CN204804133U - Ventilation heat preservation module heating cooling ground and energy -conserving ventilation air conditioning system - Google Patents

Ventilation heat preservation module heating cooling ground and energy -conserving ventilation air conditioning system Download PDF

Info

Publication number
CN204804133U
CN204804133U CN201520262728.1U CN201520262728U CN204804133U CN 204804133 U CN204804133 U CN 204804133U CN 201520262728 U CN201520262728 U CN 201520262728U CN 204804133 U CN204804133 U CN 204804133U
Authority
CN
China
Prior art keywords
air
ventilating
heat
conditioning system
thermal insulating
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.)
Expired - Fee Related
Application number
CN201520262728.1U
Other languages
Chinese (zh)
Inventor
冯刚克
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.)
Individual
Original Assignee
Individual
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 Individual filed Critical Individual
Priority to CN201520262728.1U priority Critical patent/CN204804133U/en
Application granted granted Critical
Publication of CN204804133U publication Critical patent/CN204804133U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A30/00Adapting or protecting infrastructure or their operation
    • Y02A30/24Structural elements or technologies for improving thermal insulation
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B80/00Architectural or constructional elements improving the thermal performance of buildings

Landscapes

  • Duct Arrangements (AREA)

Abstract

The utility model relates to a ventilation heat preservation module heating cooling ground and energy -conserving ventilation air conditioning system, include ventilation heat preservation module heating cooling ground, ventilation air conditioning system and heat preservation ventilation window, ventilation heat preservation module heating cooling ground, from bottom to top in proper order by expandability polyethylene bed course, ventilation heat preservation module body, the heating coil line constitute with dividing water collector, dehumidification heat dissipation blast pipe, dehumidification heat dissipation wind channel, dehumidification heat dissipation collection tuber pipe, air conditioner ground blast pipe, protection against the tide heat -conducting layer and timber apron, heat preservation ventilation window is linked together with ventilation air conditioning system, forms a complete energy -conserving ventilation air conditioning system, it not only promotes the K value of window, moreover, utilizes heat preservation ventilation window as advancing to air exhaust the passageway, reduces the air conditioner energy consumption, improve the air conditioner effect to it is dual -purpose to realize that a ground warms up terminal changes in temperature, and waste heat recovery utilizes, reduces installation and running cost, reaching air purification and handling, clean fresh air's purpose also can be breathed in the family of not windowing.

