Atomization humidification system
By adjusting the air inlet pipe pressure at the air supply mechanism through the environmental controller and the air pressure regulating valve, the high workload and high cost problems caused by manual adjustment of the atomizing humidifier pressure in the existing technology are solved, and the automatic control and cost reduction of the atomizing humidifier in the pig house unit are realized.
Patent Information
- Application Number
- CN202422611768.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-29
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2034-10-29
AI Technical Summary
The existing pig house unit mist humidification system requires manual adjustment of the mist humidifier pressure one by one, resulting in high workload and high cost.
The environmental controller is used to adjust the air inlet pipe pressure at the air supply mechanism through the air pressure regulating valve and air pressure gauge, automatically controlling the size of the atomized particles sprayed by the atomizing humidifier, reducing the air pressure regulating valve and pressure gauge of the atomizing humidifier itself, and only setting the air pressure regulating valve and pressure gauge at the air supply mechanism to achieve full-house automation control.
It simplifies operation, realizes automatic control, reduces costs, and can easily adjust the atomization particle size of all atomizing humidifiers in the pig house unit to achieve the purpose of temperature and humidity regulation.
Smart Images

Figure CN223417498U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to humidifying equipment technical field, especially, relate to a atomization humidification system. BACKGROUND
[0002] At present in the field of livestock and poultry breeding, especially in the pig industry, the environmental requirements in pig house unit are higher and higher, especially the temperature and humidity index, and suitable temperature and humidity can make the pig grow more comfortably.
[0003] The atomization humidification system of the prior art pig house unit often adds a pressure gauge and a pressure regulating valve to the atomization humidifier, and then the breeding workers adjust the pressure of each atomization humidifier according to the environment of the pig house unit. As known to all, a pig house unit often has multiple atomization humidifiers, so adjusting the pressure of the pig house unit once will bring a lot of workload to the breeding workers, and each atomization humidifier needs to be equipped with a pressure gauge and a pressure regulating valve, which is also very costly. SUMMARY
[0004] In order to overcome the above-mentioned shortcomings of the prior art, the utility model provides an atomization humidification system, which solves the above-mentioned problems.
[0005] In order to achieve the above-mentioned purposes, the utility model discloses an atomization humidification system, which comprises an atomization humidifier, a gas supply mechanism, a water supply mechanism, an air inlet pipeline and a water inlet pipeline, the atomization humidifier is connected with the gas supply mechanism and the water supply mechanism through the air inlet pipeline and the water inlet pipeline respectively, the gas supply mechanism comprises an air compressor, a gas pressure regulating valve and a gas pressure gauge, the air compressor is connected with the air inlet pipeline, and the air inlet pipeline is provided with the gas pressure regulating valve and the gas pressure gauge, the atomization humidification system further comprises a ring controller, the ring controller is electrically connected with the gas pressure regulating valve and the gas pressure gauge respectively, the ring controller adjusts the gas pressure in the air inlet pipeline through the gas pressure regulating valve according to the temperature and humidity in the room and the pressure feedback by the gas pressure gauge, and then adjusts the size of the atomized particles sprayed by the atomization humidifier.
[0006] Compared with the prior art, the application has the following effects: the air control device judges whether the size of the atomized particles sprayed by the atomizing humidifier needs to be adjusted according to the temperature and humidity in the pig house unit. When the air control device judges that the size of the atomized particles needs to be adjusted, the pressure of the air inlet pipeline can be adjusted through the air pressure adjusting valve and the air pressure gauge. Through the adjustment of the pressure, the size of the atomized particles sprayed by the atomizing humidifier is correspondingly adjusted. Therefore, the atomizing humidifier in the application does not have an air pressure adjusting valve and a pressure gauge. The air pressure adjusting valve and the pressure gauge are only arranged on the air inlet pipeline at the air supply mechanism in the entire pig house unit. The air inlet pipeline supplies air to all the atomizing humidifiers in the pig house unit. Through the adjustment of the pressure at this position, the size of the atomized particles sprayed by all the atomizing humidifiers in the pig house unit can be easily adjusted. Finally, the purpose of adjusting the temperature and humidity in the pig house unit is achieved.
