Ventilation equipment for ventilation of air conditioner
The problem of condensate accumulation in air-conditioning and ventilation devices is solved by using power generation and dehumidification components and condensate recovery components. Wind sensors and humidity sensors are used to control the operation of heating components and dehumidification motors. Sponge blocks are used to clean the pipe walls, achieving air drying and resource recovery, and improving the safety and health of air-conditioning and ventilation devices.
Patent Information
- Application Number
- CN202511207083.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-27
- Publication Date
- 2025-09-26
- Estimated Expiration
- 2045-08-27
AI Technical Summary
When using air conditioning and ventilation devices, condensed water cannot be discharged in time, causing it to accumulate in the ventilation ducts, breeding mold and producing odor, affecting indoor air quality and health.
It uses power generation dehumidification components, condensate recovery components and pipe wall cleaning components, uses wind sensors and humidity sensors to control the operation of the dehumidification motor and heating components, and combines sponge blocks to clean the pipe walls, thereby realizing condensate recovery and pipe drying, reducing mold growth and odor.
It effectively solves the problems of mold growth and odor caused by condensation water accumulation, improves indoor air quality, ensures the health experience of indoor people, and saves resources.
Smart Images

Figure CN120702028A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of ventilation equipment, and more particularly to a ventilation equipment used for air-conditioning ventilation. Background Art
[0002] Air conditioning and ventilation units are an indispensable part of building construction. They ensure the circulation, freshness and comfort of indoor air through different equipment and systems. The fresh air fan draws in fresh air from the outside and purifies the air through a filtration system. The purified air is sent into the room through the air supply duct. At the same time, the dirty air in the room is discharged from the room through the return air duct. The system automatically adjusts the amount of fresh air introduced and the air supply speed according to the indoor and outdoor environmental conditions to maintain the comfort and freshness of the indoor air. In order to ensure the safety and environmental protection of air conditioning and ventilation units, high-end air conditioning and ventilation units are also equipped with virus and mold disinfection devices to allow outdoor air to enter the room clean and sterile.
[0003] However, in the daily use of air-conditioning and ventilation devices, a large amount of condensation water will be generated due to failures in the air-conditioning refrigerant cycle or blockages in the ventilation filter mesh. This condensation water cannot be discharged in time and will seep into the room along the ventilation duct with the wind force of the air-conditioning fan, and even spill out of the air-conditioning outlet. In addition, this condensation water accumulates in the ventilation duct, breeding mold and producing odors over a long period of time. When the air-conditioning is turned on, the mold and odor will enter the room, causing a bad experience for the people indoors and even affecting their health. Summary of the Invention
[0004] In order to overcome the above-mentioned defects of the prior art, the present invention provides a ventilation device for air conditioning and ventilation to solve the problems existing in the above-mentioned background technology.
[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a ventilation device for air conditioning and ventilation, comprising a power generation and dehumidification component, a condensation water recovery component is fixedly connected to the side of the power generation and dehumidification component, a pipe wall cleaning component is fixedly connected to the inner side of the condensation water recovery component, the power generation and dehumidification component comprises a dehumidification fan, a first rotating shaft is fixedly connected to one side of the dehumidification fan, a generator is fixedly connected to the side of the first rotating shaft, one end of the generator is electrically connected to a wind sensor, the end of the wind sensor away from the generator is electrically connected to a dehumidification motor, and the end of the first rotating shaft away from the dehumidification fan is fixedly connected A dehumidification motor is connected, and the end of the dehumidification motor away from the wind sensor is fixedly connected to a fixed block, and four connecting rods are fixedly connected to the side of the fixed block. One side of the generator is electrically connected to the second wire bundle, and the other side of the generator is electrically connected to the first wire bundle. The end of the first wire bundle away from the generator is electrically connected to the humidity sensor, and the humidity sensor and one end of the top of the second wire bundle are electrically connected to wire pipes, and the tops of the two wire pipes are electrically connected to a heating assembly, and one end of the second wire bundle and the humidity sensor is fixedly connected to the ventilation assembly and connected to the inner side of the ventilation assembly.
[0006] Furthermore, the generator, the first wire bundle, the second wire bundle, the wire tube, and the heating assembly are connected to form a series circuit.
[0007] Furthermore, the heating assembly includes a lamp tube housing, both ends of the bottom of the lamp tube housing are electrically connected to wire tubes, and the inner side of the bottom of the lamp tube housing is electrically connected to three heating lamps.