Description

Ventilating and thermal insulating module heating cooling ground and energy-saving ventilating air air-conditioning system
Technical field
The utility model relates to and is a kind ofly applicable to take water as the ventilating and thermal insulating module heating cooling ground and energy-saving ventilating air air-conditioning system of cold/heat source, particularly relate to the construction method of a kind of ventilating and thermal insulating module heating cooling ground and energy-saving ventilating air air-conditioning system various.
Background technology
At present, common buildings, especially existing building door and window due to tightness and heat insulating ability poor, door and window energy consumption accounts for 50% of building energy consumption, meanwhile, for haze is to the pollution of room air, need establish newly on exterior wall various enter air draft hole, set up fresh air purifying ventilation system, thus, cause the loss of indoor Cooling and Heat Source and the decline of exterior-wall heat insulation; Building energy consumption promotes further.And for ground heating system, in general be three points of products seven points installations, but as mentioned above, door and window energy consumption is too high, exterior wall reserved opening is many, heat waste large, even if ground heating system installation is good again, exterior-wall heat insulation is good again, also because door and window energy consumption is excessive, exterior wall punches energy consumption too much, is also difficult to ensure heating temperature, especially air source heat pump system leaving water temperature is only had to the water at low temperature of about 40 DEG C, although central heating water temperature is high, can meet heating requirement, but due to energy consumption excessive, cause running cost high, carbon emission is large, also increases the weight of the pollution to air.
In addition, how to utilize radiant heating ground end hot-water heating coil system, walk through air source heat pump or earth source heat pump refrigerating device refrigeration water cooling when summer, and when solving cooling, ground easily condenses and gets damp, and cold air sinks alluvial in floor, discharges and comes less than space, the problems such as comfort level is not good are a great problems of puzzlement floor heating circle always.
And existing " heat preservation module radiant heating cooling ground and ventilation and air conditioning system " patented technology, owing to utilizing gap between floor heating pipeline external wall in conventional vacuum module groove and trench wall as the technological means such as heat dissipation wind channel that dehumidify, do not have the effect of ventilation dehumidifying heat radiation, therefore, an above-mentioned difficult problem is resolved not yet.
Summary of the invention
For above-mentioned deficiency, the utility model, by the basis of to be " the precast combined heat preservation module radiant heating cooling air-conditioning ground surface " of ZL201320468480.5 and the patent No. in the patent No. be existing patented technologies such as " heat preservation module radiant heating cooling ground and the ventilation and air conditioning system " of ZL201420434694.5 is improved, provides a kind of ventilating and thermal insulating module to heat cooling ground and energy-saving ventilating air air-conditioning system.
In order to reach above-mentioned purpose, technical solutions of the utility model are:
The utility model example one, comprises ventilating and thermal insulating module heating cooling ground, ventilation and air conditioning system 9 and heat preservation ventilating window 10; Described ventilating and thermal insulating module heating cooling ground, from bottom to top successively by ventilating and thermal insulating module body 1, floor heating pipeline 2 and water collecting and diversifying device 2 ', dehumidify dispel the heat ajutage 3, the heat dissipation wind channel 4 that dehumidifies, dehumidify dispel the heat duct set 3 ', air-conditioning ajutage 5, moistureproof heat-conducting layer 6, anticracking grout bed course 7, tack coat 7 ' and ground decoration panel 8 form;
Described ventilating and thermal insulating module body 1, a basic unit body assembled by standard straight frid 1Z and two ends curved groove plate 1W1 and 1W2; Described standard straight frid 1Z is made up of ventilating and thermal insulating module 1-1 and heat-conducting layer 1-11 ';
Described ventilation and air conditioning system 9, is made up of heat utilization air supply system 9A, ground dehumidifying air-conditioning system 9B and air exhaust tube system 10-13;
Described heat preservation ventilating window 10 is connected with heat utilization air supply system 9A, ground dehumidifying air-conditioning system 9B and air exhaust tube system 10-13, forms a complete energy-saving ventilating air air-conditioning system.
The utility model example two, comprises ventilating and thermal insulating module heating cooling ground, ventilation and air conditioning system 9 and heat preservation ventilating window 10; Described ventilating and thermal insulating module heating cooling ground, from bottom to top successively by damp-proof course 1F, ventilating and thermal insulating module body 1, floor heating pipeline 2 and water collecting and diversifying device 2 ', dehumidify dispel the heat ajutage 3, the heat dissipation wind channel 4 that dehumidifies, dehumidify dispel the heat duct set 3 ', air-conditioning ajutage 5, anticracking grout bed course 7, moistureproof heat-conducting layer 6 and wood flooring 8 ' form;
Described ventilating and thermal insulating module body 1, a basic unit body assembled by standard straight frid 1Z and two ends curved groove plate 1W1 and 1W2; Described standard straight frid 1Z is made up of ventilating and thermal insulating module 1-1 and heat-conducting layer 1-11 ';
Described ventilation and air conditioning system 9, is made up of heat utilization air supply system 9A, ground dehumidifying air-conditioning system 9B and air exhaust tube system 10-13;
Described heat preservation ventilating window 10 is connected with heat utilization air supply system 9A, ground dehumidifying air-conditioning system 9B and air exhaust tube system 10-13, forms a complete energy-saving ventilating air air-conditioning system.
The utility model example three, comprises ventilating and thermal insulating module heating cooling ground, ventilation and air conditioning system 9 and warming solar energy vent window 10T; Described ventilating and thermal insulating module heating cooling ground, is made up of expandability polyethylene bedding 1D, ventilating and thermal insulating module body 1, floor heating pipeline 2, water collecting and diversifying device 2 ', dehumidifying heat radiation ajutage 3, dehumidifying heat dissipation wind channel 4, dehumidifying heat radiation duct set 3 ', air-conditioning ground ajutage 5, moistureproof heat-conducting layer 6 and wood flooring 8 ' from bottom to top successively;
Described ventilating and thermal insulating module body 1, a basic unit body assembled by standard straight frid 1Z and two ends curved groove plate 1W1 and 1W2; Described standard straight frid 1Z is made up of ventilating and thermal insulating module 1-1 and heat-conducting layer 1-11 ';
Described ventilation and air conditioning system 9, is made up of heat utilization air supply system 9A and ground dehumidifying air-conditioning system 9B;
Described warming solar energy vent window 10T is connected with heat utilization air supply system 9A and ground dehumidifying air-conditioning system 9B, forms a complete energy-saving ventilating air air-conditioning system.
Described ventilating and thermal insulating module heating cooling ground, from bottom to top successively by expandability polyethylene bedding 1D, ventilating and thermal insulating module body 1, floor heating pipeline 2, water collecting and diversifying device 2 ', dehumidifying heat radiation ajutage 3, dehumidifying heat dissipation wind channel 4, dehumidifying heat radiation duct set 3 ', air-conditioning ground ajutage 5, moistureproof heat-conducting layer 6 and composite floor board 8 " with I-shaped holding firmware 8 "-1 form; " be composited by finish coat 81 and basal plate 82, described finish coat 81 is stone material or vitrified tile or ceramic tile to described composite floor board 8; Described basal plate 82, adopts fortifying fibre cement pressure plate or fortifying fibre calcium silicate board to make; Described composite floor board 8 " surrounding side offer fixing groove.
Described ventilating and thermal insulating module 1-1 is provided with 4 ~ 6 road grooves, wherein, the spacing of 3 ~ 4 road groove 1-11 is 200mm or 150mm, for laying floor heating pipeline 2, other 1 ~ 2 road is ventilation groove 1-12, is separately positioned between two groove 1-11, as the use of dehumidifying heat dissipation wind channel 4.
Described dehumidifying heat dissipation wind channel 4, is included on ventilation groove 1-12 and inlays U-shaped heat conduction aluminum lath 1-11 " or be pasted with the heat-conducting layer 1-11 ' of soft graphite coiled material or aluminium sheet or aluminium foil, or coating one deck waterproofing course 1-12 '.
Described two ends curved groove plate 1W1 and 1W2 is two ends, left and right a pair, the groove of described curved groove plate 1W1 by 4 ~ 6 road groove 1-11 and 1-12, and with two groove 1-11 tangentially the arc curved groove 1-111 of crossing UNICOM and 1-112 form; Described arc curved groove 1-112 is 1/2nd of described arc curved groove 1-111.
Described curved groove plate 1W12 groove is by 4 ~ 6 road groove 1-11 and 1-12, and with the two groove 1-11 tangentially arc curved groove 1-111 of crossing UNICOM and 1-112, and longitudinal straight trough 1-11Z of a track pitch right-hand member limit 50 ~ 100mm is formed; Described arc curved groove 1-112 is 1/2nd of described arc curved groove 1-111.
Described heat utilization air supply system 9A, by primary efficient filter screen 10-JP1, exhaust blower 10-P, enters exhaust duct 10-JP2, electronic time air outlet 10-HP3, ajutage 10-11B, interchange of heat recover 9A1, air-supply threeway 9A2, air purifier 9A3, quiet blower fan 9A4, air outlet 9A5 ' and 9A6 and extract duct 10-12 and forms.
