CN206449785U - Integral structure layer refrigerating and heating systems - Google Patents

Integral structure layer refrigerating and heating systems Download PDF

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Publication number
CN206449785U
CN206449785U CN201720090888.1U CN201720090888U CN206449785U CN 206449785 U CN206449785 U CN 206449785U CN 201720090888 U CN201720090888 U CN 201720090888U CN 206449785 U CN206449785 U CN 206449785U
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energy
layer
heat
functional layer
capillary
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李钢
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Abstract

The utility model discloses integral structure layer refrigerating and heating systems, including:The entrance point and the port of export of coolant media are connected by pipeline distributor with some capillaries respectively on the energy machine being located outside, the energy machine, form the flow circuits of heat transferring medium;The building structure includes successively from inside to outside:Wire netting is equipped with basic unit, heat-insulation layer, energy-conservation layer, the functional layer and decorative layer, the functional layer, the capillary is fixed on the wire netting, and its complementary space of functional layer is filled by energy-accumulation material.The capillary of heat exchange is directly laid in building structure by the system, is improved the utilization ratio of the energy, is made the change of indoor temperature more uniform, improves the comfort of human body.

Description

Integral structure layer refrigerating and heating systems
Technical field
The utility model is related to a kind of refrigerating and heating systems integrated with building structure layer.
Background technology
With social progress, requirement more and more higher of the people to living environment, existing building technique and traditional method are The growing environmental requirement of people can not be met, the building that people live and worked to oneself is not only to keep out wind and rain, But the environment that make oneself live and work on the premise of energy-conservation attractive in appearance is more preferably comfortable, the indoor environment ability of constant temperature and humidity People are allowed to feel comfortably cool, therefore, technical staff have developed many heating indoor refrigeration facilities and equipment, still, existing to set Apply and equipment generally existing service life is short, maintenance cost is high, install that input cost is big, factor affected by environment big, these lack Point and problem, as technician it is anxious to be resolved the problem of.
Utility model content
For problems of the prior art, the purpose of this utility model is to provide a kind of integral structure layer refrigerated medium The capillary of heat exchange is directly laid in building structure by hot systems, the system, is improved the utilization ratio of the energy, is made interior The change of temperature is more uniform, improves the comfort of human body.
Concrete technical scheme is:
Integral structure layer refrigerating and heating systems, the system includes:Refrigerant on the energy machine being located outside, the energy machine The entrance point and the port of export of medium are connected by pipeline distributor with some capillaries respectively, and the flowing for forming heat transferring medium is returned Road;The building structure includes successively from inside to outside:Basic unit, heat-insulation layer, energy-conservation layer, the functional layer and decorative layer, the work( Wire netting is equipped with ergosphere, the capillary is fixed on the wire netting, its complementary space of functional layer is filled out by energy-accumulation material Fill.
Further, the energy machine be air-source heat transmission equipment, carbon dioxide air conditioner heat exchange equipment, water body heat transmission equipment or Underground heat heat transmission equipment;The heat-insulation layer is extruded sheet, benzene plate, rock cotton board, polyurethane sheet or foam cement;The energy-conservation layer is anti- Penetrate paper, reflectance coating or aluminium foil.
Further, the capillary is metal tube, plastic tube or modeling bag metal tube, the internal diameter of capillary for 1~ 2.5mm, wall thickness are 4~6mm;The energy-accumulation material is the mixture of cement mortar, concrete, clay and graphite.
Further, auxiliary zone of heating is provided between the energy-conservation layer and the functional layer, the auxiliary zone of heating is paving It is located at Electric radiant Heating Film, heating cable or heating board on energy-conservation layer.
Further, the circulation cavity with ambient air is provided between the decorative layer and the functional layer.
Further, the guiding gutter of condensed water is provided with the outside of the functional layer.
Further, it is connected with intelligent control device, the intelligent control device and is provided with and internet in the system The communication device of connection.
Further, the coolant media is CO2
Further, the indoor set for being capable of independent control is connected with the energy machine, the indoor set and Interior Space is utilized Gas exchange energy.
Further, the building structure is wall, ground and/or the ceiling in house.
The utility model will be laid in the building structure of building with the capillary that room air exchanges heat, and is tied using building Structure layer exchanges heat to the interior space, increases heat exchange area, makes indoor temperature change generated in case more uniform, improves Energy Efficiency Ratio;Basic unit For the concrete foundation of building;Heat-insulation layer has certain heat insulating effect, and the energy for reducing indoor and outdoor passes through building wall Body is exchanged;The energy that energy-conservation layer discharges functional layer is to indoor reflection;Functional layer is used for the energy conduction in capillary to room It is interior, make the indoor temperature and humidity for maintaining suitable human body;Wire netting is while for fixed capillary, the energy in capillary Amount is conducted by wire netting, is easy to the diffusion of energy;Auxiliary zone of heating can be brought rapidly up interior;Circulation cavity adds room Contact of the interior air with functional layer, improves heat exchange efficiency;Decorative layer beautifies the surface of building structure;To indoor drop air During dehumidifying, condensed water converges to guiding gutter and discharged;Energy machine cold and origin of heat in outdoor air, water source, The clean eco-friendly power source such as solar energy or geothermal energy;Intelligent control device carries out unified control to whole system, and user can be with It is configured, remotely intelligent control device can be configured by communication terminal on intelligent control device.
