CN106284772A - Intelligent constant-temperature ecological curtain wall system and temperature control method - Google Patents

Intelligent constant-temperature ecological curtain wall system and temperature control method Download PDF

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Publication number
CN106284772A
CN106284772A CN201610648475.0A CN201610648475A CN106284772A CN 106284772 A CN106284772 A CN 106284772A CN 201610648475 A CN201610648475 A CN 201610648475A CN 106284772 A CN106284772 A CN 106284772A
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China
Prior art keywords
temperature
hollow layer
curtain wall
glass curtain
intelligent constant
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CN201610648475.0A
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Chinese (zh)
Inventor
冯华国
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King Facade Decoration Engineering Co Ltd
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King Facade Decoration Engineering Co Ltd
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Application filed by King Facade Decoration Engineering Co Ltd filed Critical King Facade Decoration Engineering Co Ltd
Priority to CN201610648475.0A priority Critical patent/CN106284772A/en
Publication of CN106284772A publication Critical patent/CN106284772A/en
Priority to PCT/CN2017/096087 priority patent/WO2018028521A1/en
Pending legal-status Critical Current

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Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B2/00Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
    • E04B2/88Curtain walls
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B1/00Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
    • E04B1/62Insulation or other protection; Elements or use of specified material therefor
    • E04B1/74Heat, sound or noise insulation, absorption, or reflection; Other building methods affording favourable thermal or acoustical conditions, e.g. accumulating of heat within walls
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B2/00Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
    • E04B2/88Curtain walls
    • E04B2/96Curtain walls comprising panels attached to the structure through mullions or transoms
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/30Control or safety arrangements for purposes related to the operation of the system, e.g. for safety or monitoring
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/62Control or safety arrangements characterised by the type of control or by internal processing, e.g. using fuzzy logic, adaptive control or estimation of values
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F2110/00Control inputs relating to air properties
    • F24F2110/10Temperature
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F5/00Air-conditioning systems or apparatus not covered by F24F1/00 or F24F3/00, e.g. using solar heat or combined with household units such as an oven or water heater
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F5/00Air-conditioning systems or apparatus not covered by F24F1/00 or F24F3/00, e.g. using solar heat or combined with household units such as an oven or water heater
    • F24F5/0075Systems using thermal walls, e.g. double window
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/62Control or safety arrangements characterised by the type of control or by internal processing, e.g. using fuzzy logic, adaptive control or estimation of values
    • F24F11/63Electronic processing
    • F24F11/64Electronic processing using pre-stored data
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/62Control or safety arrangements characterised by the type of control or by internal processing, e.g. using fuzzy logic, adaptive control or estimation of values
    • F24F11/63Electronic processing
    • F24F11/65Electronic processing for selecting an operating mode

Abstract

A kind of intelligent constant-temperature ecological curtain wall system and temperature control method, it is characterized in that, including inner glass curtain wall, outside glass curtain wall, and temperature conditioning unit, independent hollow layer is formed between inner glass curtain wall and outside glass curtain wall, temperature conditioning unit is connected in hollow layer, and intelligent selection mode of operation realizes intelligent temperature control, allows hollow layer temperature maintain a steady state value as far as possible while reducing power consumption.

Description

Intelligent constant-temperature ecological curtain wall system and temperature control method
Technical field
The present invention relates to curtain wall system, particularly to a kind of intelligent constant-temperature ecological curtain wall system and temperature control method.
Background technology
Along with growth in the living standard, the comfortableness of office space is required also to improve constantly by people.How to relax satisfied On the basis of adaptive, reduce the operating cost of air conditioning system as far as possible, always annoying the Tough questions of building trade.Investigation is aobvious Show: the low-temperature receiver of public place provides and centralized air-conditioning oepration at full load is still widely used, cause a large amount of wastes of the energy, Er Qieyi As be from air conditioning air exhaust mouth more close to, temperature is the lowest, makes people uncomfortable, easily makes people produce air conditioning disease.
Although it addition, having started to utilize respiratory type ventilating curtain wall to substitute traditional windows as building enclosure, also on market Really can take away a certain amount of solar radiant heat by the passive heat radiation mode of gravity-flow ventilation, but ventilation effect by environment, build Build the restriction of size factor, actual take away thermal Finite.
