Temperature and humidity radiation protection cover with ventilation device

By introducing a combination of air inlet duct, air inlet, screen, ventilation port and temperature and humidity sensor into the temperature and humidity radiation shield, the problem of traditional equipment not being able to provide sufficient air circulation is solved, forced ventilation and temperature and humidity adjustment are achieved, and the accuracy of measurement data and the reliability of the device are improved.

CN223037168UActive Publication Date: 2025-06-27SHANGHAI METEOROLOGICAL INSTR FACTORY CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422209359.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-10
Publication Date
2025-06-27
Estimated Expiration
2034-09-10

AI Technical Summary

Technical Problem

The traditional temperature and humidity radiation shield with ventilation devices cannot provide sufficient air circulation, resulting in large differences in the internal temperature and humidity from the external environment, affecting the accuracy of the measurement data.

Method used

Forced ventilation and temperature and humidity adjustment are achieved through the combination of air inlet duct, air inlet, screen, ventilation port and temperature and humidity sensor. The temperature and humidity sensor monitors the environmental data. The air inlet actively introduces the air filtered through the screen and discharges it into the sunshade through multiple vents.

Benefits of technology

Forced ventilation inside the sunshade and timely and effective temperature and humidity adjustment are achieved, which reduces maintenance costs and difficulty, extends the service life of the device, and improves reliability and stability.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223037168U_ABST
    Figure CN223037168U_ABST
Patent Text Reader

Abstract

The utility model relates to the field of humiture anti-radiation covers, and discloses a humiture anti-radiation cover with a ventilation device, which comprises a plurality of sun shades, the sun shades are arranged up and down, the outer side walls of the sun shades are sleeved with protection structures, connecting rods are arranged at the front and rear parts of the center of the upper end surface of the protection structure at the upper part, and the ventilation device is arranged on the upper part of the protection structure. One ends of the two connecting rods sequentially penetrate through the multiple protection structures and the upper end face of the sun shade to reach the lower end face of the protection structure close to the lower portion, the ends are fixedly connected with fixing sleeves, and four supporting columns are arranged on the upper end face of the protection structure close to the upper portion in a rectangular mode. According to the utility model, through the combination of the air inlet pipe, the air inlet fan, the screen, the ventilation openings and the temperature and humidity sensor, the temperature and humidity sensor is used for monitoring, the air inlet fan actively introduces air filtered by the screen, and the air is discharged into the sun shade from the plurality of ventilation openings, so that forced ventilation and timely and effective temperature and humidity adjustment are realized.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the field of temperature and humidity radiation shields, in particular to a temperature and humidity radiation shield with a ventilation device. Background Technique

[0002] A temperature and humidity radiation shield with a ventilation device is a device used in fields such as meteorological monitoring and environmental monitoring. Its main purpose is to protect measuring instruments from the influence of solar radiation and ground reflected radiation, and at the same time ensure that the temperature and humidity conditions of the environment where the instrument is located are consistent with the external environment, so as to improve the accuracy of measurement data.

[0003] Since the traditional temperature and humidity radiation shield with a ventilation device may not provide sufficient air circulation, and only conducts air circulation through the gaps between the radiation shields, resulting in a large difference between the internal temperature and humidity and the external environment, affecting the accuracy of measurement data. Therefore, those skilled in the art have provided a temperature and humidity radiation shield with a ventilation device to solve the problems raised in the above background technique. Content of the Utility Model

[0004] The purpose of the utility model is to solve the deficiencies existing in the prior art, and a temperature and humidity radiation shield with a ventilation device is proposed. Through the combination of an air inlet pipe, an air inlet fan, a sieve mesh, a ventilation opening and a temperature and humidity sensor, monitored by the temperature and humidity sensor, the air inlet fan actively introduces the air filtered by the sieve mesh and discharges it into the inside of the sunshade through multiple ventilation openings, realizing forced ventilation and timely and effective temperature and humidity adjustment. The filter mesh is connected to the support column by four first bolts, the two connecting plates are connected by a second bolt, and the connecting plate and the filter mesh are connected by four third bolts, which not only makes the protection structure firm and reliable, not easy to loosen and deform, but also facilitates disassembly and maintenance, reduces the maintenance cost and difficulty. Through the combined design of a heat insulation layer and a waterproof layer, which is sleeved on the outer side wall of the sunshade, the heat insulation layer reduces the influence of external high temperature on the inside, maintaining a stable temperature environment; the waterproof layer prevents moisture intrusion, avoids internal moisture, extends the service life of the device, and improves reliability and stability.

