A building curtain wall based on a heat exchange structure and a construction method thereof
By adopting a combined design of external heat exchange mechanism and internal heat exchange mechanism in the building curtain wall, the problem of low heat dissipation efficiency in existing glass building curtain walls in high temperatures is solved, achieving more efficient heat exchange and better comfort, while improving environmental protection performance.
Patent Information
- Application Number
- CN202410759178.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-13
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2044-06-13
AI Technical Summary
The existing glass building curtain wall has low self-dissipation efficiency in high temperature weather, resulting in the glass building curtain wall being in a high temperature state for a long time, affecting indoor comfort.
The building curtain wall design is adopted based on the heat exchange structure, including the external heat exchange mechanism and the internal heat exchange mechanism. The external heat exchange mechanism absorbs heat through the thermal conduction assembly and the heat collecting plate, and accelerates the airflow rate through the narrow tube effect to assist in heat dissipation. The internal heat exchange mechanism absorbs heat between the glass plate through the heat exchange tube and the water circulation system.
It effectively improves the heat dissipation efficiency of building curtain walls, reduces internal temperature, improves comfort in high temperature weather, and improves energy-saving and environmentally friendly performance through water recycling.
Smart Images

Figure CN118581999B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of construction, and specifically to a building curtain wall based on a heat exchange structure and a construction method thereof. Background Art
[0002] A building curtain wall refers to the non-load-bearing external wall enclosure of a building, usually composed of a panel and a supporting structure behind. In order to improve the daylighting rate, modern office buildings use glass panels as the panels of building curtain walls. Glass building curtain walls have the advantages of good daylighting and good visibility. Utilizing the transparency of glass, they pursue the circulation and integration of the internal and external spaces of the building, enabling people to clearly see the entire structural system through the glass, turning the structural system from a simple supporting role to showing its visibility, thereby showing the artistic sense, layering and three-dimensional sense of building decoration. They have the characteristics of light weight, simple material selection, factory processing, fast construction, convenient maintenance and repair, and easy cleaning. Their effect on enriching the facade effect of building shapes is unparalleled by other materials, and they are the embodiment of modern technology in building decoration.
[0003] When the existing glass building curtain wall is used in high-temperature weather, since the glass building curtain wall is under direct sunlight for a long time and the external temperature is relatively high, the temperature of the glass building curtain wall is relatively high. The self-heat dissipation efficiency of the existing glass building curtain wall is relatively low, resulting in the glass building curtain wall being in a high-temperature state for a long time, which will cause the indoor temperature to rise and affect the comfort of the building in high-temperature weather. Summary of the Invention
[0004] The purpose of the present invention is to provide a building curtain wall based on a heat exchange structure and a construction method thereof to solve the problems raised in the above background art.
[0005] To achieve the above purpose, the present invention provides the following technical solutions:
[0006] The present invention provides a building curtain wall based on a heat exchange structure, including a frame body. Two glass panels are symmetrically embedded in the frame body. A cavity is provided between the two glass panels. An external heat exchange mechanism is fixedly connected to the side wall on the front side of the frame body, and an internal heat exchange mechanism is fixedly connected to the frame body;
[0007] The external heat exchange mechanism includes two heat conduction components fixedly connected to the front side wall of the frame body. Each heat conduction component includes a plurality of metal blocks fixedly connected to the frame body. The plurality of metal blocks are evenly arranged. Through holes are formed in each of the plurality of metal blocks, and the same metal tube is fixedly sleeved in the plurality of through holes. Conical hoppers are fixedly connected to both ends of the metal tube. The diameter of the end of the conical hopper away from the metal tube is larger than that of the other end. Heat dissipation fins are fixedly connected to each of the plurality of metal blocks, and a heat collecting plate is fixedly connected to the plurality of heat dissipation fins. The heat collecting plate is in close contact with the glass plate. Two V-shaped tubes are symmetrically and fixedly connected between the two metal tubes. An air duct is fixedly communicated with the V-shaped tube. One end of the air duct away from the V-shaped tube is fixedly connected with a conical air collecting hopper. The inner diameter of the end of the conical air collecting hopper away from the air duct is larger than that of the air duct.