Chinese Patent Application No. is 201410748402.X, discloses the Combined temperature control curtain wall of a kind of triplex glass structure And temperature control method, inner glass curtain wall, the top and bottom of outside glass curtain wall in this invention are respectively arranged with electric-powered shutter Air grille assembly;Independent inner side interlayer heat exchanger channels is formed between inner glass curtain wall and middle insulating course glass curtain wall; Independent outside interlayer heat exchanger channels is formed between outside glass curtain wall and middle insulating course glass curtain wall;At middle insulating course glass Semiconductor thermoelectric temperature conditioning unit it is evenly equipped with on glass curtain wall;Environmental monitoring system is made up of multiple temperature sensors, for single-chip microcomputer control Temperature read module in molding block provides the real time temperature monitoring data of target environment;Semiconductor thermoelectric temperature conditioning unit is controlled by Single chip control module.
This patent discloses this kind of curtain wall operating mode in summer, when ambient temperature is higher than 28 degrees Celsius, outside glass Air door is opened, and inner glass air door is closed, and opens refrigeration mode, firstly, since glass is common single-glass outside it Therefore inside the interlayer ventilating duct of outside, heat radiation is relatively strong, insulating course temperature will be made to raise and then inside impact, interlayer ventilates The temperature in road so that the temperature of inner side interlayer ventilating duct raises, increases the refrigeration power consumption of quasiconductor;Secondly, when starting the mould that freezes The when of formula, the temperature of intraformational bed is less than outdoor temperature, and the irradiation of extraneous sunlight can make outside sandwich temperature raise, especially in Between glass be that intraformational bed cold air is more prone to be affected by outdoor temperature in the case of single-glass, cause the increasing of refrigerating function Add.
Summary of the invention
The purpose of the present invention one is to provide a kind of intelligent constant-temperature ecological curtain wall system, and it has the most energy-conservation advantage.
The above-mentioned technical purpose of the present invention has the technical scheme that
A kind of intelligent constant-temperature ecological curtain wall system, including inner glass curtain wall, the outside glass curtain wall of split type setting, described Inner glass curtain wall and outside glass curtain wall being arranged on curtain wall construction independently, described inner glass curtain wall and outer Forming hollow layer between the glass curtain wall of side, described inner glass curtain wall is single-glass, and outside glass curtain wall is double glazing, Described intelligent constant-temperature ecological curtain wall system also includes that single-chip microcomputer, described single-chip microcomputer are coupled with:
Hollow layer temperature sensor, is arranged at hollow layer, is used for detecting hollow layer temperature output temperature signal Tm;
Temperature conditioning unit, is arranged on the curtain wall installing structure in hollow layer, by the control realization refrigeration mode of single-chip microcomputer or heat The scheme of pattern makes hollow layer temperature maintain preset temperature signals Tx, described scheme bag with the temperature realizing regulation hollow layer Include when hollow layer temperature sensor detects the temperature of hollow layer, and export hollow layer temperature signal Tm, preset in single-chip microcomputer Temperature Tx compares, and when hollow layer temperature Tm is less than preset temperature Tx, Single-chip Controlling temperature conditioning unit carries out heating until hollow Layer temperature Tm, equal to preset temperature Tx, stops heating work, only carries out air-flow exchange;
When hollow layer temperature sensor detects the temperature of hollow layer, and export hollow layer temperature signal Tm, pre-with in single-chip microcomputer If temperature Tx compares, when hollow layer temperature Tm higher than preset temperature Tx time, Single-chip Controlling temperature conditioning unit carry out freezing until in Dead level temperature Tm is equal to preset temperature Tx, stops heating work;Iterative cycles is to guarantee that the temperature of hollow layer is at preset temperature Tx.
By using technique scheme, this curtain wall system is decorated around building, is equivalent to building Add one layer of constant temperature heat-insulation layer, can effectively prevent scattering and disappearing of indoor heat, owing to outside glass curtain wall is double glazing, Can effectively reduce the radiation of the sun when of summer, the outer heat of effective air lock enters in hollow layer, and then reduces hollow The refrigeration power consumption of layer, simultaneously inner glass be the setting of single-glass also make the heat in hollow layer toward indoor transmission, and Refrigeration power consumption will not be reduced further toward outdoor transmission;Winter makes outdoor temperature is relatively low when, due to the effect of double glazing Can also effectively have more preferable heat insulation effect, form greenhouse effect in hollow layer, the power consumption heated can be reduced;Constant temperature is had to protect The existence of temperature layer can intercept the outdoor temperature impact on indoor temperature so that indoor temperature can be maintained at a certain temperature for a long time, Need not start frequently room conditioning, to reach energy-conservation effect.
