CN107339805A - Air energy thermal water installations - Google Patents

Air energy thermal water installations Download PDF

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Publication number
CN107339805A
CN107339805A CN201710730875.0A CN201710730875A CN107339805A CN 107339805 A CN107339805 A CN 107339805A CN 201710730875 A CN201710730875 A CN 201710730875A CN 107339805 A CN107339805 A CN 107339805A
Authority
CN
China
Prior art keywords
water
inner tube
pipe
outdoor unit
support member
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.)
Pending
Application number
CN201710730875.0A
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Chinese (zh)
Inventor
张亚宁
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.)
HUNAN EWAVV NEW ENERGY TECHNOLOGY Co Ltd
Original Assignee
HUNAN EWAVV NEW ENERGY TECHNOLOGY Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by HUNAN EWAVV NEW ENERGY TECHNOLOGY Co Ltd filed Critical HUNAN EWAVV NEW ENERGY TECHNOLOGY Co Ltd
Priority to CN201710730875.0A priority Critical patent/CN107339805A/en
Publication of CN107339805A publication Critical patent/CN107339805A/en
Pending legal-status Critical Current

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24HFLUID HEATERS, e.g. WATER OR AIR HEATERS, HAVING HEAT-GENERATING MEANS, e.g. HEAT PUMPS, IN GENERAL
    • F24H4/00Fluid heaters characterised by the use of heat pumps
    • F24H4/02Water heaters
    • F24H4/04Storage heaters
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24HFLUID HEATERS, e.g. WATER OR AIR HEATERS, HAVING HEAT-GENERATING MEANS, e.g. HEAT PUMPS, IN GENERAL
    • F24H9/00Details
    • F24H9/06Arrangement of mountings or supports for heaters, e.g. boilers, other than space heating radiators
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24HFLUID HEATERS, e.g. WATER OR AIR HEATERS, HAVING HEAT-GENERATING MEANS, e.g. HEAT PUMPS, IN GENERAL
    • F24H9/00Details
    • F24H9/18Arrangement or mounting of grates or heating means
    • F24H9/1809Arrangement or mounting of grates or heating means for water heaters
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24HFLUID HEATERS, e.g. WATER OR AIR HEATERS, HAVING HEAT-GENERATING MEANS, e.g. HEAT PUMPS, IN GENERAL
    • F24H9/00Details
    • F24H9/20Arrangement or mounting of control or safety devices
    • F24H9/2007Arrangement or mounting of control or safety devices for water heaters

Abstract

The present invention relates to technical field of air energy, specifically discloses a kind of air energy thermal water installations, including outdoor unit and boiler, is connected between outdoor unit and boiler by water-supply-pipe;The device also includes cold water storage cistern, water main and branch water pipe, water main one end connects with the hot water outlet of boiler, the other end is communicated in the water inlet of three-way magnetic valve, first delivery port of three-way magnetic valve is connected by branch water pipe with cold water storage cistern, and the second delivery port of three-way magnetic valve is provided with and communicated with hot water out pipe;The device also includes being used for the shock mount for supporting outdoor unit;Heat exchanger is provided with the outdoor unit, the heat exchanger includes outer tube and at least two groups of inner pipe sections being set in outer tube;The present invention can not only avoid putting the waste for staying cold water, improve Consumer's Experience, and effectively can carry out damping noise reduction to outdoor unit, with noise caused by reducing outdoor unit work, improve the anti-acoustic capability of device, while improve the heat exchanger effectiveness of heat exchanger.