Described heat utilization air supply system 9A, is made up of primary efficient filter screen 10-J111, intake stack 10-J11, electronic air entering and returning mouth 10-JH, ajutage 10-11B, interchange of heat recover 9A1, air-supply threeway 9A2, air purifier 9A3, quiet blower fan 9A4, air outlet 9A5 ' and 9A6 and extract duct 10-12.
Described interchange of heat recover 9A1, by interchange of heat air intake sleeve pipe 9A11, be placed in interchange of heat exhaust duct 9A12 in sleeve pipe and sleeve outer wall thermal insulating 9A13 and form, the upper and lower two ends of described interchange of heat exhaust duct 9A12 through the interchange of heat air intake sleeve pipe 9A11 upper and lower side threeway mouth of pipe 9A14 and 9A15, respectively with extract duct 10-12 and dehumidify to dispel the heat and collect wind standpipe 3 " connect; Upper and lower two side ends is preset with interface 9A16 and 9A16 ' connected with ajutage and the threeway 9A2 that blows respectively;
Described interchange of heat air intake sleeve pipe 9A11 adopts Φ 110mm ~ Φ 200mm plastic round tube or metal circular tube to assemble.
Described interchange of heat exhaust duct 9A12 is that the circular aluminum profile material tube of Φ 50mm ~ Φ 100mm or round metal tube are made with diameter.
Described ground dehumidifying air-conditioning system 9B, by returning air outlet 9B1, return air standpipe 9B5, dehumidifying heat radiation ajutage 3, dehumidifying heat dissipation wind channel 4, dehumidifying heat radiation duct set 3 ', dehumidifying heat radiation collection wind standpipe 3 ", interchange of heat recover 9A1, extract duct 10-12, air-conditioning ground ajutage 5, standpipe 51 of blowing, air-supply threeway 9A2, air purifier 9A3, quiet blower fan 9A4, dehumidifier 9A5 or air outlet 9A5 ' and air outlet 9A6 form..
Described air exhaust tube system 10-13, is made up of electronic air outlet 10-13P, exhaust blower 10-13P1, exhaust duct 10-13P2 and 10-13P23, air draft threeway 10-13P3 and exhaust hood 10-13P4; Described exhaust duct 10-13P2 and 10-13P23 and air draft threeway 10-13P3 adopts the good metal tube of thermal conductivity or aluminium foil hose or pvc pipe to make.
The utility model has the following advantages and beneficial effect:
Heat preservation ventilating window 10 or warming solar energy vent window 10T are connected with heat utilization air supply system 9A and ground dehumidifying air-conditioning system 9B and air exhaust tube system 10-13 by the utility model, form complete, an economic and practical energy-saving ventilating air air-conditioning system: realize heat recovery, reduce air conditioner energy consumption; Improve the air conditioner effect on radiant heating cooling ground; Not only promote the K value of window well, and utilize heat preservation ventilating window as entering air exhaust passage, avoid offering on the wall while gravity vent causes heat waste and thermal insulation to decline, also can by the waste heat in the air draft of ventilating and thermal insulating cavity 10C or remaining cold, by being recycled further with the cold and hot exchange of cold/hot new wind flowing through ventilating and thermal insulating cavity 10C, and realizing a floor heating end both cooling and heating, low-carbon energy-saving, reduction air conditioner are installed and running cost; Reach air purification process, do not open a window and also can breathe clean fresh air, healthy comfortable object.In addition, utilize ventilating and thermal insulating module body and adopt than coefficient of thermal conductivity the ventilating and thermal insulating module heating cooling ground that the aluminium sheet heat conduction above soft graphite coiled material (more than coefficient of thermal conductivity 330W/m.k) fast again being 237W/ (m.k) is laid as moistureproof heat-conducting layer, when not only solving cooling in summer well, ground easily condenses and gets damp with cold air sinking alluvial in floor, discharge less than the not good enough problem of the comfort level that the interior space is next, and, because dehumidifying heat dissipation wind channel 4 has acceleration thermolysis, add the superior heat conductivity of soft graphite coiled material, the thermal uniformity of floor heating significantly promotes, the laying method of floor heating pipeline and form is made to become simpler, only adopt a kind of single tube parallel lay-up method can reach ground-heating radiation and heating effect, without the need to inflection type and two-tube parallel laying design and construct, make floor heating engineering design and construction more convenient, and can adopt the patent No. be " the novel multi-use fireproof heated board " of ZL201120220966.8 be preset with anchorage support seat 1M, the ground heating heat insulation module that can be used for dry type paved stone material is made, make stone material, vitrified tile and tile floor paving process easier, because eliminating thick and heavy concrete cushion and adhesive linkage, and ground deadweight is significantly alleviated, more save space.
In addition, angle type solar module 10-3 in warming solar energy vent window 10T, both can a block assembly above single window, or several piece assembly serial or parallel connection or connection in series-parallel become one group from net electricity generation system, also upper and lower whole unit building even the angle type solar module 10-3 of entire building can be combined into a large grid-connected power station by connection in series-parallel, can realize solar building integrated well.
Accompanying drawing explanation
The perspective schematic view of a kind of embodiment of Fig. 1 involved by the utility model example one;
The plan view of a kind of ventilating and thermal insulating module body 1 erection method of Fig. 2 involved by the utility model;
Fig. 3 is the profile of the 1-1 line along Fig. 1, is the profile of a kind of embodiment involved by the utility model example one;
The perspective schematic view of a kind of embodiment of Fig. 4 involved by the utility model example two;
Fig. 5 is the profile of the 1-1 line along Fig. 4, is the profile of a kind of embodiment involved by the utility model example two;
The perspective schematic view of a kind of embodiment of Fig. 6 involved by the utility model example three;
Fig. 7 is the profile of the 1-1 line along Fig. 6, is the profile of a kind of embodiment involved by the utility model example three;
Fig. 8 is longitudinal profile of a kind of embodiment involved by the utility model example three;
Fig. 9 is the profile of the 1-1 line along Fig. 6, is the profile of the another kind of embodiment involved by the utility model example three;
The perspective schematic view of a kind of embodiment of the standard straight frid 1Z of Figure 10 involved by the utility model;
The perspective schematic view of the another kind of embodiment of the standard straight frid 1Z of Figure 11 involved by the utility model;
The alien invasion figure of a kind of embodiment of Figure 12 involved by the utility model example one;
Figure 13 is the profile of the 1-1 line along Figure 12, is longitudinal profile of a kind of embodiment involved by the utility model example one;
Figure 14 is the profile of the 2-2 line along Figure 12, is the transverse cross of a kind of embodiment involved by the utility model example one;
Figure 15 is the transverse cross of a kind of embodiment involved by the utility model example two;
Figure 16 is longitudinal profile of a kind of embodiment involved by the utility model example two;
Figure 17 is the transverse cross of a kind of embodiment involved by the utility model example three;
The perspective schematic view of a kind of interchange of heat recover 9A1 of Figure 18 involved by the utility model;
Figure 19 is the profile of a kind of embodiment of interchange of heat exhaust duct 9A12 involved by the utility model.
Detailed description of the invention
In order to clearer expression the utility model, with reference to the accompanying drawings embodiment of the present utility model is further described.
The utility model embodiment one, as shown in FIG. 1 to 3, comprises ventilating and thermal insulating module heating cooling ground, ventilation and air conditioning system 9 and heat preservation ventilating window 10; Described ventilating and thermal insulating module heating cooling ground, from bottom to top successively by ventilating and thermal insulating module body 1, floor heating pipeline 2 and water collecting and diversifying device 2 ', dehumidify dispel the heat ajutage 3, the heat dissipation wind channel 4 that dehumidifies, dehumidify dispel the heat duct set 3 ', air-conditioning ajutage 5, moistureproof heat-conducting layer 6, anticracking grout bed course 7, tack coat 7 ' and ground decoration panel 8 form;
Described ventilating and thermal insulating module body 1, a basic unit body assembled by standard straight frid 1Z and two ends curved groove plate 1W1 and 1W2; Described ventilating and thermal insulating module body 1 can be put together by multiple basic unit body according to room area size; Described standard straight frid 1Z is made up of ventilating and thermal insulating module 1-1 and heat-conducting layer 1-11 ';
Described ventilation and air conditioning system 9, is made up of heat utilization air supply system 9A, ground dehumidifying air-conditioning system 9B and air exhaust tube system 10-13;
Described heat preservation ventilating window 10 is connected with heat utilization air supply system 9A, ground dehumidifying air-conditioning system 9B and air exhaust tube system 10-13, forms a complete energy-saving ventilating air air-conditioning system;
Described ground decoration panel 8, comprises floor tile or vitrified tile or marble.
The utility model embodiment two, as shown in Fig. 2, Fig. 4 and Fig. 5, comprises ventilating and thermal insulating module heating cooling ground, ventilation and air conditioning system 9 and heat preservation ventilating window 10; Described ventilating and thermal insulating module heating cooling ground, from bottom to top successively by damp-proof course 1F, ventilating and thermal insulating module body 1, floor heating pipeline 2 and water collecting and diversifying device 2 ', dehumidify dispel the heat ajutage 3, the heat dissipation wind channel 4 that dehumidifies, dehumidify dispel the heat duct set 3 ', air-conditioning ajutage 5, anticracking grout bed course 7, moistureproof heat-conducting layer 6 and wood flooring 8 ' form;
