Control system for stable operation of atomizer
By using a temperature control device and an automatic adjustment system, the problem of unstable operation of the atomizer at low or high temperatures has been solved, achieving long-term stable operation of the atomizer and extending its service life.
Patent Information
- Application Number
- CN202423267731.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2034-12-27
AI Technical Summary
Existing atomizers cannot operate stably at low or high temperatures, which leads to damage to bearings and motor windings and affects their service life.
The device employs a temperature control system, including a heat exchanger, water tank, heater, atomizer outlet pipe, inlet pipe, and external water source pipeline. It regulates the atomizer temperature by heating or cooling the circulating water, and achieves automatic temperature control by combining a self-regulating temperature control valve and a water pump branch.
It effectively prevents the atomizer temperature from becoming too high or too low, ensuring long-term stable operation of the atomizer and extending its service life.
Smart Images

Figure CN223747796U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to atomization equipment, concretely relates to a control system for stable operation of atomizer. BACKGROUND
[0002] At present, atomizers are commonly used in domestic waste incineration power plants, in an atomizer system, the atomizer is installed in a desulfurization reaction tower, and an atomizer control system is arranged in a matched mode with the atomizer, and the atomizer control system controls the atomizer to work.
[0003] The existing atomizers all have low-temperature protection functions, when the atomizer is below a certain temperature, the atomizer will stop working. The atomizer is a high-speed equipment, and the atomizer will continuously generate heat when normally operating, and high temperature will damage the bearing and motor winding of the atomizer. Too high or too low temperature of the atomizer will affect the operation of the atomizer. CONTENT OF THE UTILITY MODEL
[0004] The utility model aims at overcoming the above problems, and provides a control system for stable operation of an atomizer, which can prevent the atomizer from being too high or too low in temperature, so that the atomizer can be stably operated for a long time, and the service life of the atomizer is improved.
[0005] The utility model achieves the above purpose through the following technical scheme.
[0006] A control system for stable operation of an atomizer, comprising a temperature control device for heating or cooling the atomizer, the temperature control device comprising a heat exchanger, a water tank, a heater, an atomizer water outlet pipe, an atomizer water inlet pipe, an external water source water outlet pipe, an external water source water inlet pipe and a heat exchanger water outlet pipe; the heater is arranged on the water tank and used for heating water in the water tank; the heat exchanger is provided with a first water inlet, a first water outlet, a second water inlet and a second water outlet; the first water inlet and the first water outlet are in communication with each other; the second water inlet and the second water outlet are in communication with each other; the atomizer water outlet pipe is connected between the water outlet of the atomizer and the first water inlet; the heat exchanger water outlet pipe is connected between the first water outlet and the water tank; the atomizer water inlet pipe is connected between the water inlet of the atomizer and the water tank; the external water source water inlet pipe is connected with the second water inlet; and the external water source water outlet pipe is connected with the second water outlet.
[0007] The working principle of the above control system for stable operation of an atomizer is as follows.
[0008] When the atomizer is below a certain temperature, the heat exchanger does not work, and the heater works to heat the water in the water tank, the temperature of the water in the water tank is raised, the high-temperature water in the water tank enters the atomizer through the atomizer water inlet pipe to heat the atomizer, so that the temperature of the atomizer is raised to prevent the atomizer from being unable to run due to too low temperature; the water heated after heating the atomizer comes out of the atomizer water outlet pipe, passes through the heat exchanger, and then comes out of the heat exchanger water outlet pipe to enter the water tank for continuous heating, realizing the circulation of heated water. When the atomizer is continuously running, heat is continuously generated, at this time, the heater does not work, the water in the water tank enters the atomizer through the atomizer water inlet pipe to cool the atomizer, and the high-temperature water coming out of the atomizer water outlet pipe enters the heat exchanger, and the water from the external water source enters the heat exchanger through the external water source water inlet pipe, and then comes out of the external water source water outlet pipe, the high-temperature water coming out of the atomizer water outlet pipe exchanges heat with the water from the external water source in the heat exchanger, the heat is taken away by the water from the external water source, and the water coming out of the atomizer water outlet pipe comes out of the heat exchanger water outlet pipe to enter the water tank, realizing the circulation of cooling water.