Description

Air energy thermal water installations
Technical field
The present invention relates to technical field of air energy, more particularly to a kind of air energy thermal water installations.
Background technology
Air energy thermal water installations are the living electric apparatus using heat pump techniques hot water preparing, and its common structure includes outdoor unit (part such as motor rotated by heat exchanger, fan blade and the driving fan blade installed in the housing forms) and boiler (are provided with phase Closing valve and controlling and regulating system) two large divisions;When air energy thermal water installations are run, similar to the air-conditioning run under heating mode Device, it obtains Lowlevel thermal energy by outdoor unit from air, the hot water preparing for the progress heat exchange in boiler.It is existing Some air energy thermal water installations have both sides technical problem:First, (it is generally located in the fire hose from boiler to outlet water at tail end mouth Head or showerhead) between be provided with one section of longer transition conduit, and when in use, have cold water due to staying storage in transition conduit, make Into postponing hot water, poor user experience, and the water originally stayed in transition conduit can be wasted, and be unfavorable for the abundant profit of resource With;Second, noise is larger when outdoor unit works, and influences resident living, and at present although producer develops many internal denoising structures, But because outdoor unit integrally can also contact with ground, if not done by appropriate damping noise reduction, the transmission of vibrations can still produce Disturb the noise the 3rd of people, at present used in tube-in-tube heat exchanger, fluid that heat is passed through by inner pipe wall and inner tube The heat exchange area of medium progress heat exchange, outer tube and inner tube is only the tube wall of inner tube, have impact on the raising of heat exchanger effectiveness.
The content of the invention
In view of this, it is an object of the invention to provide a kind of air energy thermal water installations, can not only avoid putting staying cold water Waste, improve Consumer's Experience, and can effectively to outdoor unit carry out damping noise reduction, with reduce outdoor unit work caused by Noise, improves the anti-acoustic capability of device, while improves the heat exchanger effectiveness of heat exchanger.
The present invention is that technical scheme is used by solving the above problems:
The invention provides a kind of air energy thermal water installations, including outdoor unit and boiler, the outdoor unit and boiler Between be connected by water-supply-pipe;
The device also includes the hot water outlet of cold water storage cistern, water main and branch water pipe, described water main one end and boiler Connection, the other end are communicated in the water inlet of three-way magnetic valve, the first delivery port of the three-way magnetic valve by branch water pipe with Cold water storage cistern connects, and the second delivery port of the three-way magnetic valve is provided with and communicated with hot water out pipe;
The junction of the water main and three-way magnetic valve is provided with the temperature sensor for real-time detection water temperature, the temperature The signal output part of degree sensor is connected with the signal input part of a controller, and the signal output part of the controller and three is powered The signal input part of magnet valve is connected, the three-way magnetic valve controlled according to the control signal that controller is sent the first delivery port with The opening and closing of second delivery port;
The device also includes being used for the shock mount for supporting outdoor unit;
The shock mount includes installing plate, seat cylinder and support member, installing plate and is fixedly connected with outdoor unit;The seat cylinder bag Include barrel and be sheath structure with the integrally formed upper extension of barrel, the support member, the upper extension stretches into institute State in support member;
The shock mount also includes the first support spring that support is arranged in barrel and support is formed to support member It is arranged on support on upper extension and the second support spring supported is formed to the inner bottom part of support member;
Piston movable up and down is provided with the seat cylinder, be wholely set inside the support member stretch into seat cylinder with The inner chamber of the seat cylinder is divided into upper damping cavity and lower damping cavity by the piston rod of piston connection, the piston, edge on the piston The axially arranged damping hole having for connecting upper and lower damping cavity, the interior filling full damping liquid of seat cylinder;
Heat exchanger is provided with the outdoor unit, the heat exchanger includes outer tube and at least two groups be set in outer tube Inner pipe sections, each inner pipe sections include the first inner tube and the second inner tube for being set in the first inner tube, the both ends of outer tube with it is every The closed front connection of one first inner tube, the both ends of every one first inner tube connect with the closed front of corresponding second inner tube;It is described Formed between first inner tube wall and second outer wall of inner tube for the cold water channel for cold water flow;Second inner tube is inner and outer The heat exchange fluid passages for carrying out heat exchange with cold water are formed between inside pipe wall and the outer wall of all first inner tubes respectively;Institute State the outer wall of the first inner tube and the outer wall of second inner tube is respectively arranged with the fin radially extended;All first inner tubes with Outer tube forms inscribe connection, and leaves gap between the outer wall of adjacent first inner tube.