[0007] Therefore, compared with the prior art, the application not only has simple operation and realizes automatic control, but also has low cost.
[0008] Further, the water pressure adjusting valve and the water pressure gauge for adjusting the pressure of the water inlet pipeline are further included. The water pressure adjusting valve and the water pressure gauge are electrically connected with the air control device. The air control device adjusts the water pressure in the water inlet pipeline through the water pressure adjusting valve according to the temperature and humidity in the room and the pressure fed back by the water pressure gauge. In turn, the size of the atomized particles sprayed by the atomizing humidifier is adjusted.
[0009] Further, the atomizing humidifier includes a shell. The shell is provided with a gas path structure, a water path structure and a nozzle corresponding to each other. The gas path structure is connected with the air inlet pipeline. The water path structure is connected with the water inlet pipeline. The outlets of the gas path structure and the water path structure are arranged at the nozzle. In turn, water forms atomized particles at the nozzle.
[0010] Further, the nozzle is an adjustable nozzle with adjustable caliber.
[0011] Further, the adjustable nozzle includes a base and a spray head. One end of the base is connected with the water path structure. The other end of the base is connected with the spray head. The spray head can move relative to the base. One end of the base close to the spray head is a necked structure. A support plate is arranged on the spray head. The support plate passes through the necked structure and is connected with a sealing plate arranged in the base. When the spray head moves relative to the base, the support plate drives the sealing plate to move away from or close to the necked structure. In turn, the gap size between the sealing plate and the necked structure is adjusted to adjust the spray speed of the spray head.
[0012] Furthermore, the air path structure includes an air inlet channel connected to the air inlet pipe, the air inlet channel is connected to the air outlet channel, and the first air outlet hole and the second air outlet hole of the air outlet channel are symmetrically arranged on both sides of the nozzle, so that the water sprayed from the nozzle forms two water-gas mixtures, thereby improving the atomization effect.
[0013] Furthermore, the water channel structure includes a water inlet channel connected to the water inlet pipe, a control valve for controlling the opening and closing of the water inlet channel, and a water outlet channel. The water outlet channel is arranged in the middle of the air outlet channel and connected to the nozzle.
[0014] Furthermore, the control valve includes a float, a curved arm and an upper water pipe, the upper water pipe is connected to the water outlet channel, the outer wall of the upper water pipe is movably connected to the float, one end of the curved arm is connected to the float, and the other end of the curved arm is hinged to the support that fixes the upper water pipe, so that when water enters the shell, the float rises along the upper water pipe, thereby driving the curved arm to rotate and rise, so that the protrusion of the curved arm presses against the blocking member to close the water outlet of the water inlet channel.
[0015] Furthermore, a filter screen for filtering impurities is provided in the water inlet channel. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0017] Figure 1 This is a structural diagram of an atomizing humidification system according to an embodiment of the present utility model;
[0018] Figure 2 This is a schematic structural diagram of an atomizing humidifier according to an embodiment of the present utility model;
[0019] Figure 3 for Figure 2 CC cross-section diagram;
[0020] Figure 4 This is a schematic structural diagram of a nozzle according to an embodiment of the present utility model;
[0021] Figure 5 for Figure 4 AA cross-section of
[0022] Figure 6 This is a structural schematic diagram of an embodiment of an adjustable nozzle of the utility model.