Brief description of the drawings
Fig. 1 is the schematic diagram of integral structure of the present utility model layer refrigerating and heating systems;
Fig. 2 is the laying schematic diagram of capillary;
Fig. 3 is the schematic diagram of building structure of the present utility model;
Wherein, 1 outdoor unit, 11 compressors, 12 four way solenoid valves, 13 heat exchangers, 14 fans, 15 throttling elements, 2 building knots Structure, 21 basic units, 22 heat-insulation layers, 23 energy-conservation layers, 24 auxiliary zones of heating, 25 functional layers, 26 circulation cavitys, 27 decorative layers, 3 capillarys Pipe, 31 pipeline distributors, 4 energy storage materials, 5 wire nettings, 6 guiding gutters, 7 indoor sets, 8 intelligent gateways.
Embodiment
The utility model is more fully illustrated below with embodiment.The utility model can be presented as it is a variety of not Same form, is not construed as the exemplary embodiment for being confined to describe here.
For ease of explanation, the space relative terms such as " on ", " under ", "left", "right" can be used herein, are used for The element or feature shown in explanation figure is relative to another element or the relation of feature.It should be understood that except figure In outside the orientation that shows, spatial terminology is intended to include the different azimuth of device in use or operation.If for example, in figure Device be squeezed, be stated as being located at other elements or feature " under " element will be located into other elements or feature " on ". Therefore, exemplary term " under " can be both comprising upper and lower orientation.Device can be positioned otherwise(It is rotated by 90 ° or position In other orientation), can correspondingly be explained used herein of the relative explanation in space.
The utility model integral structure layer refrigerating and heating systems as shown in Figure 1, Figure 2 and Figure 3 include:Outdoor unit 1, room Outer machine 1 make use of air conditioner refrigerating and the principle heated, wherein, the part of outdoor unit 1 includes:Compressor 11, four way solenoid valve 12, change Hot device 13, fan 14 and closure member 15, coolant media is preferably CO2, connected respectively in the entrance point and the port of export of heat transferring medium Have a pipeline distributor 31, one end of pipeline distributor 31 is individual interface, the other end is multiple interfaces, pipeline distributor 31 it is many Interface end connects several capillaries 3, forms the flow circuits of heat transferring medium, capillary 3 can be metal tube, plastic tube or Mould bag metal tube, the internal diameter of capillary 3 is that 1~2.5mm, wall thickness are 4~6mm.Switch refrigeration using four way solenoid valve 12 and make The power and energy of heat.The part of outdoor unit 1 can also be the air-source heat transmission equipment exchanged heat using heat in air, utilize water Heat is exchanged heat in source water body heat transmission equipment or utilize underground heat heat transmission equipment.
It is also possible that being equipped with an indoor set 7 being connected with outdoor unit 1, indoor set 7 is connected in parallel outdoor unit with capillary 3 1, independently indoor set 7 can be controlled, be easy to the rapid regulation of indoor temperature.
Capillary 3 is embedded in building structure 2, specifically capillary 3 can be embedded in into wall, ground or smallpox In plate, the building structure 2 during pre-buried capillary 3 includes successively from inside to outside:Basic unit 21, heat-insulation layer 22, energy-conservation layer 23, functional layer 25 and decorative layer 27, wherein, basic unit 21 is intrinsic basis in building structure 2, and such as concrete structure, heat-insulation layer 22 is laid on Above basic unit 21, specially extruded sheet, benzene plate, rock cotton board, polyurethane sheet or foam cement, with certain thermal insulation separation thermal effect Really, the energy for reducing indoor and outdoor is exchanged by construction wall, improves the utilization rate of energy;Energy-conservation layer 23 is laid on heat-insulation layer 22 Above, specially reflecting paper, reflectance coating or aluminium foil, the energy that energy-conservation layer 23 discharges functional layer 25 is to indoor reflection;Functional layer Wire netting 5 is equipped with 25, such as wire netting, capillary 3 is strapped on wire netting 5, and wire netting 5 is for fixed capillary 3 Meanwhile, the energy in capillary 3 conducts by wire netting 5, is easy to the diffusion of energy, its complementary space of functional layer 25 is by accumulation of energy material Material 4 is filled, and energy-accumulation material 4 is the mixture of cement mortar, concrete, clay and graphite, and the outside of functional layer 25, which is provided with, leads Chute 6, guiding gutter 6 is metal material, and during cool-down dehumidification, the moisture content in room air is in functional layer 25, decorative layer 27 Import in guiding gutter 25 and discharge therewith after surface condensation;It is equipped with the outside of energy-accumulation material 4 for beautifying building structure table The decorative layer 26 in face.
It is also possible that when laying capillary 3 on ground or wall, paving can be increased between basic unit 21 and heat-insulation layer 22 anti- Water layer.
It is also possible that being provided with auxiliary zone of heating 24 between energy-conservation layer 23 and functional layer 25, auxiliary zone of heating 24 is laying Electric radiant Heating Film, heating cable or heating board on energy-conservation layer 23, auxiliary zone of heating 24 can be brought rapidly up interior.
It is also possible that being provided with circulation cavity 26, increase functional layer 25 and Interior Space between functional layer 25 and decorative layer 27 The contact of gas, improves heat exchange efficiency.
It is also possible that accessing intelligent control device in integral structure layer refrigerating and heating systems, it is easy to join custom system Several settings, is such as connected an intelligent gateway 8 with the part of outdoor unit 1 of system and indoor set 7, and user can pass through cell phone software Remotely system is set.
Above-mentioned example is only intended to illustrate the utility model, in addition, also a variety of different embodiments, and these Embodiment be all those skilled in the art after comprehension the utility model thought it is also envisioned that therefore, no longer arrange one by one herein Lift.

