Air conditioning system
By combining mobile ventilation and fixed-point ventilation, the combination of mobile air unit and fixed-point ventilation solves the limitations of the air conditioning system in terms of air circulation efficiency and spatial adaptability, and achieves flexible air circulation and cross-region air mixing.
Patent Information
- Application Number
- CN202510594353.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-09
- Publication Date
- 2025-07-25
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing air conditioning system has limitations in air circulation efficiency, energy consumption control and space adaptability. The traditional full air system is complex in installation and the air duct layout is rigid. The single air supply direction of the split air conditioner leads to a dead cycle, making it difficult to achieve cross-region air mixing.
By combining mobile ventilation and fixed-point ventilation, the mobile air unit and the fixed air unit are combined, and the base cylinder, cleaning mechanism, filter mechanism and dispersing mechanism of the mobile air unit are used to realize air circulation adjustment, including the mobile mechanism, cleaning mechanism and filter mechanism on the base cylinder, and the filtration mechanism is connected to the filter mechanism.
Flexible air circulation regulation is achieved, reducing dust generation, improving air flow efficiency, adapting to dynamic indoor environments, avoiding local air retention and rising CO2 concentration, and achieving cross-regional air mixing.
Smart Images

Figure CN120368401A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to air conditioning, and more specifically to an air conditioning system. Background Art
[0002] With the acceleration of the urbanization process and the improvement of people's requirements for the comfort of the indoor environment, air conditioning systems have become an indispensable part of modern buildings. However, existing air conditioning systems still have significant limitations in terms of air circulation efficiency, energy consumption control, and space adaptability, and urgently need technological innovation to break through; traditional all-air systems rely on fixed duct networks and large fans to achieve temperature regulation by centrally processing air. Its disadvantages are complex installation, high initial investment, and rigid air flow organization due to fixed duct layouts, making it difficult to adapt to dynamic changes in indoor personnel density or heat source distribution, and prone to problems such as air stagnation in local areas and rising CO2 concentrations; split air conditioners supply air through fixed air outlets. Although they are flexible to install, they are limited by single-direction or limited-angle air supply, resulting in a "dead cycle" in indoor air flow and making it difficult to achieve cross-regional air mixing. Summary of the Invention
[0003] The purpose of the present invention is to provide an air conditioning system that can promote the cyclic regulation of indoor air by combining mobile ventilation and fixed-point ventilation.
[0004] The purpose of the present invention is achieved through the following technical solutions:
[0005] An air conditioning system includes a plurality of fixed air units, and a movable air unit is arranged between the plurality of fixed air units;
[0006] The movable air unit includes a base cylinder and a plurality of moving mechanisms connected to the base cylinder. A cleaning mechanism is arranged on the base cylinder, a filtering mechanism is connected to the cleaning mechanism, and a air-dispersing mechanism is connected to the filtering mechanism;
[0007] A rotating ring I is rotatably connected to the top of the base cylinder, and a rotating ring II is rotatably connected to the bottom of the base cylinder;
[0008] The moving mechanism includes two connecting rods. A hinge seat is fixedly connected to the base cylinder, and both connecting rods are hinged to the hinge seat. A parallel rod is hinged between the ends of the two connecting rods. A steering motor is fixedly connected to the parallel rod, a moving seat is fixedly connected to the output shaft of the steering motor, and a moving wheel is rotatably connected to the moving seat;
[0009] A swing motor for driving one of the connecting rods to rotate is fixedly connected to the hinge seat, and a power mechanism I for driving the moving wheel to rotate is fixedly connected to the moving seat;