[0009] In an preferred embodiment of the utility model, the external water source water inlet pipe is provided with a self-operated temperature control valve, and the water tank is provided with a mounting position for mounting a self-operated temperature control valve probe; the self-operated temperature control valve is connected with the self-operated temperature control valve probe. When the atomizer is continuously running, the self-operated temperature control valve probe detects the water temperature in the water tank in real time, when the water temperature rises to a set value, the valve opening of the self-operated temperature control valve is increased, thereby increasing the flow of the external water source water inlet pipe, improving the heat exchange efficiency, and reducing the water temperature of the water tank; when the water temperature is lower than the set value, the valve opening of the self-operated temperature control valve is reduced, thereby reducing the flow of the external water source water inlet pipe, preventing the water temperature of the water tank from being too low, and realizing automatic control of the water temperature of the water tank.
[0010] Preferably, two water pump branches are arranged between the atomizer water inlet pipe and the water tank; each water pump branch comprises a pump water pipeline and a water pump arranged on the pump water pipeline; one end of the pump water pipeline is communicated with the atomizer water inlet pipe, and the other end of the pump water pipeline is communicated with the water tank. By arranging the water pump branches, the water in the water tank is provided with conveying power, and the water in the water tank is pumped to the atomizer by the water pump; by arranging two water pump branches, the number of water pumps can be started according to actual conditions, and the working efficiency is improved.
[0011] Preferably, two manual valves are arranged on the pump water pipeline; the two manual valves are respectively located on one side of the water inlet end and the water outlet end of the water pump. By arranging two manual valves, the water pump is convenient to overhaul and replace, and since the water in the water tank is circulating water, the water in the water tank will not leak after the two manual valves are closed.
[0012] Preferably, the water outlet pipe of the heat exchanger is connected to the upper end of the water tank, and the pump water pipe is connected to the lower end of the water tank. Since the water in the water tank flows out from the pump water pipe and flows into the heat exchanger, the water is transported more conveniently, and the water circulation effect is improved.
[0013] Preferably, the water tank is provided with a liquid level gauge, a thermometer and a temperature sensor. The liquid level gauge can be used to visually observe the water level in the water tank, the thermometer is used to display the water temperature in the water tank, and the temperature sensor is used to detect the water temperature in the water tank.
[0014] Preferably, the control system further comprises an oil-gas supply device, the oil-gas supply device comprising an air inlet pipe, an oil-gas assembly, an oil-gas pipe outlet, an atomizing disc cleaning gas outlet and a positive pressure air outlet; the oil-gas pipe outlet, the atomizing disc cleaning gas outlet and the positive pressure air outlet are all connected to the atomizer; one end of the air inlet pipe is connected to an air source, and the other end of the air inlet pipe is connected to three air supply branches, which are a first air supply branch, a second air supply branch and a third air supply branch; the first air supply branch is in communication with the inlet of the oil-gas assembly, the outlet of the oil-gas assembly is in communication with the oil-gas pipe outlet; the second air supply branch is in communication with the atomizing disc cleaning gas outlet, and the third air supply branch is in communication with the positive pressure air outlet. In the above structure, the oil-gas mixture medium is used to lubricate the transmission part of the atomizer, the air source provides positive pressure air, which enters the three air supply branches through the air inlet pipe, the positive pressure air in the first air supply branch enters the oil-gas assembly to mix with oil and gas, and then enters the atomizer through the oil-gas pipe outlet to lubricate the transmission part of the atomizer; the positive pressure air in the second air supply branch enters the atomizer through the atomizing disc cleaning gas outlet, which prevents acid mist from entering the atomizer during the pickling process of the atomizing disc of the atomizer, thereby protecting the atomizer; the positive pressure air in the third air supply branch enters the atomizer through the positive pressure air outlet, which prevents dust from entering the atomizer, thereby protecting the atomizer and ensuring stable operation of the atomizer; the positive pressure air in the third air supply branch can also be used to detect the air tightness of the atomizer.
[0015] Preferably, the control system further comprises a control box; an upper end of the control box is provided with an oil-gas cabinet, and a lower end of the control box is provided with a temperature control cabinet; the temperature control device is arranged on the temperature control cabinet, and the oil-gas supply device is arranged on the oil-gas cabinet; wherein the oil-gas pipe outlet, the atomizing disc cleaning gas outlet and the positive pressure air outlet are all arranged on the side of the oil-gas cabinet; the side of the temperature control cabinet is provided with a circulating water outlet, a circulating water return, a cooling water inlet and a cooling water outlet, the circulating water return is in communication between the atomizer outlet pipe and the water outlet of the atomizer, the circulating water outlet is in communication between the atomizer inlet pipe and the water inlet of the atomizer, the cooling water outlet is in communication between the external water source outlet pipe and the external water source, and the cooling water inlet is in communication between the external water source inlet pipe and the external water source; by arranging the control box, the oil-gas supply device and the temperature control device are facilitated to be installed, so that the structure becomes very compact.