[0005] To achieve the above purpose, the utility model provides the following technical solution: A temperature and humidity radiation shield with a ventilation device, including a plurality of sunshades, the plurality of sunshades are arranged in an up-and-down manner, a protection structure is sleeved on the outer side wall of each of the plurality of sunshades, at the front and rear of the center of the upper end surface of the protection structure at the upper position, connecting rods are provided, one end of each of the two connecting rods sequentially passes through the plurality of protection structures and the upper end surface of the sunshade and reaches the lower end surface of the protection structure at the lower position, and the end is fixedly connected with a fixed sleeve. Four support columns are arranged in a rectangular array on the upper end surface of the protection structure at the upper position, a protection structure is provided on the upper end surfaces of the four support columns, and a ventilation structure is arranged at the center of the inside of each of the plurality of sunshades;

[0006] Through the above technical solution, through the combination of the air inlet pipe, the air inlet fan, the sieve mesh, the ventilation openings and the temperature and humidity sensor, the temperature and humidity sensor monitors, the air inlet fan actively introduces the air filtered by the sieve mesh, and discharges it into the inside of the sunshade from multiple ventilation openings, realizing forced ventilation and timely and effective temperature and humidity regulation. The filter screen is connected to the support column by four first bolts, the two connecting plates are connected by a second bolt, and the connecting plate and the filter screen are connected by four third bolts, which not only makes the protection structure stable and reliable, not easy to loosen and deform, but also facilitates disassembly and maintenance, reducing the maintenance cost and difficulty. By adopting the combined design of the heat insulation layer and the waterproof layer, which is sleeved on the outer side wall of the sunshade, the heat insulation layer reduces the influence of the external high temperature on the inside, maintaining a stable temperature environment; the waterproof layer prevents moisture from invading and avoids internal moisture, prolonging the service life of the device and improving the reliability and stability.

[0007] Further, the plurality of protection structures include a plurality of heat insulation layers and a plurality of waterproof layers. The plurality of heat insulation layers are respectively sleeved on the outer side walls of the plurality of sunshades, and the plurality of waterproof layers are respectively sleeved on the outer side walls of the plurality of heat insulation layers;

[0008] Through the above technical solution, by setting the heat insulation layer, the influence of the external high temperature on the inside of the sunshade is reduced, which helps to maintain a relatively stable temperature environment inside, thereby ensuring that the internal equipment or items are not interfered by the high temperature. The existence of the waterproof layer prevents the intrusion of moisture, avoids internal moisture, protects the internal structure and the sensitive items that may be stored, prolongs the service life of the entire device, and improves its reliability and stability.

[0009] Further, the ventilation structure includes an air inlet pipe, an air inlet fan, a sieve mesh, a plurality of ventilation openings and a temperature and humidity sensor. The air inlet pipe is arranged at the center of the inside of the plurality of sunshades, the air inlet fan is arranged at the center of the rear side of one side wall of the air inlet pipe, the sieve mesh is arranged inside the air inlet pipe on one side of the air inlet fan, the plurality of ventilation openings are arranged in a vertical row at the center of the lower part of the front end face and the rear end face of the air inlet pipe, and the temperature and humidity sensor is arranged at the center of the upper part of the front inner wall of the air inlet pipe;

[0010] Through the above technical solution, the temperature and humidity data in the air inlet pipe are monitored in real time by the temperature and humidity sensor. When ventilation is required, the air inlet fan is started to suck the external air into the air inlet pipe. When the air enters the air inlet pipe, it first passes through the filtration of the sieve mesh to remove impurities and dust in the air. The filtered air passes through the air inlet pipe and is then discharged into the inside of the sunshade from the plurality of ventilation openings arranged in a vertical row at the center of the lower part of the front end face and the rear end face. By actively introducing air by the air inlet fan, forced ventilation inside the sunshade is realized, and the temperature and humidity inside can be adjusted in a timely and effective manner.