As preferably, described hollow layer temperature sensor is multiple and is respectively arranged at inner glass curtain wall and outer On the glass curtain wall of side.
By using technique scheme, so that the data of hollow layer temperature sensor detection are the most accurate.
As preferably, also include the mounting structure for being installed on building by curtain wall system, described installation knot Installing frame between fixing seat that structure includes being fixed on building, connection adjacent inboard glass curtain wall and connect installing frame with The first corner brace between fixing seat.
By use technique scheme, can be more convenient this curtain wall system is arranged on building.
As preferably, described installing frame includes the crossbeam for being connected, press strip for clamping glass with building And it is connected to the housing outside press strip.
By using technique scheme, this mode is so that simpler convenience installed by curtain wall.
As preferably, being connected with crossbeam by bolt in the middle part of described press strip, the end face of described press strip both sides concaves Fall into and form draw-in groove, the inwardly projecting formation of inner face of described housing both sides and the fixture block of card slot fit.
By use technique scheme, during press strip is tightened by bolt, may make in the middle part of over-stressed and Cause two ends to tilt the sealing property reducing hollow layer, increase the lost raising power consumption of hollow layer heat;And when press strip two ends card Housing can in the middle part of press strip over-stressed time effectively prevent press strip two ends from tilting to improve sealing property, thus reduce hollow Scattering and disappearing of layer heat.
As preferably, this intelligent constant-temperature ecological curtain wall system also includes that fire prevention envelope repaiies unit, described fire prevention Feng Xiudan The fire prevention rock wool that unit includes the PLASTIC LAMINATED being sealedly connected between floor and crossbeam, is fixed on PLASTIC LAMINATED.
By using technique scheme, this building can make use of stack effect to reduce hollow layer summer when Temperature, but once breaking out of fire owing to there being the existence of stack effect to aggravate fire spreading exactly, pass through at curtain wall interlayer Fire prevention envelope is repaiied unit and can be intercepted flame and alter layer while reaching energy-saving effect to improve security performance.
As preferably, described inner glass curtain wall is provided with insulation construction, described insulation knot near indoor side Structure includes thermal insulation aluminium, heat preservation rock and for locking member heat preservation rock being fixed on thermal insulation aluminium, described insulation Aluminium sheet is affixed with crossbeam by the first corner brace of L-type.
By using technique scheme, inner glass curtain wall arranges insulation construction and can improve hollow layer further Heat insulation effect, thermal insulation aluminium is connected the stability with reinforcement by the way of L-type the first corner brace with crossbeam, and by locking Heat preservation rock is pressed on thermal insulation aluminium and is possible to prevent thermal insulation aluminium surface to arch upward by part.
As preferably, described locking member include be fixedly connected on the fixed plate on thermal insulation aluminium surface, one end is fixed Through the locking bar of heat preservation rock formation hook portion and it is set in hook portion for clamping the locking of heat preservation rock in the fixed plate other end Plate.
By using technique scheme, heat preservation rock is fixed on thermal insulation aluminium more convenient by which.
As preferably, labyrinth seal between described crossbeam and PLASTIC LAMINATED.
By using technique scheme, when lower floor's breaking out of fire, temperature rising can make crossbeam expanded by heating outward Deformation, so that loosen the gap increase caused between the two between crossbeam and PLASTIC LAMINATED to affect sealing effectiveness, and uses fan Palace seal form, even if beam deformation when because have the existence of multiple sealing also can improve further crossbeam with Sealing between PLASTIC LAMINATED, improves fire protecting performance while improving heat-insulating property.
The purpose of the present invention two is to provide a kind of temperature control method, and it has the most energy-conservation advantage.