[0016] Preferably, an electrical cabinet is arranged at the upper end of the control box, and the electrical cabinet is separated from the oil-gas cabinet by a partition plate.
[0017] Preferably, a power supply module is arranged on the electrical cabinet, and the power supply module comprises a main power switch, a transformer, a voltmeter, an emergency stop switch, a touch screen, a switching power supply and various protection switches.
[0018] Compared with the prior art, the utility model has the following beneficial effects:
[0019] The control system for stable operation of the atomizer in the utility model, when the atomizer is below a certain temperature, the water in the water tank is heated by the heater, the temperature of the water in the water tank is increased, the high-temperature water in the water tank enters the atomizer through the atomizer inlet pipe, the atomizer is preheated, the temperature of the atomizer is increased, the phenomenon of too low temperature of the atomizer is prevented, and the atomizer cannot be started; when the atomizer is continuously operated and the temperature of the atomizer is too high, heat exchange is carried out through the heat exchanger, the atomizer can be cooled, the phenomenon of too high temperature of the atomizer is prevented, the temperature control device can be used for temperature control of the atomizer, and the atomizer can be long-term and stable. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 It is a perspective structural schematic view of the control system for stable operation of the atomizer in the utility model.
[0021] Figure 2 It is a perspective structural schematic view of the control system for stable operation of the atomizer in the utility model from another visual angle.
[0022] Figure 3 It is a front view structural schematic view of the control system for stable operation of the atomizer in the utility model without a cabinet door.
[0023] Figure 4 It is the three-dimensional structure schematic view of temperature control device in the utility model.
[0024] Figure 5 It is the three-dimensional structure schematic view of temperature control device in the utility model.
[0025] Figure 6 It is the three-dimensional structure schematic view of water pump branch in the utility model.
[0026] Figure 7 It is the structure schematic view of oil gas supply device in the utility model.
[0027] Figure 8 It is the structure schematic view of power supply device partial structure in the utility model. DETAILED DESCRIPTION
[0028] In order to make those skilled in the art well understand the technical scheme of the utility model, the utility model is further described below in conjunction with embodiments and drawings, but the embodiment of the utility model is not limited to this.
[0029] Referring to Figures 1-6 The embodiment discloses a control system for stable operation of an atomizer, which comprises a temperature control device for heating or cooling the atomizer, wherein the temperature control device comprises a heat exchanger 1, a water tank 2, a heater 3, an atomizer water outlet pipe 4, an atomizer water inlet pipe 5, an external water source water outlet pipe 6, an external water source water inlet pipe 7 and a heat exchanger water outlet pipe 8; the heater 3 is arranged on the water tank 2 and used for heating water in the water tank 2; the heat exchanger 1 is provided with a first water inlet 3-1, a first water outlet 3-2, a second water inlet 3-3 and a second water outlet 3-4; the first water inlet 3-1 and the first water outlet 3-2 are in communication with each other; the second water inlet 3-3 and the second water outlet 3-4 are in communication with each other; the atomizer water outlet pipe 4 is connected between a water outlet of the atomizer and the first water inlet 3-1; the heat exchanger water outlet pipe 8 is connected between the first water outlet 3-2 and the water tank 2; the atomizer water inlet pipe 5 is connected between a water inlet of the atomizer and the water tank 2; the external water source water inlet pipe 7 is connected with the second water inlet 3-3; and the external water source water outlet pipe 6 is connected with the second water outlet 3-4.
[0030] Referring to Figures 1-6The water inlet pipe 7 of the external water source is provided with a self-operated temperature control valve 9, and the water tank 2 is provided with a mounting position 10 for mounting a self-operated temperature control valve probe 11; the self-operated temperature control valve 9 is connected with the self-operated temperature control valve probe 11. When the atomizer continuously operates, the self-operated temperature control valve probe 11 detects the water temperature in the water tank 2 in real time. When the water temperature rises to a set value, the valve opening of the self-operated temperature control valve 9 increases, thereby increasing the flow of the water inlet pipe 7 of the external water source, improving the heat exchange efficiency, and reducing the water temperature in the water tank 2. When the water temperature is lower than the set value, the valve opening of the self-operated temperature control valve 9 decreases, thereby reducing the flow of the water inlet pipe 7 of the external water source, preventing the water temperature in the water tank 2 from being too low, and automatically controlling the water temperature in the water tank 2.