It is further that the cold water storage cistern is also connected with the second delivery port by a seepage flow pipe and oozed into hot water out pipe Stream, the seepage flow pipe are provided with water valve I and control its break-make;The inner tube diameter of the seepage flow pipe is the inner tube diameter of hot water out pipe 1/10-1/4;The water valve I is connected with controller.
It is further that the bottom of the cold water storage cistern is provided with and communicated with drainpipe, and the drainpipe is provided with for controlling The water valve II of its break-make;It is provided with the level sensor for being used for real-time detection its water level in the cold water storage cistern, the level sensor, Water valve II is connected with controller respectively.
It is further that the upper end of the upper extension is formed with the spring mounting groove for installing the second support spring.
It is further that the engagement sleeves for coordinating with support member are formed on the bottom of the installing plate, and the support member is stretched Enter in the engagement sleeves and set, elastic support is provided between the support member top and engagement sleeves.
It is further that the inner bottom part of the engagement sleeves and the top of support member form circular conical surface and coordinated, the elasticity branch Support body is that the conical rubber sheath structure formed is arranged at intervals by layer by metal level and rubber layer.
It is further, and the fin on the outer wall of first inner tube is bar shaped platy structure, second outer wall of inner tube On fin from root to outer end be wavy shaped configuration.
Therefore using the air energy thermal water installations of the present invention, at least with following advantageous effects:
First, when the coolant-temperature gage in water main is not up to established standardses, the first delivery port is opened, the second delivery port closes Close, the water in water main flow to cold water storage cistern along branch water pipe, so as to avoid the excess waste of water resource;
Second, when the coolant-temperature gage in water main is not up to established standardses, the first delivery port is closed, the second delivery port is beaten Open, the water in water main connects along water tank, and the second delivery port of the three-way magnetic valve is provided with and communicated with hot water out pipe outflow, disappears The hot water of proper temperature can be used directly in expense person, improves Consumer's Experience;
3rd, outdoor unit is supported by shock mount, effectively damping noise reduction can be carried out to outdoor unit, to reduce outdoor unit work Noise caused by work, improve the anti-acoustic capability of device;Specifically, first on the outside of the upper extension by setting present cylinder Support spring and the second support spring of inner side form floating support to support member jointly, can while cushioning effect is played Greatly reduce the vibrations from seat board to seat cylinder transmission, and sleeve, piston and piston rod form damping structure simultaneously, in piston rod When bearing the vibrations generation axial movement from outdoor unit, damping action can be formed in upper and lower damping cavity, so that damping branch Seat tool has very excellent damping effect;
4th, due to forming heat exchange respectively between the inner and outer inside pipe wall of the second inner tube and the outer wall of all first inner tubes Fluid passage so that the interior outside of every one first inner tube can form heat exchange, so as to greatly improve heat exchange area, improve heat Exchange efficiency;Meanwhile the outer wall of the first inner tube and the outer wall of the second inner tube are provided with fin, further increase heat-transfer surface Accumulate, the structure setting collective effect with inner pipe sections, enhance the exchange capability of heat of heat exchanger significantly.
Brief description of the drawings
Fig. 1 is the structural representation of the air energy thermal water installations of the present invention;
Fig. 2 is the structural representation of the shock mount of the present invention;
Fig. 3 is the structural representation of the heat exchanger of the present invention.
Embodiment
Specifically illustrate embodiments of the present invention below in conjunction with the accompanying drawings, accompanying drawing is only for reference and explanation uses, and does not form pair The limitation of scope of patent protection of the present invention.
As shown in Figure 1 to Figure 3:The air energy thermal water installations of the present embodiment, including outdoor unit 1 and boiler 2, the outdoor It is connected between machine 1 and boiler 2 by water-supply-pipe 31;Outdoor unit 1 includes a shell, be installed with shell heat exchanger 9, Part, these parts such as fan blade and the motor of driving fan blade rotation easily produce vibrations at work and made a noise;Pass through room Outer machine 1 obtains Lowlevel thermal energy from air, and for the progress heat exchange in boiler 2, hot water preparing, hot water store simultaneously In boiler 2, for using.