[0011] Further, the protective structure includes a filter screen, two connecting plates, four first bolts, a second bolt, and four third bolts. The filter screen is disposed on the upper end surfaces of the four support columns. The two connecting plates are arranged in a cross shape at the center of the lower end surface of the filter screen. The four first bolts are arranged in a circular pattern on the upper end surface of the filter screen. The second bolt is disposed on the lower end surface of the lower connecting plate. The four third bolts are arranged in a circular pattern on the lower ends of the two connecting plates;

[0012] Through the above technical solution, the filter screen can effectively block larger foreign objects and impurities from entering, playing a preliminary protective role. The connecting plates are connected by bolts, making the entire protective structure stable and reliable, not easily loosening or deforming. The first bolts ensure the firm connection between the filter screen and the support columns. The second bolt and the third bolts further enhance the stability of the connection between the connecting plates and between the connecting plates and other components. This stable protective structure can effectively protect the internal equipment, items, etc. from external interference and damage for a long time, and is also convenient for disassembly and maintenance, reducing the maintenance cost and difficulty.

[0013] Further, multiple sunshades are all in an umbrella shape;

[0014] Through the above technical solution, the umbrella-shaped sunshades expand in an arc shape from the top to the surroundings, forming a relatively large shading area.

[0015] Further, one end of each of the four first bolts sequentially penetrates the upper end surface of the filter screen and the upper end surfaces of the four support columns and extends into the interiors of the four support columns, and the ends are respectively threadedly connected inside the four support columns;

[0016] Through the above technical solution, this connection method firmly fixes the filter screen on the support columns, not easily displaced or loosened, ensuring that the filter screen stably plays a filtering role, and is also convenient for installation and disassembly for maintenance or replacement.

[0017] Further, one end of the second bolt sequentially penetrates the lower end surfaces of the lower and upper connecting plates and extends into the interior of the upper connecting plate, and the end is threadedly connected inside the upper connecting plate;

[0018] Through the above technical solution, the two connecting plates can be tightly connected, enhancing the integrity and stability of the connecting plate structure, ensuring that it can effectively bear and transmit forces.

[0019] Further, one end of each of the four third bolts sequentially penetrates the lower ends of the two connecting plates and the lower end surface of the filter screen and extends into the interior of the filter screen, and the ends are all threadedly connected inside the filter screen;

[0020] Through the above technical solution, the two connecting plates are tightly connected to the filter net, enhancing the stability of the entire protection structure, preventing loosening or separation between components during use, and improving the reliability and service life of the protection structure.

[0021] The utility model has the following beneficial effects:

[0022] 1. In the utility model, in the temperature and humidity radiation protection cover with a ventilation device, through the combination of an air inlet pipe, an air inlet fan, a sieve net, air vents and a temperature and humidity sensor, monitored by the temperature and humidity sensor, the air inlet fan actively introduces the air filtered by the sieve net and discharges it into the inside of the sunshade through multiple air vents, realizing forced ventilation and timely and effective temperature and humidity regulation.

[0023] 2. In the utility model, the filter net is connected to the support column through four first bolts, the two connecting plates are connected through a second bolt, and the connecting plate and the filter net are connected through four third bolts, which not only makes the protection structure stable and reliable, not easy to loosen and deform, but also facilitates disassembly and maintenance, reducing the maintenance cost and difficulty.

[0024] 3. In the utility model, through the combined design of a heat insulation layer and a waterproof layer, which is sleeved on the outer side wall of the sunshade, the heat insulation layer reduces the influence of external high temperature on the inside, maintaining a stable temperature environment; the waterproof layer prevents moisture intrusion, avoids internal moisture, prolongs the service life of the device, and improves reliability and stability. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 is a perspective view of the temperature and humidity radiation protection cover with a ventilation device proposed by the utility model;

[0026] Figure 2 is a perspective sectional view of the temperature and humidity radiation protection cover with a ventilation device proposed by the utility model;

[0027] Figure 3 is a front sectional view of the temperature and humidity radiation protection cover with a ventilation device proposed by the utility model;

[0028] Figure 4 is a side sectional view of the temperature and humidity radiation protection cover with a ventilation device proposed by the utility model;

[0029] Figure 5 is Figure 2 an enlarged schematic view of part A in

[0030] LEGEND DESCRIPTION:

[0031] 1. Sunshade; 2. Protection structure; 201. Heat insulation layer; 202. Waterproof layer; 3. Connecting rod; 4. Fixed sleeve; 5. Ventilation structure; 501. Air inlet pipe; 502. Air inlet fan; 503. Sieve mesh; 504. Ventilation opening; 505. Temperature and humidity sensor; 6. Protection structure; 601. Filter screen; 602. Connecting plate; 603. First bolt; 604. Second bolt; 605. Third bolt; 7. Support column. Detailed implementation mode

[0032] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative work shall fall within the protection scope of the present invention.