Described ventilating and thermal insulating module body 1, a basic unit body assembled by standard straight frid 1Z and two ends curved groove plate 1W1 and 1W2; Described ventilating and thermal insulating module body 1 can be put together by multiple basic unit body according to room area size; Described standard straight frid 1Z is made up of ventilating and thermal insulating module 1-1 and heat-conducting layer 1-11 ';
Described ventilation and air conditioning system 9, is made up of heat utilization air supply system 9A, ground dehumidifying air-conditioning system 9B and air exhaust tube system 10-13;
Described heat preservation ventilating window 10 is connected with heat utilization air supply system 9A, ground dehumidifying air-conditioning system 9B and air exhaust tube system 10-13, forms a complete energy-saving ventilating air air-conditioning system.
The utility model embodiment three, as shown in Fig. 2 and Fig. 6 ~ Fig. 8, comprises ventilating and thermal insulating module heating cooling ground, ventilation and air conditioning system 9 and warming solar energy vent window 10T; Described ventilating and thermal insulating module heating cooling ground, is made up of expandability polyethylene bedding 1D, ventilating and thermal insulating module body 1, floor heating pipeline 2, water collecting and diversifying device 2 ', dehumidifying heat radiation ajutage 3, dehumidifying heat dissipation wind channel 4, dehumidifying heat radiation duct set 3 ', air-conditioning ground ajutage 5, moistureproof heat-conducting layer 6 and wood flooring 8 ' from bottom to top successively;
Described ventilating and thermal insulating module body 1, a basic unit body assembled by standard straight frid 1Z and two ends curved groove plate 1W1 and 1W2; Described ventilating and thermal insulating module body 1 can be put together by multiple basic unit body according to room area size;
Described standard straight frid 1Z is made up of ventilating and thermal insulating module 1-1 and heat-conducting layer 1-11 ';
Described ventilation and air conditioning system 9, is made up of heat utilization air supply system 9A and ground dehumidifying air-conditioning system 9B;
Described warming solar energy vent window 10T is connected with heat utilization air supply system 9A, ground dehumidifying air-conditioning system 9B and air exhaust tube system 10-13, forms a complete energy-saving ventilating air air-conditioning system.
Described ventilating and thermal insulating module heating cooling ground shown in Fig. 2, Fig. 6, Fig. 8 and Fig. 9, from bottom to top successively by expandability polyethylene bedding 1D, ventilating and thermal insulating module body 1, floor heating pipeline 2, water collecting and diversifying device 2 ', dehumidifying heat radiation ajutage 3, dehumidifying heat dissipation wind channel 4, dehumidifying heat radiation duct set 3 ', air-conditioning ground ajutage 5, moistureproof heat-conducting layer 6 and composite floor board 8 " with I-shaped holding firmware 8 "-1 form; " be composited by finish coat 81 and basal plate 82, described finish coat 81 is stone material or vitrified tile or ceramic tile to described composite floor board 8; Described basal plate 82, adopts fortifying fibre cement pressure plate or fortifying fibre calcium silicate board to make; Described composite floor board 8 " surrounding side offer fixing groove;
Described ventilating and thermal insulating module body 1 makes by the ground heating heat insulation module being preset with anchorage support seat 1M that the patent No. is ZL201120220966.8 " novel multi-use fireproof heated board ";
Ground pavement technique is easier, because eliminating thick and heavy concrete cushion and adhesive linkage, and ground deadweight significantly being alleviated, more saving space.
Described ventilating and thermal insulating module 1-1 shown in Fig. 2, Fig. 3, Fig. 5, Fig. 7 and Fig. 9 ~ Figure 11 is provided with 4 ~ 6 road grooves, wherein, the spacing of 3 ~ 4 road groove 1-11 is 200mm or 150mm, for laying floor heating pipeline 2, other 1 ~ 2 road is ventilation groove 1-12, be separately positioned between two groove 1-11, as the use of dehumidifying heat dissipation wind channel 4.
Described heat-conducting layer 1-11 ' shown in Fig. 3 and Figure 10; be make with the thick aluminium sheet of 0.2mm ~ 0.6mm suitable for reading wide 15 ~ 20mm, bottom circular arc diameter 17 ~ 22mm, the degree of depth 17 ~ 21mm both sides with the U-shaped heat conduction aluminum lath 1-11 of 30mm ~ 90mm wide heat conduction limit 1-11 ' A "; this U-shaped heat conduction aluminum lath length setting is 1200mm or 1500mm or 1800mm; this U-shaped heat conduction aluminum lath not only can play the effect of heat conduction moisture protection, also can play good fixing effect to floor heating pipe line 2.
Described heat-conducting layer 1-11 ' shown in Fig. 5, Fig. 7, Fig. 9 and Figure 11, be that the soft graphite coiled material super heat conduction material of more than 330W/ (m.k) or aluminium sheet or aluminium foil are made with the coefficient of thermal conductivity that 0.04mm ~ 0.5mm is thick, preferred flexible graphite coiled material, and be pasted onto on ventilating and thermal insulating module 1-1 by environment-friendlyadhesive adhesive.
Described dehumidifying heat dissipation wind channel 4 shown in Fig. 2, Fig. 3, Fig. 5, Fig. 7, Fig. 9 and Figure 10, be included on ventilation groove 1-12 and inlay U-shaped heat conduction aluminum lath 1-11 " or be pasted with the heat-conducting layer 1-11 ' of soft graphite coiled material or aluminium sheet or aluminium foil, or coating one deck waterproofing course 1-12 '.
Described two ends curved groove plate 1W1 and 1W2 shown in Fig. 2 is two ends, left and right a pair, the groove of described curved groove plate 1W1 by 4 ~ 6 road groove 1-11 and 1-12, and with two groove 1-11 tangentially the arc curved groove 1-111 of crossing UNICOM and 1-112 form; Described arc curved groove 1-112 is 1/2nd of described arc curved groove 1-111.
Described curved groove plate 1W12 groove shown in Fig. 2 is by 4 ~ 6 road groove 1-11 and 1-12, and with the two groove 1-11 tangentially arc curved groove 1-111 of crossing UNICOM and 1-112, and longitudinal straight trough 1-11Z of a track pitch right-hand member limit 50 ~ 100mm is formed; Described arc curved groove 1-112 is 1/2nd of described arc curved groove 1-111.
The upper surface of described two ends curved groove plate 1W1 and 1W2 shown in Fig. 2 is pasted with one deck soft graphite coiled material or aluminium foil heat-conducting layer.
The extruded polystyrene warming plate (XPS plate) of the ventilating and thermal insulating module of the ventilating and thermal insulating module body 1 shown in Fig. 2, Fig. 3, Fig. 5, Fig. 7 and Fig. 9 ~ Figure 11 to be thick with 30mm ~ 60mm, long × wide compressive strength for 600mm ~ 1800mm × 600mm be more than 150KPa or molding polyphenylene heat insulation slab (EPS plate) or polyurethane thermal insulation board are made.
Described moistureproof heat-conducting layer 6 shown in Fig. 3, Fig. 5, Fig. 7 and Fig. 9 is the soft graphite coiled material or aluminium foil or aluminium sheet that 0.04mm ~ 0.4mm is thick.
Described heat preservation ventilating window 10 shown in Fig. 1 and Figure 12 ~ Figure 14, is incubated by window 10-1, hollow glass exterior window 10-2 and exterior decoration in heat absorption light reflective sunshading curtain 10 ', ventilation successively to outdoor from indoor and forms into exhaust duct 10A and 10B; One end or the two ends, left and right of described hollow glass exterior window 10-2 are provided with bottom hinged window 10-2A; The top of described bottom hinged window and side are provided with L-type protection screen pack 10C ';
In described ventilation, the top of window 10-1 is provided with and installs new wind intake stack 10-11, exhaust hose 10-123 and exhaust blower 10-13P reserved opening 10-11 ', 10-12 ' and 10-13 '; In described ventilation, window 3 is at least provided with the casement window 10-14 or sliding sash that a fan inwardly opens;
The top of described hollow glass exterior window 10-2 is provided with the reserved opening 10-11 " and 10-13 " installing new wind intake stack 10-11 and exhaust duct 10-131.
In the described ventilation shown in Fig. 1 and Figure 12 ~ Figure 14, form the good ventilating and thermal insulating cavity 10C of closed adiabatic heat-insulation between window 10-1 and hollow glass exterior window 10-2 double window, the K value of window can be promoted well; Described exterior decoration is incubated and is connected with heat utilization air supply system 9A and ground dehumidifying air-conditioning system 9B with air exhaust tube system 10-13 respectively by new wind intake stack 10-11 into exhaust duct 10A with 10B; Form a complete energy-saving ventilating air air-conditioning system;
Described exterior decoration insulation intake stack 10A can connect with basement center air purifying, preheating pipe-line system, so, new wind is through primarily efficient filter, and through with underground cool in summer and warm in winter cold/after hot air carries out cold and hot exchange, preheating or precooling, send into indoor through exterior decoration insulation intake stack 10A and new wind intake stack 10-11, greatly reduce room ventilation air conditioning energy consumption, and significantly reduce the operating cost of season of summer and winter air conditioner and air purification, haze prevention and cure of air pollution.
Described heat preservation ventilating window 10 shown in Fig. 4, Figure 15 and Figure 16, is made up of window 10-1 and hollow glass exterior window 10-2 in heat absorption light reflective sunshading curtain 10 ', ventilation to outdoor successively from indoor;
In described ventilation, the top of window 10-1 is provided with reserved opening 10-J11 ', the 10-J12 ' and 10-13P2 ' that are installed into wind pipeline 10-J11, exhaust hose 10-123 and exhaust duct 10-13P2; In described ventilation, window 10-1 is at least provided with the casement window 10-14 or sliding sash that a fan inwardly opens;