The device also includes cold water storage cistern 4, water main 32 and branch water pipe 33, described one end of water main 32 and boiler 2 Hot water outlet connection, the other end are communicated in the water inlet 5a, the first delivery port 5b of the three-way magnetic valve 5 of three-way magnetic valve 5 Connected by branch water pipe 33 with cold water storage cistern 4, the second delivery port 5c of the three-way magnetic valve 5 is provided with and communicated with hot water out pipe 34;The junction of the water main 32 and three-way magnetic valve 5 is provided with the temperature sensor 61 for real-time detection water temperature, the temperature Degree sensor 61 signal output part be connected with the signal input part of a controller 62, the signal output part of the controller 62 and The signal input part of three-way magnetic valve 5 is connected, and the three-way magnetic valve 5 controls according to the control signal that controller 62 is sent One delivery port 5b and the second delivery port 5c opening and closing;Three-way magnetic valve 5 is the structure of one-in-and-two-out, be can control by electromagnetic action First delivery port 5b and the second delivery port 5c opening and closing;Controller 62 can be existing single-chip microcomputer, and it is preset with the control of correlation Program;When the coolant-temperature gage in water main 32 is not up to established standardses, the first delivery port 5b is opened, the second delivery port 5c is closed, Water in water main 32 flow to cold water storage cistern 4 along branch water pipe 33, so as to avoid the excess waste of water resource;When in water main 32 When coolant-temperature gage is not up to established standardses, the first delivery port 5b is closed, the second delivery port 5c is opened, and the water in water main 32 is along water tank Connection, the second delivery port 5c of the three-way magnetic valve 5 are provided with and communicated with hot water out pipe 34 and flowed out, and consumer can be used directly The hot water of proper temperature, improves Consumer's Experience.
In addition, the cold water storage cistern 4 is also connected with the second delivery port 5c by a seepage flow pipe 7 and oozed into hot water out pipe 34 Stream, the seepage flow pipe 7 are provided with water valve I 63 and control its break-make;The inner tube diameter of the seepage flow pipe 7 is the inner tube of hot water out pipe 34 The 1/10-1/4 of caliber;The water valve I 63 is connected with controller 62;Water main 32 and the caliber of branch water pipe 33 are much larger than seepage flow The caliber of pipe 7;During the cooled water discharge stayed built in water main 32 to cold water storage cistern 4, controller 62 controls water valve I 63 to make to ooze Flow tube 7 is dammed;After water temperature reaches setting value, controller 62 controls water valve I 63 to make seepage flow pipe 7 unimpeded, utilizes hot water out pipe 34 The cold water in cold water storage cistern 4 that interior current suction-operated pair connects with seepage flow pipe 7 aspirates, and makes the cold water in cold water storage cistern 4 slow Flow into hot water out pipe 34 and mixed with hot water, ensure that the cold water in cold water storage cistern 4 can obtain secondary use, further avoid water from providing The excess waste in source, the present apparatus is set to turn into environmentally friendly hot water apparatus.
In the present embodiment, the bottom of the cold water storage cistern 4 is provided with and communicated with drainpipe 35, and the drainpipe 35, which is provided with, to be used for Control the water valve II 64 of its break-make;The level sensor 65 for being used for its water level of real-time detection, the water are provided with the cold water storage cistern 4 Level sensor 65, water valve II 64 are connected with controller 62 respectively;After cold water excess in cold water storage cistern 4, to prevent because of cold water mistake Full and influence cold water and continue to flow, controller 62 controls water valve II 64 to make drainpipe 35 unimpeded, so as to realize overflow;Certainly, In the case of the non-excess of cold water, it also may be such that drainpipe 35 is unimpeded by manual control gate valve II 64, so as to The water in cold water storage cistern 4, convenient use are utilized at any time.
Another improvement of the present apparatus is that the device also includes being used for the shock mount 8 for supporting outdoor unit 1;It is outdoor The housing bottom of machine 1 is fixedly connected with shock mount 8, such as high-strength bolt can be used to be attached;Shock mount 8 includes installation Plate 81, seat cylinder and support member 82, seat cylinder include barrel 83 and with the integrally formed upper extension 84 of barrel 83, support member 82 For sheath structure, upper extension 84 is stretched into support member 82;Shock mount 8 is also arranged in barrel 83 including support and to branch Support member 82 forms the first support spring 85 of support and support is arranged on extension 84 and to the inner bottom part shape of support member 82 Into the second support spring 86 of support;As shown in Fig. 2 seat cylinder includes bottom end cover 87, lower shell and upper shell, bottom end cover 87 can be consolidated Due to ground;The upper extension 84 is formed at upper shell top, and bottom and the lower shell of upper shell are collectively forming barrel 83, on Extension 84 is stretched into support member 82 and set from bottom to top, and the lower end of the first support spring 85, which directly supports, is fixed on upper shell Lower outside, the outside heavy platform of annular that formed of support member 82 coordinate for being supported with the upper end of the first support spring 85, first Support spring 85 is outer to be set around the heavy platform of annular and upper extension 84.