[0031] Referring to Figures 1-6 , two water pump branches are arranged between the water inlet pipe 5 of the atomizer and the water tank 2; each water pump branch comprises a pump water pipeline 12 and a water pump 13 arranged on the pump water pipeline 12; one end of the pump water pipeline 12 is communicated with the water inlet pipe 5 of the atomizer, and the other end of the pump water pipeline 12 is communicated with the water tank 2. By arranging the water pump branches, the water in the water tank 2 is provided with conveying power, and the water in the water tank 2 is pumped into the atomizer by the water pump 13. By arranging two water pump branches, the number of water pumps 13 can be started according to the actual situation, thereby improving the working efficiency.
[0032] Referring to Figures 1-6 , two manual valves 14 are arranged on the pump water pipeline 12; the two manual valves 14 are respectively located on the water inlet end and the water outlet end of the water pump 13. By arranging the two manual valves 14, the water pump 13 can be conveniently overhauled and replaced. Since the water in the water tank 2 is circulating water, the water in the water tank 2 will not leak after the two manual valves 14 are closed.
[0033] Referring to Figures 1-6 , the heat exchanger water outlet pipe 8 is connected to the upper end of the water tank 2, and the pump water pipeline 12 is connected to the lower end of the water tank 2. Since the water in the water tank 2 flows out from the pump water pipeline 12 and flows into the heat exchanger water outlet pipe 8, the purpose of this arrangement is to more conveniently convey the water and improve the water circulation effect.
[0034] Referring to Figure 5 , the water tank 2 is provided with a liquid level meter 15, a thermometer 16 and a temperature sensor 17. The water level of the water tank 2 can be directly observed by arranging the liquid level meter 15, the thermometer 16 is used to display the water temperature of the water tank 2, and the temperature sensor 17 is used to detect the water temperature in the water tank 2.
[0035] Referring to Figure 4 and Figure 6 , the water inlet pipe 5 of the atomizer is provided with a pressure sensor 44 for measuring the water pressure.
[0036] Referring to Figures 1-3 andFigure 7 The control system further comprises an oil-gas supply device, which comprises an air inlet pipe 18, an oil-gas assembly 19, an oil-gas pipe outlet 20, an atomizing disc cleaning gas outlet 21 and a positive pressure air outlet 22; the oil-gas pipe outlet 20, the atomizing disc cleaning gas outlet 21 and the positive pressure air outlet 22 are connected with the atomizer; one end of the air inlet pipe 18 is connected with an air source, and the other end of the air inlet pipe 18 is connected with three air supply branches, which are a first air supply branch 23, a second air supply branch 24 and a third air supply branch 25; the first air supply branch 23 is in communication with the inlet of the oil-gas assembly 19, the outlet of the oil-gas assembly 19 is in communication with the oil-gas pipe outlet 20; the second air supply branch 24 is in communication with the atomizing disc cleaning gas outlet 21, and the third air supply branch 25 is in communication with the positive pressure air outlet 22. In the above structure, the oil-gas mixed medium is used to lubricate the transmission part of the atomizer, the positive pressure air is provided by the air source, and the positive pressure air enters the three air supply branches through the air inlet pipe 18; the positive pressure air in the first air supply branch 23 enters the oil-gas assembly 19 to mix with oil and gas, and then enters the atomizer through the oil-gas pipe outlet 20 to lubricate the transmission part of the atomizer; the positive pressure air in the second air supply branch 24 enters the atomizer from the atomizing disc cleaning gas outlet 21, and the positive pressure air prevents the acid mist from entering the atomizer during the pickling process of the atomizing disc of the atomizer, thereby protecting the atomizer; the positive pressure air in the third air supply branch 25 enters the atomizer from the positive pressure air outlet 22, which can prevent dust from entering the atomizer, thereby protecting the atomizer and ensuring the stable operation of the atomizer; the positive pressure air in the third air supply branch 25 can also be used to detect the air tightness of the atomizer; the flow direction of the gas is shown by arrows in Figure 7 .