[0033] Refer to Figures 1-5 , an embodiment provided by the present invention: a temperature and humidity radiation protection cover with a ventilation device, including a plurality of sunshades 1, the plurality of sunshades 1 are arranged vertically, the outer side walls of the plurality of sunshades 1 are all sleeved with a protection structure 2, at the upper part, both the front and rear of the center of the upper end face of the protection structure 2 are provided with connecting rods 3, one end of each of the two connecting rods 3 sequentially penetrates through the plurality of protection structures 2 and the upper end faces of the sunshades 1 and reaches the lower end face of the protection structure 2 at the lower part, and the end parts are fixedly connected with fixed sleeves 4. At the upper part, four support columns 7 are arranged in a rectangular array on the upper end face of the protection structure 2, and a protection structure 6 is arranged on the upper end faces of the four support columns 7. A ventilation structure 5 is arranged at the center of the interior of the plurality of sunshades 1. The plurality of vertically arranged sunshades 1 form the main structure of the radiation protection cover. The protection structure 2 on its outer side wall plays a role in protecting the sunshades 1. The connecting rods 3 on the upper protection structure 2 sequentially pass through the plurality of protection structures 2 and the sunshades 1 and are fixed by the fixed sleeves 4 at the end parts, thereby connecting the plurality of sunshades 1 and the protection structures 2 together. The four support columns 7 support the protection structure 6. The ventilation structure 5 located at the center of the interior of the sunshades 1 is used to improve the internal ventilation and temperature and humidity conditions. The plurality of sunshades 1 are all in an umbrella shape, and the umbrella-shaped sunshades 1 are arc-shaped and expand around the top as the center, forming a relatively large shielding area.

[0034] The multiple protection structures 2 include multiple heat insulation layers 201 and multiple waterproof layers 202. The multiple heat insulation layers 201 are respectively sleeved on the outer side walls of the multiple sunshades 1, and the multiple waterproof layers 202 are respectively sleeved on the outer side walls of the multiple heat insulation layers 201. By providing the heat insulation layers 201, the influence of external high temperature on the interior of the sunshades 1 is reduced, which helps to maintain a relatively stable internal temperature environment, thereby ensuring that the internal equipment or items are not interfered by high temperature. The existence of the waterproof layers 202 prevents the intrusion of moisture, avoids internal dampness, protects the internal structure and sensitive items that may be stored, extends the service life of the entire device, and improves its reliability and stability.

[0035] The ventilation structure 5 includes an air inlet pipe 501, an air inlet fan 502, a sieve mesh 503, multiple ventilation openings 504 and a temperature and humidity sensor 505. The air inlet pipe 501 is arranged at the center inside the multiple sunshades 1, the air inlet fan 502 is arranged at the center of one side wall of the air inlet pipe 501 and towards the rear, the sieve mesh 503 is arranged inside the air inlet pipe 501 on one side of the air inlet fan 502, the multiple ventilation openings 504 are arranged in an up-and-down manner at the center of the front end face and the rear end face of the air inlet pipe 501 and towards the lower part, and the temperature and humidity sensor 505 is arranged at the center of the front inner wall of the air inlet pipe 501 and towards the upper part. The temperature and humidity data inside the air inlet pipe 501 are monitored in real time by the temperature and humidity sensor 505. When ventilation is required, the air inlet fan 502 is started to suck external air into the air inlet pipe 501. When the air enters the air inlet pipe 501, it first passes through the filtration of the sieve mesh 503 to remove impurities and dust in the air. The filtered air passes through the air inlet pipe 501 and then is discharged into the interior of the sunshade 1 through the multiple ventilation openings 504 arranged in an up-and-down manner at the center of the front end face and the rear end face and towards the lower part. By actively introducing air by the air inlet fan 502, forced ventilation inside the sunshade 1 is achieved, and the temperature and humidity inside can be adjusted in a timely and effective manner.