Piston 88 movable up and down is provided with seat cylinder, has been wholely set and has stretched into seat cylinder and piston inside support member 82 The inner chamber of seat cylinder is divided into upper damping cavity 810 and lower damping cavity 811 by the piston rods 89 of 88 connections, piston 88, along axle on piston 88 To the damping hole 812 being provided with for connecting upper and lower damping cavity, full damping liquid is filled in seat cylinder;Piston 88 is justified with seat cylinder inwall Week forms sealing with merga pass sealing ring, and piston 88 can move up and down along seat cylinder;Outdoor unit 1 is supported by shock mount 8, can Damping noise reduction effectively is carried out to outdoor unit 1, worked caused noise with reducing outdoor unit 1, improves the anti-acoustic capability of device;Tool For body, by the first support spring on the outside of the upper extension of the present cylinder of setting and the second support spring of inner side jointly to branch Support member forms floating support, while cushioning effect is played, can greatly reduce the vibrations from seat board to seat cylinder transmission, and together When sleeve, piston and piston rod form damping structure, when piston rod bears the vibrations from outdoor unit 1 and produces axial movement, Damping action can be formed in upper and lower damping cavity, so that shock mount 8 has very excellent damping effect.
In the present embodiment, the upper end of upper extension 84 is formed with the spring mounting groove for installing the second support spring 86 813;The lower end of second support spring 86 falls directly into and installation is formed in spring mounting groove, simple in construction and compact.
In the present embodiment, the engagement sleeves 814 for coordinating with support member 82 are formed on the bottom of installing plate 81, and support member 82 is stretched Enter in engagement sleeves 14 and set, elastic support 815 is provided between the top of support member 82 and engagement sleeves;The inner bottom part of engagement sleeves with The top of support member 82 forms circular conical surface and coordinated, and elastic support is that the circle formed is arranged at intervals by layer by metal level and rubber layer Cone rubber sheath structure;That is the top of the inner bottom part of engagement sleeves and support member 82 forms circular conical surface and coordinated, and elastic support is The conical rubber sheath structure formed is arranged at intervals by layer by metal level and rubber layer;The shape between support member 82 and installing plate Into shock insulation noise reduction, as shown in Fig. 2 elastic support includes upper and lower two layers of rubber layer and the metal being arranged between rubber layer Layer.
In the present embodiment, heat exchanger 9 is provided with the outdoor unit, the heat exchanger 9 includes outer tube 91 and is set in At least two groups of inner pipe sections in outer tube 91, each inner pipe sections include the first inner tube 92a and are set in the first inner tube 92a Second inner tube 92b, the both ends of outer tube 91 are connected with every one first inner tube 92a closed front, every one first inner tube 92a both ends Connected with corresponding second inner tube 92b closed front;Between the first inner tube 92a inwalls and the second inner tube 92b outer walls Formed for the cold water channel 93 for cold water flow;The inner and outer inwalls of pipe 91 of second inner tube 92b are outer with all first inner tube 92a's The heat exchange fluid passages 94 for carrying out heat exchange with cold water are formed between wall respectively;The outer wall of the first inner tube 92a and The outer wall of the second inner tube 92b is respectively arranged with the fin 95 radially extended;All first inner tube 92a are formed with outer tube 91 Inscribe connects, and leaves gap between adjacent first inner tube 92a outer wall;Multigroup inner pipe sections form a plurality of heat exchange pipe;It is cold Aquaporin 93 is the ring cavity formed between the first inner tube 92a and the second inner tube 92b;It is provided with every one first inner tube 92a Fluid inlet and fluid issuing (not shown);Certainly at the first inner tube 92a both ends, all first inner tube 92a end Portion, which is formed, to be converged to form a fluid passage, and cold water absorbs heat in flow process in cold water channel 93, finally imports fluid Boiler 2 is delivered in path and by water-supply-pipe 31;Due in the inner and outer inwalls of pipe 91 of the second inner tube 92b and all first Heat exchange fluid passages 94 are formed between pipe 92a outer wall respectively so that every one first inner tube 92a interior outside can form heat Exchange, so as to greatly improve heat exchange area, improve heat exchanger effectiveness;Meanwhile in the first inner tube 92a outer wall and the second inner tube 92b outer wall is provided with fin 95, further increases heat exchange area, the structure setting collective effect with inner pipe sections, significantly Enhance the exchange capability of heat of heat exchanger 9;Settable three groups of inner pipe sections, the first inner tube 92a of each group of inner pipe sections and the Two inner tube 92b are coaxially disposed, and three groups of inner pipe sections are triangularly arranged;Fin 95 can increase heat exchange area, the shape of fin 95 It can set as needed, it is preferable that the fin 95 on the outer wall of the first inner tube 92a is bar shaped platy structure, described second Fin 95 on inner tube 92b outer walls from root to outer end be wavy shaped configuration.
Above preferred embodiment is the preferable embodiment of the present invention, but embodiments of the present invention are not by above-mentioned implementation The limitation of example, other any Spirit Essences without departing from the present invention with made under principle change, modification, replacement, combine, letter Change, should be equivalent substitute mode, be included within protection scope of the present invention.