[0008] Furthermore, the condensate recovery assembly includes a ventilation assembly, a condensate drainage strip is fixedly connected to the inner side of the bottom of the ventilation assembly, the bottom pipe of the ventilation assembly is connected to a water collection box, and the bottom pipe of the water collection box is connected to a discharge pipe outlet.
[0009] Furthermore, the ventilation assembly includes a ventilation duct, a rectangular slot is provided on the top of the ventilation duct, and bearings are rotatably connected at both ends of the inner side of the rectangular slot of the ventilation duct.
[0010] Furthermore, one side of the two bearings is rotatably connected to a second rotating shaft, and the side of the second rotating shaft is fixedly connected to two valve plates, and the two valve plates are located in the same horizontal plane.
[0011] Furthermore, the pipe wall cleaning assembly includes a connecting block, one side of the connecting block is fixedly connected to a sponge block, and the top and bottom ends of the connecting block are fixedly connected to pulleys.
[0012] Furthermore, both ends of the two pulleys away from the connecting block are movably connected with slide rails, and one side of the two slide rails is fixedly connected to the ventilation assembly and is located on the same side of the inner side of the ventilation assembly.
[0013] Technical effects and advantages of the present invention: 1. This invention utilizes a power-generating dehumidification component, which uses the wind from the air conditioner to drive the fan. One side of the fan is connected to a rotating shaft, the middle of which is connected to a generator, and one end of the shaft is connected to a dehumidifier motor. As the fan drives the shaft, the generator converts the kinetic energy of the shaft's rotation into stored electrical energy. When the wind sensor detects no wind in the duct, it connects the circuit between the dehumidifier motor and the generator, causing the motor to rotate and the fan to rotate in the opposite direction. Furthermore, when moisture is present in the duct, the humidity sensor connects the circuit between the generator and the heating component, generating heat. This, combined with the wind from the fan, dries the duct's interior walls. This effectively solves the problem of condensation accumulating in ventilation ducts, which can breed mold and produce odor over time, thereby improving the indoor user experience and ensuring the health of indoor users.
[0014] 2. This invention incorporates a condensate recovery assembly. When condensate in the pipes flows along the ventilation ducts under the force of the air conditioning wind, it is collected by the condensate guide strips and flows to the valve. The water's own gravity then pushes the valve disc to rotate, opening the valve opening. The water then flows into the water collection tank and is then connected to other components for reuse through the discharge pipe. This improves resource utilization and conserves resources.
[0015] 3. This invention incorporates a duct wall cleaning assembly. When air conditioning air flows through the ventilation duct, the wind pushes the connecting block to the other end of the slide rail. When the dehumidifier motor starts operating, the wind from the dehumidifier fan pushes the connecting block back into place. Simultaneously, a sponge attached to the back of the connecting block scrubs the duct wall as it moves, helping to reduce water stains on the duct wall, mold growth, and odor. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 This is a schematic diagram of the structure of the power generation and dehumidification component of the present invention; Figure 3 This is a schematic diagram of the overall connection structure of the power generation and dehumidification assembly of the present invention; Figure 4 This is a schematic diagram of the structure of the heating lamp of the present invention; Figure 5 This is a schematic structural diagram of the condensate recovery assembly of the present invention; Figure 6 This is a schematic diagram of the cross-sectional structure of the bottom of the ventilation duct of the present invention; Figure 7 It is a schematic structural diagram of the pipe wall cleaning component of the present invention.
[0017] The accompanying drawings are marked as follows: 1. Power generation and dehumidification component; 101. Dehumidification fan; 102. First rotating shaft; 103. Generator; 104. Wind sensor; 105. Dehumidification motor; 106. Fixed block; 107. Connecting rod; 108. First wire bundle; 109. Second wire bundle; 110. Humidity sensor; 111. Wire pipe; 112. Heating component; 1121. Lamp tube housing; 1122. Heating lamp; 2. Condensate recovery component; 201. Ventilation component; 2011. Ventilation duct; 2012. Bearing; 2013. Second rotating shaft; 2014. Valve plate; 202. Condensate diversion strip; 203. Water collection box; 204. Discharge pipe outlet; 3. Pipe wall cleaning component; 301. Connecting block; 302. Sponge block; 303. Pulley; 304. Slide rail. DETAILED DESCRIPTION
[0018] The technical solutions of the present invention will be described clearly and completely below in conjunction with the drawings in the present invention. In addition, the forms of the various structures described in the following embodiments are merely examples. The ventilation equipment for air conditioning and ventilation involved in the present invention is not limited to the various structures described in the following embodiments. All other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.
