CN2811429Y - Heat collection hollow glass for glass curtain wall and lighting roof - Google Patents

Heat collection hollow glass for glass curtain wall and lighting roof Download PDF

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Publication number
CN2811429Y
CN2811429Y CN 200520013533 CN200520013533U CN2811429Y CN 2811429 Y CN2811429 Y CN 2811429Y CN 200520013533 CN200520013533 CN 200520013533 CN 200520013533 U CN200520013533 U CN 200520013533U CN 2811429 Y CN2811429 Y CN 2811429Y
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China
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glass
heat
curtain wall
lighting roof
collecting type
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Expired - Fee Related
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CN 200520013533
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Chinese (zh)
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赖其淡
沈广文
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Individual
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Individual
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Abstract

The utility model discloses a kind of heat collecting type hollow glass that is used for curtain wall and lighting roof, it includes inside and outside two tempered glass, aluminium frame, heat collector, circulating water pipe and silicon cave structure glue, isolation layer.When hollow layer is vacuum structure, can in hollow layer, establish inner support.The heat collecting type hollow glass that the utility model provides can directly use on various curtain walls and lighting roof, having does not have influence to original structure, easy construction, reliable in quality, cheap, wide adaptability, later maintenance be simple, with advantage such as elevation of building harmony.

Description

The heat collecting type hollow glass that is used for curtain wall and lighting roof
Technical field
The utility model relates to the heat collecting type hollow glass that is used for curtain wall or lighting roof that solar energy is converted to heat energy.
Background technology
Present domestic solar energy utilization technique maturation.But the regular solar heat utilization technology is because reasons in structure is difficult to adopt with building perfect adaptation, especially exterior wall the highrise building of curtain wall, and solar heat is difficult to be applied.Solar thermal utilization regular solar geyser the most widely is difficult to be connected with the curtain wall main framing also because thickness is excessive with deadweight; And because reasons in structure even be applied, also produces heavy damage to elevation of building, so solar water heating system seldom is applied in highrise building on curtain wall.And to guarantee the normal use of highrise building hot water system, need to consume a large amount of energy.Along with the further raising requirement of country to building energy conservation, energy consumption problem has become one of factor that influences the curtain wall development.
The utility model content
The utility model purpose provides a kind ofly can be directly to be used and can convert solar energy to heat energy for various curtain walls or lighting roof, thereby the heat collecting type hollow glass of hot water is provided.
For achieving the above object, be achieved through the following technical solutions:
The heat collecting type hollow glass that is used for curtain wall and lighting roof, hollow glass includes inside and outside two tempered glass and is positioned at two aluminium frames between tempered glass, it is characterized in that: be provided with heat collector, circulating water pipe, isolation layer in the hollow layer that connects into by butyl rubber and silicon cave structure glue between aluminium frame and tempered glass.
Described hollow layer can be the vacuum hollow layer, and is provided with inner support.
Described heat collector is finned gravity assisted heat pipe, and the heat pipe condensation end is arranged in the circulating water pipe of hollow layer.
Described heat collector is that finned sinuous coil and being in the hollow layer directly uses as circulating water pipe.
When being used in concealed frame glass curtain wall or latent frame lighting roof, it is little that described inside and outside two tempered glass are of a size of big, the interior sheet glass of outer sheet glass.
When curtain wall that is used in half latent frame and bright frame or lighting roof, described inside and outside two tempered glass can be equidimension.
Adopt the heat collecting type hollow glass that is used for curtain wall or lighting roof of said structure, the heat collector that can make solar energy convert heat energy to is arranged in the hollow glass, and can adopt vacuum structure, strengthen Heat-collecting effect, reduce the convection current of air layer in the cavity and the thermal loss that conduction brings, and can directly on various simple glass curtain walls and lighting roof, use, having does not have influence to original structure, characteristics such as easy construction.
Description of drawings
Fig. 1 is a structural representation of the present utility model;
Fig. 2 is the A-A direction sectional view of Fig. 1;
Fig. 3 is the B-B direction sectional view of Fig. 1;
Fig. 4 is the structural representation of another embodiment of the present utility model;