[0023] The reference numerals are as follows:
[0024] 1. Atomizing humidifier; 2. Air supply mechanism; 3. Water supply mechanism; 4. Air inlet pipe; 5. Water inlet pipe; 6. Shell; 7. Air path structure; 8. Water path structure; 9. Nozzle; 10. Base; 11. Nozzle; 12. Narrowing structure; 13. Support plate; 14. Sealing plate; 15. Air inlet channel; 16. Air outlet channel; 17. First air outlet; 18. Second air outlet; 19. Water inlet channel; 20. Water outlet channel; 21. Float; 22. Crank arm; 23. Water supply pipe; 24. Support member; 25. Protrusion; 26. Blocking member; 27. Filter. DETAILED DESCRIPTION
[0025] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0026] like Figure 1-6 As shown, the utility model discloses an atomizing humidification system, including an atomizing humidifier 1, an air supply mechanism 2, a water supply mechanism 3, an air inlet pipe 4 and a water inlet pipe 5. The atomizing humidifier 1 is connected to the air supply mechanism 2 and the water supply mechanism 3 through the air inlet pipe 4 and the water inlet pipe 5 respectively; the air supply mechanism 2 includes an air compressor, an air pressure regulating valve and an air pressure gauge. The air compressor is connected to the air inlet pipe 4, and the air inlet pipe 4 is provided with an air pressure regulating valve and an air pressure gauge; it also includes an environmental controller, which is electrically connected to the air pressure regulating valve and the air pressure gauge respectively. The environmental controller adjusts the air pressure in the air inlet pipe 4 through the air pressure regulating valve according to the indoor temperature and humidity and the pressure feedback from the air pressure gauge, thereby adjusting the size of the atomized particles sprayed by the atomizing humidifier 1.
[0027] It should be noted that the environmental controller is an existing technology and belongs to an environmental controller. It includes a PLC controller, which is electrically connected to automatic control components such as temperature and humidity sensors in the pig house. Its structure and principle are very common in the field of automatic control and will not be repeated here.
[0028] Compared with the prior art, the present application has the following effects: the environmental controller determines whether it is necessary to adjust the size of the atomized particles sprayed by the atomizing humidifier 1 based on the temperature and humidity in the pig house unit. When the environmental controller determines that the atomized particle size needs to be adjusted, the pressure of the air intake pipe 4 can be adjusted through the air pressure regulating valve and the air pressure gauge. By adjusting the pressure, the size of the atomized particles sprayed by the atomizing humidifier 1 is adjusted accordingly. Generally, the greater the pressure of the air intake pipe 4, the smaller the atomized particles. Therefore, the atomizing humidifier 1 in the present application does not have an air pressure regulating valve and a pressure gauge. In the entire pig house unit, only an air pressure regulating valve and a pressure gauge are installed on the air intake pipe 4 at the air supply mechanism 2. This air intake pipe 4 supplies air to all the atomizing humidifiers 1 in the pig house unit. By adjusting the pressure here, the size of the atomized particles sprayed by all the atomizing humidifiers 1 in the pig house unit can be easily adjusted, and ultimately the purpose of adjusting the temperature and humidity of the pig house unit is achieved.
[0029] Therefore, compared with the prior art, the present invention is not only simple to operate and realizes automatic control, but also has low cost.
[0030] Continuing with the above embodiment, more specifically, a water pressure regulating valve and a water pressure gauge are further included for regulating the pressure in the water inlet pipe 5. The water pressure regulating valve and the water pressure gauge are each electrically connected to the environmental controller. The environmental controller adjusts the water pressure in the water inlet pipe 5 via the water pressure regulating valve based on the indoor temperature and humidity and the pressure feedback from the water pressure gauge, thereby adjusting the size of the atomized particles sprayed by the atomizing humidifier. Generally, the greater the water pressure, the smaller the atomized particles. Therefore, the purpose of adjusting the atomized particle size can be achieved by adjusting the pressure in either the air inlet pipe 4 or the water inlet pipe 5.
[0031] Following the above embodiment, more specifically, Figure 2 、 Figure 3 As shown, the atomizing humidifier 1 includes a housing 6, within which are disposed corresponding air path structures 7, water path structures 8, and nozzles 9. The air path structure 7 is connected to the air inlet pipe 4, and the water path structure 8 is connected to the water inlet pipe 5. The outlets of the air path structures 7 and 8 are both located at the nozzle 9, so that water forms atomized particles at the nozzle 9. During use, the outlet of the water path structure 8 is connected to the nozzle 9, and the air path structure 7 sprays air into the nozzle 9, thereby forming a water-air mixture at the nozzle 9, and the nozzle 9 sprays atomized particles.
[0032] Continuing with the above embodiment, it is more preferred that the nozzle 9 is an adjustable nozzle with adjustable diameter. By adjusting the diameter of the nozzle 9, the size of the atomized particles sprayed by the nozzle 9 can be adjusted to meet the needs of the environment.