[0019] Reference Figure 1 The present invention provides a ventilation device for air conditioning and ventilation, including a power generation and dehumidification component 1, a condensation water recovery component 2 is fixedly connected to the side of the power generation and dehumidification component 1, and a pipe wall cleaning component 3 is fixedly connected to the inner side of the condensation water recovery component 2.
[0020] What needs to be specifically explained in this embodiment is that the power generation and dehumidification component 1 is conducive to solving the problem of condensed water accumulating in the pipe, breeding mold for a long time, and generating odor, thereby improving the experience of indoor personnel and ensuring the health of indoor personnel. The condensed water recovery component 2 is conducive to improving resource utilization and saving resources. The pipe wall cleaning component 3 is conducive to reducing water stains on the inner wall of the pipe, reducing mold growth and the occurrence of odor. The specific structure and working principle of the above components will be explained in detail later.
[0021] Reference Figure 2The power generation and dehumidification component 1 includes a dehumidification fan 101, one side of the dehumidification fan 101 is fixedly connected to a first rotating shaft 102, the side of the first rotating shaft 102 is fixedly connected to a generator 103, one end of the generator 103 is electrically connected to a wind sensor 104, the end of the wind sensor 104 away from the generator 103 is electrically connected to a dehumidification motor 105, the end of the first rotating shaft 102 away from the dehumidification fan 101 is fixedly connected to the dehumidification motor 105, the end of the dehumidification motor 105 away from the wind sensor 104 is fixedly connected to a fixed block 106, and the side of the fixed block 106 is fixedly connected to four connecting rods 107.
[0022] Reference Figure 3 One side of the generator 103 is electrically connected to the second wire bundle 109, and the other side of the generator 103 is electrically connected to the first wire bundle 108. The end of the first wire bundle 108 away from the generator 103 is electrically connected to the humidity sensor 110. The humidity sensor 110 and one end of the top of the second wire bundle 109 are both electrically connected to a wire tube 111. The tops of the two wire tubes 111 are electrically connected to a heating component 112. One end of the second wire bundle 109 and the humidity sensor 110 is fixedly connected to the ventilation component 201 and connected to the inner side of the ventilation component 201.
[0023] In this embodiment, it is necessary to specifically explain that the generator 103, the first wire bundle 108, the second wire bundle 109, the wire tube 111, and the heating component 112 are connected to form a series circuit. The dehumidification fan 101 is driven to rotate by the wind of the air conditioner. One side of the dehumidification fan 101 is connected to the first rotating shaft 102. The middle of the first rotating shaft 102 is connected to the generator 103. One end of the dehumidification fan 101 is connected to the dehumidification motor 105. While the dehumidification fan 101 drives the first rotating shaft 102 to rotate, the generator 103 converts the kinetic energy of the rotation of the first rotating shaft 102 into electrical energy for storage. When the wind sensor 104 When no wind is detected in the pipe, the wind sensor 104 connects the circuit of the dehumidification motor 105 and the generator 103, causing the dehumidification motor 105 to rotate, and then the dehumidification fan 101 rotates in the opposite direction. In addition, when there is water vapor in the pipe, the humidity sensor 110 connects the circuit of the generator 103 and the heating component 112, causing the heating component 112 to generate heat. Combined with the wind force of the dehumidification fan 101, the inner wall of the pipe is dried, which helps to solve the problem of condensed water accumulating in the pipe, breeding mold for a long time, and generating odor, thereby improving the experience of indoor people and ensuring the health of indoor people.
[0024] Reference Figure 4The heating component 112 includes a lamp tube housing 1121 , both ends of the bottom of the lamp tube housing 1121 are electrically connected to the wire tube 111 , and the inner side of the bottom of the lamp tube housing 1121 is electrically connected to three heating lamps 1122 .
[0025] Reference Figure 5 The condensate recovery component 2 includes a ventilation component 201, a condensate drainage strip 202 is fixedly connected to the inner side of the bottom of the ventilation component 201, the bottom pipe of the ventilation component 201 is connected to a water collection box 203, and the bottom pipe of the water collection box 203 is connected to a discharge pipe 204.
