Energy-saving cooling air feeder for outdoor building
By designing energy-saving cooling fans for outdoor buildings and combining them with evaporative heat sinks and a water circulation system, the problems of large-area air volume delivery and high energy consumption in outdoor operations are solved, achieving efficient cooling and energy-saving effects.
Patent Information
- Application Number
- CN202422645992.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-30
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-10-30
AI Technical Summary
Existing fans cannot achieve large-area air volume delivery in outdoor operations, consume a lot of energy and have poor cooling efficiency.
The design includes a chassis, an angle adjustment mechanism, an air intake system, an air outlet system, a cooling system and a water circulation system. Combined with a solar lighting system, it uses evaporative heat sinks and a water circulation system to improve the cooling efficiency and energy saving of the blower, and is easy to move through a crawler walking mechanism.
It realizes large-area air volume transmission, reduces energy consumption, improves cooling efficiency, and has portability and energy-saving and environmental protection effects.
Smart Images

Figure CN223360782U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of air supply devices, in particular to an energy-saving and cooling air supply fan for outdoor buildings. Background Art
[0002] Existing fans typically use a motor inside a housing to drive the impeller, drawing in external air through an opening on one side of the fan and then delivering it through an opening on the other side, effectively guiding the airflow. However, fans are also needed in some outdoor operations, and because outdoor operations cover large areas, they require a high air volume. Conventional conveying fans are unable to achieve this air volume over such a large area. Furthermore, existing conveying fans suffer from high energy consumption, insufficient energy conservation, and poor cooling efficiency. Utility Model Content
[0003] In order to overcome the deficiencies of the existing technical solutions, the utility model provides an energy-saving cooling fan for outdoor buildings, which can effectively solve the problems raised by the background technology.
[0004] The technical solution adopted by the utility model to solve its technical problems is:
[0005] An energy-saving cooling fan for outdoor buildings, comprising a chassis and a frame, the frame being provided with an angle adjustment mechanism for connecting to the chassis, the chassis being provided with a chamber, the chassis being provided with an air intake system, an air outlet system, a cooling system, and a water circulation system, the chassis being provided with a plurality of mounting portions for mounting the air outlet system, and a solar lighting system being provided on one side of the chassis, the solar lighting system comprising a solar power generation panel and a lamp holder connected to the solar power generation panel, the lamp holder being detachably connected to the chassis;
[0006] The air outlet system and the air inlet system are both connected to the chamber, wherein the cooling system is arranged in the chamber, the water circulation system is connected to the cooling system, and the water circulation system is arranged at the bottom of the chassis. The cooling system includes a spray mechanism and an evaporation structure, the spray mechanism is arranged at the top of the chassis, and the evaporation structure is arranged in the chamber, the water circulation system includes a duct group, a pump group and a water tank, and the water tank is arranged at the bottom of the chamber, wherein the spray mechanism is connected to the water tank through the duct group, and the spray mechanism is mounted on the sprayer above the evaporation structure.
[0007] As a further description of the above technical solution, the mounting portion includes several circular mounting openings, which are communicated with the chamber. The mounting openings are also provided with sealing strips and wind covers. The air outlet system includes several fan blades, which are arranged in the mounting openings, and the fan blades are sealed to the chassis through sealing strips.
[0008] As a further description of the above technical solution, the frame is also provided with a support arm, a cross bar and a walking mechanism, the cross bar is connected to the support arm, the cross bar is connected to the angle adjustment mechanism, the chassis can be rotated and adjusted 0°-180° through the angle adjustment mechanism, the angle adjustment mechanism includes a mounting shaft, a mounting seat and an adjustment structure, the adjustment structure includes a damping bearing seat, wherein the mounting seat is fixed on one side of the chassis, and the mounting shaft is connected to the damping bearing seat.
[0009] As a further description of the above technical solution, the air intake system includes an air inlet box, a fan arranged in the air inlet box and turbine blades connected to the fan. A dust-proof air inlet is provided on the outside of the air inlet box. The air inlet box is fixed on one side of the chassis, and an air duct is formed in the air inlet box, which is connected to the chamber.
[0010] As a further description of the above technical solution, the walking mechanism includes a crawler and a driving module symmetrically arranged on a frame, and the driving module includes a motor, wherein a handle is further provided on one side of the cross bar.
[0011] As a further description of the above technical solution, the lamp holder has an arc-shaped installation groove, and three lighting lamps are provided on the lamp holder. The lamp holder has a built-in energy storage module, and the energy storage module is connected to the solar power generation panel.