The above-mentioned technical purpose two of the present invention has the technical scheme that a kind of temperature control method, its fortune By above-mentioned intelligent constant-temperature ecological curtain wall system;
Step one, by the hollow layer temperature sensor being arranged on inner glass curtain wall, the temperature of detection hollow layer to list Temperature signal Tm in sheet machine feedback hollow layer;
Step 2, received this temperature signal Tm and preset temperature Tx by single-chip microcomputer and compare thus control temperature conditioning unit refrigeration Or heat and make hollow layer temperature maintain preset temperature Tx, wherein,
When hollow layer temperature sensor detects the temperature of hollow layer, and export hollow layer temperature signal Tm, pre-with in single-chip microcomputer If temperature Tx compares, when hollow layer temperature Tm less than preset temperature Tx time, Single-chip Controlling temperature conditioning unit carry out heating until in Dead level temperature Tm is equal to preset temperature Tx, stops heating work, only carries out air-flow exchange;
When hollow layer temperature sensor detects the temperature of hollow layer, and export hollow layer temperature signal Tm, pre-with in single-chip microcomputer If temperature Tx compares, when hollow layer temperature Tm higher than preset temperature Tx time, Single-chip Controlling temperature conditioning unit carry out freezing until in Dead level temperature Tm is equal to preset temperature Tx, stops heating work;Iterative cycles is to guarantee that the temperature of hollow layer is at preset temperature Tx.
In sum, the method have the advantages that this temperature sense intelligent constant-temperature ecological curtain wall, be wrapped in building The surrounding of thing, is equivalent to wrap one layer of heat preservation layer to building, can reduce the external environment impact on indoor temperature, Scattering and disappearing of indoor temperature can be effectively prevented so that even if indoor temperature can maintain a certain temperature for a long time, and not during winter Need regular startup room conditioning;The existence having heat-insulation layer summer when can intercept outdoor high temperature to indoor low temperature Impact so that indoor temperature can be maintained at a certain temperature for a long time, it is not necessary to starts room conditioning frequently, to reach energy-conservation Effect;When by Single-chip Controlling temperature conditioning unit so that hollow layer to reach constant temperature the most energy-conservation.This curtain wall system also improves Fire prevention envelope repaiies unit, also improves fire safety performance while improving energy-saving effect.
Accompanying drawing explanation
Fig. 1 is the structural representation of embodiment one;
Fig. 2 is the circuit controling drawing of embodiment;
Fig. 3 is for embodying the structural representation of column in embodiment one, two;
Fig. 4 is for embodying the annexation between crossbeam, PLASTIC LAMINATED in embodiment one, two;
Fig. 5 is A portion enlarged drawing in Fig. 4;
Fig. 6 is for embodying column, fixing seat and the structural representation of the first corner brace annexation in figure embodiment one, two;
Fig. 7 is the structural representation of embodiment two;
Fig. 8 is for embodying hollow layer arrangement of temperature sensor schematic diagram in embodiment two.
In figure, 1, inner glass curtain wall;11, vent;2, outside glass curtain wall;3, hollow layer;4, air-conditioning;52, in Dead level temperature sensor;52a, hollow layer temperature sensor;52b, hollow layer temperature sensor;52c, hollow layer temperature sensing Device;71, fixing seat;721, crossbeam;7211, main body;72111, the first projection;72112, block;7212, cover plate;72121、 Grab;72122, arcuate groove;722, press strip;7221, draw-in groove;723, housing;7231, fixture block;7232, the second projection;724, Two corner braces;7241, the first draw-in groove;73, the first corner brace;74, column;8, fire prevention envelope repaiies unit;81, PLASTIC LAMINATED;811, first is recessed Fall into;812, second is protruding;82, fire prevention rock wool;91, thermal insulation aluminium;92, heat preservation rock;931, locking bar;9311, hook portion;932, lock Tight plate;933, fixed plate;94, connecting plate;101, first is protruding;102, the second depression;103, stepped hole;104, ball;105、 Pressure ring;106, spring;107, body of wall.
Detailed description of the invention
Below in conjunction with accompanying drawing, the present invention is described in further detail.
Embodiment 1: a kind of intelligent constant-temperature ecological curtain wall system, including mechanical part and circuit part;Wherein Machinery Ministry Divide as it is shown in figure 1, include that inner glass curtain wall 1, outside glass curtain wall 2, mounting structure and fire prevention envelope repair unit 8.
Inner glass curtain wall 1 and outside glass curtain wall 2 are arranged on around building by mounting structure;Wherein, inner side For single-glass, outside glass curtain wall 2 is then double glazing, inner glass curtain wall 1 and outside glass curtain wall to glass curtain wall 1 Formed between 2, on a hollow layer 3 lateral keel in hollow layer 3 or longitudinal Os Draconis, temperature conditioning unit is set, at this In embodiment, temperature conditioning unit selects convertible frequency air-conditioner 4.Upper and lower curtain wall interlayer is repaiied unit 8 by fire prevention envelope and is intercepted, at inner glass curtain One hollow layer temperature sensor 52 is set on wall 1.