Claims (10)

1. integral structure layer refrigerating and heating systems, it is characterised in that the system includes:The energy machine being located outside, the energy The entrance point and the port of export of coolant media are connected by pipeline distributor with some capillaries respectively on amount machine, form heat transferring medium Flow circuits;Building structure includes successively from inside to outside:Basic unit, heat-insulation layer, energy-conservation layer, functional layer and decorative layer, the work( Wire netting is equipped with ergosphere, the capillary is fixed on the wire netting, its complementary space of functional layer is filled out by energy-accumulation material Fill.
2. the system as claimed in claim 1, it is characterised in that the energy machine is air-source heat transmission equipment, carbon dioxide sky Adjust heat transmission equipment, water body heat transmission equipment or underground heat heat transmission equipment;The heat-insulation layer is extruded sheet, benzene plate, rock cotton board, polyurethane sheet Or foam cement;The energy-conservation layer is reflecting paper, reflectance coating or aluminium foil.
3. the system as claimed in claim 1, it is characterised in that the capillary is metal tube, plastic tube or modeling category covered with gold leaf Pipe, the internal diameter of capillary is that 1~2.5mm, wall thickness are 4~6mm;The energy-accumulation material is cement mortar, concrete, clay and stone The mixture of ink.
4. the system as claimed in claim 1, it is characterised in that be provided with auxiliary between the energy-conservation layer and the functional layer and add Thermosphere, the auxiliary zone of heating is Electric radiant Heating Film, heating cable or the heating board being laid on energy-conservation layer.
5. the system as claimed in claim 1, it is characterised in that be provided between the decorative layer and the functional layer and interior The circulation cavity of air communication.
6. the system as claimed in claim 1, it is characterised in that the water conservancy diversion of condensed water is provided with the outside of the functional layer Groove.
7. the system as claimed in claim 1, it is characterised in that intelligent control device, the intelligence are connected with the system The communication device being connected with internet is provided with control device.
8. the system as claimed in claim 1, it is characterised in that the coolant media is CO2
9. the system as claimed in claim 1, it is characterised in that the interior for being capable of independent control is connected with the energy machine Machine, utilizes the indoor set and room air exchange energy.
10. the system as claimed in claim 1, it is characterised in that the building structure is wall, ground and/or the day in house Card.
CN201720090888.1U 2017-01-24 2017-01-24 Integral structure layer refrigerating and heating systems Active CN206449785U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201720090888.1U CN206449785U (en) 2017-01-24 2017-01-24 Integral structure layer refrigerating and heating systems

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201720090888.1U CN206449785U (en) 2017-01-24 2017-01-24 Integral structure layer refrigerating and heating systems

Publications (1)

Publication Number Publication Date
CN206449785U true CN206449785U (en) 2017-08-29

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CN201720090888.1U Active CN206449785U (en) 2017-01-24 2017-01-24 Integral structure layer refrigerating and heating systems

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106765789A (en) * 2017-01-24 2017-05-31 李钢 Energy conduction integration refrigerating and heating systems
CN109339372A (en) * 2018-11-28 2019-02-15 周勤云 A kind of energy-saving building interior wall composite plate

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106765789A (en) * 2017-01-24 2017-05-31 李钢 Energy conduction integration refrigerating and heating systems
CN109339372A (en) * 2018-11-28 2019-02-15 周勤云 A kind of energy-saving building interior wall composite plate

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