[0037] Referring to Figures 1-3 and Figure 7 , the oil-gas supply device further comprises a gas distribution block 26 and two pressure regulating filters 27, the gas distribution block 26 is in communication with the two pressure regulating filters 27 and the air inlet pipe 18, the first air supply branch 23 is in communication with one of the pressure regulating filters 27, and the other pressure regulating filter 27 is in communication with the second air supply branch 24 and the third air supply branch 25. Flow meters 28 are arranged on the second air supply branch 24 and the third air supply branch 25 to detect the gas flow.
[0038] Referring to Figures 1-7The control system further comprises a control box 29; an upper end of the control box 29 is provided with an oil-gas cabinet 29-1, and a lower end of the control box 29 is provided with a temperature control cabinet 29-2; the temperature control device is arranged on the temperature control cabinet 29-2, and the oil-gas supply device is arranged on the oil-gas cabinet 29-1; wherein the oil-gas pipe outlet 20, the atomizing disc cleaning gas outlet 21 and the positive pressure air outlet 22 are all arranged on the side of the oil-gas cabinet 29-1; the side of the temperature control cabinet 29-2 is provided with a circulating water outlet 30, a circulating water return 31, a cooling water inlet 32 and a cooling water outlet 33, the circulating water return 31 is in communication between the atomizer outlet pipe 4 and the water outlet of the atomizer, the circulating water outlet 30 is in communication between the atomizer inlet pipe 5 and the water inlet of the atomizer, and the cooling water outlet 33 is in communication between the external water source outlet pipe 6 and the external water source; the cooling water inlet 32 is in communication between the external water source inlet pipe 7 and the external water source. By arranging the control box 29, the oil-gas supply device and the temperature control device are facilitated to be installed, so that the structure becomes very compact.
[0039] Referring to Figures 1-7 The side of the oil-gas cabinet 29-1 is provided with a compressed air inlet 34, and the compressed air inlet 34 is in communication between the air inlet pipe 18 and the air source.
[0040] Referring to Figures 1-3 and Figure 7 The upper end of the control box 29 is provided with an electrical cabinet 29-3, and the electrical cabinet 29-3 is separated from the oil-gas cabinet 29-1 by a partition plate 35.
[0041] Referring to Figures 1-3 and Figure 7 The electrical cabinet 29-3 is provided with a power supply module, and the power supply module comprises a main power switch 36, a transformer 37, a voltmeter 38, an emergency stop switch 39, a touch screen 40, a switching power supply 41 and various level protection switches 42.
[0042] Referring to Figures 1-3 The control box 29 is provided with a centrifugal fan 43, and the centrifugal fan 43 can also provide positive pressure air for the atomizer.
[0043] Referring to Figures 1-7 The air inlet pipe 18 and the external water source inlet pipe 7 are both provided with a manual valve 14.
[0044] Referring to Figures 1-6 The working principle of the above control system for stable operation of the atomizer is as follows:
[0045] When the atomizer is below a certain temperature, the heat exchanger 1 does not work, the heater 3 works, the heater 3 heats the water in the water tank 2, the temperature of the water in the water tank 2 is raised, the high-temperature water in the water tank 2 enters the atomizer through the atomizer water inlet pipe 5, the atomizer is heated, the temperature of the atomizer is raised, and the atomizer is prevented from being unable to run due to too low temperature; the water after the atomizer is heated is discharged from the atomizer water outlet pipe 4, passes through the heat exchanger 1, is then discharged from the heat exchanger water outlet pipe 8, and enters the water tank 2 to continue heating, so that the heated water circulation is realized. When the atomizer continuously runs, heat is continuously generated, at this time, the heater 3 does not work, the water in the water tank 2 enters the atomizer through the atomizer water inlet pipe 5, the atomizer is cooled, and the heat of the atomizer is taken away, the high-temperature water discharged from the atomizer water outlet pipe 4 enters the heat exchanger 1, the water of an external water source enters the heat exchanger 1 from the external water source water inlet pipe 7, and then is discharged from the external water source water outlet pipe 6, the high-temperature water discharged from the atomizer water outlet pipe 4 exchanges heat with the water of the external water source in the heat exchanger 1, the heat is taken away by the water of the external water source, the water after the atomizer water outlet pipe 4 passes through the heat exchanger 1 is discharged from the heat exchanger water outlet pipe 8, enters the water tank 2, and the cooling water circulation is realized. The flow direction of the water is shown in the arrow direction of Figure 4 .
[0046] The above is a preferred embodiment of the utility model, but the embodiment of the utility model is not limited by the above content, and any change, modification, replacement, combination and simplification made without departing from the spirit and principle of the utility model should be an equivalent replacement mode, and all are included in the protection scope of the utility model.