Shown in Figure 2, the circuit part of this curtain wall system, single-chip microcomputer model is that AT89C51 is during wherein input couples Dead level temperature sensor 52, temperature conditioning unit, wherein the model of hollow layer temperature sensor 52 is DS18B20, and temperature conditioning unit is for becoming Frequently air-conditioning 4.
In conjunction with Fig. 1 and Fig. 2, the energy-saving principle of the present embodiment is done following description, building is fitted up when, should Intelligent constant-temperature ecological curtain wall system decorating is in the surrounding of building, then by by the control realization refrigeration mode of single-chip microcomputer or system Heat pattern makes hollow layer 3 temperature maintain a certain temperature value with the temperature realizing regulation hollow layer 3, is equivalent to wrap to building Constant temperature heat-insulation layer is energy-conservation to realize;Time the most in the winter time, on the one hand in hollow layer 3, form greenhouse effect, can reduce heating Power consumption;On the other hand scattering and disappearing of indoor temperature can effectively be prevented due to the existence of heat-insulation layer so that even if indoor temperature can be grown Time maintains a certain temperature, without regular startup room conditioning 4.
Summer when, on the one hand there is the existence of constant temperature heat-insulation layer can intercept the outdoor high temperature shadow to indoor low temperature Ring so that indoor temperature can be maintained at a certain temperature for a long time, it is not necessary to start room conditioning 4 frequently, to reach energy-conservation effect Really;Open temperature conditioning unit and hollow layer 3 is realized refrigeration, therefore can reduce refrigeration power consumption further.Hollow layer 3 air is with indoor Air do not carry out air-flow exchange, and the volume of air of whole hollow layer 3 is whole building volume 1/10th, therefore By the thermostatic control of air a small amount of to hollow layer 3, realize the outdoor temperature impact on indoor temperature, the most energy-conservation.
What is more important is double glazing due to outside glass curtain wall 2, can effectively reduce the sun summer when Radiation, the outer heat of effective air lock enters in hollow layer 3, and then reduces the refrigeration power consumption of hollow layer 3, inner glass simultaneously For the setting of single-glass also make heat in hollow layer 3 toward indoor transmission, without reducing further toward outdoor transmission Refrigeration power consumption.
Illustrate,
Step one, by the hollow layer temperature sensor 52 being arranged on inner glass curtain wall 1, the temperature of detection hollow layer 3 is also Temperature signal Tm in singlechip feedbsck hollow layer 3;
Step 2, being received this temperature signal Tm and preset temperature Tx by single-chip microcomputer, in the present embodiment, preset temperature is Celsius 22 Degree, compares thus controls convertible frequency air-conditioner 4 and make hollow layer 3 temperature maintain preset temperature Tx, wherein,
When hollow layer temperature sensor 52 detects the temperature of hollow layer 33, and export hollow layer temperature signal Tm, with single-chip microcomputer Interior preset temperature Tx compares, and when hollow layer temperature Tm is less than preset temperature Tx, Single-chip Controlling temperature conditioning unit carries out heating directly To hollow layer temperature Tm equal to preset temperature Tx, stop heating work, only carry out air-flow exchange;
When hollow layer temperature sensor 52 detects the temperature of hollow layer 3, and export hollow layer temperature signal Tm, and in single-chip microcomputer Preset temperature Tx compares, when hollow layer temperature Tm higher than preset temperature Tx time, Single-chip Controlling temperature conditioning unit carry out freezing until Hollow layer temperature Tm is equal to preset temperature Tx, stops heating work;Iterative cycles is to guarantee that the temperature of hollow layer is at preset temperature Tx。
In conjunction with Fig. 1, Fig. 4 and Fig. 6, mounting structure being done following description, fixing seat 71 is embedded in building masonry wall 107, will Column 74 is arranged on fixing seat 71 by the first corner brace 73, then by the second corner brace 724, crossbeam 721 is arranged on column On 74.
