effect.
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Description

Technical Field

[0001] The present invention relates to the technical field of underground roadway atomization dust prevention, and particularly to a liquid gasification device. Background Art

[0002] The presence of dust in coal mines poses a huge hidden danger to coal mine safety. In order to meet the needs of coal mine safety, currently, coal mines that meet safety standards are required to be equipped with dust removal devices for ensuring coal mine safety. With the mining of coal mining faces and the production of tunneling faces in coal mines, a large amount of dust is generated. Due to the inability to effectively control the primary dust source, the phenomenon of thick dust often appears in the return air roadway of the working face. Currently, conventional dust removal methods mainly include dust removal by pulse jet bag filters, electrostatic dust removal, wet dust removal, etc. Among them, wet dust removal is widely adopted because of its small volume, simplicity, and low equipment cost. However, the current wet dust removal has low dust removal efficiency, and the discharged sewage affects construction and slag cleaning and transportation. Summary of the Invention

[0003] The purpose of the embodiments of the present invention is to provide a liquid gasification device, which can improve the gasification efficiency of the liquid, effectively control the gasification level, truly gasify the liquid, and improve the dust removal efficiency. The specific technical solution is as follows:

[0004] The embodiments of the present invention provide a liquid gasification device, including: a device body, a coating layer, an intake pipe, an exhaust pipe, a liquid inlet pipe, a liquid discharge pipe, a first water outlet structure, a second water outlet structure, a gas booster device, a temperature sensor, a humidity sensor, an automatic valve, a controller, a heating grid, a water storage tank, and a liquid pump;

[0005] The coating layer is coated on the outer side of the device body. One end of the intake pipe communicates with the device body, and the other end communicates with the outside; the gas booster device is arranged on the intake pipe; the intake pipe is arranged on the top of the device body;

[0006] The exhaust pipe is arranged at the bottom of the device body. One end of the exhaust pipe communicates with the device body, and the other end communicates with the intake pipe of the device using the gas; the automatic valve is arranged on the exhaust pipe;

[0007] The liquid inlet pipe and the liquid discharge pipe are both arranged at the bottom of the outer side of the device body. The first water outlet structure and the second water outlet structure are both arranged on the inner bottom surface of the device body. One end of the first drainage structure is closed, and the other end is communicated with the liquid inlet pipe. One end of the second water outlet structure is closed, and the other end is communicated with the liquid inlet pipe. A plurality of through holes are respectively arranged on the sides of the first drainage structure and the second water outlet structure, and an atomizing nozzle is arranged on each through hole. One end of the liquid discharge pipe leads to the device body, and the other end is connected to the water storage tank. The liquid inlet of the liquid inlet pipe is communicated with the water storage tank, and the liquid pump is arranged on the liquid inlet pipe.

[0008] The heating grid is arranged in the middle of the device body, and the outer ring of the heating grid is fixed on the inner ring of the device body.

[0009] The temperature sensor and the humidity sensor are both arranged in the device body, and the humidity sensor is arranged at the exhaust port end of the exhaust pipe. The controller is respectively connected to the temperature sensor, the humidity sensor, the automatic valve, and the heating grid.

[0010] Optionally, it further includes an underground power supply. The underground power supply is respectively connected to the liquid pump, the automatic valve, the heating grid, and the controller.

[0011] Optionally, the coating layer includes a carbon fiber board, a superconducting ceramic sheet, and a filler. The superconducting ceramic sheet is coated on the outer side of the device body. There is a sandwich layer between the fiber board and the superconducting ceramic sheet, and the filler is filled in the sandwich layer.

[0012] Optionally, the filler is silica gel or a honeycomb structure.

[0013] Optionally, metal wires are embedded in the superconducting ceramic sheet, and 0-20% by weight of Nb3Sn and / or 0-20% by weight of NbTi are added.

[0014] A liquid gasification device provided by an embodiment of the present invention, in practical applications, air enters the device body through an intake pipe, moves downward under the boosting action of a gas boosting device, liquid enters through a liquid inlet pipe, and is ejected from a first water outlet structure and a second water outlet structure. The ejected atomized liquid is vaporized under the heating action of a heating grid. The vaporized liquid is mixed with air to form a mixed gas. A temperature sensor arranged in the device body monitors the temperature in the device body in real time, and a humidity sensor arranged in the device body monitors the moisture content of the generated mixed gas in real time, so as to realize the function of monitoring the moisture content of the mixed gas in real time. The above temperature sensor and humidity sensor send the values sensed by them to a controller, and the controller judges whether the above humidity value meets the standard. When the above humidity value meets the standard, the controller controls an automatic valve to open, and the mixed gas exits the device body through an exhaust pipe. By using the liquid gasification device provided by the embodiment of the present invention, since a first water outlet structure and a second water outlet structure are arranged in the device body, the water outlet area becomes larger, thereby improving the gasification efficiency of the liquid; a humidity sensor is arranged in the device body, which can monitor the humidity value of the mixed gas in real time, effectively control the gasification level, truly gasify the liquid, and has a good gasification effect, thereby improving the dust removal efficiency in underground roadways. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art.

