CN211286110U - Air circulation type heat-insulation assembled house - Google Patents

Air circulation type heat-insulation assembled house Download PDF

Info

Publication number
CN211286110U
CN211286110U CN201821230062.1U CN201821230062U CN211286110U CN 211286110 U CN211286110 U CN 211286110U CN 201821230062 U CN201821230062 U CN 201821230062U CN 211286110 U CN211286110 U CN 211286110U
Authority
CN
China
Prior art keywords
air
roof
layer
keel
indoor
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN201821230062.1U
Other languages
Chinese (zh)
Inventor
秦长河
黑贵龙
周旭
晏飞
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Ningxia Zhengde Source Technology Development Co ltd
Original Assignee
Ningxia Zhengde Source Technology Development Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Ningxia Zhengde Source Technology Development Co ltd filed Critical Ningxia Zhengde Source Technology Development Co ltd
Priority to CN201821230062.1U priority Critical patent/CN211286110U/en
Application granted granted Critical
Publication of CN211286110U publication Critical patent/CN211286110U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Building Environments (AREA)

Abstract

The utility model discloses an air circulation formula heat preservation prefabricated house for solve the not good problem of effect of traditional building regulation room temperature among the prior art. The method comprises the following steps: the wall structure sequentially comprises an inner wall decorative plate, a first one-way breathable film, a polyurethane edge sealing rock wool plate, a second one-way breathable film, a keel layer and an outer wall decorative plate from inside to outside; the roof structure sequentially comprises an indoor suspended ceiling, a third one-way breathable film, a rock wool roof plate, a waterproof layer and glass fiber tiles from inside to outside in the direction of the third one-way breathable film; the air exhaust fan is arranged at the joint of the roof and the wall, a keel air layer is formed between the keel layer and the outer wall decorative plate in a hollow mode, an air channel is reserved between the keel layer and the outer wall decorative plate and between the keel layer and the roof, a roof air layer is formed between the indoor ceiling and the rock wool roof plate in a hollow mode, an air inlet of the air exhaust fan is communicated with the indoor air layer and the roof air layer, and an air outlet of the air exhaust fan is opposite to the air channel below. The indoor constant temperature control system has the beneficial effect that the indoor constant temperature is effectively kept.