By crossbeam 721 and the work of press strip 722 between neighbouring inner glass curtain wall 1 and outside glass curtain wall 2 Fixing with realizing;By column 74 and and press strip between inner glass curtain wall 1 and outside glass curtain wall 2 that left and right is adjacent The effect of 722 realizes fixing.
Seeing Fig. 4 and the concrete structure of crossbeam 721 does following description, crossbeam 721 includes main body 7211, main body 7211 Top is opened wide and is formed opening, and the opening's edge of opening goes out inwardly projecting formation block 72112, opening is covered with cover plate 7212, cover plate 7212 sides are provided with grab 72121, and opposite side is provided with arcuate groove 72122.
7211 liang of medial walls of main body are provided with the first projection 72111 along its length, and the second corner brace 724 is provided with convex with first First draw-in groove 7241 of block 72111 clamping.
Crossbeam 721 is divided into two parts, can first all columns 74 be all arranged on skin, the most again Crossbeam 721 is installed, first main body 7211 is pre-fixed on column 74 when installing crossbeam 721, then by opening part by the Two corner braces 724 are put in main body 7211 so that the second corner brace 724 is at the first projection 72111 and work of the first draw-in groove 7241 It is relatively fixed with lower vertical direction, then the second corner brace 724 is fixed on column 74, by the arc of cover plate 7212 by bolt Groove 72122 is put in one of them block 72112, then by grab 72121 and another block 72112 clamping.It is so designed that Avoid the need for another root crossbeam 721 ground of root post 74 to install, the installation effectiveness of curtain wall can be improved.
The middle part of main body 7211 is protruded and is formed contiguous block, and press strip 722 is fixed with contiguous block by bolt, wherein press strip 722 The end face of both sides caves inward and forms draw-in groove 7221, and is provided with a housing 723 on press strip 722, the inner of housing 723 both sides The fixture block 7231 coordinated with draw-in groove 7221 towards projecting inward formation.
During press strip 722 is tightened by bolt, the middle part that can make press strip 722 is over-stressed and causes two ends to tilt And when press strip 722 two ends be stuck in housing 723 can in the middle part of press strip 722 over-stressed time effectively prevent press strip 722 two ends from tilting To improve sealing property, thus reduce scattering and disappearing of hollow layer 3 heat.In addition in order to prevent further press strip 722 two ends tilt can To be provided with the second projection 7232 on housing 723, when housing 723 covers on press strip 722, the second projection 7232 and press strip 722 end abutment.
In order to strengthen the sealing property of hollow layer 3, it is equipped with on the end face of glass contact with press strip 722 in main body 7211 Sealing strip.
Shown in Figure 4, fire prevention envelope is repaiied unit 8 and does detailed description below;Fire prevention envelope is repaiied unit 8 and is included that spiral shell is passed through in side Tether and be connected on the PLASTIC LAMINATED 81 that opposite side on body of wall 107 is sealedly connected between floor and crossbeam 721, be fixed on PLASTIC LAMINATED 81 On fire prevention rock wool 82;The lower surface of PLASTIC LAMINATED 81 is provided with the first depression 811 by being stamped and formed out, and cover plate 7212 upper surface sets There is the first projection 101 coordinated with the first depression 811;The lower surface of PLASTIC LAMINATED 81 also forms the second projection 812, cover plate 7212 Upper surface is formed with the second depression 102 coordinated with second protruding 812;This kind of design is similar to PLASTIC LAMINATED 81 and crossbeam 721 Between use labyrinth seal, when a fire, heat can be passed to the inside of crossbeam 721, so that in crossbeam 721 Portion air heats expands thus that cover plate 7212 can be made to deform outward is outwardly, now will make the first projection 101 more Firmly being embedded in the first depression 811, same second projection 812 also can preferably be embedded in the second depression 102, to solve cover plate 7212 deform the sealing problem caused, thus improve the fire protecting performance of this curtain wall.
Shown in Figure 4, inner glass curtain wall 1 is provided with insulation construction near the side of body of wall 107, and insulation construction includes protecting Temperature aluminium sheet 91, it is connected on crossbeam 721 by the connecting plate 94 of L-type, fills insulation between thermal insulation aluminium 91 and body of wall 107 Rock wool 92, heat preservation rock 92 is fixed on thermal insulation aluminium 91 by locking member.