Fig. 5 is the C-C direction sectional view of Fig. 4;
Fig. 6 is the D-D direction sectional view of Fig. 4.
The specific embodiment
Below in conjunction with accompanying drawing the utility model is further described:
Originally be used for the different micro heat pipe heat collecting type hollow glass and the common coiled pipe heat collecting type hollow glasss of being divided into of the heat collecting type hollow glass of curtain wall and lighting roof according to hollow layer thermal-arrest mode.
Fig. 1-3 is the structure chart and the sectional drawing of micro heat pipe heat collecting type hollow glass.1 is silicon cave structure glue among the figure, and 2 is the aluminium frame, and 3 is isolation layer, and 4 is miniature gravity type heat pipe, 5 is inner support, and 6 is macromolecule modified rubber seal piece, and 7 is molecular sieve, and 8 is butyl rubber, 9 is silicon cave structure glue, and 10 is interior sheet tempered glass, and 11 is outer plate tempered glass, and 12 is circulating water pipe.
Fig. 4-6 is the structure chart and the sectional drawing of coiled pipe heat collecting type hollow glass.1 is silicon cave structure glue among the figure, and 2 is the aluminium frame, and 3 is isolation layer, and 5 is inner support, and 6 is macromolecule modified rubber seal piece, and 7 is molecular sieve, and 8 is butyl rubber, and 9 is silicon cave structure glue, and 10 is interior sheet tempered glass, and 11 is outer plate tempered glass, and 12 is circulating water pipe.
As shown in Figure 1, 2, 3, micro heat pipe heat collecting type hollow glass is made up of outer plate tempered glass 11, finned micro heat pipe 4, circulating water pipe 12, aluminium frame 2, heat-barrier material 3, macromolecule modified rubber seal piece 6 and interior sheet tempered glass 10; Inside and outside tempered glass 10,11 and be positioned at two aluminium frames 2 between tempered glass and connect into hollow layer by butyl rubber 8 and silicon cave structure glue 1 is provided with heat collector, circulating water pipe 12, isolation layer 3 in the hollow layer.Above-mentioned hollow layer can be the vacuum hollow layer, when it is the vacuum hollow layer, adds inner support 5 in hollow layer.Above-mentioned heat collector is finned gravity assisted heat pipe 4, and the heat pipe condensation end is arranged in circulating water pipe 12, and circulating water pipe 12 stretches out outside the hollow layer, and the sealing of itself and hollow layer realizes by macromolecule modified rubber seal piece 6.In a heat collecting type hollow glass plate, can require to determine heat pipe quantity according to plate size and other.The heat collecting type hollow glass is when being used in concealed frame glass curtain wall or latent frame lighting roof, and it is little that described inside and outside two tempered glass are of a size of big, the interior sheet glass of outer sheet glass 11 10; When curtain wall that is used in half latent frame and bright frame or lighting roof, described inside and outside two tempered glass 10,11 can be equidimension.
Micro heat pipe heat collecting type hollow glass has been used hot pipe technique and hollow glass technology simultaneously.Its main thermal-arrest and heat transfer element are finned gravity type heat pipe 4.Gravity type heat pipe 4 have start fast, heat transfer speed is fast, thermal losses is low, and is and anhydrous in the heat collecting element, even indivedual heat pipe is impaired, also can not have influence on the operate as normal of whole unit.
The operating principle of heat pipe 4 is to utilize the phase transformation of medium to transmit heat.After the medium in the heat pipe 4 receives the heat that is transmitted by fin and heat pipe itself, be gas phase and rise by liquid phase transition, after the top is delivered to heat by fin water in the copper pipe, change liquid phase into by gas phase again, rely on self gravitation effect dropping to heat pipe bottom, also promptly finish a thermal energy transfer process, and the solar heat that will absorb of circulating according to this converts heat energy to and is delivered to water in the circulating water pipe.
Be depicted as Fig. 4,5,6, common coiled pipe heat collecting type hollow glass is made up of outer plate tempered glass 11, finned snakelike copper pipe 12, aluminium frame 2, heat-barrier material 3, macromolecule modified rubber seal piece 6 and interior sheet glass 10; Inside and outside tempered glass 10,11 and be positioned at two aluminium frames 2 between tempered glass and connect into hollow layer by butyl rubber 8 and silicon cave structure glue 1 is provided with heat collector and circulating water pipe 12, isolation layer 3 in the hollow layer.Above-mentioned hollow layer can be the vacuum hollow layer, when it is the vacuum hollow layer, adds inner support 5 in hollow layer.Above-mentioned heat collector can be finned sinuous coil 12 and is in the cavity directly and uses as circulating water pipe, and circulating water pipe stretches out outside the hollow layer, its with the sealing of hollow layer by macromolecule modified rubber seal piece 6 realizations.Hollow glass is when being used in concealed frame glass curtain wall or latent frame lighting roof structure, and it is little that described inside and outside two tempered glass are of a size of big, the interior sheet glass of outer sheet glass 11 10; When curtain wall that is used in half latent frame and bright frame or lighting roof, described inside and outside two tempered glass 10,11 can be equidimension.