[0012] As a further description of the above technical solution, the evaporation structure is composed of a plurality of heat sinks, which are arranged in a crisscross manner in the chamber, and the heat sinks are made of copper.
[0013] As a further description of the above technical solution, the duct group includes a water inlet pipe and a circulation pipe, the pump group includes a water pump and a circulation pump, the circulation pipe is connected to the water tank and the circulation pump respectively, the circulation pipe is also connected to the water tank, the water inlet pipe is connected to the water pump, the water pump is also provided with a water inlet valve port, and the water inlet pipe is connected to the water tank.
[0014] Compared with the prior art, the beneficial effects of the present invention are:
[0015] The energy-saving cooling fan for outdoor buildings of the present invention has at least one of the following beneficial effects during use:
[0016] The chassis features mounting openings for the fan blades in the air outlet system. Each opening is equipped with a shroud, and a sealing ring connects the opening to the shroud, ensuring a more concentrated airflow. The air intake system, located at the rear of the chassis, uses a fan to draw air into a chamber. Because the evaporation structure in the cooling system is located within the chamber, the air temperature is lowered from intake to exhaust, thereby initiating a cooling air supply. The chassis includes a built-in temperature sensor that detects the air temperature in the chamber and displays it on the chassis' control panel. A spray mechanism above the evaporation structure sprays water onto the evaporation structure's heat sink via a duct and pump assembly, further enhancing air cooling efficiency. A solar lighting system is also located on one side of the chassis. This system consists of solar panels connected to a lighting fixture and stores solar-generated electricity in a battery, making it particularly suitable for outdoor applications where electricity is scarce. The system operates with a single fan, achieving multiple air outlets. The cooling system utilizes a more energy-efficient evaporative heat sink structure, providing enhanced reliability. The spray mechanism installed on the top of the chassis can recycle water through the water circulation system. The water tank on the chassis is connected to the sprinkler, and water is pumped into the water tank through a conduit group and a pump group. A water tank is set at the bottom of the chassis. The sprayed water flows into the water tank. The water tank is connected to a circulation pump, which pumps the water in the water tank to the water tank. This structure greatly improves resource utilization efficiency and has energy-saving and environmental protection effects. A walking mechanism is also provided. This walking mechanism is driven by dual tracks and an independently driven motor. The motor can be operated in an auxiliary or active manner. The entire device can be moved by handles on the frame. It is simple and convenient to operate and highly portable. The tracks are more suitable for outdoor environments. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 This is a schematic diagram of the overall structure of an energy-saving cooling fan for outdoor buildings according to the present invention;
[0018] Figure 2 This is a schematic diagram of the first side structure of an energy-saving cooling fan for outdoor buildings according to the utility model;
[0019] Figure 3 This is a second side structural diagram of an energy-saving cooling fan for outdoor buildings according to the utility model;
[0020] Figure 4 This is a schematic structural diagram of the third side of an energy-saving cooling fan for outdoor buildings according to the utility model;
[0021] Figure 5 This is a first perspective structural diagram of an energy-saving cooling fan for outdoor buildings according to the utility model;
[0022] Figure 6This is a second perspective structural schematic diagram of an energy-saving cooling fan for outdoor buildings according to the utility model.
[0023] Numbers in the figure:
[0024] 1. Chassis; 101. Mounting part; 102. Wind hood; 103. Water tank; 104. Air intake system; 105. Fan; 106. Turbine blades; 107. Dust-proof air inlet; 2. Frame; 201. Travel mechanism; 202. Support arm; 203. Mounting shaft; 204. Crossbar; 205. Handle; 206. Motor; 3. Air outlet system; 301. Fan blades; 4. Cooling system; 401. Water tank; 402. Sprinkler; 5. Water circulation system; 501. Water pump; 502. Circulation pump; 503. Water inlet valve; 504. Duct assembly; 6. Solar lighting system; 601. Solar panel; 602. Lighting lamp; 603. Lamp holder; 7. Angle adjustment mechanism; 701. Mounting seat; 702. Adjustment structure. 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 provides an energy-saving cooling air supply fan 105 for outdoor buildings, including a chassis 1 and a frame 2, the frame 2 is provided with an angle adjustment mechanism 7 for connecting to the chassis 1, the chassis 1 is provided with a chamber, the chassis 1 is provided with an air intake system 104, an air outlet system 3, a cooling system 4 and a water circulation system 5, the chassis 1 is also provided with a plurality of mounting portions 101 for installing the air outlet system 3, and a solar lighting system 6 is also provided on one side of the chassis 1, the solar lighting system 6 includes a solar power generation panel 601 and a lamp holder 603 connected to the solar power generation panel 601, and the lamp holder 603 is detachably connected to the chassis 1.