The top of described hollow glass exterior window 10-2 is provided with the reserved opening 10-12 installing exhaust hood 10-13P4 and Electric air valve 10-16 " and one end or the two ends, left and right of 10-16 ', described hollow glass exterior window 10-2 are provided with bottom hinged window 10-2A; In described Electric air valve 10-16, outside is respectively equipped with primary efficient filter screen 10-161 and anti-wind shelling cover 162; The top of described bottom hinged window and side are provided with L-type protection screen pack 10C '.
Described heat absorption light reflective sunshading curtain 10 ' shown in Fig. 1, Fig. 4, Fig. 6, Fig. 8, Figure 13 and Figure 16, point tow sides, front is the heat-absorbent surface in winter, and reverse side is reflective surface, for sunshade in summer reflected sunlight, heat insulation and heat control.
Described warming solar energy vent window 10T shown in Fig. 6, Fig. 8 and Figure 17, is made up of window 10-1, hollow glass exterior window 10-2 and angle type solar module 10-3 in heat absorption light reflective sunshading curtain 10 ', ventilation to outdoor successively from indoor;
In described ventilation, the top of window 10-1 is provided with the reserved opening 10-JP2 ' and 10-12 ' that are installed into exhaust duct 10-JP2 and exhaust hose 10-123; In described ventilation, window 10-1 is at least provided with the casement window 10-14 or sliding sash that a fan inwardly opens.
The reserved opening 10-12 installing exhaust hose 10-123 and Electric air valve 10-16 is offered above the described hollow glass exterior window 10-2 shown in Fig. 8 and Figure 17 " and one end or the two ends, left and right of 10-16 ', described hollow glass exterior window 10-2 are provided with bottom hinged window 10-2A; The top of described bottom hinged window and side are provided with L-type protection screen pack 10C '.
Described angle type solar module 10-3 shown in Fig. 8 and Figure 17, is made up of triangular support end plate 10T-1, end plate heat insulation layer 10T-1 ', L shape support bar 10T-2 and 10T-2 ', solar panel 10T-3, Z-type panel 10T-4 and junction box 10T-5; The oblique gradient θ of described solar panel 10T-3 is set as 40 ° ~ 70 °.
In the described ventilation shown in Fig. 4, Fig. 6, Fig. 8 and Figure 14 ~ Figure 17, form the good ventilating and thermal insulating cavity 10C of closed adiabatic heat-insulation between window 10-1 and hollow glass exterior window 10-2 double window, the K value of window can be promoted well; Described intake stack 10-J11 or enter exhaust duct 10-JP2 and be connected with heat utilization air supply system 9A and ground dehumidifying air-conditioning system 9B with extract duct 10-12; And a complete energy-saving ventilating air air-conditioning system is formed together with air exhaust tube system.
Described hollow glass exterior window 10-2 shown in Fig. 8 and Figure 12 ~ Figure 17 is two glass one chambeies or three glass two chamber medi-empty glass windows, and window frame material is plastic-steel or glass fiber reinforced plastic or bridge-cut-off aluminum.
Described heat utilization air supply system 9A shown in Fig. 1, Figure 13 and Figure 14, is made up of new wind intake stack 10-11, air entering and returning mouth 10-11A, ajutage 10-11B, interchange of heat recover 9A1, air-supply threeway 9A2, air purifier 9A3, quiet blower fan 9A4, dehumidifier 9A5, air outlet 9A6 and extract duct 10-12; Described new wind intake stack 10-11 is made up of Electric air valve 10-111, intake stack 10-112 and air intake 10-113; All pipeline outer walls of described heat utilization air supply system 9A are equipped with cellular rubber insulation layer.
Described heat utilization air supply system 9A shown in Fig. 6, Fig. 8 and Figure 17, by primary efficient filter screen 10-JP1, exhaust blower 10-P, enters exhaust duct 10-JP2, electronic time air outlet 10-HP3, ajutage 10-11B, interchange of heat recover 9A1, air-supply threeway 9A2, air purifier 9A3, quiet blower fan 9A4, air outlet 9A5 ' and 9A6 and extract duct 10-12 and forms; All pipeline outer walls of described heat utilization air supply system 9A are equipped with cellular rubber insulation layer.
Described heat utilization air supply system 9A shown in Fig. 4, Figure 15 and Figure 16, is made up of primary efficient filter screen 10-J111, intake stack 10-J11, electronic air entering and returning mouth 10-JH, ajutage 10-11B, interchange of heat recover 9A1, air-supply threeway 9A2, air purifier 9A3, quiet blower fan 9A4, air outlet 9A5 ' and 9A6 and extract duct 10-12; All pipeline outer walls of described heat utilization air supply system 9A are equipped with cellular rubber insulation layer.
Described ground dehumidifying air-conditioning system 9B shown in Fig. 1, Fig. 4, Fig. 6, Fig. 8, Figure 13 and Figure 16, by returning air outlet 9B1, return air standpipe 9B5, dehumidifying heat radiation ajutage 3, dehumidifying heat dissipation wind channel 4, dehumidifying heat radiation duct set 3 ', dehumidifying heat radiation collection wind standpipe 3 ", interchange of heat recover 9A1, extract duct 10-12, air-conditioning ground ajutage 5, standpipe 51 of blowing, air-supply threeway 9A2, air purifier 9A3, quiet blower fan 9A4, dehumidifier 9A5 or air outlet 9A5 ' and air outlet 9A6 form
Described air exhaust tube system 10-13 shown in Fig. 1 and Figure 14, is made up of air outlet 10-13P, air outlet 10-13P1, threeway 10-131, exhaust duct 10-132, air draft bend pipe 10-133 and air outlet 10-134; The preferred electric vent of described air outlet 1-13P.
Described air exhaust tube system 10-13 shown in Fig. 4 and Figure 15, is made up of electronic air outlet 10-13P, exhaust blower 10-13P1, exhaust duct 10-13P2 and 10-13P23, air draft threeway 10-13P3 and exhaust hood 10-13P4; Described exhaust duct 10-13P2 and 10-13P23 and air draft threeway 10-13P3 adopts the good metal tube of thermal conductivity or aluminium foil hose or pvc pipe to make; Described exhaust duct 10-13P23 is arranged on shelter above window, indoor foul smell, in the way drained into outside window through exhaust duct 10-13P2 and 10-13P23, air draft threeway 10-13P3 and exhaust hood 10-13P4 and after the new wind of ventilating and thermal insulating cavity 10C carries out cold and hot exchange, preheating, is sent into indoor through quiet blower fan 9A4; Reach the object recycled further by the waste heat in room air.
Described air entering and returning mouth 10-11A shown in Fig. 1 and Figure 13, be provided with filter screen and air door, when only needing indoor air circulation, air entering and returning mouth 10-11A can be opened, and close Electric air valve 10-111, under the effect of quiet blower fan 9A4 wind-force, by after interchange of heat recover 9A1 waste heat recovery cold/heating installation and air-conditioning ground ajutage 5 in cold/heating installation, by air-supply threeway 9A2, and through air purifier 9A3 and dehumidifier 9A5, air outlet 9A6 sends into indoor, reaching does not window also can breathe clean air, and reach waste heat recovery, reduce air conditioner energy consumption, promote the object of ground heating cooling and air conditioner effect.But when season in spring and autumn without the need to heating, and cold supplying time, can open Electric air valve 10-111 and air entering and returning mouth 10-11A, under suction function, new wind is in air entering and returning mouth 10-11A screen pack flowed into chamber.
Described air purifier 9A3 is that fresh air purifying case or employing have electrostatic precipitation sterilization, flushing-free, electronic air cleaner capable of releasing negative ion;
More than all ground of described ventilation and air conditioning system 9 bright dew pipe section all carries out hiding decoration with customized assembly type collecting cabinet.
Described extract duct 10-12 shown in Fig. 1, Fig. 6, Figure 14 and Figure 17, is made up of exhaust hose 10-121, exhaust blower 10-122, exhaust hose 10-123 and air draft threeway 10-13P3 or exhaust elbow 10-124; Described extract duct 10-12 by outside the exhaust removal chamber after fully reclaiming through interchange of heat recover 9A1 waste heat, and can reach the object of dehumidifying.
Described dehumidifying heat radiation ajutage 3 shown in Fig. 1, Fig. 2, Fig. 4 and Fig. 6 and dehumidifying heat radiation duct set 3 ' are the rectangular tube of 25mm × 60mm or 30mm × 60-120mm or 40-60mm × 60-130mm, and offer the gravity vent 3K of Φ 10mm ~ Φ 30mm in the side corresponding to dehumidifying heat dissipation wind channel 4.
Described air-conditioning ground ajutage 5 shown in Fig. 1, Fig. 2, Fig. 4, Fig. 6, Fig. 8, Figure 13 and Figure 16 is rectangular tube or the two or more porous rectangular tube of 25mm × 60mm or 30mm × 60-120mm or 40-60mm × 60-130mm.
Described interchange of heat recover 9A1 shown in Fig. 1, Fig. 4, Fig. 6, Fig. 8, Figure 13, Figure 16 and Figure 18, by interchange of heat air intake sleeve pipe 9A11, be placed in interchange of heat exhaust duct 9A12 in sleeve pipe and sleeve outer wall thermal insulating 9A13 and form, the upper and lower two ends of described interchange of heat exhaust duct 9A12 through the interchange of heat air intake sleeve pipe 9A11 upper and lower side threeway mouth of pipe 9A14 and 9A15, respectively with extract duct 10-12 and dehumidify to dispel the heat and collect wind standpipe 3 " connect; Upper and lower two side ends is preset with interface 9A16 and 9A16 ' connected with ajutage and the threeway 9A2 that blows respectively;
Described interchange of heat air intake sleeve pipe 9A11 adopts Φ 110mm ~ Φ 200mm plastic round tube or metal circular tube to assemble.
Described interchange of heat exhaust duct 9A12 shown in Figure 19 is that the circular aluminum profile material tube of Φ 50mm ~ Φ 100mm or round metal tube are made with diameter.
Described quiet blower fan 9A4, exhaust blower 10-122, exhaust blower 10-13P1 and exhaust blower 10-P shown in Fig. 1, Fig. 4, Fig. 6, Fig. 8, Figure 13 ~ Figure 16, can according to the difference of room area size, room application and installation position, the quiet blower fan selecting exhaust air rate moderate or window glass installing type ventilation fan, or split ventilator, and comprise direct current blower fan or alternating current blower fan.