The main thermal-arrest of common coiled pipe heat collecting type hollow glass and heat transfer element are the finned copper pipe 12 that uses as circulating water pipe simultaneously, and copper pipe 12 and fin outside are coated with the coating with easy absorption solar energy.When the water in the copper pipe 12 receive that fin and copper pipe 12 itself transmit heat after proportion reduce, in pipe, rise and in the process that rises, constantly receive the heat that copper pipe 12 transmits, proportion constantly descends, and forms rising power, and water is circulated to water storage tank and formation by delivery port.
For asking better collecting efficiency, the heat collecting type hollow glass can adopt vacuum structure, be about to inside and outside two tempered glass and be positioned at two aluminium frame, butyl rubber and hollow layers of forming of silicon cave structure glue between tempered glass be evacuated, strengthen Heat-collecting effect, reduce the convection current of air layer in the cavity and the thermal loss that conduction brings, promptly can form the vacuum type hollow glass, be also referred to as vacuum glass.Because vacuum glass has the cross-country traveling ability to solar radiation, it is good to adopt thermal effect; When intensity of solar radiation was hanged down with night, vacuum glass had fabulous iris action to infrared radiation, so heat waste is few, even be in the interior water of cold district circulation pipe also because the protection of vacuum glass can be not freezing; And because inside and outside two sheet glass have all adopted tempered glass, have higher intensity, and parallel with elevation of building, need not to worry external force effects such as hail (when being used for lighting roof, can determine) by calculating.So the heat collecting type hollow glass has utmost point range of application widely.
The specific embodiment of the present utility model is as follows:
After interior sheet tempered glass 10 clean dry, be coated with butyl rubber 8 at glass and aluminium frame (can in advance installs molecular sieve 7) bonding part, after on the sheet glass 10 in advance the aluminum strip 2 finished of assembly unit has been fixed on, fixing heat shield 3 (heat shield is left a blank in the relevant position in order to bonding inner support 5 and interior sheet glass 10 according to the inner support size).(as being the micro heat pipe formula, then heat pipe 4 should weld in advance with circulating water pipe 12 with heat collector 12.Macromolecule modified rubber seal piece 6 is connected in advance with circulating water pipe 12) behind the permanent position, expose the heat shield place at interior sheet glass and coat with silicon cave structure glue 9, inner support 5 is fixed on the structure glue.The inner support upper surface is coated with silicon cave structure glue 9, and aluminium frame 2 coats butyl rubber 8 all around, and outer plate tempered glass 11 is got togather.Shelve treat silicon cave structure glue 9 and butyl rubber 8 solidify after extract air in the hollow layer out by macromolecule modified rubber seal piece 6 back hole at block rubber place sealed with glue after, between two sheet glass around the space be coated with according to designing requirement and beat silicon cave structure glue 1 and shelve and treat that silicon cave structure glue solidifies.So far promptly finish the assembly unit of a vacuum heat-collecting formula hollow glass, as be antivacuum heat collecting type hollow glass, cancellation inner support 5 related contents in the above embodiment.
Before above assembly unit, should adopt different inside and outside sheet glass sizes with the form of structure of lighting roof according to curtain wall.When curtain wall and lighting roof during for latent mount structure, should adopt the little structure of outer sheet glass 11 imperial palace sheet glass 10, whole heat collecting type hollow glass uses the silicon cave structure glue outer plate tempered glass that bonds also to be connected with main framing by secondary frame with secondary frame.When being bright frame or partly latent mount structure, the available interior unidimensional structure of outer plate.The width of the silicon cave structure glue that whole heat collecting type hollow glass is connected with secondary frame and thickness should be determined by calculating.
In engineering, can be according to Construction unit's requirement, as required with each heat collecting type hollow glass as requested in the cavity of the crossbeam of curtain wall (buckle inboard) connect, and the outlet pipe that the heat collecting type hollow glass is last and the water inlet pipe circulating water pipe by pre-buried and band insulation layer be located at indoor water storage tank and be connected, can form a solar water heating system that uses at highrise building, direct hot-water supply also can be used as the auxiliary heating system of other hot water system.Because all connections are all in the cavity of crossbeam, from the indoor pipe of can't see, so visual effect is identical with common curtain wall.