[0033] Following the above embodiment, more specifically, Figure 4As shown, in a specific embodiment, the adjustable nozzle may include a base 10 and a nozzle 11, one end of the base 10 is connected to the water channel structure 8, and the other end of the base 10 is connected to the nozzle 11, and the nozzle 11 can move relative to the base 10; wherein, the end of the base 10 close to the nozzle 11 is a constriction structure 12, and the nozzle 11 is provided with a support plate 13, which passes through the constriction structure 12 and is connected to a sealing plate 14 located in the base 10; when the nozzle 11 moves relative to the base 10, the support plate 13 drives the sealing plate 14 away from or close to the constriction structure 12, thereby adjusting the size of the gap between the sealing plate 14 and the constriction structure 12 to adjust the spraying speed of the nozzle 11. Specifically, the nozzle 11 and the base 10 can adopt a threaded connection structure to achieve relative movement.
[0034] Following the above embodiment, more specifically, Figure 5 、 Figure 6 As shown, the air path structure 7 includes an air inlet channel 15 connected to the air inlet pipe 4. The air inlet channel 15 is connected to the air outlet channel 16. The first air outlet hole 17 and the second air outlet hole 18 of the air outlet channel 16 are symmetrically arranged on both sides of the nozzle 9. This allows the water sprayed from the nozzle 9 to form a double water-gas mixture, thereby improving the atomization effect. Among them, two air outlet channels 16 are provided on each nozzle 9. The two air outlet channels 16 spray air into the nozzle 9 at the first air outlet hole 17 and the second air outlet hole 18 respectively, thereby achieving a double water-gas mixture.
[0035] Continuing with the above embodiment, more specifically, the waterway structure 8 includes a water inlet channel 19 connected to the water inlet pipe 5, a control valve that controls the opening and closing of the water inlet channel 19, and a water outlet channel 20. The water outlet channel 20 is located in the middle of the air outlet channel 16 and connected to the nozzle 9. The design of the control valve can control the water supply in the water outlet channel 20, thereby achieving controllable water supply within the housing 6. For example, if the water supply to the housing 6 is too high, it will overflow the inner cavity of the housing 6. Therefore, in order to prevent the water supply from leaking out of the housing 6 during the waterway supply, a control valve must be installed to achieve water flow control.
[0036] Continuing with the above embodiment, more specifically, the control valve includes a float 21, a curved arm 22 and an upper water pipe 23. The upper water pipe 23 is connected to the water outlet channel 20. The outer wall of the upper water pipe 23 is movably connected to the float 21. One end of the curved arm 22 is connected to the float 21, and the other end of the curved arm 22 is hinged to the support 24 for fixing the upper water pipe 23. When water enters the shell 6, the float 21 rises along the upper water pipe 23, thereby driving the curved arm 22 to rotate and rise, so that the protrusion 25 of the curved arm 22 pushes the blocking member 26 to close the water outlet of the water inlet channel 19.
[0037] Among them, gas continuously sprays jets to the nozzle 9 through the air outlet channel 16, and water enters the shell 6 from the water inlet channel 19. When the float 21 in the shell 6 rises, the crank arm 22 is driven to push the blocking piece 26 upward. When the float 21 drives the crank arm 22 to touch the support 24, the blocking piece 26 closes the water outlet, thereby ensuring that the water inlet amount is controllable; at the same time, because the water at the nozzle 9 is sprayed out, a negative pressure is formed around the nozzle 9. Under the action of the siphon principle, the water outlet channel 20 sucks the water in the shell 6 to the nozzle 9 through the water supply pipe 23 and sprays it out. Then, because the water level in the shell 6 drops, the float 21 also drops, the crank arm 22 rotates downward, and then the blocking piece 26 also drops under the action of the water pressure in the water in the water inlet channel 19, thereby opening the water outlet, and water enters the shell 6 again. The above process is repeated to complete the equipment's continuous external water spraying according to the amount.
[0038] Continuing with the above embodiment, more specifically, a filter screen 27 for filtering impurities is provided in the water inlet channel 19. The filter screen 27 is used to filter out impurities in the water to prevent the waterway from being blocked.