[0026] Reference Figure 6 The ventilation component 201 includes a ventilation duct 2011, and a rectangular slot is provided on the top of the ventilation duct 2011. The two ends of the inner side of the rectangular slot of the ventilation duct 2011 are rotatably connected with bearings 2012. One side of the two bearings 2012 is rotatably connected with a second rotating shaft 2013. The side of the second rotating shaft 2013 is fixedly connected with two valve plates 2014, and the two valve plates 2014 are located in the same horizontal plane.
[0027] What needs to be specifically explained in this embodiment is that when the condensed water in the pipeline flows along the ventilation component 201 under the impetus of the air-conditioning wind, the scattered water flow is gathered by the condensed water diversion strip 202 and flows to the valve. Under the action of the gravity of the water flow itself, the valve plate 2014 is pushed to rotate, the valve mouth is opened, and the water flows into the water collection box 203, and is connected to other components for reuse through the discharge pipe 204, which is conducive to improving resource utilization and saving resources.
[0028] Reference Figure 7 The pipe wall cleaning component 3 includes a connecting block 301, one side of the connecting block 301 is fixedly connected to a sponge block 302, the top and bottom ends of the connecting block 301 are fixedly connected to pulleys 303, and the two ends of the pulleys 303 away from the connecting block 301 are movably sleeved with slide rails 304, and one side of the two slide rails 304 is fixedly connected to the ventilation component 201 and is located on the same side of the inner side of the ventilation component 201.
[0029] What needs to be specifically explained in this embodiment is that when air-conditioning air is flowing in the ventilation component 201, the wind force pushes the sponge block 302 to the other end of the slide rail 304. When the dehumidification motor 105 starts working, the wind force of the dehumidification fan 101 pushes the connecting block 301 to reset. At the same time, the sponge block 302 connected to the back of the connecting block 301 washes the side wall of the ventilation component 201 while moving, which is beneficial to reduce water stains on the inner wall of the pipe, reduce mold growth and the appearance of odor.
[0030] The working principle of the present invention is as follows: the dehumidification fan 101 is driven to rotate by the wind force of the air conditioner, one side of the dehumidification fan 101 is connected to the first rotating shaft 102, the middle part of the first rotating shaft 102 is connected to the generator 103, and one end of the dehumidification fan 101 is connected to the dehumidification motor 105. When the dehumidification fan 101 drives the first rotating shaft 102 to rotate, the generator 103 converts the kinetic energy of the rotation of the first rotating shaft 102 into electrical energy for storage. When the wind sensor 104 detects no wind in the pipe, the wind sensor 104 connects the circuit between the dehumidification motor 105 and the generator 103, causing the dehumidification motor 105 to rotate, and then the dehumidification fan 101 rotates in the opposite direction. In addition, when there is water vapor in the pipe, the humidity sensor 110 connects the circuit between the generator 103 and the heating component 112, causing the heating component 112 to generate heat, which is combined with the wind force of the dehumidification fan 101 to dry the inner wall of the pipe, which is conducive to solving the problem of condensed water accumulating in the ventilation duct 2011 and long The problem of mold and odor breeding over time is solved, thereby improving the experience of indoor personnel and ensuring the health of indoor personnel. When the condensed water in the pipe flows along the ventilation component 201 under the push of the air conditioning wind, the scattered water flow is collected by the condensed water guide strip 202 and flows to the valve. Under the action of the water flow's own gravity, the valve plate 2014 is pushed to rotate, the valve mouth is opened, and the water flows into the water collection box 203 and is connected to other components for reuse through the discharge pipe mouth 204, which is conducive to improving resource utilization and saving resources. When there is air conditioning air flowing in the ventilation component 201, the wind pushes the sponge block 302 to the other end of the slide rail 304. When the dehumidification motor 105 starts working, the wind force of the dehumidification fan 101 pushes the connecting block 301 to reset. At the same time, the sponge block 302 connected to the back of the connecting block 301 washes the side wall of the ventilation component 201 while moving, which is conducive to reducing water stains on the inner wall of the pipe and reducing mold growth and the appearance of odor.