Wherein locking member specially include be fixedly connected on the fixed plate 933 on thermal insulation aluminium 91 surface, locking bar 931 with And the latch 932 of arc, one end of locking bar 931 is fixed on fixed plate 933 other end and is formed hook portion through heat preservation rock 92 9311。
In conjunction with Fig. 4 and Fig. 5, the fire protecting performance of this curtain wall system is described further the fire prevention in order to improve this curtain wall Performance, improves connecting the L-type connecting plate 94 bolt with crossbeam 721, sets the stepped hole running through whole bolt in the middle part of bolt 103, the path section of stepped hole 103 is near body of wall 107 side, and the big footpath section of stepped hole 103 is provided with female thread, in stepped hole 103 Being provided with a ball 104, the diameter of ball 104 is less than the diameter of big footpath section, stepped hole 103 big footpath section more than the diameter of path section A threaded pressure ring 105, is provided with a spring 106 between ball 104 and pressure ring 105, spring 106 in the raw or When person is slightly compressed state, stepped hole 103 can be blocked by ball 104.When a fire, the sky in crossbeam 721 can be made Gas expanded by heating, crossbeam 721 internal gas pressure raises, and ball 104 outwards can be ejected so that stepped hole 103 is opened, and this intermittent fever is empty Gas will flow in the direction along stepped hole 103, so that reduce the stress at cover plate 7212, makes cover plate 7212 not As for there being the biggest deflection, thus improve the sealing between PLASTIC LAMINATED 81 and crossbeam 721 further, improve fire protecting performance And heat-insulating property.
Embodiment two, see Fig. 7, shown in 8, a kind of intelligent constant-temperature ecological curtain wall system, the difference with embodiment one is: Hollow layer temperature sensor 52 is set to 3, wherein hollow layer temperature sensor 52a, to be arranged on inner glass curtain wall 1 close The top of floor, hollow layer temperature sensor 52b is arranged on the inner glass curtain wall 1 middle part near floor, outside 52c is arranged on The inner side of side glass curtain wall 2 is with the further accuracy improving detection data, thus improves energy-saving effect.
This specific embodiment is only explanation of the invention, and it is not limitation of the present invention, people in the art The present embodiment can be made after reading this specification by member as required does not has the amendment of creative contribution, but as long as at this All protected by Patent Law in the right of invention.

Claims (10)

1. an intelligent constant-temperature ecological curtain wall system, including the inner glass curtain wall (1) of split type setting, outside glass curtain wall ( 2), described inner glass curtain wall (1) and outside glass curtain wall (2) being arranged on curtain wall construction independently, described is interior Hollow layer (3) is formed between side glass curtain wall (1) and outside glass curtain wall (2), it is characterised in that: described inner glass Curtain wall (1) is single-glass, and outside glass curtain wall (2) is double glazing, and described intelligent constant-temperature ecological curtain wall system also includes Single-chip microcomputer, described single-chip microcomputer is coupled with:
Hollow layer temperature sensor (52), is arranged at hollow layer (3), is used for detecting hollow layer (3) temperature output temperature signal Tm;
Temperature conditioning unit, is arranged on the curtain wall installing structure in hollow layer (3), by control realization refrigeration mode or the system of single-chip microcomputer The scheme of heat pattern makes hollow layer (3) temperature maintain preset temperature signals Tx with the temperature realizing regulation hollow layer (3), described Scheme include when hollow layer temperature sensor (52) detects the temperature of hollow layer (3), and export hollow layer (3) temperature signal Tm, compares with preset temperature Tx in single-chip microcomputer, when hollow layer (3) temperature Tm is less than preset temperature Tx, and Single-chip Controlling temperature control Unit carries out heating until hollow layer (3) temperature Tm is equal to preset temperature Tx, stops heating work, only carries out air-flow exchange;
When hollow layer temperature sensor (52) detects the temperature of hollow layer (3), and export hollow layer (3) temperature signal Tm, with In single-chip microcomputer, preset temperature Tx compares, and when hollow layer (3) temperature Tm is higher than preset temperature Tx, Single-chip Controlling temperature conditioning unit enters Row refrigeration, until hollow layer (3) temperature Tm is equal to preset temperature Tx, stops heating work;Iterative cycles is to guarantee hollow layer (3) Temperature at preset temperature Tx.
A kind of intelligent constant-temperature ecological curtain wall system the most according to claim 1, is characterized in that: described hollow layer temperature passes Sensor (52) is multiple and is respectively arranged on inner glass curtain wall (1) and outside glass curtain wall (2).