Description

Air circulation type heat-insulation assembled house
Technical Field
The utility model relates to an assembly type structure technical field especially relates to an air circulation formula heat preservation prefabricated house.
Background
The existing buildings are basically built by traditional building materials and have brick-concrete structures, frames, frame shear structures and the like, and the heat insulation blocks are all made into one-layer heat insulation by outer walls and used for passively changing indoor temperature, but the effects are not obvious. The materials used in conventional building structures have already been irreparably damaged by the environment, and therefore further changes in the insulation and energy conservation of the building materials and structures are needed in future building structures.
Disclosure of Invention
An embodiment of the utility model provides an air circulation formula heat preservation prefabricated house for the effect of solving traditional building regulation room temperature among the prior art is not good, and building material destroys serious problem to the environment.
An embodiment of the utility model provides an air circulation formula heat preservation prefabricated house, include: the wall body and the roof form a house body; the wall structure sequentially comprises an inner wall decorative plate, a first one-way breathable film, a polyurethane edge sealing rock wool plate, a second one-way breathable film, a keel layer and an outer wall decorative plate from inside to outside; the roof structure sequentially comprises an indoor suspended ceiling, a third one-way breathable film, a rock wool roof plate, a waterproof layer and glass fiber tiles from inside to outside in the direction of the third one-way breathable film;
the air exhaust fan is arranged below the roof and on the polyurethane edge sealing rock wool board at the joint of the wall body, a keel air layer is formed between the keel layer and the outer wall decorative board in a hollow mode, an air channel is reserved between the keel layer and the outer wall decorative board and between the keel layer and the roof, a roof air layer is formed between the indoor ceiling and the rock wool roof board in a hollow mode, an air inlet of the air exhaust fan is communicated with the indoor roof air layer and the roof air layer, and an air exhaust port of the air exhaust fan is opposite.
Preferably, the keel layer adopts a hollow structure formed between a plurality of small battens which are horizontally arranged and the outer wall decorative plate.
Preferably, the waterproof layer is a double-sided self-adhesive polymer modified asphalt waterproof coiled material.
Preferably, the glass fiber tile is a single-sided self-adhesive glass fiber tile.
The beneficial effects of the utility model include: the wall body and the roof are integrally improved, and a novel building material is utilized to generate a flowing air layer for the wall body, the roof and the indoor space, so that outdoor heat is difficult to enter the indoor space, and obvious temperature difference is generated between the indoor space and the outdoor space in summer; the indoor heating device adopts various heating equipment to heat the indoor space in winter, and the indoor temperature is difficult to be distributed through the wall body and the roof under the action of the one-way sleeve of the one-way membrane, so that the problem of indoor warm keeping in winter is solved.
Drawings
Fig. 1 is a schematic structural view of an air circulation type heat preservation assembled house according to an embodiment of the present invention.
Fig. 2 is an enlarged schematic view of a local position of C in the embodiment of the present invention.
Detailed Description
The embodiment of the present invention provides an air circulation type heat preservation assembled house, which is described below with reference to the attached drawings, and it should be understood that the preferred embodiment described herein is only used for illustration and explanation, and is not used for limitation of the present invention.
Referring to fig. 1 and 2, an air circulation type heat preservation prefabricated house includes: the wall body a and the roof b form a house body; the wall structure sequentially comprises an inner wall decorative plate 1, a first one-way breathable film 2 in the direction from outside to inside, a polyurethane edge-sealing rock wool plate 3, a second one-way breathable film 4 in the direction from inside to outside, a keel layer 5 and an outer wall decorative plate 6 from inside to outside; the roof structure comprises an indoor suspended ceiling 7, a third one-way breathable film 8, a rock wool roof plate 9, a waterproof layer 10 and glass fiber tiles 11 from inside to outside in sequence;
below the roof, set up air discharge fan 12 on the polyurethane banding rock wool board 3 with wall connection department, cavity formation fossil fragments air bed between keel layer 5 and the outer wall decorative board 6, leave the wind channel between keel layer 5, outer wall decorative board 6 and the roof, cavity formation roof air bed between indoor furred ceiling 7 and the rock wool shingle 9, air discharge fan 12 air inlet and indoor and roof air bed intercommunication, air discharge fan 12 gas vent is just to the wind channel of roof below.
The keel layer 5 adopts a hollow structure formed between a plurality of small battens which are horizontally arranged and the outer wall decorative plate 6.
The waterproof layer 10 is a double-sided self-adhesive polymer modified asphalt waterproof roll.
The glass fiber tile 11 is a single-side self-adhesive glass fiber tile 11.
Specifically, when summer weather is hot, open 12 indoor air of air discharge fan and the hot-air of roof air bed and pass through the outside discharge of wind channel between roof and outer wall decorative board 6 and keel layer 5, and the keel air bed is under the effect of air discharge fan 12, produce mobile air, keel air bed is passed from the house lower part all the time to the intraformational air of keel air, blown out through the wind channel between roof and outer wall decorative board 6 and keel layer 5 by air discharge fan 12, produce the air current that lasts the circulation, cool down for the house wall body, be favorable to the heat dissipation, thereby make the indoor temperature descend, and outside one-way ventilated membrane, the direction is from inside to outside, prevent outside hot-air from getting into, the heat is difficult to get into the room, the arrow is the direction of air flow in figure 2.
When weather is cold winter, the novel electric heat picture of indoor adoption decoration usefulness, or new forms of energy heat production devices such as solar energy are indoor heats, the one-way ventilated membrane of inside and outside makes fossil fragments air bed and roof air bed play the effect of a heat preservation, the one-way ventilated membrane of inboard, the direction is from the extroversion inwards, the heat in the room is difficult to distribute away, has played cold-proof effect to room temperature in the room equally, make room temperature be difficult to descend, the energy resource consumption of other heaters has been reduced.
Adopt the house of this kind of novel structure, not only reduced the consumption of the energy, let the building carry out the regulation of temperature through self structure moreover, provide more comfortable homothermal living environment for the user.