[0008] In the above-mentioned building curtain wall based on a heat exchange structure, the internal heat exchange mechanism includes a heat exchange tube fixedly connected to the frame body. The heat exchange tube is located in the cavities of the two glass plates. Two installation grooves are symmetrically formed in the vertical side walls of the frame body. The two ends of the heat exchange tube are respectively inserted into the two installation grooves. Guide tubes are fixedly sleeved in the two installation grooves. One end of each guide tube extends out of the installation groove. A water inlet pipe and a water outlet pipe are respectively fixedly connected to the two guide tubes. A water injection hopper is fixedly connected to the upper end of the water inlet pipe.
[0009] In the above-mentioned building curtain wall based on a heat exchange structure, a plurality of card holes are formed in the vertical side walls of the frame body. The plurality of card holes are evenly distributed on the frame body. A plurality of fixing holes communicating with the card holes are formed in the frame body.
[0010] In the above-mentioned building curtain wall based on a heat exchange structure, two heat dissipation fins are symmetrically and fixedly connected to each of the plurality of metal blocks. The specific material of the heat dissipation fins is aluminum. Heat dissipation holes are formed in the vertical side walls of the heat dissipation fins.
[0011] In the above-mentioned building curtain wall based on a heat exchange structure, an external threaded tube is fixedly sleeved on the water outlet pipe. A sewage collection bottle is externally threaded on the external threaded tube. A drain pipe is fixedly communicated with the bottom of the sewage collection bottle. A sewage discharge valve is fixedly connected to the lower end of the drain pipe.
[0012] In the above-mentioned building curtain wall based on a heat exchange structure, two sealing rubber strips are symmetrically and fixedly connected to the inner wall of the frame body. The two glass plates are located between the two sealing rubber strips. The sealing rubber strips are in close contact with the glass plates and the frame body.
[0013] In the above-mentioned building curtain wall based on a heat exchange structure, an anti-slip sleeve is fixedly sleeved on the sewage collection bottle. The specific material of the anti-slip sleeve is rubber. A plurality of anti-slip grooves are formed in the anti-slip sleeve. The plurality of anti-slip grooves are evenly distributed on the anti-slip sleeve.
[0014] In the above-mentioned building curtain wall based on a heat exchange structure, the heat collecting plate, heat conducting sheet, metal block and metal pipe are all made of aluminum.
[0015] In the above-mentioned building curtain wall based on a heat exchange structure, the frame body includes a U-shaped frame, and a sealing plate is fixedly connected to the upper side of the U-shaped frame through a plurality of bolts.
[0016] A construction method of a building curtain wall based on a heat exchange structure includes the following steps: installing two glass plates in the U-shaped frame, installing an internal heat exchange mechanism between the two glass plates, assembling the U-shaped frame and the sealing plate to form a frame body, fixing a plurality of metal blocks on the frame body, making the heat collecting plate on the metal block closely fit with the glass plate, completing the installation of the external heat exchange mechanism, completing the assembly of the building curtain wall. The provided internal heat exchange mechanism and external heat exchange mechanism cooperate with each other, enabling rapid heat exchange of the building curtain wall, thereby improving the heat dissipation efficiency of the building curtain wall.
[0017] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0018] 1. Through the provided external heat exchange mechanism and internal heat exchange mechanism of the present invention, during use, a plurality of conical hoppers can collect the outdoor air flow. When the air flow enters the metal pipe, since the diameter of the metal pipe is smaller than that of the conical hopper and the air flow cannot accumulate in large quantities at the entrance of the metal pipe, the flow rate of the air flow in the metal pipe is accelerated, thus forming a venturi effect. The provided heat collecting plate can absorb the heat on the glass plate. The heat collecting plate transfers the heat to a plurality of metal blocks through a plurality of heat conducting sheets, and the plurality of metal blocks transfer the heat to the metal pipe. The air flow passing through the metal pipe can take away part of the heat on the metal pipe, thereby assisting in dissipating the heat of the metal pipe and indirectly assisting in dissipating the heat of the building curtain wall. Water is injected into the water inlet pipe through the water injection hopper, and the water flows into the heat exchange pipe through the water inlet pipe and the conduit. The heat exchange pipe can absorb the heat between the two glass plates, and the water flow can take away the heat when passing through the heat exchange pipe, thereby assisting in dissipating the heat of the cavity between the two glass plates. Through the mutual cooperation of the external heat exchange mechanism and the internal heat exchange mechanism, rapid heat exchange can be carried out inside and outside the building curtain wall, effectively improving the heat dissipation efficiency of the building curtain wall and enhancing the comfort of the personnel inside the building curtain wall.
[0019] 2. Through the provided card holes and fixing holes of the present invention, the card holes and the fixing holes cooperate with each other, enabling the surface of the frame body to have depressions, thereby forming a blocking structure with the material of the wall during the installation of the frame body, thus improving the stability of the installation of the frame body and effectively enhancing the stability of the installation of the building curtain wall.
[0020] 3. In the present invention, through the arranged sewage collection bottle, drain pipe and sewage discharge valve, during use, the sewage collection bottle is screwed onto the external threaded pipe. The sewage collection bottle can collect the water flowing out from the heat exchange pipe. The collected water can be reinjected into the internal heat exchange mechanism for use or can be used as other domestic water, thereby enabling the recycling of water and preventing the water from flowing around and affecting the sanitary environment, improving the energy conservation and environmental protection performance of the building curtain wall. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 is the overall structural schematic diagram of the present invention;
[0022] Figure 2 is the front view of the present invention;
[0023] Figure 3 is the rear view of the present invention;
[0024] Figure 4 is Figure 3 the structural schematic diagram after removing the glass plate;
[0025] Figure 5 is Figure 1 the structural schematic diagram of the external heat exchange mechanism in the middle;
[0026] Figure 6 is Figure 1 the schematic diagram of the internal heat exchange mechanism in the middle;
[0027] Figure 7 is Figure 6 the connection structural schematic diagram of the heat conducting sheet and the metal block in the middle;
[0028] Figure 8 is Figure 6 the structural schematic diagram of the sewage collection bottle in the middle.
[0029] In the figure: 1. Frame body; 2. Glass plate; 3. Metal block; 4. Metal pipe; 5. Conical hopper; 6. Heat conducting sheet; 7. Heat collecting plate; 8. V-shaped pipe; 9. Air duct; 10. Conical air collecting hopper; 11. Heat exchange pipe; 12. Conduit; 13. Water outlet pipe; 14. Water injection hopper; 15. Card hole; 16. Fixing hole; 17. Heat dissipation fin; 18. Heat dissipation hole; 19. External threaded pipe; 20. Sewage collection bottle; 21. Drain pipe; 22. Sewage discharge valve; 23. Sealing strip; 24. Anti-slip sleeve; 25. Anti-slip groove; 26. U-shaped frame; 27. Sealing plate; 28. Water inlet pipe. DETAILED DESCRIPTION OF THE INVENTION
[0030] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to 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 efforts shall fall within the protection scope of the present invention.
[0031] Please refer to Figures 1-8 , the present invention provides a building curtain wall based on a heat exchange structure and a construction method, including a frame 1. Two glass plates 2 are symmetrically embedded in the frame 1. A cavity is provided between the two glass plates 2. An external heat exchange mechanism is fixedly connected to the side wall on the front side of the frame 1. An internal heat exchange mechanism is fixedly connected to the frame 1. The external heat exchange mechanism can assist in dissipating heat from the outside of the building curtain wall, thereby improving the heat dissipation efficiency on the outside of the building curtain wall and assisting in dissipating heat and cooling the outside of the building. The internal heat exchange mechanism can assist in dissipating heat from the inside of the building curtain wall, thereby quickly reducing the temperature inside the building curtain wall. Through the mutual cooperation of the external heat exchange mechanism and the internal heat exchange mechanism, rapid heat exchange of the building curtain wall can be achieved, thereby improving the comfort of the building curtain wall when used in high-temperature weather.
[0032] The external heat exchange mechanism includes two heat conduction components fixedly connected to the side wall on the front side of the frame 1. The heat conduction component includes a plurality of metal blocks 3 fixedly connected to the frame 1. The plurality of metal blocks 3 are evenly arranged. Through holes are formed in the plurality of metal blocks 3, and the same metal tube 4 is fixedly sleeved in the plurality of through holes. Both ends of the metal tube 4 are fixedly connected with a conical hopper 5. The diameter of the end of the conical hopper 5 away from the metal tube 4 is larger than that of the other end. Heat conduction fins 6 are fixedly connected to the plurality of metal blocks 3, and a heat collecting plate 7 is fixedly connected to the plurality of heat conduction fins 6. The heat collecting plate 7 is in close contact with the glass plate 2. Two V-shaped tubes 8 are symmetrically fixedly connected between the two metal tubes 4. An air duct 9 is fixedly communicated with the V-shaped tube 8. One end of the air duct 9 away from the V-shaped tube 8 is fixedly connected with a conical air collecting hopper 10. The inner diameter of the end of the conical air collecting hopper 10 away from the air duct 9 is larger than the inner diameter of the air duct 9.