[0010] The cleaning mechanism includes a telescopic mechanism I, which is fixedly connected to the base cylinder. A cleaning cylinder is rotatably connected to the telescopic end of the telescopic mechanism I. The cleaning cylinder is slidably connected to a rotating ring I. A cleaning cavity is fixedly connected to the bottom of the cleaning cylinder. The cleaning cavity is slidably connected to a rotating ring II. The cleaning cavity is in communication with the cleaning cylinder. A plurality of ventilation holes are provided at the bottom of the cleaning cavity. A plurality of storage holes are provided at the bottom of the cleaning cavity. A telescopic mechanism II is fixedly connected to the cleaning cavity. A lifting plate is fixedly connected to the telescopic end of the telescopic mechanism II. Brush hairs are provided on the lifting plate, and the brush hairs can pass through the storage holes. A rotating sleeve is rotatably connected to the upper end of the cleaning cylinder;
[0011] A power mechanism II for driving the cleaning cylinder to rotate is fixedly connected to the telescopic end of the telescopic mechanism I;
[0012] The filtering mechanism includes a filtering cylinder, which is fixedly connected to the base cylinder. The lower end of the filtering cylinder is slidably connected to the rotating sleeve. Two covering cavities are fixedly connected to the filtering cylinder. A support plate is fixedly connected to the filtering cylinder. Cleaning rollers are rotatably connected to both the front and rear ends of the support plate. The interior of the cleaning rollers is hollow. A plurality of flushing holes are provided on the cleaning rollers. Two filtering belts are drivingly connected between the two cleaning rollers. The two filtering belts are stacked on top of each other. The upper and lower sides of the two filtering belts respectively pass through the two covering cavities. Rotating sleeves are rotatably connected to both ends of the cleaning rollers;
[0013] A power mechanism III for driving the cleaning rollers to rotate is fixedly connected to the support plate;
[0014] A wind-dispersing pipeline is fixedly connected to the filtering cylinder. A wind-dispersing arc plate is fixedly connected to the wind-dispersing pipeline. A plurality of filtering holes are provided on the wind-dispersing circular cover. A wind-dispersing impeller is rotatably connected in the wind-dispersing pipeline. A power mechanism IV for driving the wind-dispersing impeller to rotate is fixedly connected in the wind-dispersing pipeline. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] The present invention will be further described in detail below with reference to the accompanying drawings and specific implementation methods.
[0016] Figure 1 is a schematic structural diagram of the air conditioning system of the present invention;
[0017] Figure 2 is the ventilation process of the air conditioning system of the present invention;
[0018] Figure 3 is a schematic structural diagram of the mobile air unit of the present invention;
[0019] Figure 4 is a schematic structural diagram of the base cylinder of the present invention;
[0020] Figure 5 is a schematic structural diagram of the rotating ring I of the present invention;
[0021] Figure 6 It is a schematic structural diagram of the cleaning mechanism of the present invention;
[0022] Figure 7 It is a bottom view of the cleaning mechanism of the present invention;
[0023] Figure 8 It is a sectional view of the cleaning mechanism of the present invention;
[0024] Figure 9 It is a schematic structural diagram of the brush bristles of the present invention;
[0025] Figure 10 It is a schematic structural diagram of the filtering mechanism of the present invention;
[0026] Figure 11 It is a schematic structural diagram of the filtering mechanism of the present invention;
[0027] Figure 12 It is a schematic structural diagram of the filtering mechanism of the present invention;
[0028] Figure 13 It is a schematic structural diagram of the filtering mechanism of the present invention;
[0029] Figure 14 It is a schematic structural diagram of the air-diffusing mechanism of the present invention;
[0030] Figure 15 It is a sectional view of the air-diffusing mechanism of the present invention;
[0031] Figure 16 It is a schematic structural diagram of the fixed air unit of the present invention.
[0032] In the figure: base cylinder 1; rotating ring I 11; rotating ring II 12; moving mechanism 2; connecting rod 21; parallel rod 22; steering motor 23; moving seat 24; moving wheel 25; swinging motor 26; cleaning mechanism 3; telescopic mechanism I 31; cleaning cylinder 32; rotating sleeve 33; cleaning cavity 34; ventilation hole 35; storage hole 36; telescopic mechanism II 37; lifting plate 38; brush bristles 39; filtering mechanism 4; filtering cylinder 41; covering cavity 42; support plate 43; cleaning roller 44; filtering belt 45; rotating sleeve 46; air-diffusing mechanism 5; air-diffusing duct 51; air-diffusing round cover 52; air-diffusing impeller 53; fixed air unit 6. Detailed implementation manners
[0033] The present invention will be further described in detail below with reference to the accompanying drawings.
[0034] As Figures 1 to 16 shown, the structure and function of an air conditioning system will be described in detail below;
[0035] As Figure 1 and Figure 2As shown in the figure, an air conditioning system includes a plurality of fixed air units 6, and a movable air unit is arranged between the plurality of fixed air units 6;
[0036] By moving the movable air unit, a movable circulating air is generated. The area is divided by the moving method into a key ventilation area and a non-key ventilation area. In the key ventilation area, the movable air unit moves and stays more, that is, it moves for a longer time in the key ventilation area. In the non-key ventilation area, the movable air unit moves and stays less, that is, it moves for a shorter time in the non-key ventilation area. It can not only achieve ventilation according to requirements, but also achieve cross-regional ventilation, and focus on ventilating areas with serious local air pollution, etc.; it can also use the movable air unit to eliminate dead corners of ventilation;
[0037] As Figure 2 shown, the ventilation method of the movable air unit is from bottom to top, and the ventilation method of the fixed air unit 6 is from top to bottom, thus forming a wind circulation. In such a circulation method, the movable air unit filters the air from bottom to top, which can reduce the generation of dust;
[0038] The structure and function of the movable air unit will be described in detail below;
[0039] The movable air unit includes a base cylinder 1 and a plurality of moving mechanisms 2 connected to the base cylinder 1. A cleaning mechanism 3 is arranged on the base cylinder 1, a filtering mechanism 4 is connected to the cleaning mechanism 3, and a wind dispersing mechanism 5 is connected to the filtering mechanism 4;
[0040] During use, the moving mechanism 2 drives the base cylinder 1 to move, so that the movable air unit can move to different positions. The cleaning mechanism 3 cleans the ground, and the cleaning mechanism 3 sucks the dust and air on the ground into the cleaning mechanism 3. The filtering mechanism 4 filters the dust entering the cleaning mechanism 3, and the wind dispersing mechanism 5 disperses the air filtered by the filtering mechanism 4, thereby realizing the ventilation of the movable air unit from bottom to top, and filtering the air through the movable air unit;
[0041] As Figure 4 shown, the structure and function of the base cylinder 1 and the moving mechanism 2 will be described in detail below;
[0042] A rotating ring I 11 is rotatably connected to the top of the base cylinder 1, and a rotating ring II 12 is rotatably connected to the bottom of the base cylinder 1;
[0043] The moving mechanism 2 includes two connecting rods 21. A hinge seat is fixedly connected to the base cylinder 1, and both of the two connecting rods 21 are hinged to the hinge seat. A parallel rod 22 is hinged between the ends of the two connecting rods 21. A steering motor 23 is fixedly connected to the parallel rod 22. A moving seat 24 is fixedly connected to the output shaft of the steering motor 23. A moving wheel 25 is rotatably connected to the moving seat 24;
[0044] A swing motor 26 for driving one of the connecting rods 21 to rotate is fixedly connected to the hinge seat. A power mechanism I for driving the moving wheel 25 to rotate is fixedly connected to the moving seat 24;
[0045] During use, start the power mechanism I. The power mechanism I is preferably a servo motor. The output shaft of the power mechanism I drives the moving wheel 25 to rotate. The moving wheel 25 contacts the ground. As Figure 4 shown, through the rotation of the four moving wheels 25, the moving air unit is driven to move, thereby realizing the mobile ventilation of the moving air unit. Further, when it is necessary to adjust the moving direction of the moving wheel 25, start the steering motor 23. The steering motor 23 is preferably a servo motor. The output shaft of the steering motor 23 drives the moving seat 24 to rotate. The moving seat 24 drives the moving wheel 25 to rotate, thereby adjusting the moving direction of the moving wheel 25, and further realizing the movement of the moving air unit in different directions;