Claims (6)

1, the heat collecting type hollow glass that is used for curtain wall and lighting roof, hollow glass includes inside and outside two tempered glass and is positioned at two aluminium frames between tempered glass, it is characterized in that: be provided with heat collector, circulating water pipe, isolation layer in the hollow layer that connects into by butyl rubber and silicon cave structure glue between aluminium frame and tempered glass.
2, the heat collecting type hollow glass that is used for curtain wall and lighting roof according to claim 1, it is characterized in that: described hollow layer can be the vacuum hollow layer, and is provided with inner support.
3, the heat collecting type hollow glass that is used for curtain wall and lighting roof according to claim 1, it is characterized in that: described heat collector is finned gravity assisted heat pipe, and the heat pipe condensation end is arranged in the circulating water pipe of hollow layer.
4, the heat collecting type hollow glass that is used for curtain wall and lighting roof according to claim 1 is characterized in that: described heat collector is that finned sinuous coil and being in the hollow layer directly uses as circulating water pipe.
5, the heat collecting type hollow glass that is used for curtain wall and lighting roof according to claim 1, it is characterized in that: when being used in concealed frame glass curtain wall or latent frame daylighting aspect, it is little that described inside and outside two tempered glass are of a size of big, the interior sheet glass of outer sheet glass.
6, heat collecting type hollow glass according to claim 1 is characterized in that: when curtain wall that is used in half latent frame and bright frame or lighting roof, described inside and outside two tempered glass can be equidimension.
CN 200520013533 2005-07-26 2005-07-26 Heat collection hollow glass for glass curtain wall and lighting roof Expired - Fee Related CN2811429Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 200520013533 CN2811429Y (en) 2005-07-26 2005-07-26 Heat collection hollow glass for glass curtain wall and lighting roof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 200520013533 CN2811429Y (en) 2005-07-26 2005-07-26 Heat collection hollow glass for glass curtain wall and lighting roof

Publications (1)

Publication Number Publication Date
CN2811429Y true CN2811429Y (en) 2006-08-30

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102080431A (en) * 2010-12-15 2011-06-01 深圳市创益科技发展有限公司 Photovoltaic photo-thermal combined hollow glass
CN104120817A (en) * 2014-07-30 2014-10-29 徐庆宏 Modularized solar photovoltaic roof

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102080431A (en) * 2010-12-15 2011-06-01 深圳市创益科技发展有限公司 Photovoltaic photo-thermal combined hollow glass
CN102080431B (en) * 2010-12-15 2012-02-15 深圳市创益科技发展有限公司 Photovoltaic photo-thermal combined hollow glass
CN104120817A (en) * 2014-07-30 2014-10-29 徐庆宏 Modularized solar photovoltaic roof

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