[0033] In this embodiment, the provided external heat exchange mechanism can form a venturi effect, enabling rapid heat exchange between the external air flow and the building curtain wall, thereby improving the heat dissipation efficiency on the outside of the building curtain wall and effectively reducing the temperature inside the building curtain wall during use.
[0034] The internal heat exchange mechanism includes a heat exchange tube 11 fixedly connected to the frame 1. The heat exchange tube 11 is located in the cavities between two glass plates 2. Two mounting grooves are symmetrically formed in the vertical side walls of the frame 1. The two ends of the heat exchange tube 11 are respectively inserted into the two mounting grooves. A conduit 12 is fixedly sleeved in each of the two mounting grooves. One end of the conduit 12 extends out of the mounting groove. A water inlet pipe 28 and a water outlet pipe 13 are respectively and fixedly connected to the two conduits 12. The upper end of the water inlet pipe 28 is fixedly connected to a water injection hopper 14.
[0035] In the above embodiment, injecting water into the internal heat exchange mechanism can quickly cool the cavity between the two glass plates of the building curtain wall, thereby reducing the effect of heat transfer from the outside to the inside of the building curtain wall, and thus improving the heat insulation performance of the building curtain wall.
[0036] In the above two embodiments, during use, the multiple conical hoppers 5 provided can collect the outdoor air flow. When the air flow enters the metal tube 4, since the diameter of the metal tube 4 is smaller than that of the conical hopper 5 and the air flow cannot accumulate in large quantities at the entrance of the metal tube 4, the flow rate of the air flow in the metal tube 4 is accelerated, thus forming a venturi effect. The heat collecting plate 7 provided can absorb the heat on the glass plate 2. The heat collecting plate 7 transfers the heat to the multiple metal blocks 3 through the multiple heat conducting sheets 6. The multiple metal blocks 3 transfer the heat to the metal tube 4. The air flow passing through the metal tube 4 can take away part of the heat on the metal tube 4, thereby assisting in dissipating the heat of the metal tube 4, and indirectly assisting in dissipating the heat of the building curtain wall. Water is injected into the water inlet pipe 28 through the water injection hopper 14. The water flows into the heat exchange tube through the water inlet pipe 28 and the conduit 12. The heat exchange tube 11 can absorb the heat between the two glass plates 2. When the water flow passes through the heat exchange tube 11, it can take away the heat, thereby assisting in dissipating the heat of the cavity between the two glass plates 2. Through the mutual cooperation of the external heat exchange mechanism and the internal heat exchange mechanism, rapid heat exchange can be carried out inside and outside the building curtain wall, effectively improving the heat dissipation efficiency of the building curtain wall and improving the comfort of the personnel inside the building curtain wall.
[0037] A plurality of card holes 15 are formed in the vertical side walls of the frame 1. The plurality of card holes 15 are evenly distributed on the frame 1. A plurality of fixing holes 16 communicating with the card holes 15 are formed in the frame 1.
[0038] In this embodiment, the card holes 15 and the fixing holes 16 provided cooperate with each other, enabling the surface of the frame 1 to have depressions, thereby forming a blocking structure with the material of the wall during the installation of the frame 1, and thus improving the stability of the installation of the frame 1 and effectively improving the stability of the installation of the building curtain wall.
[0039] Two heat dissipation fins 17 are symmetrically and fixedly connected to each of the plurality of metal blocks 3. The specific material of the heat dissipation fins 17 is aluminum, and heat dissipation holes 18 are formed in the vertical side walls of the heat dissipation fins 17.
[0040] In the above embodiment, the plurality of heat dissipation fins 17 provided can increase the heat dissipation area. Under the same external conditions, the larger the heat dissipation area, the better the heat dissipation effect. Therefore, the heat dissipation efficiency of the external heat exchange mechanism can be improved, and the heat dissipation efficiency of the building curtain wall can be improved.
[0041] An external threaded pipe 19 is fixedly sleeved outside the water outlet pipe 13. A sewage collection bottle 20 is externally threaded and sleeved on the external threaded pipe 19. A drain pipe 21 is fixedly communicated with the bottom of the sewage collection bottle 20, and a sewage discharge valve 22 is fixedly connected to the lower end of the drain pipe 21.