Claims (7)

1. a kind of air energy thermal water installations, including outdoor unit and boiler, pass through water-supply-pipe between the outdoor unit and boiler It is connected;It is characterized in that:
The device also includes cold water storage cistern, water main and branch water pipe, described water main one end connects with the hot water outlet of boiler, The other end is communicated in the water inlet of three-way magnetic valve, and the first delivery port of the three-way magnetic valve passes through branch water pipe and cold water storage cistern Connection, the second delivery port of the three-way magnetic valve are provided with and communicated with hot water out pipe;
The junction of the water main and three-way magnetic valve is provided with the temperature sensor for real-time detection water temperature, and the temperature passes The signal output part of sensor is connected with the signal input part of a controller, the signal output part and three-way magnetic valve of the controller Signal input part be connected, the three-way magnetic valve controls the first delivery port and second according to the control signal that controller is sent The opening and closing of delivery port;
The device also includes being used for the shock mount for supporting outdoor unit;
The shock mount includes seat cylinder, support member and installing plate, and installing plate is fixedly connected with outdoor unit, and the seat cylinder includes cylinder Body portion and be sheath structure with the integrally formed upper extension of barrel, the support member, the upper extension stretches into the branch In support member;
The shock mount also includes the first support spring and branch that support is arranged in barrel and support is formed to support member Support is arranged on extension and forms the second support spring supported to the inner bottom part of support member;
Piston movable up and down is provided with the seat cylinder, has been wholely set and has stretched into seat cylinder and piston inside the support member The inner chamber of the seat cylinder is divided into upper damping cavity and lower damping cavity by the piston rod of connection, the piston, on the piston vertically The damping hole for connecting upper and lower damping cavity is provided with, full damping liquid is filled in seat cylinder;
Heat exchanger is provided with the outdoor unit, the heat exchanger includes outer tube and at least two groups of inner tubes being set in outer tube Unit, each inner pipe sections include the first inner tube and the second inner tube for being set in the first inner tube, the both ends of outer tube and every 1 the The closed front connection of one inner tube, the both ends of every one first inner tube connect with the closed front of corresponding second inner tube;Described first Formed between inner tube wall and second outer wall of inner tube for the cold water channel for cold water flow;In the inner and outer pipe of second inner tube The heat exchange fluid passages for carrying out heat exchange with cold water are formed between wall and the outer wall of all first inner tubes respectively;Described The outer wall of one inner tube and the outer wall of second inner tube are respectively arranged with the fin radially extended;All first inner tubes are and outer tube Inscribe connection is formed, and gap is left between the outer wall of adjacent first inner tube.
2. air energy thermal water installations according to claim 1, it is characterised in that:
The cold water storage cistern is also connected by a seepage flow pipe with the second delivery port and the seepage flow into hot water out pipe, the seepage flow Guan Shangshe There is water valve I to control its break-make;The inner tube diameter of the seepage flow pipe is the 1/10-1/4 of the inner tube diameter of hot water out pipe;The water valve I is connected with controller.
3. air energy thermal water installations according to claim 2, it is characterised in that:
The bottom of the cold water storage cistern is provided with and communicated with drainpipe, and the drainpipe is provided with the water valve II for controlling its break-make; Be provided with the level sensor for being used for real-time detection its water level in the cold water storage cistern, the level sensor, water valve II respectively with control Device processed is connected.
4. air energy thermal water installations according to claim 3, it is characterised in that:
The upper end of the upper extension is formed with the spring mounting groove for installing the second support spring.
5. air energy thermal water installations according to claim 4, it is characterised in that:
Engagement sleeves for coordinating with support member are formed on the bottom of the installing plate, and the support member is stretched into the engagement sleeves and set Put, elastic support is provided between the support member top and engagement sleeves.
6. air energy thermal water installations according to claim 5, it is characterised in that:
The top of the inner bottom parts of the engagement sleeves and support member forms circular conical surface and coordinated, the elastic support be by metal level and Rubber layer is arranged at intervals the conical rubber sheath structure to be formed by layer.
7. air energy thermal water installations according to claim 6, it is characterised in that:Fin on the outer wall of first inner tube For bar shaped platy structure;Fin on second outer wall of inner tube from root to outer end be wavy shaped configuration.
CN201710730875.0A 2017-08-23 2017-08-23 Air energy thermal water installations Pending CN107339805A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201710730875.0A CN107339805A (en) 2017-08-23 2017-08-23 Air energy thermal water installations