[0031] Finally, a few points should be explained: First, in the description of this application, it should be noted that, unless otherwise specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense, and may refer to mechanical or electrical connections, internal communication between two components, or direct connection. "Up," "down," "left," and "right" are only used to indicate relative positional relationships. When the absolute positions of the objects being described change, the relative positional relationships may also change. Secondly: The drawings of the embodiments disclosed in the present invention only involve structures related to the embodiments disclosed in the present invention. Other structures may refer to conventional designs. The same embodiment and different embodiments of the present invention may be combined with each other without conflict. Finally: The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A ventilation device for air conditioning and ventilation, comprising a power generation and dehumidification component (1), characterized in that: The side of the power generation and dehumidification component (1) is fixedly connected to a condensate recovery component (2), and the inner side of the condensate recovery component (2) is fixedly connected to a pipe wall cleaning component (3). The power generation and dehumidification component (1) includes a dehumidification fan (101), one side of the dehumidification fan (101) is fixedly connected to a first rotating shaft (102), and the side of the first rotating shaft (102) is fixedly connected to a generator (103), one end of the generator (103) is electrically connected to a wind sensor (104), and the end of the wind sensor (104) away from the generator (103) is electrically connected to a dehumidification motor (105), and the end of the first rotating shaft (102) away from the dehumidification fan (101) is fixedly connected to the dehumidification motor (105), and the end of the dehumidification motor (105) away from the wind sensor (104) is fixedly connected to the dehumidification motor (105). A fixed block (106) is fixedly connected to the side of the fixed block (106) with four connecting rods (107). One side of the generator (103) is electrically connected to a second wire bundle (109). The other side of the generator (103) is electrically connected to a first wire bundle (108). An end of the first wire bundle (108) away from the generator (103) is electrically connected to a humidity sensor (110). The humidity sensor (110) and one end of the top of the second wire bundle (109) are both electrically connected to a wire tube (111). The tops of the two wire tubes (111) are electrically connected to a heating component (112). One end of the second wire bundle (109) and the humidity sensor (110) is fixedly connected to a ventilation component (201) and connected to the inner side of the ventilation component (201).
2. The ventilation device for air conditioning and ventilation according to claim 1, characterized in that: The generator (103), the first wire bundle (108), the second wire bundle (109), the wire tube (111), and the heating component (112) are connected to form a series circuit.
3. The ventilation device for air conditioning and ventilation according to claim 1, characterized in that: The heating component (112) comprises a lamp tube housing (1121), both ends of the bottom of the lamp tube housing (1121) are electrically connected to the wire tube (111), and the inner side of the bottom of the lamp tube housing (1121) is electrically connected to three heating lamp tubes (1122).
4. The ventilation device for air conditioning and ventilation according to claim 1, characterized in that: The condensed water recovery assembly (2) comprises a ventilation assembly (201), a condensed water drainage strip (202) is fixedly connected to the inner side of the bottom of the ventilation assembly (201), a bottom pipe of the ventilation assembly (201) is connected to a water collection box (203), and a bottom pipe of the water collection box (203) is connected to a discharge pipe (204).
5. The ventilation device for air conditioning and ventilation according to claim 4, characterized in that: The ventilation assembly (201) comprises a ventilation duct (2011), a rectangular slot is provided on the top of the ventilation duct (2011), and bearings (2012) are rotatably connected at both ends of the inner side of the rectangular slot of the ventilation duct (2011).
6. The ventilation device for air conditioning and ventilation according to claim 5, characterized in that: One side of the two bearings (2012) is rotatably connected to a second rotating shaft (2013), and the side of the second rotating shaft (2013) is fixedly connected to two valve plates (2014), and the two valve plates (2014) are located on the same horizontal plane.
7. The ventilation device for air conditioning and ventilation according to claim 1, characterized in that: The pipe wall cleaning assembly (3) comprises a connecting block (301), one side of the connecting block (301) is fixedly connected to a sponge block (302), and the top and bottom ends of the connecting block (301) are both fixedly connected to pulleys (303).
8. The ventilation device for air conditioning and ventilation according to claim 7, characterized in that: Both ends of the two pulleys (303) away from the connecting block (301) are movably sleeved with a slide rail (304), and one side of the two slide rails (304) is fixedly connected to the ventilation component (201) and is located on the same side of the inner side of the ventilation component (201).
Citation Information
Patent Citations
Efficient electric power cabinet dehumidification device
CN105186333A
Air conditioner
CN115930292A
Household five-constant air conditioning system based on independent temperature and humidity treatment technology
CN119353718A
Dehumifier using thermoelectric element
KR1020180003892A
Air conditioning control system using self-powered sensor module
KR102630388B1