[0042] In this embodiment, during use, the sewage collection bottle 20 is screwed onto the external threaded pipe 19. The sewage collection bottle 20 can collect the water flowing out of the heat exchange pipe 11. The collected water can be re-injected into the internal heat exchange mechanism for use, or can be used as other domestic water. Therefore, the water can be recycled, and it will not cause the water to flow around and affect the sanitary environment, improving the energy conservation and environmental protection performance of the building curtain wall.
[0043] Two sealing rubber strips 23 are symmetrically and fixedly connected to the inner wall of the frame body 1. The two glass plates 2 are located between the two sealing rubber strips 23, and the sealing rubber strips 23 are in close fit with the glass plates 2 and the frame body 1.
[0044] In the above embodiment, the provided sealing rubber strips 23 can seal the connection between the glass plates 2 and the frame body 1, thereby improving the overall sealing performance of the building curtain wall and preventing water vapor from entering between the two glass plates 2 and affecting the clarity of the building curtain wall.
[0045] An anti-slip sleeve 24 is fixedly sleeved outside the sewage collection bottle 20. The specific material of the anti-slip sleeve 24 is rubber, and a plurality of anti-slip grooves 25 are formed in the anti-slip sleeve 24. The plurality of anti-slip grooves 25 are evenly distributed on the anti-slip sleeve 24.
[0046] In this embodiment, the provided anti-slip sleeve 24 can improve the comfort of using the sewage collection bottle 20 and prevent the hand from slipping when holding the sewage collection bottle 20. The plurality of anti-slip grooves 25 provided can further improve the use effect of the anti-slip sleeve 24.
[0047] The materials of the heat collection plate 7, the heat conduction sheet 6, the metal block 3 and the metal pipe 4 are all aluminum.
[0048] In the above embodiment, aluminum has good thermal conductivity. The heat collecting plate 7, heat conducting sheet 6, metal block 3 and metal tube 4 made of aluminum can improve the thermal conductivity of the heat collecting plate 7, heat conducting sheet 6, metal block 3 and metal tube 4, thereby improving the efficiency of heat transfer between the heat collecting plate 7, heat conducting sheet 6, metal block 3 and metal tube 4, so that the heat on the glass plate 2 can be quickly discharged, thereby improving the heat dissipation efficiency of the external heat exchange mechanism.
[0049] The frame body 1 includes a U-shaped frame 26 , and a sealing plate 27 is fixedly connected to the upper side of the U-shaped frame 26 by a plurality of bolts.
[0050] In this embodiment, the U-shaped frame 26 and the sealing plate 27 cooperate with each other to improve the convenience of disassembly and assembly of the frame 1, thereby improving the convenience of installation of the glass plate 2. When installing the glass plate 2, it is only necessary to remove the sealing plate 27, and then install the glass plate 2 into the U-shaped frame 26, and finally re-fix the sealing plate 27 on the U-shaped frame 26. The operation is simple and convenient, which effectively improves the convenience of assembly of the building curtain wall.
[0051] A construction method for a building curtain wall based on a heat exchange structure comprises the following steps: installing two glass plates 2 in a U-shaped frame 26, installing an internal heat exchange mechanism between the two glass plates 2, assembling the U-shaped frame 26 and a sealing plate 27 together to form a frame body 1, fixing a plurality of metal blocks 3 on the frame body 1, making a heat collecting plate 7 on the metal block 3 fit tightly with the glass plate 2, completing the installation of an external heat exchange mechanism, completing the assembly of the building curtain wall, and the arranged internal heat exchange mechanism and external heat exchange mechanism cooperate with each other to realize rapid heat exchange of the building curtain wall, thereby improving the heat dissipation efficiency of the building curtain wall.
[0052] In the above embodiment, the provided clamping hole 15 and the fixing hole 16 cooperate with each other, so that a depression can be formed on the surface of the frame 1, so that a blocking structure can be formed between the frame 1 and the material of the wall when the frame 1 is installed, thereby improving the stability of the installation of the frame 1 and effectively improving the stability of the installation of the building curtain wall; by cooperating with the provided external heat exchange mechanism and the internal heat exchange mechanism, the inside and outside of the building curtain wall can be quickly heat exchanged, effectively improving the heat dissipation efficiency of the building curtain wall and improving the comfort of people inside the building curtain wall.