The electric fixturess such as described exhaust blower 10-P, exhaust blower 10-13P1 shown in Fig. 1, Fig. 4, Fig. 7, Figure 12, Figure 15 and Figure 16, quiet blower fan 9A4, exhaust blower 10-122, Electric air valve 10-111, Electric air valve 10-16, electric vent and dehumidifier all with can Real-Time Monitoring interior temperature, humidity, VOC concentration, PM2.5, built in air mass sensor, can the indoor volatile organic compounds of real-time detection, the ventilation system intelligent controller of switch and rotating speed that controller output signal directly controls blower fan is connected to form intelligentized electric-control system.
The main operational principle of the described ventilation and air conditioning system 9 shown in Fig. 1, Figure 13 and Figure 14 is:
Open Electric air valve 10-111, quiet blower fan 9A4 and exhaust blower 10-122, new wind is flowed into by new wind air intake 10-113, can directly send into indoor by the air entering and returning mouth 10-11A opened, also air entering and returning mouth 10-11A can be closed, make new wind by ajutage 10-11B, and through interchange of heat recover 9A1 and air purifier 9A3, by cold/heating installation in the new wind after waste heat recovery and the process of PM2.5 filtration, purification and floor after dehumidifier 9A5 dehumidifies, send into indoor by air outlet 9A6; Simultaneously, under quiet blower fan 9A4 and exhaust blower 10-122 effect, return air enters from return air inlet 9B1, point two-way after return air standpipe 9B5, one tunnel is through dehumidifying heat radiation ajutage 3, after branching to dehumidifying heat radiation air delivery duct 4, through dehumidifying heat radiation duct set 3 ', dehumidifying heat radiation collection wind standpipe 3 " and interchange of heat recover 9A1; and by moisture in the floor after cold and hot exchange, waste heat recovery; drain into outdoor through extract duct 10-12; reach dehumidifying, condensation, the generation of condensed water and the object of waste heat recovery when preventing cooling; Another road is through surrounding air-conditioning ground ajutage 5 and ground air-supply standpipe 51, air-supply threeway 9A2, air purifier 9B3 and quiet blower fan 9B4, by cold in the floor after filtration, purification process/heating installation after dehumidifier 9A5 dehumidifies, sent into by air outlet 9A6 indoor, good auxiliary heating cooling can be played, reduce air conditioner energy consumption; While improving the air conditioner effect on radiant heating cooling ground, reach heat recovery, air purification process, do not open a window and can breathe clean fresh air, healthy comfortable object yet, and reach a floor heating end and realize both cooling and heating, low-carbon energy-saving, reduce air conditioner and install and the object of running cost.
During air draft, open air outlet 10-13P and exhaust blower 10-13P1, and be incubated by air exhaust tube system 10-13 and exterior decoration and drain into outdoor into exhaust duct 10B.
The main operational principle of the described ventilation and air conditioning system 9 shown in Fig. 4, Figure 15 and Figure 16 is:
1, when the season of summer and winter of cooling heating, for avoiding the loss causing air-conditioning because entering air draft as much as possible, be designed to not window, room air is only in indoor circulation.Now, electric vent 16 need be closed, under the effect of quiet blower fan 9A4 wind-force, room air enters from air entering and returning mouth 10-JH, through ajutage 10-11B and interchange of heat recover 9A1, by with in interchange of heat exhaust duct 9A12 cold/heating installation carries out interchange of heat, after waste heat recovery cold/heating installation and air-conditioning ground ajutage 5 in cold/heating installation, by air-supply threeway 9A2, and send into indoor through air purifier 9A3 and air outlet 9A5 ' and 9A6, simultaneously, under quiet blower fan 9A4 and exhaust blower 10-122 effect, return air is after return air inlet 9B1 and return air standpipe 9B5, divide two-way, one tunnel is through dehumidifying heat radiation ajutage 3, after branching to dehumidifying heat radiation air delivery duct 4, through dehumidifying heat radiation duct set 3 ', dehumidifying heat radiation collection wind standpipe 3 " and interchange of heat recover 9A1, and will through cold and hot exchange, moisture in floor after waste heat recovery, outdoor is drained into through extract duct 10-12, reach dehumidifying, prevent from condensing during cooling, the generation of condensed water and the object of waste heat recovery, another road is through surrounding air-conditioning ground ajutage 5 and ground air-supply standpipe 51, air-supply threeway 9B2, air purifier 9B3 and quiet blower fan 9B4, cold in floor after filtration, purification process/heating installation is sent into indoor by air outlet 9A5 ' and 9A6, reach heat recovery, air purification process, auxiliary heating cooling, reduction air conditioner energy consumption, improve the air conditioner effect on radiant heating cooling ground, and can realize not opening a window and also can breathe clean air, healthy comfortable object, and reach a floor heating end both cooling and heating, low-carbon energy-saving, reduce air conditioner and install and the object of running cost.
When needs air draft, only need open electronic air outlet 10-13P and exhaust blower 10-13P1, foul indoor air just drains into outside window by exhaust duct 10-13P2 and 10-13P23, air draft threeway 10-13P3 and exhaust hood 10-13P4, and after carrying out cold and hot exchange, preheating with the new wind by way of ventilating and thermal insulating cavity 10C, new wind is sent into indoor through quiet blower fan 9A4; Reach the object recycled further by the waste heat in room air.
2, when season in spring and autumn without the need to heating, and cold supplying time, both new wind entrance bottom hinged window 10-2A can have been opened, only need close electronic air entering and returning mouth 10-JH, direct unlatching quiet blower fan 9A4 or exhaust blower 10-13P1, send into indoor after the Electric air valve 10-16 that new wind or foul indoor air just can be made to pass through to open, primary efficient filter screen 161, ventilating and thermal insulating cavity 10C and intake stack 10-J11, or drain into outdoor by air exhaust tube system 10-13.Also bottom hinged window 10-2A can be opened, under the wind-force effect of quiet blower fan 9A4, or the negative pressure only relying on washroom and other room air draft to produce, make new wind by opening bottom hinged window 10-2A, the electronic air entering and returning mouth 10-JH of ventilating and thermal insulating cavity 10C, intake stack 10-J11 and unlatching sends into indoor.
The main operational principle of the described ventilation and air conditioning system 9 shown in Fig. 6, Fig. 8 and Figure 17 is:
1, when the season of summer and winter of cooling heating, for avoiding the loss causing air-conditioning because entering air draft as much as possible, be designed to not window, room air is only in indoor circulation.Now, Electric air valve 16 need be closed, under the effect of quiet blower fan 9A4 wind-force, room air enters from electronic time air outlet 10-HP3, through ajutage 10-11B and interchange of heat recover 9A1, by with in interchange of heat exhaust duct 9A12 cold/heating installation carries out interchange of heat, after waste heat recovery cold/heating installation and air-conditioning ground ajutage 5 in cold/heating installation, by air-supply threeway 9A2, and send into indoor through air purifier 9A3 and air outlet 9A5 ' and 9A6, simultaneously, under quiet blower fan 9A4 and exhaust blower 10-122 effect, return air is after return air inlet 9B1 and return air standpipe 9B5, divide two-way, one tunnel is through dehumidifying heat radiation ajutage 3, after branching to dehumidifying heat radiation air delivery duct 4, through dehumidifying heat radiation duct set 3 ', dehumidifying heat radiation collection wind standpipe 3 " and interchange of heat recover 9A1, and will through cold and hot exchange, moisture in floor after waste heat recovery, outdoor is drained into through extract duct 10-12, reach dehumidifying, prevent from condensing during cooling, the generation of condensed water and the object of waste heat recovery, another road is through surrounding air-conditioning ground ajutage 5 and ground air-supply standpipe 51, air-supply threeway 9B2, air purifier 9B3 and quiet blower fan 9B4, cold in floor after filtration, purification process/heating installation is sent into indoor by air outlet 9A5 ' and 9A6, reach heat recovery, air purification process, auxiliary heating cooling, reduction air conditioner energy consumption, improve the air conditioner effect on radiant heating cooling ground, and can realize not opening a window and also can breathe clean air, healthy comfortable object, and reach a floor heating end both cooling and heating, low-carbon energy-saving, reduce air conditioner and install and the object of running cost.
When needs air draft, only need open exhaust blower 10-P, foul indoor air just by open electronic time air outlet 10-HP3, enter exhaust duct 10-JP2, ventilating and thermal insulating cavity 10C, the Electric air valve 10-16 of unlatching and fan housing 10-17 and drain into outdoor.
2, when season in spring and autumn without the need to heating, and cold supplying time, both new wind entrance bottom hinged window 10-2A can have been opened, only need directly to open quiet blower fan 9A4 or exhaust blower 10-P, new wind or foul indoor air just can be made to send into indoor by the Electric air valve 10-16 of ventilating and thermal insulating cavity 10C, unlatching and fan housing 10-17 or drain into outdoor.Also bottom hinged window 10-2A can be opened, under the wind-force effect of quiet blower fan 9A4 or exhaust blower 10-P, or under the suction function only relying on washroom and other room air draft to produce, the bottom hinged window 10-2A, the ventilating and thermal insulating cavity 10C that make new wind pass through to open, the electronic time air outlet 10-HP3 entering exhaust duct 10-JP2 and unlatching send into indoor, or drain into outdoor.
The utility model is not limited only to above several disclosed specific embodiment, and any employing in this area is replaced on an equal basis or the technical scheme of equivalent transformation mode all should fall into protection domain of the present utility model.