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Application Number Priority Date Filing Date Title
CN201710730875.0A CN107339805A (en) 2017-08-23 2017-08-23 Air energy thermal water installations

Publications (1)

Publication Number Publication Date
CN107339805A true CN107339805A (en) 2017-11-10

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CN201710730875.0A Pending CN107339805A (en) 2017-08-23 2017-08-23 Air energy thermal water installations

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Country Link
CN (1) CN107339805A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108426369A (en) * 2018-03-28 2018-08-21 重庆工程职业技术学院 Air energy thermal water system for building

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2014169824A (en) * 2013-03-04 2014-09-18 Miura Co Ltd Feedwater heating system
CN204678928U (en) * 2015-05-12 2015-09-30 青岛海尔新能源电器有限公司 Casing type heat exchanging device and there is its carbon dioxide heat pump water heater
CN204999014U (en) * 2015-09-29 2016-01-27 重庆市合川区华丰包装有限公司 Glass packing plant
CN205980348U (en) * 2016-08-16 2017-02-22 芜湖美的厨卫电器制造有限公司 Mix water system
CN207095023U (en) * 2017-08-23 2018-03-13 湖南埃瓦新能源科技有限公司 Air energy thermal water installations

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2014169824A (en) * 2013-03-04 2014-09-18 Miura Co Ltd Feedwater heating system
CN204678928U (en) * 2015-05-12 2015-09-30 青岛海尔新能源电器有限公司 Casing type heat exchanging device and there is its carbon dioxide heat pump water heater
CN204999014U (en) * 2015-09-29 2016-01-27 重庆市合川区华丰包装有限公司 Glass packing plant
CN205980348U (en) * 2016-08-16 2017-02-22 芜湖美的厨卫电器制造有限公司 Mix water system
CN207095023U (en) * 2017-08-23 2018-03-13 湖南埃瓦新能源科技有限公司 Air energy thermal water installations

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108426369A (en) * 2018-03-28 2018-08-21 重庆工程职业技术学院 Air energy thermal water system for building

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Application publication date: 20171110