[0053] During use, the multiple conical hoppers 5 provided can collect the outdoor air flow. When the air flow enters the metal pipe 4, since the diameter of the metal pipe 4 is smaller than that of the conical hopper 5 and the air flow cannot accumulate in large quantities at the inlet of the metal pipe 4, the flow rate of the air flow in the metal pipe 4 is accelerated, thus forming a venturi effect. The heat collecting plate 7 provided can absorb the heat on the glass plate 2. The heat collecting plate 7 transfers the heat to the multiple metal blocks 3 through multiple heat conducting sheets 6, and the multiple metal blocks 3 transfer the heat to the metal pipe 4. The air flow passing through the metal pipe 4 can take away part of the heat on the metal pipe 4, thereby assisting in dissipating the heat of the metal pipe 4 and indirectly assisting in dissipating the heat of the building curtain wall. Water is injected into the water inlet pipe 28 through the water injection hopper 14, and the water flows into the heat exchange pipe through the water inlet pipe 28 and the conduit 12. The heat exchange pipe 11 can absorb the heat between the two glass plates 2, and the water flow can take away the heat when passing through the heat exchange pipe 11, thereby assisting in dissipating the heat of the cavity between the two glass plates 2. Through the mutual cooperation of the external heat exchange mechanism and the internal heat exchange mechanism, rapid heat exchange can be carried out inside and outside the building curtain wall, effectively improving the heat dissipation efficiency of the building curtain wall and enhancing the comfort of the personnel inside the building curtain wall;
[0054] The provided clamping holes 15 and fixing holes 16 cooperate with each other, enabling the surface of the frame body 1 to have depressions, thereby forming a clamping structure with the wall material during the installation of the frame body 1, thus improving the stability of the installation of the frame body 1 and effectively enhancing the stability of the installation of the building curtain wall;
[0055] The multiple heat dissipation fins 17 provided can increase the heat dissipation area. Under the same external conditions, the larger the heat dissipation area, the better the heat dissipation effect, thus improving the heat dissipation efficiency of the external heat exchange mechanism and enhancing the heat dissipation efficiency of the building curtain wall;
[0056] During use, the sewage collection bottle 20 is screwed onto the external thread pipe 19. The sewage collection bottle 20 can collect the water flowing out of the heat exchange pipe 11. The collected water can be re-injected into the internal heat exchange mechanism for use or used as other domestic water, thereby enabling the recycling of water and preventing the water from flowing around and affecting the sanitary environment, enhancing the energy conservation and environmental protection performance of the building curtain wall;
[0057] The provided sealing strip 23 can seal the connection between the glass plate 2 and the frame body 1, thereby improving the overall sealing performance of the building curtain wall and preventing water vapor from entering between the two glass plates 2 and affecting the clarity of the building curtain wall;
[0058] The provided anti-slip sleeve 24 can improve the comfort of using the sewage collection bottle 20 and prevent hand slippage when holding the sewage collection bottle 20. The multiple anti-slip grooves 25 provided can further improve the use effect of the anti-slip sleeve 24;
[0059] The provided heat collecting plate 7, heat conducting sheet 6, metal block 3 and metal tube 4 made of aluminum can improve the heat conduction performance of the heat collecting plate 7, heat conducting sheet 6, metal block 3 and metal tube 4, so that the heat on the glass plate 2 can be quickly exported, improving the heat dissipation efficiency of the external heat exchange mechanism;
[0060] The provided U-shaped frame 26 and the sealing plate 27 cooperate with each other to improve the convenience of disassembling and assembling the frame body 1, thereby improving the convenience of installing the glass plate 2. When installing the glass plate 2, only need to remove the sealing plate 27, then install the glass plate 2 into the U-shaped frame 26, and finally fix the sealing plate 27 on the U-shaped frame 26 again. The operation is simple and convenient, effectively improving the convenience of assembling the building curtain wall;
[0061] The provided card holes 15 and fixing holes 16 cooperate with each other to make the surface of the frame body 1 have depressions, so that a blocking structure can be formed between the frame body 1 and the wall material during the installation of the frame body 1, thereby improving the installation stability of the frame body 1 and effectively improving the installation stability of the building curtain wall; Through the mutual cooperation of the provided external heat exchange mechanism and the internal heat exchange mechanism, rapid heat exchange can be carried out inside and outside the building curtain wall, effectively improving the heat dissipation efficiency of the building curtain wall and improving the comfort of the personnel inside the building curtain wall.
[0062] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "including", "comprising" or any other variant thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.