[0046] Further, start the swing motor 26. The swing motor 26 is preferably a servo motor. The output shaft of the swing motor 26 starts to rotate. The output shaft of the swing motor 26 drives the connecting rod 21 to swing, thereby adjusting the swing direction of the connecting rod 21. The connecting rod 21 drives the parallel rod 22 to move, thereby adjusting the height of the parallel rod 22. The parallel rod 22 drives the moving seat 24 to move, thereby adjusting the height of the moving seat 24. The moving seat 24 drives the moving wheel 25 to move, thereby adjusting the relative distance height between the moving wheel 25 and the base cylinder 1, and further adjusting the height of the base cylinder 1, and further adjusting the distance between the base cylinder 1 and the ground, increasing the obstacle-crossing and passing ability of the moving air unit;
[0047] Further, the structure and function of the cleaning mechanism 3 will be described in detail below;
[0048] The cleaning mechanism 3 includes a telescopic mechanism I31, which is fixedly connected to the base tube 1, and a cleaning tube 32 is rotatably connected to the telescopic end of the telescopic mechanism I31, and the cleaning tube 32 is slidably connected to the rotating ring I11. A cleaning cavity 34 is fixedly connected to the bottom of the cleaning tube 32, and the cleaning cavity 34 is slidably connected to the rotating ring II12. The cleaning cavity 34 and the cleaning tube 32 are connected, and a plurality of ventilation holes 35 are arranged at the bottom of the cleaning cavity 34, and a plurality of storage holes 36 are arranged at the bottom of the cleaning cavity 34. A telescopic mechanism II37 is fixedly connected to the cleaning cavity 34, and a lifting plate 38 is fixedly connected to the telescopic end of the telescopic mechanism II37. The lifting plate 38 is provided with bristles 39, and the bristles 39 can pass through the storage holes 36. The upper end of the cleaning tube 32 is rotatably connected to the rotating sleeve 33; a power mechanism II for driving the cleaning tube 32 to rotate is fixedly connected to the telescopic end of the telescopic mechanism I31;
[0049] When in use, the telescopic mechanism I 31 is started. The telescopic mechanism I 31 can be a hydraulic cylinder or an electric push rod. The telescopic end of the telescopic mechanism I 31 drives the cleaning cylinder 32 to move, and the cleaning cylinder 32 drives the cleaning cavity 34 to move, thereby adjusting the height of the cleaning cavity 34, thereby adjusting the height between the cleaning cavity 34 and the ground. The power mechanism II is started. The power mechanism II is preferably a servo motor. The output shaft of the power mechanism II drives the cleaning cylinder 32 to rotate, the cleaning cylinder 32 drives the cleaning cavity 34 to rotate, and the cleaning cavity 34 drives the bristles 39 to move. Rotate, start the telescopic mechanism II 37 in advance, the telescopic mechanism II 37 can be a hydraulic cylinder or an electric push rod, the telescopic end of the telescopic mechanism II 37 drives the lifting plate 38 to move, the lifting plate 38 drives the bristles 39 to extend from the storage hole 36, so that the bristles 39 contact the ground, and then in the process of the moving wind unit moving, the bristles 39 are used to clean the ground, and the bristles 39 are driven by the cleaning cavity 34 to rotate to clean the ground, and the dust is collected into the cleaning cylinder 32 and the cleaning cavity 34 by the ventilation hole 35 to prevent the dust from flying;
[0050] Further, the telescopic mechanism II 37 is started. The telescopic mechanism II 37 may be a hydraulic cylinder or an electric push rod. The telescopic end of the telescopic mechanism II 37 can drive the bristles 39 to move so that the bristles 39 are stored in the storage hole 36. At the same time, the dust on the bristles 39 can be scraped off to clean the bristles 39.