Claims (14)

1. ventilating and thermal insulating module heating cooling ground and an energy-saving ventilating air air-conditioning system, comprises ventilating and thermal insulating module heating cooling ground, ventilation and air conditioning system (9) and heat preservation ventilating window (10); Described ventilating and thermal insulating module heating cooling ground, it is characterized in that, from bottom to top successively by ventilating and thermal insulating module body (1), floor heating pipeline (2) and water collecting and diversifying device (2 '), dehumidify dispel the heat ajutage (3), the heat dissipation wind channel (4) that dehumidifies, dehumidify dispel the heat duct set (3 '), air-conditioning ajutage (5), moistureproof heat-conducting layer (6), anticracking grout bed course (7), tack coat (7 ') and ground decoration panel (8) form;
Described ventilating and thermal insulating module body (1), by the assembled basic unit body of standard straight frid (1Z) and two ends curved groove plate (1W1,1W2); Described standard straight frid (1Z) is made up of ventilating and thermal insulating module (1-1) and heat-conducting layer (1-11 ');
Described ventilation and air conditioning system (9), is made up of heat utilization air supply system (9A), ground dehumidifying air-conditioning system (9B) and air exhaust tube system (10-13);
Described heat preservation ventilating window (10) is connected with heat utilization air supply system (9A), ground dehumidifying air-conditioning system (9B) and air exhaust tube system (10-13), forms a complete energy-saving ventilating air air-conditioning system.
2. ventilating and thermal insulating module heating cooling ground and an energy-saving ventilating air air-conditioning system, comprises ventilating and thermal insulating module heating cooling ground, ventilation and air conditioning system (9) and heat preservation ventilating window (10); Described ventilating and thermal insulating module heating cooling ground, it is characterized in that, from bottom to top successively by damp-proof course (1F), ventilating and thermal insulating module body (1), floor heating pipeline (2) and water collecting and diversifying device (2 '), dehumidify dispel the heat ajutage (3), the heat dissipation wind channel (4) that dehumidifies, dehumidify dispel the heat duct set (3 '), air-conditioning ajutage (5), anticracking grout bed course (7), moistureproof heat-conducting layer (6) and wood flooring (8 ') form;
Described ventilating and thermal insulating module body (1), by the assembled basic unit body of standard straight frid (1Z) and two ends curved groove plate (1W1,1W2); Described standard straight frid (1Z) is made up of ventilating and thermal insulating module (1-1) and heat-conducting layer (1-11 ');
Described ventilation and air conditioning system (9), is made up of heat utilization air supply system (9A), ground dehumidifying air-conditioning system (9B) and air exhaust tube system (10-13);
Described heat preservation ventilating window (10) is connected with heat utilization air supply system (9A), ground dehumidifying air-conditioning system (9B) and air exhaust tube system (10-13), forms a complete energy-saving ventilating air air-conditioning system.
3. a kind of ventilating and thermal insulating module heating cooling ground as claimed in claim 2 and energy-saving ventilating air air-conditioning system, it is characterized in that, described heat utilization air supply system (9A), is made up of primary efficient filter screen (10-JP111), air intake pipe orifice (10-J11), electronic air entering and returning mouth (10-JH), ajutage (10-11B), interchange of heat recover (9A1), air-supply threeway (9A2), air purifier (9A3), quiet blower fan (9A4), air outlet (9A5 ', 9A6) and extract duct (10-12).
4. a kind of ventilating and thermal insulating module heating cooling ground as claimed in claim 2 and energy-saving ventilating air air-conditioning system, it is characterized in that, described air exhaust tube system (10-13), is made up of electronic air outlet (10-13P), exhaust blower (10-13P1), exhaust duct (10-13P2,10-13P23), air draft threeway (10-13P3) and exhaust hood (10-13P4); Described exhaust duct (10-13P2,10-13P23) and air draft threeway (10-13P3) adopt the good metal tube of thermal conductivity or aluminium foil hose or pvc pipe to make.
5. ventilating and thermal insulating module heating cooling ground and an energy-saving ventilating air air-conditioning system, comprises ventilating and thermal insulating module heating cooling ground, ventilation and air conditioning system (9) and warming solar energy vent window (10T); Described ventilating and thermal insulating module heating cooling ground, it is characterized in that, be made up of expandability polyethylene bedding (1D), ventilating and thermal insulating module body (1), floor heating pipeline (2), water collecting and diversifying device (2 '), dehumidifying heat radiation ajutage (3), dehumidifying heat dissipation wind channel (4), dehumidifying heat radiation duct set (3 '), air-conditioning ground ajutage (5), moistureproof heat-conducting layer (6) and wood flooring (8 ') successively from bottom to top;
Described ventilating and thermal insulating module body (1), by the assembled basic unit body of standard straight frid (1Z) and two ends curved groove plate (1W1,1W2); Described standard straight frid (1Z) is made up of ventilating and thermal insulating module (1-1) and heat-conducting layer (1-11 ');
Described ventilation and air conditioning system (9), is made up of heat utilization air supply system (9A) and ground dehumidifying air-conditioning system (9B);
Described warming solar energy vent window (10T) is connected with heat utilization air supply system (9A) and ground dehumidifying air-conditioning system (9B), forms a complete energy-saving ventilating air air-conditioning system.
6. a kind of ventilating and thermal insulating module heating cooling ground as claimed in claim 5 and energy-saving ventilating air air-conditioning system, it is characterized in that, described ventilating and thermal insulating module heating cooling ground, from bottom to top successively by expandability polyethylene bedding (1D), ventilating and thermal insulating module body (1), floor heating pipeline (2), water collecting and diversifying device (2 '), dehumidifying heat radiation ajutage (3), dehumidifying heat dissipation wind channel (4), dehumidifying heat radiation duct set (3 '), air-conditioning ground ajutage (5), moistureproof heat-conducting layer (6) and composite floor board (8 ") and I-shaped holding firmware (8 "-1) form, (8 ") are composited by finish coat (81) and basal plate (82) described composite floor board, and described finish coat (81) is stone material or vitrified tile or ceramic tile, described basal plate (82), adopts fortifying fibre cement pressure plate or fortifying fibre calcium silicate board to make, (the surrounding side of 8 ") offers fixing groove to described composite floor board.
7. a kind of ventilating and thermal insulating module heating cooling ground as claimed in claim 5 and energy-saving ventilating air air-conditioning system, it is characterized in that, described heat utilization air supply system (9A), by primary efficient filter screen (10-JP1), exhaust blower (10-P), enter exhaust duct (10-JP2), electronic time air outlet (10-HP3), ajutage (10-11B), interchange of heat recover (9A1), air-supply threeway (9A2), air purifier (9A3), quiet blower fan (9A4), air outlet (9A5 ', 9A6) and extract duct (10-12) form.
8. a kind of ventilating and thermal insulating module heating cooling ground as described in claim 3 or 7 and energy-saving ventilating air air-conditioning system, it is characterized in that, described interchange of heat recover (9A1), by interchange of heat air intake sleeve pipe (9A11), be placed in the interchange of heat exhaust duct (9A12) in sleeve pipe and sleeve outer wall thermal insulating (9A13) formation, described interchange of heat exhaust duct (9A12) up and down two ends passes interchange of heat air intake sleeve pipe (9A11) the upper and lower side threeway mouth of pipe (9A14, 9A15), dispel the heat with extract duct (10-12) and dehumidifying respectively and collect wind standpipe (3 ") connect, upper and lower two side ends is preset with the interface (9A16,9A16 ') connected with ajutage and threeway (9A2) of blowing respectively,
Described interchange of heat air intake sleeve pipe (9A11) adopts Ф 110mm ~ Ф 200mm plastic round tube or metal circular tube to assemble.
9. a kind of ventilating and thermal insulating module heating cooling ground as claimed in claim 8 and energy-saving ventilating air air-conditioning system, it is characterized in that, described interchange of heat exhaust duct (9A12) is that the circular aluminum profile material tube of Ф 50mm ~ Ф 100mm or round metal tube are made with diameter.
10. a kind of ventilating and thermal insulating module heating cooling ground as described in claim 1 or 2 or 5 and energy-saving ventilating air air-conditioning system, it is characterized in that, described ventilating and thermal insulating module (1-1) is provided with 4 ~ 6 road grooves, wherein, the spacing of 3 ~ 4 road grooves (1-11) is 200mm or 150mm, for laying floor heating pipeline (2), other 1 ~ 2 road is ventilation groove (1-12), is separately positioned between two grooves (1-11).
11. a kind of ventilating and thermal insulating module heating cooling ground as described in claim 1 or 2 or 5 and energy-saving ventilating air air-conditioning system, it is characterized in that, described dehumidifying heat dissipation wind channel (4), be included in and ventilation groove (1-12) inlay U-shaped heat conduction aluminum lath (1-11 ") or be pasted with the heat-conducting layer (1-11 ') of soft graphite coiled material or aluminium sheet or aluminium foil, or coating one deck waterproofing course (1-12 ').
12. a kind of ventilating and thermal insulating module heating cooling ground as described in claim 1 or 2 or 5 and energy-saving ventilating air air-conditioning system, it is characterized in that, described two ends curved groove plate (1W1,1W2) are a pair, two ends, left and right, the groove of described curved groove plate (1W1) by 4 ~ 6 road grooves (1-11,1-12), and is formed with the arc curved groove (1-111,1-112) of the tangential crossing UNICOM of two grooves (1-11); Described arc curved groove (1-112) is 1/2nd of described arc curved groove (1-111).
13. a kind of ventilating and thermal insulating module heating cooling ground as described in claim 1 or 2 or 5 and energy-saving ventilating air air-conditioning system, it is characterized in that, described curved groove plate (1W12) groove is by 4 ~ 6 road grooves (1-11,1-12), with the arc curved groove (1-111,1-112) of the tangential crossing UNICOM of two grooves (1-11), and longitudinal straight trough (1-11Z) of a track pitch right-hand member limit 50 ~ 100mm is formed; Described arc curved groove (1-112) is 1/2nd of described arc curved groove (1-111).
14. a kind of ventilating and thermal insulating module heating cooling ground as described in claim 1 or 2 or 5 and energy-saving ventilating air air-conditioning system, it is characterized in that, described ground dehumidifying air-conditioning system (9B), by returning air outlet (9B1), return air standpipe (9B5), dehumidifying heat radiation ajutage (3), dehumidifying heat dissipation wind channel (4), dehumidifying heat radiation duct set (3 '), dehumidifying heat radiation collection wind standpipe (3 "), interchange of heat recover (9A1), extract duct (10-12), air-conditioning ground ajutage (5), ground air-supply standpipe (51), air-supply threeway (9A2), air purifier (9A3), quiet blower fan (9A4), dehumidifier (9A5) or air outlet (9A5 ') air outlet (9A6) are formed.
CN201520262728.1U 2014-12-23 2015-04-28 Ventilation heat preservation module heating cooling ground and energy -conserving ventilation air conditioning system Expired - Fee Related CN204804133U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520262728.1U CN204804133U (en) 2014-12-23 2015-04-28 Ventilation heat preservation module heating cooling ground and energy -conserving ventilation air conditioning system