[0036] The protective structure 6 includes a filter screen 601, two connecting plates 602, four first bolts 603, a second bolt 604 and four third bolts 605. The filter screen 601 is arranged on the upper end surfaces of the four support columns 7. The two connecting plates 602 are arranged in a cross shape at the center of the lower end surface of the filter screen 601. The four first bolts 603 are arranged in a circular pattern on the upper end surface of the filter screen 601. The second bolt 604 is arranged on the lower end surface of the lower connecting plate 602. The four third bolts 605 are arranged in a circular pattern on the lower ends of the two connecting plates 602. The filter screen 601 can effectively block larger foreign objects and impurities from entering, playing a preliminary protective role. The connecting plates 602 are connected by bolts, making the entire protective structure 6 stable and reliable, not easily loosening or deforming. The first bolts 603 ensure the firm connection between the filter screen 601 and the support columns 7. The second bolt 604 and the third bolts 605 further enhance the stability of the connection between the connecting plates 602 and between the connecting plates 602 and other components. This stable protective structure 6 can effectively protect the internal equipment, items, etc. from external interference and damage for a long time, and is also convenient for disassembly and maintenance, reducing the maintenance cost and difficulty.

[0037] One end of each of the four first bolts 603 sequentially passes through the upper end surface of the filter screen 601 and the upper end surfaces of the four support columns 7 and extends into the interiors of the four support columns 7, and the ends are respectively threadedly connected inside the four support columns 7. This connection method firmly fixes the filter screen 601 on the support columns 7, not easily shifting or loosening, ensuring that the filter screen 601 stably performs the filtering function. At the same time, it is also convenient for installation and disassembly for maintenance or replacement. One end of the second bolt 604 sequentially passes through the lower end surface of the lower connecting plate 602 and the upper connecting plate 602 and extends into the interior of the upper connecting plate 602, and the end is threadedly connected inside the upper connecting plate 602, enabling the two connecting plates 602 to be tightly connected, enhancing the integrity and stability of the structure of the connecting plates 602 and ensuring that it can effectively bear and transmit force. One end of each of the four third bolts 605 sequentially passes through the lower ends of the two connecting plates 602 and the lower end surface of the filter screen 601 and extends into the interior of the filter screen 601, and the ends are all threadedly connected inside the filter screen 601, tightly connecting the two connecting plates 602 and the filter screen 601 together, enhancing the stability of the entire protective structure 6, preventing loosening or separation between components during use, and improving the reliability and service life of the protective structure 6.

[0038] Working principle: Multiple sunshades 1 arranged vertically form the main structure of the radiation protection cover. By setting the heat insulation layer 201, the influence of the external high temperature on the inside of the sunshade 1 is reduced, which helps to maintain a relatively stable temperature environment inside, thus ensuring that the internal equipment or items are not interfered by high temperature. The existence of the waterproof layer 202 prevents the intrusion of moisture, avoids internal dampness, protects the internal structure and sensitive items that may be stored, extends the service life of the entire device, and improves its reliability and stability. The connecting rod 3 on the upper protection structure 2 passes through multiple protection structures 2 and sunshades 1 in sequence and is fixed at the end through the fixing sleeve 4, thereby connecting multiple sunshades 1 and protection structures 2 together.

[0039] The protection structure 6 is supported by four support columns 7. The filter screen 601 can effectively block larger foreign objects and impurities from entering, playing a preliminary protection role. The connecting plate 602 is connected by bolts, making the entire protection structure 6 stable and reliable, not easy to loosen or deform. The first bolt 603 ensures the firm connection between the filter screen 601 and the support column 7. The second bolt 604 and the third bolt 605 further enhance the stability of the connection between the connecting plates 602 and the connection between the connecting plates 602 and other components. This stable protection structure 6 can effectively protect the internal equipment, items, etc. from external interference and damage for a long time, and is also convenient for disassembly and maintenance, reducing the maintenance cost and difficulty. The temperature and humidity sensor 505 monitors the temperature and humidity data in the air inlet pipe 501 in real time. When ventilation is required, the air inlet fan 502 is started to suck external air into the air inlet pipe 501. When the air enters the air inlet pipe 501, it first passes through the filter screen 503 to remove impurities and dust in the air. The filtered air passes through the air inlet pipe 501 and then is discharged into the inside of the sunshade 1 through multiple ventilation openings 504 arranged vertically at the lower part of the center of the front end face and the rear end face. By actively introducing air through the air inlet fan 502, forced ventilation inside the sunshade 1 is achieved, which can timely and effectively adjust the temperature and humidity inside.