[0016] Figure 1 FIG. is a schematic structural diagram of a liquid gasification device provided by an embodiment of the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0017] The following will describe the technical solutions in the embodiments of the present invention with reference to the drawings in the embodiments of the present invention.

[0018] In order to solve the problem in the prior art that when staff maintain flowers or vegetation placed on a flower rack, they cannot reach the greening or flowers at high places and the maintenance is inconvenient, an embodiment of the present invention provides a lifting flower rack for the environmental protection field.

[0019] Please refer to Figure 1 , an embodiment of the present invention provides a liquid gasification device, including: a device body 1, a coating layer 2, an intake pipe 3, an exhaust pipe 4, a liquid inlet pipe 5, a liquid discharge pipe 6, a first water outlet structure 7, a second water outlet structure 8, a gas boosting device 9, a temperature sensor 10, a humidity sensor 11, an automatic valve 12, a controller 13, a heating grid 14, a water storage tank 15, a liquid pump 16;

[0020] The coating layer 2 is coated on the outer side of the device body 1. One end of the intake pipe 3 communicates with the device body 1, and the other end communicates with the outside; the gas pressurizing device 9 is arranged on the intake pipe 3; the intake pipe 3 is arranged on the top of the device body 1;

[0021] The exhaust pipe 4 is arranged at the bottom of the device body 1. One end of the exhaust pipe 4 communicates with the device body 1, and the other end is connected to the intake pipe of the equipment using the gas; the automatic valve 12 is arranged on the exhaust pipe 4;

[0022] The liquid inlet pipe 5 and the liquid discharge pipe 6 are both arranged at the bottom of the outer side surface of the device body 1. The first water outlet structure 7 and the second water outlet structure 8 are both arranged on the inner bottom surface of the device body 1. One end of the first drainage structure is closed, and the other end communicates with the liquid inlet pipe 5. One end of the second water outlet structure 8 is closed, and the other end communicates with the liquid inlet pipe 5; A plurality of through holes are respectively arranged on the side surfaces of the first drainage structure and the second water outlet structure 8, and an atomizing nozzle 17 is arranged on each through hole; One end of the liquid discharge pipe 6 communicates with the device body 1, and the other end is connected to the water storage tank 15. The liquid inlet of the liquid inlet pipe 5 communicates with the water storage tank 15, and the liquid pump 16 is arranged on the liquid inlet pipe 5;

[0023] The heating grid 14 is arranged in the middle of the device body 1, and the outer ring of the heating grid 14 is fixed on the inner ring of the device body 1;

[0024] The temperature sensor 10 and the humidity sensor 11 are both arranged in the device body 1, and the humidity sensor 11 is arranged at the exhaust port end of the exhaust pipe 4; The controller 13 is respectively connected to the temperature sensor 10, the humidity sensor 11, the automatic valve 12, and the heating grid 14.

[0025] A liquid gasification device provided by an embodiment of the present invention. In practical applications, air enters the device body 1 through the intake pipe 3, moves downward under the boosting action of the gas boosting device 9, liquid enters from the liquid inlet pipe 5, and is ejected from the first water outlet structure 7 and the second water outlet structure 8. The ejected liquid is vaporized under the heating action of the heating grid 14. The vaporized liquid is mixed with air to form a mixed gas. The temperature sensor 10 arranged in the device body 1 monitors the temperature in the device body 1 in real time, and the humidity sensor 11 arranged in the device body 1 monitors the moisture content of the generated mixed gas in real time, so as to realize the function of monitoring the moisture content of the mixed gas in real time. The above temperature sensor 10 and humidity sensor 11 send the values they sense to the controller 13. The controller 13 judges whether the above humidity value meets the standard. When the above humidity value meets the standard, the controller 13 controls the automatic valve 12 to open, and the mixed gas exits the device body 1 from the exhaust pipe 4. By using the liquid gasification device provided by the embodiment of the present invention, since the first water outlet structure 7 and the second water outlet structure 8 are arranged in the device body 1, the water outlet area becomes larger, thereby improving the gasification efficiency of the liquid; the humidity sensor 11 is arranged in the device body 1, which can monitor the humidity value of the mixed gas in real time, effectively control the gasification level, truly vaporize the liquid, and has a good gasification effect, thereby improving the dust removal efficiency in the underground roadway.

[0026] Further, it further includes an underground power supply 21; the underground power supply 21 is respectively connected to the liquid pump 16, the automatic valve 12, the heating grid 14, and the controller 13.

[0027] Further, the cladding layer 2 includes a carbon fiber board 18, a superconducting ceramic sheet 19, and a filler 20; the superconducting ceramic sheet 19 is coated on the outside of the device body 1, there is a sandwich between the fiber board and the superconducting ceramic sheet 19, and the filler 20 is filled in the sandwich.

[0028] It should be noted that the outermost layer of the cladding layer 2 is set as the carbon fiber board 18, which improves the strength of the cladding layer 2. The filler 20 is filled between the superconducting ceramic sheet 19 and the carbon fiber board 18, effectively providing a buffer matrix for the device body 1 after a cylinder explosion, thereby improving the safety of the device.