[0039] The above description of the disclosed embodiments will enable one skilled in the art to implement or use the present invention. Various modifications to these embodiments will be readily apparent to one skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not limited to the embodiments shown herein but is intended to conform to the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A misting humidification system, characterized in that: It includes an atomizing humidifier, an air supply mechanism, a water supply mechanism, an air inlet pipe and a water inlet pipe. The atomizing humidifier is connected to the air supply mechanism and the water supply mechanism through the air inlet pipe and the water inlet pipe respectively; the air supply mechanism includes an air compressor, an air pressure regulating valve and an air pressure gauge. The air compressor is connected to the air inlet pipe, and the air pressure regulating valve and the air pressure gauge are provided on the air inlet pipe; it also includes an environmental controller, which is electrically connected to the air pressure regulating valve and the air pressure gauge respectively. The environmental controller adjusts the air pressure in the air inlet pipe through the air pressure regulating valve according to the indoor temperature and humidity and the pressure feedback from the air pressure gauge, thereby adjusting the size of the atomized particles sprayed by the atomizing humidifier.
2. The atomizing humidification system according to claim 1, characterized in that: It also includes a water pressure regulating valve and a water pressure gauge for adjusting the pressure of the water inlet pipe. The water pressure regulating valve and the water pressure gauge are electrically connected to the environmental controller respectively. The environmental controller adjusts the water pressure in the water inlet pipe through the water pressure regulating valve according to the indoor temperature and humidity and the pressure feedback from the water pressure gauge, thereby adjusting the size of the atomized particles sprayed by the atomizing humidifier.
3. An atomizing humidification system according to claim 1 or 2, characterized in that: The atomizing humidifier includes a shell, in which an air path structure, a water path structure and a nozzle are arranged corresponding to each other. The air path structure is connected to the air inlet pipe, and the water path structure is connected to the water inlet pipe. The outlets of the air path structure and the water path structure are both arranged at the nozzle, so that water forms atomized particles at the nozzle.
4. The atomizing humidification system according to claim 3, characterized in that: The nozzle is an adjustable nozzle with adjustable caliber.
5. The atomizing humidification system according to claim 4, characterized in that: The adjustable nozzle includes a base and a nozzle, one end of the base is connected to the water channel structure, and the other end of the base is connected to the nozzle, and the nozzle can move relative to the base; wherein, the end of the base close to the nozzle is a necking structure, and a support plate is provided on the nozzle, and the support plate passes through the necking structure and is connected to a sealing plate located in the base; when the nozzle moves relative to the base, the support plate drives the sealing plate away from or close to the necking structure, thereby adjusting the size of the gap between the sealing plate and the necking structure to adjust the spraying speed of the nozzle.
6. The atomizing humidification system according to claim 3, characterized in that: The air path structure includes an air inlet channel connected to the air inlet pipe, the air inlet channel is connected to the air outlet channel, and the first air outlet hole and the second air outlet hole of the air outlet channel are symmetrically arranged on both sides of the nozzle, so that the water sprayed from the nozzle forms a water-gas mixture twice, thereby improving the atomization effect.
7. The atomizing humidification system according to claim 6, characterized in that: The water channel structure includes a water inlet channel connected to the water inlet pipe, a control valve for controlling the opening and closing of the water inlet channel, and a water outlet channel. The water outlet channel is arranged in the middle of the air outlet channel and connected to the nozzle.
8. The atomizing humidification system according to claim 7, characterized in that: The control valve includes a float, a curved arm and an upper water pipe. The upper water pipe is connected to the water outlet channel. The outer wall of the upper water pipe is movably connected to the float. One end of the curved arm is connected to the float, and the other end of the curved arm is hinged to the support for fixing the upper water pipe. When water enters the shell, the float rises along the upper water pipe, thereby driving the curved arm to rotate and rise, so that the protrusion of the curved arm presses against the blocking member to close the water outlet of the water inlet channel.
9. The atomizing humidification system according to claim 8, characterized in that: A filter screen for filtering impurities is provided in the water inlet channel.