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201420819680 2014-12-23
CN201520262728.1U CN204804133U (en) 2014-12-23 2015-04-28 Ventilation heat preservation module heating cooling ground and energy -conserving ventilation air conditioning system

Publications (1)

Publication Number Publication Date
CN204804133U true CN204804133U (en) 2015-11-25

Family

ID=54588979

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201520262728.1U Expired - Fee Related CN204804133U (en) 2014-12-23 2015-04-28 Ventilation heat preservation module heating cooling ground and energy -conserving ventilation air conditioning system

Country Status (1)

Country Link
CN (1) CN204804133U (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105841215A (en) * 2016-05-24 2016-08-10 长春工程学院 Cortile heat recycling system using venturi effect
CN107166619A (en) * 2016-04-21 2017-09-15 冯刚克 Combined type air conditioner and recuperation of heat air cleaning system
CN107178842A (en) * 2016-09-13 2017-09-19 冯刚克 Water power dual purpose heat radiator and air-conditioning system
CN111663739A (en) * 2020-06-09 2020-09-15 郑州航空工业管理学院 Can absorb hollow carpenter board of formaldehyde and inside structure of taking a breath thereof

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107166619A (en) * 2016-04-21 2017-09-15 冯刚克 Combined type air conditioner and recuperation of heat air cleaning system
CN105841215A (en) * 2016-05-24 2016-08-10 长春工程学院 Cortile heat recycling system using venturi effect
CN107178842A (en) * 2016-09-13 2017-09-19 冯刚克 Water power dual purpose heat radiator and air-conditioning system
CN111663739A (en) * 2020-06-09 2020-09-15 郑州航空工业管理学院 Can absorb hollow carpenter board of formaldehyde and inside structure of taking a breath thereof

Similar Documents

Publication Publication Date Title
CN104763087A (en) Ventilation and heat preservation module heating and cooling floor and energy-saving ventilation and air conditioning system
CN104197438A (en) Thermal insulation module radiant heating and cooling ground and ventilation air conditioner system
CN204804133U (en) Ventilation heat preservation module heating cooling ground and energy -conserving ventilation air conditioning system
CN104775728A (en) Double-layer ventilation and thermal-insulation window and energy-saving ventilation and air conditioning system
CN107062474A (en) A kind of nearly zero energy consumption building system based on accumulation of energy
CN103644670A (en) Novel indoor heating system of solar water heater
CN105649198A (en) Building energy-saving photovoltaic system
CN105544746B (en) A kind of building structure and its method using shading system energy-conservation
CN106930446A (en) Ground source heat solar-energy ecological type is built
CN101008290A (en) Collective housing with novel exterior wall enclosure, air supply, refrigerating and heating systems
CN204963045U (en) Ventilation heat preservation module heating cooling ground and energy -conserving ventilation air conditioning system
CN204329209U (en) Heat preservation module radiant heating cooling ground and ventilation and air conditioning system
CN113026931B (en) High-air-tightness passive house and construction process thereof
CN203487679U (en) Prefabricated combined type heat preservation module radiation heating and cooling air-conditioning floor
CN1936440A (en) Super-energy-saving comfortible health-care type local air-conditioner
CN204609698U (en) Double-layer ventilation heat insulation window and energy-saving ventilating air air-conditioning system
CN201794319U (en) Dual-purpose heating and drying room with solar air collector
CN101059279B (en) Air type solar energy heat-collecting ventilation system
CN206245530U (en) Ground source heat solar-energy ecological type is built
JP6875671B1 (en) Housing
CN102797363A (en) Environment-friendly energy-saving disaster-reduction building
CN205475754U (en) Utilize energy -conserving building structure of solar shading system
CN106121276A (en) A kind of super energy saving building interior decoration structure
CN107514152A (en) A kind of energy-saving mobile log cabin
WO2011116625A1 (en) Composite solar heat collecting plate of foam and black ceramic and its manufacturing method and applications

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20151125

Termination date: 20160428

CF01 Termination of patent right due to non-payment of annual fee