A kind of intelligent constant-temperature ecological curtain wall system the most according to claim 1, is characterized in that: also include for by curtain wall system The mounting structure that system is installed on building, described mounting structure includes the fixing seat (71) being fixed on building, connects The first corner brace (73) between installing frame and connection installing frame and fixing seat (71) between adjacent inboard glass curtain wall (1).
A kind of intelligent constant-temperature ecological curtain wall system the most according to claim 3, is characterized in that: described installing frame includes using In the crossbeam (721) being connected with building, for clamping glass press strip (722) and be connected to press strip (722) outside outside Frame (723).
A kind of intelligent constant-temperature ecological curtain wall system the most according to claim 4, is characterized in that: in described press strip (722) Portion is connected with crossbeam (721) by bolt, and the end face of described press strip (722) both sides caves inward and forms draw-in groove (7221), described The fixture block (7231) that the inwardly projecting formation of inner face of housing (723) both sides coordinates with draw-in groove (7221).
A kind of intelligent constant-temperature ecological curtain wall system the most according to claim 3, is characterized in that: this intelligent constant-temperature ecological curtain wall System also includes that fire prevention envelope repaiies unit (8), and described fire prevention envelope is repaiied unit and included being sealedly connected between floor and crossbeam (721) PLASTIC LAMINATED (81), the fire prevention rock wool (82) that is fixed on PLASTIC LAMINATED (81).
A kind of intelligent constant-temperature ecological curtain wall system the most according to claim 3, is characterized in that: described inner glass curtain wall (1) be provided with insulation construction near indoor side, described insulation construction include thermal insulation aluminium (91), heat preservation rock (92) and For the locking member (93) heat preservation rock (92) being fixed on thermal insulation aluminium (91), described thermal insulation aluminium (91) passes through L-type Connecting plate (94) first corner brace (73) affixed with crossbeam (721).
A kind of intelligent constant-temperature ecological curtain wall system the most according to claim 7, is characterized in that: described locking member include with Be fixedly connected on the fixed plate (933) on thermal insulation aluminium (91) surface, fixed plate (933) other end is fixed on through insulation rock in one end Cotton (92) form the locking bar (931) of hook portion (9311) and are set in hook portion (9311) and are used for clamping the locking of heat preservation rock (92) Plate (932).
A kind of intelligent constant-temperature ecological curtain wall system the most according to claim 7, is characterized in that: described crossbeam (721) with Labyrinth seal between PLASTIC LAMINATED (81).
10. a temperature control method, it has used the intelligent constant-temperature ecological curtain wall system as described in claim 1 to 9 any one; It is characterized in that:
Step one, by the hollow layer temperature sensor (52) being arranged on inner glass curtain wall (1), detection hollow layer (3) Temperature and in singlechip feedbsck hollow layer (3) temperature signal Tm;
Step 2, received this temperature signal Tm and preset temperature Tx by single-chip microcomputer and compare thus control temperature conditioning unit refrigeration Or heat and make hollow layer (3) temperature maintain preset temperature Tx, wherein,
When hollow layer temperature sensor (52) detects the temperature of hollow layer (3), and export hollow layer (3) temperature signal Tm, with In single-chip microcomputer, preset temperature Tx compares, and when hollow layer (3) temperature Tm is less than preset temperature Tx, Single-chip Controlling temperature conditioning unit enters Row heats until hollow layer (3) temperature Tm is equal to preset temperature Tx, stops heating work, only carries out air-flow exchange;
When hollow layer temperature sensor (52) detects the temperature of hollow layer (3), and export hollow layer (3) temperature signal Tm, with In single-chip microcomputer, preset temperature Tx compares, and when hollow layer (3) temperature Tm is higher than preset temperature Tx, Single-chip Controlling temperature conditioning unit enters Row refrigeration, until hollow layer (3) temperature Tm is equal to preset temperature Tx, stops heating work;Iterative cycles is to guarantee hollow layer (3) Temperature at preset temperature Tx.
CN201610648475.0A 2016-08-09 2016-08-09 Intelligent constant-temperature ecological curtain wall system and temperature control method Pending CN106284772A (en)

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PCT/CN2017/096087 WO2018028521A1 (en) 2016-08-09 2017-08-04 Smart thermostatic ecological curtain wall system and temperature control method

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