[0027] The chassis 1 of this embodiment is formed from a lightweight, one-piece aluminum material with high sealing performance. An air outlet system 3 is provided at the front end of the chassis 1. The chassis 1 is provided with mounting openings corresponding to the guide fan blades 301 in the air outlet system 3. Each mounting opening is provided with a hood 102, and the mounting opening and hood 102 are connected by a sealing ring. This structure allows the air outlet to be more concentrated. An air intake system 104, located at the rear of the chassis 1, uses a fan 105 to draw air into the chamber. Since the evaporation structure in the cooling system 4 is located in the chamber, the air temperature can be lowered during the process from intake to outlet, thereby activating the cooling and air supply effect. The chassis 1 has a built-in temperature sensor that can detect the air temperature in the chamber and display it on the control panel of the chassis 1. A spray mechanism, located above the evaporation structure, sprays water onto the heat sink of the evaporation structure via a duct assembly 504 and a pump assembly, further improving the air cooling efficiency. A solar lighting system 6 is also installed on one side of the chassis 1. This system consists of a solar panel 601 connected to a lamp 602. This system uses solar power generation and stores electricity in a battery, making it suitable for outdoor applications where electricity is scarce. The system utilizes a single fan 105, which delivers air through multiple outlets. Its cooling system utilizes a more energy-efficient evaporative heat sink structure, resulting in greater reliability.
[0028] Among them, the spraying mechanism arranged on the top of the chassis 1 can recycle water through the water circulation system 5, wherein the water tank 401 on the chassis 1 is connected to the sprinkler 402, and water is pumped into the water tank 401 through the conduit group 504 and the pump group. A water tank 103 is set at the bottom of the chassis 1, and the water after spraying flows in the water tank 103. The water tank 103 is connected to the circulation pump 502, and the circulation pump 502 pumps the water in the water tank 103 to the water tank 401. This structure greatly improves the resource utilization efficiency and has the effect of energy saving and environmental protection.
[0029] The air outlet system 3 and the air inlet system 104 are both connected to the chamber, wherein the cooling system 4 is arranged in the chamber, and the water circulation system 5 is connected to the cooling system 4, and the water circulation system 5 is arranged at the bottom of the chassis 1. The cooling system 4 includes a spraying mechanism and an evaporation structure, and the spraying mechanism is arranged at the top of the chassis 1, and the evaporation structure is arranged in the chamber. The water circulation system 5 includes a duct group 504, a pump group and a water tank 103, and the water tank 103 is arranged at the bottom of the chamber, wherein the spraying mechanism is connected to the water tank 103 through the duct group 504, and the spraying mechanism is mounted on the sprayer 402 above the evaporation structure.
[0030] This embodiment also provides a walking mechanism 201, which is driven by a double track and an independently driven motor 206. The motor 206 can be operated in an auxiliary manner or actively. The entire device can be moved by a handle 205 on the frame 2. The operation is simple and convenient, and the portability is strong. The track is more suitable for outdoor environments.
[0031] It is further explained that the mounting portion 101 includes a plurality of circular mounting openings, which are communicated with the chamber. The mounting openings are also provided with sealing strips and air hoods 102. The air outlet system 3 includes a plurality of fan blades 301, which are provided in the mounting openings, and the fan blades 301 are sealed and connected to the chassis 1 through sealing strips.
[0032] It is further explained that the frame 2 is also provided with a support arm 202, a cross bar 204 and a walking mechanism 201, the cross bar 204 is connected to the support arm 202, the cross bar 204 is connected to the angle adjustment mechanism 7, and the chassis 1 can be rotated and adjusted by 0°-180° through the angle adjustment mechanism 7. The angle adjustment mechanism 7 includes a mounting shaft 203, a mounting seat 701 and an adjustment structure 702, and the adjustment structure 702 includes a damping bearing seat, wherein the mounting seat 701 is fixed on one side of the chassis 1, and the mounting shaft 203 is connected to the damping bearing seat.
[0033] It is further explained that the air intake system 104 includes an air intake box, a fan 105 arranged in the air intake box and a turbine blade 106 connected to the fan 105. A dust-proof air inlet 107 is provided on the outside of the air intake box. The air intake box is fixed on one side of the chassis 1, and an air duct is formed in the air intake box, which is connected to the chamber.
[0034] It is further explained that the walking mechanism 201 includes a crawler and a driving module symmetrically arranged on the frame 2, and the driving module includes a motor 206, wherein a handle 205 is further provided on one side of the cross bar 204.