[0040] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A temperature and humidity radiation shield with a ventilation device, comprising a plurality of sunshades (1), characterized in that: The plurality of sunshades (1) are arranged in an upper and lower arrangement, and the outer side walls of the plurality of sunshades (1) are sleeved with a protective structure (2). Connecting rods (3) are provided at the front and rear of the center of the upper end surface of the protective structure (2) at the upper position, and one end of each of the two connecting rods (3) passes through the plurality of protective structures (2) and the upper end surface of the sunshade (1) in sequence to the lower end surface of the protective structure (2) at the lower position, and the ends are fixedly connected with a fixing sleeve (4). The upper end surface of the protective structure (2) at the upper position is arranged in a rectangular shape with four supporting columns (7), and the upper end surfaces of the four supporting columns (7) are provided with a protective structure (6). A ventilation structure (5) is provided at the center of the interior of the plurality of sunshades (1).

2. The temperature and humidity radiation shield with ventilation device according to claim 1, characterized in that: The plurality of protective structures (2) comprise a plurality of heat-insulating layers (201) and a plurality of waterproof layers (202); the plurality of heat-insulating layers (201) are respectively sleeved on the outer side walls of the plurality of sunshades (1); and the plurality of waterproof layers (202) are respectively sleeved on the outer side walls of the plurality of heat-insulating layers (201).

3. The temperature and humidity radiation shield with ventilation device according to claim 1, characterized in that: The ventilation structure (5) comprises an air inlet pipe (501), an air inlet fan (502), a screen (503), a plurality of ventilation openings (504) and a temperature and humidity sensor (505); the air inlet pipe (501) is arranged at the center of the plurality of sunshades (1); the air inlet fan (502) is arranged at the rear center of a side wall of the air inlet pipe (501); the screen (503) is arranged inside the air inlet pipe (501) on one side of the air inlet fan (502); the plurality of ventilation openings (504) are arranged in an upper and lower arrangement at the center of the front end face and the rear end face of the air inlet pipe (501); and the temperature and humidity sensor (505) is arranged at the upper center of the front inner wall of the air inlet pipe (501).

4. The temperature and humidity radiation shield with ventilation device according to claim 1, characterized in that: The protective structure (6) comprises a filter screen (601), two connecting plates (602), four first bolts (603), a second bolt (604) and four third bolts (605); the filter screen (601) is arranged on the upper end surfaces of four support columns (7); the two connecting plates (602) are arranged in a cross shape at the center of the lower end surface of the filter screen (601); the four first bolts (603) are arranged in a ring shape on the upper end surface of the filter screen (601); the second bolts (604) are arranged on the lower end surface of the air inlet fan (502); and the four third bolts (605) are arranged in a ring shape on the lower ends of the two air inlets (502).

5. The temperature and humidity radiation shield with ventilation device according to claim 1, characterized in that: The plurality of sunshades (1) are all umbrella-shaped.

6. The temperature and humidity radiation shield with ventilation device according to claim 4, characterized in that: One end portion of the four first bolts (603) passes through the upper end surface of the filter screen (601) and the upper end surfaces of the four support columns (7) in sequence and passes into the inside of the four support columns (7), and the end portions are respectively threadedly connected to the inside of the four support columns (7).

7. The temperature and humidity radiation shield with ventilation device according to claim 4, characterized in that: One end of the second bolt (604) passes through the lower end surfaces of the lower and upper connecting plates (602) in sequence and reaches the interior of the upper connecting plate (602), and the end is threadedly connected to the interior of the upper connecting plate (602).

8. The temperature and humidity radiation shield with ventilation device according to claim 4, characterized in that: One end of the four third bolts (605) passes through the lower end of the two connecting plates (602) and the lower end surface of the filter screen (601) in sequence to reach the inside of the filter screen (601), and the ends are all threadedly connected to the inside of the filter screen (601).