[0051] The structure and function of the filtering mechanism 4 are described in detail below;
[0052] The filtering mechanism 4 includes a filtering cylinder 41. The filtering cylinder 41 is fixedly connected to the base cylinder 1. The lower end of the filtering cylinder 41 is slidably connected to the rotating sleeve 33. Two covering cavities 42 are fixedly connected to the filtering cylinder 41. A support plate 43 is fixedly connected to the filtering cylinder 41. Cleaning rollers 44 are rotatably connected to both the front and rear ends of the support plate 43. The interior of the cleaning rollers 44 is hollow. A plurality of flushing holes are provided on the cleaning rollers 44. Two filter belts 45 are drivingly connected between the two cleaning rollers 44. The two filter belts 45 are stacked on top of each other. The upper and lower sides of the two filter belts 45 respectively pass through the two covering cavities 42. Rotating sleeves 46 are rotatably connected to both ends of the cleaning rollers 44;
[0053] A power mechanism III for driving the cleaning rollers 44 to rotate is fixedly connected to the support plate 43;
[0054] During use, the power mechanism III is started. The power mechanism III is preferably a servo motor. The output shaft of the power mechanism III drives the cleaning rollers 44 to rotate. The cleaning liquid pipeline is pre-connected to the rotating sleeve 46. The cleaning liquid is introduced into the cleaning rollers 44 through the rotating sleeve 46. A plurality of flushing holes are provided on the cleaning rollers 44. The cleaning rollers 44 use the plurality of flushing holes provided thereon to clean the passing filter belts 45. At the same time, as the filter belts 45 continuously pass through the covering cavities 42, the filter belts 45 continuously and continuously pass through the filtering cylinder 41, thereby filtering the air passing through the filtering cylinder 41. At the same time, by using the circulating movement of the filter belts 45 and the cleaning of the cleaning rollers 44, the filter belts 45 are kept clean, ensuring that the filter belts 45 can continuously pass through the filtering cylinder 41 in a clean state to filter the air;
[0055] Furthermore, as Figure 3 shown, the outside of the filtering mechanism 4 is covered with a housing. Firstly, it is to keep the filter belts 45 clean. Secondly, because the cleaning rollers 44 continuously spray cleaning water, the housing collects the cleaning water to prevent the cleaning water from splashing. At the same time, a sewage discharge pipeline is provided at the bottom of the housing to discharge the sewage through the sewage discharge pipeline;
[0056] Furthermore, a plurality of filter belts 45 can be provided. Here, preferably, two filter belts 45 are provided. As Figure 13 shown, in this way, when pollution or damage occurs, only the damaged or polluted corresponding filter belt 45 needs to be replaced;
[0057] Furthermore, the structure and function of the air-dispersing mechanism 5 will be described in detail below;
[0058] A wind-dispersing duct 51 is fixedly connected to the filter cartridge 41. A wind-dispersing arc plate 52 is fixedly connected to the wind-dispersing duct 51. A plurality of filter holes are provided on the wind-dispersing dome 52. A wind-dispersing impeller 53 is rotatably connected in the wind-dispersing duct 51. A power mechanism Ⅳ for driving the wind-dispersing impeller 53 to rotate is fixedly connected in the wind-dispersing duct 51;
[0059] During use, in order to generate an upward wind circulation in the mobile wind unit, the power mechanism Ⅳ is started. The power mechanism Ⅳ is preferably a servo motor. The output shaft of the power mechanism Ⅳ drives the wind-dispersing impeller 53 to rotate, so that the wind-dispersing impeller 53 rotates to generate an upward wind, and then the wind enters from the ventilation holes 35 at the bottom of the cleaning cavity 34, and successively passes through the cleaning cavity 34, the cleaning cylinder 32, and the filter cartridge 41 and enters the wind-dispersing dome 52, and finally is discharged from the wind-dispersing dome 52;
[0060] Furthermore, the upward wind can also suck the dust swept by the bristles 39 into the cleaning cavity 34;
[0061] As Figure 16 shown, the fixed wind unit 6 is connected above the indoor corner through a mounting seat and expansion screws, etc. A fan is provided inside the fixed wind unit 6. The fan can be a conventional device in the prior art that can generate wind, forming a downward wind circulation.
Claims
1. An air conditioning system, comprising a plurality of fixed air units (6), characterized in that: A movable air unit is arranged between multiple fixed air units (6).
2. The air conditioning system according to claim 1, wherein: The movable air unit includes a base cylinder (1) and a plurality of moving mechanisms (2) connected to the base cylinder (1). A cleaning mechanism (3) is arranged on the base cylinder (1), a filtering mechanism (4) is connected to the cleaning mechanism (3), and a wind-dispersing mechanism (5) is connected to the filtering mechanism (4).