[0035] It is further explained that the lamp holder 603 has an arc-shaped mounting groove, and three lighting lamps 602 are provided on the lamp holder 603 . The lamp holder 603 has a built-in energy storage module, and the energy storage module is connected to the solar power generation panel 601 .
[0036] It is further explained that the evaporation structure is composed of a plurality of heat sinks, which are arranged in a crisscross pattern in the chamber, and the heat sinks are made of copper.
[0037] It is further explained that the conduit group 504 includes a water inlet pipe and a circulation pipe, the pump group includes a water pump 501 and a circulation pump 502, the circulation pipe is connected to the water tank 401 and the circulation pump 502 respectively, the circulation pipe is also connected to the water tank 103, the water inlet pipe is connected to the water pump 501, the water pump 501 is also provided with a water inlet valve port 503, and the water inlet pipe is connected to the water tank 401.
[0038] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the present invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be encompassed within the present invention. Any reference sign in a claim should not be construed as limiting the claim to which it relates.
Claims
1. An energy-saving cooling fan for outdoor buildings, characterized by: The invention comprises a chassis and a frame, wherein the frame is provided with an angle adjustment mechanism for connecting to the chassis, the chassis is provided with a chamber, the chassis is provided with an air intake system, an air outlet system, a cooling system and a water circulation system, the chassis is also provided with a plurality of mounting portions for mounting the air outlet system, and a solar lighting system is also provided on one side of the chassis, the solar lighting system comprises a solar power generation panel and a lamp holder connected to the solar power generation panel, and the lamp holder is detachably connected to the chassis; The air outlet system and the air inlet system are both connected to the chamber, wherein the cooling system is arranged in the chamber, the water circulation system is connected to the cooling system, and the water circulation system is arranged at the bottom of the chassis. The cooling system includes a spray mechanism and an evaporation structure, the spray mechanism is arranged at the top of the chassis, and the evaporation structure is arranged in the chamber, the water circulation system includes a duct group, a pump group and a water tank, and the water tank is arranged at the bottom of the chamber, wherein the spray mechanism is connected to the water tank through the duct group, and the spray mechanism is mounted on the sprayer above the evaporation structure.
2. The energy-saving cooling fan for outdoor buildings according to claim 1, characterized in that: The mounting portion includes a plurality of circular mounting openings, which are communicated with the chamber. The mounting openings are also provided with sealing strips and wind covers. The air outlet system includes a plurality of fan blades, which are arranged in the mounting openings and are sealed to the chassis through sealing strips.
3. The energy-saving cooling fan for outdoor buildings according to claim 1, characterized in that: The frame is also provided with a support arm, a cross bar and a walking mechanism, the cross bar is connected to the support arm, the cross bar is connected to the angle adjustment mechanism, the chassis can be rotated and adjusted 0°-180° through the angle adjustment mechanism, the angle adjustment mechanism includes a mounting shaft, a mounting seat and an adjustment structure, the adjustment structure includes a damping bearing seat, wherein the mounting seat is fixed on one side of the chassis, and the mounting shaft is connected to the damping bearing seat.
4. The energy-saving cooling fan for outdoor buildings according to claim 1, characterized in that: The air intake system includes an air intake box, a fan arranged in the air intake box and turbine blades connected to the fan. A dust-proof air inlet is provided on the outside of the air intake box. The air intake box is fixed on one side of the chassis, and an air duct is formed in the air intake box, which is connected to the chamber.
5. The energy-saving cooling fan for outdoor buildings according to claim 3, characterized in that: The walking mechanism includes a crawler belt and a driving module symmetrically arranged on a frame. The driving module includes a motor, and a handle is further provided on one side of the crossbar.
6. The energy-saving cooling fan for outdoor buildings according to claim 1, characterized in that: The lamp holder has an arc-shaped mounting groove and is provided with three lighting lamps. The lamp holder has an internal energy storage module, which is connected to the solar power generation panel.
7. The energy-saving cooling fan for outdoor buildings according to claim 1, characterized in that: The evaporation structure is composed of a plurality of heat sinks, which are arranged in a crisscross pattern in the chamber and are made of copper.
8. The energy-saving cooling fan for outdoor buildings according to claim 1, characterized in that: The conduit group includes a water inlet pipe and a circulation pipe, the pump group includes a water pump and a circulation pump, the circulation pipe is connected to the water tank and the circulation pump respectively, the circulation pipe is also connected to the water tank, the water inlet pipe is connected to the water pump, the water pump is also provided with a water inlet valve port, and the water inlet pipe is connected to the water tank.