Claims
1. A control system for stable operation of a nebulizer, characterized by, The temperature control device for heating or cooling the atomizer comprises a heat exchanger, a water tank, a heater, an atomizer water outlet pipe, an atomizer water inlet pipe, an external water source water outlet pipe, an external water source water inlet pipe and a heat exchanger water outlet pipe; the heater is arranged on the water tank and used for heating water in the water tank; the heat exchanger is provided with a first water inlet, a first water outlet, a second water inlet and a second water outlet; the first water inlet and the first water outlet are in communication with each other; the second water inlet and the second water outlet are in communication with each other; the atomizer water outlet pipe is connected between the water outlet of the atomizer and the first water inlet; the heat exchanger water outlet pipe is connected between the first water outlet and the water tank; the atomizer water inlet pipe is connected between the water inlet of the atomizer and the water tank; the external water source water inlet pipe is connected with the second water inlet; and the external water source water outlet pipe is connected with the second water outlet.
2. The control system for stable operation of a nebulizer according to claim 1, wherein, The external water source water inlet pipe is provided with a self-operated temperature control valve, and the water tank is provided with a mounting position for mounting a self-operated temperature control valve probe.
3. The control system for stable operation of a nebulizer according to claim 1, wherein, Two water pump branches are arranged between the atomizer water inlet pipe and the water tank; each water pump branch comprises a pump water pipeline and a water pump arranged on the pump water pipeline; one end of the pump water pipeline is in communication with the atomizer water inlet pipe, and the other end of the pump water pipeline is in communication with the water tank.
4. The control system for stable operation of a nebulizer according to claim 3, wherein, Two manual valves are arranged on the pump water pipeline; the two manual valves are respectively located on one side of the water inlet end and the water outlet end of the water pump.
5. The control system for stable operation of a nebulizer according to claim 3, wherein, The heat exchanger water outlet pipe is connected to the upper end of the water tank, and the pump water pipeline is connected to the lower end of the water tank.
6. The control system for stable operation of a nebulizer according to claim 1, wherein, The water tank is provided with a liquid level meter, a thermometer and a temperature sensor.
7. The control system for stable operation of a nebulizer according to claim 1, wherein The control system further comprises an oil and gas supply device, the oil and gas supply device comprises an air inlet pipe, an oil and gas assembly, an oil and gas pipe outlet, an atomizing disc cleaning gas outlet and a positive pressure air outlet; the oil and gas pipe outlet, the atomizing disc cleaning gas outlet and the positive pressure air outlet are connected with the atomizer; one end of the air inlet pipe is connected with a gas source, and the other end of the air inlet pipe is connected with three gas supply branches, the three gas supply branches are a first gas supply branch, a second gas supply branch and a third gas supply branch; the first gas supply branch is in communication with the inlet of the oil and gas assembly, the outlet of the oil and gas assembly is in communication with the oil and gas pipe outlet; the second gas supply branch is in communication with the atomizing disc cleaning gas outlet, and the third gas supply branch is in communication with the positive pressure air outlet.
8. The control system for stable operation of a nebulizer according to claim 7, wherein, The control system further comprises a control box; an upper end of the control box is provided with an oil and gas cabinet, and a lower end of the control box is provided with a temperature control cabinet; the temperature control device is arranged on the temperature control cabinet, and the oil and gas supply device is arranged on the oil and gas cabinet; wherein the oil and gas pipe outlet, the atomizing disc cleaning gas outlet and the positive pressure air outlet are all arranged on the side of the oil and gas cabinet; the side of the temperature control cabinet is provided with a circulating water outlet, a circulating water return, a cooling water inlet and a cooling water outlet, the circulating water return is in communication between the atomizer outlet pipe and the water outlet of the atomizer, the circulating water outlet is in communication between the atomizer inlet pipe and the water inlet of the atomizer, and the cooling water outlet is in communication between the external water source outlet pipe and the external water source; the cooling water inlet is in communication between the external water source inlet pipe and the external water source.
9. The control system for stable operation of a nebulizer according to claim 8, wherein, An upper end of the control box is provided with an electrical cabinet, and the electrical cabinet and the oil and gas cabinet are separated by a partition plate.
10. The control system for stable operation of a nebulizer according to claim 9, wherein, The electrical cabinet is provided with a power supply module, and the power supply module comprises a total power switch, a transformer, a voltmeter, an emergency stop switch, a touch screen, a switching power supply and various level protection switches.