3. An air conditioning system according to claim 2, characterized in that: A rotating ring I (11) is rotatably connected to the top of the base cylinder (1), and a rotating ring II (12) is rotatably connected to the bottom of the base cylinder (1).
4. An air conditioning system according to claim 3, characterized in that: The moving mechanism (2) includes two connecting rods (21). A hinge seat is fixedly connected to the base cylinder (1). The two connecting rods (21) are both hinged to the hinge seat. A parallel rod (22) is hinged between the ends of the two connecting rods (21). A steering motor (23) is fixedly connected to the parallel rod (22). A moving seat (24) is fixedly connected to the output shaft of the steering motor (23). A moving wheel (25) is rotatably connected to the moving seat (24).
5. An air conditioning system according to claim 4, characterized in that: A swing motor (26) for driving one of the connecting rods (21) to rotate is fixedly connected to the hinge seat, and a power mechanism I for driving the moving wheel (25) to rotate is fixedly connected to the moving seat (24).
6. An air conditioning system according to claim 4, characterized in that: The cleaning mechanism (3) includes a telescopic mechanism I (31). The telescopic mechanism I (31) is fixedly connected to the base cylinder (1). A cleaning cylinder (32) is rotatably connected to the telescopic end of the telescopic mechanism I (31). The cleaning cylinder (32) is slidably connected to the rotating ring I (11). A cleaning cavity (34) is fixedly connected to the bottom of the cleaning cylinder (32). The cleaning cavity (34) is slidably connected to the rotating ring II (12). The cleaning cavity (34) communicates with the cleaning cylinder (32). A plurality of ventilation holes (35) are arranged at the bottom of the cleaning cavity (34). A plurality of storage holes (36) are arranged at the bottom of the cleaning cavity (34). A telescopic mechanism II (37) is fixedly connected to the cleaning cavity (34). A lifting plate (38) is fixedly connected to the telescopic end of the telescopic mechanism II (37). A brush (39) is arranged on the lifting plate (38). The brush (39) can pass through the storage holes (36). A rotating sleeve (33) is rotatably connected to the upper end of the cleaning cylinder (32).
7. An air conditioning system according to claim 6, characterized in that: A power mechanism II for driving the cleaning cylinder (32) to rotate is fixedly connected to the telescopic end of the telescopic mechanism I (31).
8. An air conditioning system according to claim 6, characterized in that: The filtering mechanism (4) includes a filtering cylinder (41). The filtering cylinder (41) is fixedly connected to the base cylinder (1). The lower end of the filtering cylinder (41) is slidably connected to the rotating sleeve (33). Two covering cavities (42) are fixedly connected to the filtering cylinder (41). A support plate (43) is fixedly connected to the filtering cylinder (41). Cleaning rollers (44) are rotatably connected to the front and rear ends of the support plate (43). The interior of the cleaning rollers (44) is hollowed out. A plurality of flushing holes are arranged on the cleaning rollers (44). Two filter belts (45) are drivingly connected between the two cleaning rollers (44). The two filter belts (45) are stacked on each other. The upper and lower sides of the two filter belts (45) respectively pass through the two covering cavities (42). Rotating sleeves (46) are rotatably connected to both ends of the cleaning rollers (44).
9. An air conditioning system according to claim 8, characterized in that: A power mechanism III for driving the cleaning roller (44) to rotate is fixedly connected to the support plate (43).
10. An air conditioning system according to claim 8, characterized in that: A wind-dispersing pipe (51) is fixedly connected to the filter cylinder (41). A wind-dispersing arc plate (52) is fixedly connected to the wind-dispersing pipe (51). A plurality of filter holes are provided in the wind-dispersing circular cover (52). A wind-dispersing impeller (53) is rotatably connected in the wind-dispersing pipe (51). A power mechanism IV for driving the wind-dispersing impeller (53) to rotate is fixedly connected in the wind-dispersing pipe (51).