[0063] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A building curtain wall based on a heat exchange structure, comprising a frame (1), characterized in that: Two glass plates (2) are symmetrically embedded in the frame (1), a cavity is provided between the two glass plates (2), an external heat exchange mechanism is fixedly connected to the side wall on the front side of the frame (1), and an internal heat exchange mechanism is fixedly connected to the frame (1); The external heat exchange mechanism comprises two heat-conducting components fixedly connected to the front side wall of the frame (1), the heat-conducting components comprising a plurality of metal blocks (3) fixedly connected to the frame (1), the plurality of metal blocks (3) being evenly arranged, the plurality of metal blocks (3) being provided with through holes, and the same metal tube (4) being fixedly sleeved in the plurality of through holes, the two ends of the metal tube (4) being fixedly connected to a conical bucket (5), the diameter of the conical bucket (5) being farther away from the metal tube (4) being larger than the diameter of the other end, and the plurality of metal blocks (3) are all fixedly connected with heat conducting sheets (6), a plurality of the heat conducting sheets (6) are fixedly connected with the same heat collecting plate (7), the heat collecting plate (7) is tightly fitted with the glass plate (2), two V-shaped tubes (8) are symmetrically fixedly connected between the two metal tubes (4), an air duct (9) is fixedly connected to the V-shaped tube (8), an end of the air duct (9) away from the V-shaped tube (8) is fixedly connected with a conical air collecting scoop (10), and the inner diameter of the end of the conical air collecting scoop (10) away from the air duct (9) is larger than the inner diameter of the air duct (9); The internal heat exchange mechanism comprises a heat exchange tube (11) fixedly connected to the frame (1), the heat exchange tube (11) being located in the cavity of the two glass plates (2), the vertical side wall of the frame (1) being symmetrically provided with two mounting grooves, the two ends of the heat exchange tube (11) being respectively inserted into the two mounting grooves, the two mounting grooves being both fixedly sleeved with a conduit (12), one end of the conduit (12) extending out of the mounting groove, the two conduits (12) being respectively fixedly connected with a water inlet pipe (28) and a water outlet pipe (13), the upper end of the water inlet pipe (28) being fixedly connected with a water injection bucket (14).
2. The building curtain wall based on the heat exchange structure according to claim 1, characterized in that: A plurality of clamping holes (15) are provided on the vertical side wall of the frame body (1), and the plurality of clamping holes (15) are evenly distributed on the frame body (1). A plurality of fixing holes (16) connected to the clamping holes (15) are provided on the frame body (1).
3. The building curtain wall based on the heat exchange structure according to claim 1, characterized in that: Two heat dissipation fins (17) are symmetrically and fixedly connected to each of the plurality of metal blocks (3); the heat dissipation fins (17) are made of aluminum; and heat dissipation holes (18) are provided on vertical side walls of the heat dissipation fins (17).
4. The building curtain wall based on the heat exchange structure according to claim 1, characterized in that: An external threaded pipe (19) is fixedly sleeved outside the water outlet pipe (13), a sewage collecting bottle (20) is externally threadedly sleeved on the external threaded pipe (19), a drainage pipe (21) is fixedly connected to the bottom of the sewage collecting bottle (20), and a sewage discharge valve (22) is fixedly connected to the lower end of the drainage pipe (21).
5. The building curtain wall based on the heat exchange structure according to claim 1, characterized in that: Two sealing strips (23) are symmetrically fixedly connected to the inner wall of the frame (1); the two glass plates (2) are located between the two sealing strips (23); and the sealing strips (23) are tightly fitted to the glass plates (2) and the frame (1).
6. The building curtain wall based on the heat exchange structure according to claim 4, characterized in that: The outer fixed sleeve of the sewage collecting bottle (20) is provided with an anti-slip sleeve (24), the specific material of the anti-slip sleeve (24) is rubber, and the anti-slip sleeve (24) is provided with a plurality of anti-slip grooves (25), and the plurality of anti-slip grooves (25) are evenly distributed on the anti-slip sleeve (24).
7. The building curtain wall based on the heat exchange structure according to claim 1, characterized in that: The heat collecting plate (7), the heat conducting plate (6), the metal block (3) and the metal tube (4) are all made of aluminum.
8. The building curtain wall based on the heat exchange structure according to claim 5, characterized in that: The frame body (1) comprises a U-shaped frame (26), and a sealing plate (27) is fixedly connected to the upper side of the U-shaped frame (26) via a plurality of bolts.
Citation Information
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