[0029] Further, the filler 20 is silica gel or a honeycomb structure.

[0030] Further, metal wires are embedded in the superconducting ceramic sheet 19, and 0-20% by weight of Nb3Sn and / or 0-20% by weight of NbTi are added.

[0031] A liquid gasification device provided by an embodiment of the present invention. In practical applications, air enters the device body 1 through the intake pipe 3, moves downward under the pressurization of the gas pressurization device 9, liquid enters from the liquid inlet pipe 5, and is ejected from the first water outlet structure 7 and the second water outlet structure 8. The ejected liquid is vaporized under the heating of the heating grid 14. The vaporized liquid is mixed with air to form a mixed gas. The temperature sensor 10 arranged in the device body 1 monitors the temperature in the device body 1 in real time, and the humidity sensor 11 arranged in the device body 1 monitors the moisture content of the generated mixed gas in real time, so as to realize the function of monitoring the moisture content of the mixed gas in real time. The above temperature sensor 10 and humidity sensor 11 send the values sensed by them to the controller 13. The controller 13 judges whether the above humidity value meets the standard. When the above humidity value meets the standard, the controller 13 controls the automatic valve 12 to open, and the mixed gas exits the device body 1 through the exhaust pipe 4. By using the liquid gasification device provided by the embodiment of the present invention, since the first water outlet structure 7 and the second water outlet structure 8 are arranged in the device body 1, the water outlet area becomes larger, thereby improving the gasification efficiency of the liquid; the humidity sensor 11 is arranged in the device body 1, which can monitor the humidity value of the mixed gas in real time, effectively control the gasification level, truly vaporize the liquid, and has a good gasification effect, thereby improving the dust removal efficiency in the underground roadway.

[0032] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device. Without further limitation, an element defined by the statement "including a..." does not exclude the existence of additional identical elements in the process, method, article or device including the element.

[0033] Each embodiment in this specification is described in a related manner. The same or similar parts among the embodiments can be referred to each other, and each embodiment focuses on the differences from other embodiments. The above is only a preferred embodiment of the present invention and is not used to limit the protection scope of the present invention. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention are included in the protection scope of the present invention.

Claims

1. A liquid gasification device, characterized in that, Comprising: The device body, a coating layer, an intake duct, an exhaust duct, a liquid inlet duct, a liquid discharge duct, a first water outlet structure, a second water outlet structure, a gas booster device, a temperature sensor, a humidity sensor, an automatic valve, a controller, a heating grid, a water storage tank, a liquid pump, an atomizing nozzle; The coating layer is coated on the outer side of the device body. One end of the intake duct communicates with the device body, and the other end communicates with the outside; the gas booster device is arranged on the intake duct; the intake duct is arranged on the top of the device body; The exhaust duct is arranged at the bottom of the device body. One end of the exhaust duct communicates with the device body, and the other end communicates with the intake pipe of the device using the gas; the automatic valve is arranged on the exhaust duct; Both the liquid inlet duct and the liquid discharge duct are arranged at the bottom of the outer side surface of the device body. The first water outlet structure and the second water outlet structure are both arranged on the inner bottom surface of the device body. One end of the first water outlet structure is closed, and the other end communicates with the liquid inlet duct. One end of the second water outlet structure is closed, and the other end communicates with the liquid inlet duct; A plurality of through holes are respectively arranged on the side surfaces of the first water outlet structure and the second water outlet structure, and an atomizing nozzle is arranged on each through hole; One end of the liquid discharge duct communicates with the device body, and the other end is connected to the water storage tank. The liquid inlet of the liquid inlet duct communicates with the water storage tank, and the liquid pump is arranged on the liquid inlet duct; The heating grid is arranged in the middle of the device body, and the outer ring of the heating grid is fixed on the inner ring of the device body; The temperature sensor and the humidity sensor are both arranged inside the device body, and the humidity sensor is arranged at the exhaust port end of the exhaust duct; the controller is respectively connected to the temperature sensor, the humidity sensor, the automatic valve, and the heating grid.

2. The liquid gasification device according to claim 1, characterized in that, It further includes an underground power supply, and the underground power supply is respectively connected to the liquid pump, the automatic valve, the heating grid, and the controller.

3. The liquid gasification device according to claim 1, wherein The coating layer includes a carbon fiber board, a superconducting ceramic sheet, and a filler; the superconducting ceramic sheet is coated on the outer side of the device body. There is a sandwich layer between the fiber board and the superconducting ceramic sheet, and the filler is filled in the sandwich layer.

4. The liquid gasification device according to claim 3, characterized in that, The filler is silica gel or a honeycomb structure.

5. The liquid gasification device according to claim 3, characterized in that, Metal wires are embedded inside the superconducting ceramic sheet, and 0 - 20% by weight of Nb3Sn and / or 0 - 20% by weight of NbTi are added.

Citation Information

Patent Citations

  • Liquid gasification device

    CN212067776U