Claims (4)

1. An air circulation type heat-insulating assembled house, characterized by comprising: the wall body and the roof form a house body; the wall structure sequentially comprises an inner wall decorative plate, a first one-way breathable film, a polyurethane edge sealing rock wool plate, a second one-way breathable film, a keel layer and an outer wall decorative plate from inside to outside; the roof structure sequentially comprises an indoor suspended ceiling, a third one-way breathable film, a rock wool roof plate, a waterproof layer and glass fiber tiles from inside to outside in the direction of the third one-way breathable film;
the air exhaust fan is arranged below the roof and on the polyurethane edge sealing rock wool board at the joint of the wall body, a keel air layer is formed between the keel layer and the outer wall decorative board in a hollow mode, an air channel is reserved between the keel layer and the outer wall decorative board and between the keel layer and the roof, a roof air layer is formed between the indoor ceiling and the rock wool roof board in a hollow mode, an air inlet of the air exhaust fan is communicated with the indoor roof air layer and the roof air layer, and an air exhaust port of the air exhaust fan is opposite.
2. The air circulation type heat preservation assembled house of claim 1, wherein the keel layer is formed in a hollow structure between the plurality of small battens and the outer wall decoration plate which are horizontally arranged.
3. The air circulating type heat insulating assembled house according to claim 1, wherein the waterproof layer is a double-sided self-adhesive polymer modified asphalt waterproof roll.
4. The air circulating type heat insulating assembled house of claim 1, wherein the glass fiber tiles are single-sided self-adhesive glass fiber tiles.
CN201821230062.1U 2018-08-01 2018-08-01 Air circulation type heat-insulation assembled house Active CN211286110U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821230062.1U CN211286110U (en) 2018-08-01 2018-08-01 Air circulation type heat-insulation assembled house

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821230062.1U CN211286110U (en) 2018-08-01 2018-08-01 Air circulation type heat-insulation assembled house

Publications (1)

Publication Number Publication Date
CN211286110U true CN211286110U (en) 2020-08-18

Family

ID=72018911

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201821230062.1U Active CN211286110U (en) 2018-08-01 2018-08-01 Air circulation type heat-insulation assembled house

Country Status (1)

Country Link
CN (1) CN211286110U (en)

Similar Documents

Publication Publication Date Title
US20120318475A1 (en) Building Energy System
JP2014051874A (en) Energy-saving ventilation system for air-tightness house
CN108951941A (en) A kind of cooling wall structure
CN101392563A (en) Energy-conserving wall structure with controllable semiconductor heat transfer capability
CN102561726A (en) Multi-storey and high-rise building system configured by power-assembling section plates
HU217496B (en) Method and apparatus for the heating and cooling of buildings and heat insulating wall covering
CN211286110U (en) Air circulation type heat-insulation assembled house
Yew et al. Active and passive systems for cool roofs
JP2954872B2 (en) House
JP4638831B2 (en) Floor heating system
JP2565742Y2 (en) Buildings with cold storage components
CN213087024U (en) Large-space energy-saving ventilating building structure
CN107143056A (en) A kind of ecological energy conservation building walling system
CN105951979A (en) Super-energy-saving building system
CN205954828U (en) Super energy -conserving building system
CN207378299U (en) Suitable for the indoor drainage pipe structure of Passive low-energy building
CN206449786U (en) Energy conduction integration refrigerating and heating systems
CN206016308U (en) A kind of super energy saving building interior decoration structure
JP2004324307A (en) Building with ventlation control device, and ventilation control method
US20090229199A1 (en) Building structure with having spaces having improved temperature stability
JP2004270979A (en) Ventilation house and method of forming cold air reservoir
CN207377434U (en) Suitable for the roof shutter of Passive low-energy building
JP7147126B1 (en) Air-conditioning structure that can insulate and control the temperature of the space inside the building with less condensation, heat-insulating buildings that do not use air conditioners, and composite heat-insulating materials used for them
CN207377046U (en) A kind of basement lighting roof construction suitable for Passive low-energy building
CN109779003A (en) Driving energy saving building

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant