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CN206094253U - High -efficient hot -blast anhydrous heating system of solid electricity heat accumulation - Google Patents

High -efficient hot -blast anhydrous heating system of solid electricity heat accumulation Download PDF

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Publication number
CN206094253U
CN206094253U CN201621133012.2U CN201621133012U CN206094253U CN 206094253 U CN206094253 U CN 206094253U CN 201621133012 U CN201621133012 U CN 201621133012U CN 206094253 U CN206094253 U CN 206094253U
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CN
China
Prior art keywords
wind
heat
insulation
air
heat exchanger
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Expired - Fee Related
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CN201621133012.2U
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Chinese (zh)
Inventor
郭雁斌
陶健
郭蓉
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Zhongyuan Meicheng Liaoning Technology Development Co ltd
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Individual
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Priority to CN201621133012.2U priority Critical patent/CN206094253U/en
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Publication of CN206094253U publication Critical patent/CN206094253U/en
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Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a high -efficient hot -blast anhydrous heating system of solid electricity heat accumulation, include: electricity devices for heating air, air -blower, heat preservation supply air duct, blower, electricity devices for heating air includes heat preservation casing, heat preservation buckle closure, the solid heat storage body, the electrode that generates heat, wind heat exchanger, inner loop frequency conversion fan, wind heat exchanger includes heat exchange tube, last mounting panel, lower mounting panel, baffle, wind heat exchanger joins externally on heat preservation casing lateral wall, heat preservation buckle closure front side is equipped with imported bellows and export bellows, and the rear side is equipped with the intercommunication case, the baffle will keep warm casing, heat preservation buckle closure, go up the mounting panel and down the space division between the mounting panel become " U " type wind channel, between the solid heat storage body and heat preservation casing top and the bottom and the inside constitution closed circulation wind channel of heat exchange tube, the electricity devices for heating air be connected with air -blower and heat preservation supply air duct respectively, and the terminal independent distributed of heat preservation supply air duct has the blower. The utility model discloses have frostproofing, clean environmental protection, low -cost operation, safe, energy -efficient characteristic.

Description

A kind of solid electricity thermal-storage efficient hot blast is without water heating system
Technical field
This utility model is related to heating field, especially provides a kind of solid electricity thermal-storage efficient hot blast without water heating system, main It is used for North City (Factory Building, warehouse, market etc.) heating field.
Background technology
Warm-air heating system used in northern central heating industry, due to by air heating, not adopting water system to heat, With good antifreezing effect, adopted by a large amount of factories, warehouse, market etc..But the either directly, form such as heat exchange, accumulation of heat Hot-air system, be to be fired using solid fuel (fire coal, biomass etc.), liquid fuel (fuel oil, alcohol-based fuel etc.) and gas Material (combustion gas, natural gas etc.), due to the air pollution produced by solid fuel and liquid fuel combustion, has seriously caused mist Haze, northern many cities have prohibitted the use of, and gaseous fuel is due to fancy price, it is impossible to which popularization and application is in heating field.Separately Outward, due to fed distance farther out, resistance is big, needs from the larger blower fan of power as power source, nonetheless, conveyance conduit End air supplying distance is still very short, and efficiency is low and effect is bad.
Utility model content
The purpose of this utility model is to provide a kind of solid electricity thermal-storage efficient hot blast without water heating system, using electric hot-air Device, using night low ebb electrical heating solid heat storage body (temperature may be up to 850 DEG C), daytime passes through electric heating wind apparatus during peak electricity Built-in interior circulation frequency conversion fan, produces through high-efficiency helical finned tube exchanger or vacuum heat pipe exchanger wind wind indirect heat exchange High-temperature hot-air, the blower being independently distributed by being incubated air supply duct and end is supplied to building (Factory Building, warehouse, market etc.) It is warm, so as to reach the heating purpose of environmental protection, efficient, low cost, safe antifreeze, energy-conservation, can effectively solve the above problems.
The technical solution of the utility model is:A kind of solid electricity thermal-storage efficient hot blast without water heating system, including:Electric hot-air Device 1, aerator 2, insulation air supply duct 3, blower 4;
The electric heating wind apparatus 1 include insulation shell 11, insulation buckle closure 12, solid heat storage body 13, heating electrode 14, wind wind Heat exchanger 15, interior circulation frequency conversion fan 16;
The wind wind heat exchanger 15 includes heat exchanger tube 15a, upper mounting plate 15b, lower installation board 15c, dividing plate 15d;It is described to change Heat pipe 15a tops are sealingly fastened in respectively in the through hole of upper mounting plate 15b and lower installation board 15c with bottom, and the dividing plate 15d sets Fix between upper mounting plate 15b and lower installation board 15c and with heat exchanger tube 15a sealings;
The 11a of air inlet I and the 11b of air outlet I for arranging up and down is offered on the side wall of the insulation shell 11, the wind wind is changed It is hung on the side wall of insulation shell 11 outside hot device 15 and is located between the 11a of air inlet I and the 11b of air outlet I;The insulation buckle closure 12 is detained The side of wind wind heat exchanger 15 is installed in insulation shell 11, the front side of the insulation buckle closure 12 is provided with and is connected with the inside of insulation buckle closure 12 And the inlet bellows 12a for arranging up and down and outlet bellows 12b, the 12c of air inlet II is offered on the inlet bellows 12a, it is described The 12d of air outlet II is offered on outlet bellows 12b, the rear side of the insulation buckle closure 12 is provided with the company connected with the inside of insulation buckle closure 12 Logical case 12e, the dividing plate 15d by insulation shell 11, insulation buckle closure 12, the space between upper mounting plate 15b and lower installation board 15c It is divided into " U " type air channel;The solid heat storage body 13 and heating electrode 14 are located inside insulation shell 11, the interior circulation frequency conversion Blower fan 16 is on the insulation side wall of buckle closure 12 and, the solid heat storage body 13 and insulation cladding corresponding with the 11b horizontal levels of air outlet I Between the top of body 11, between solid heat storage body 13 and the bottom of insulation shell 11 and heat exchanger tube 15a Inner Constitution enclosed circulation wind Road;
The 12c of air inlet II of the electric heating wind apparatus 1 is connected with aerator 2, the air outlet II of the electric heating wind apparatus 1 12d is connected with insulation air supply duct 3, and the end of the insulation air supply duct 3 has been independently distributed blower 4.
Preferably, the system also includes surge tank 5, the 12d of air outlet II and the insulation ajutage of the electric heating wind apparatus 1 Connected by surge tank 5 between road 3.
Preferably, the heat exchanger tube 15a is spiral fin coil or vacuum heat-pipe.
This utility model has following beneficial effect:
1st, deicing characteristics:Using warm-air heating system, incidental water system in conventional water heating system is thoroughly avoided System bursting by freezing phenomenon.
2nd, air pollution is avoided:Using clean environment firendly energy electricity heating system, efficiently solve general in the heating of North City Caused by the solid fuel ignition institute for adopting the problems such as air pollution, haze.
3rd, low cost heating:Inexpensive heating is realized using trough-electricity accumulation of heat, heat supply process on daytime, heating fortune is reduced Row cost.
4th, safe wind wind heat exchange:Using external hanging type high-efficiency helical finned tube or heat exchange of heat pipe wind wind heat transfer technology, very No-water high-temperature accumulation of heat is just being realized, is being solved when high-temperature thermal storage body breaks down (power failure etc. suddenly), produced in heat exchanger water pipe , there is the potential safety hazard of blast in raw serious gasification.
5th, hot blast is sent on demand:With reference to the blower being independently distributed that end adopts, it is not necessary to which the region of heating, blower stops Only work, do not consume unnecessary heat, operating personnel only starts the fan switch for needing heating area, is truly realized and send on demand The energy-conservation purpose of hot blast, is rapidly heated, efficiently, energy-saving effect highly significant, it is to avoid centralized and unified supply air system utilization of energy The shortcomings of inefficiency, air supplying distance are short, programming rate is slow.
In sum, this utility model has antifreeze, clean environment firendly, low cost movement, the characteristic of safe efficient energy-conservation, It is the important milestone of North City heating technology progress with significant Social benefit and economic benefit.
Description of the drawings
Fig. 1 is structural representation of the present utility model;
Fig. 2 is the structural representation one of electric heating wind apparatus in this utility model;
Fig. 3 is the structural representation two of electric heating wind apparatus in this utility model;
Fig. 4 is the structural representation three of electric heating wind apparatus in this utility model;
Fig. 5 is the sectional view of electric heating wind apparatus in this utility model;
Fig. 6 is the A-A sectional views of Fig. 5;
In figure:1st, electric heating wind apparatus;2nd, aerator;3rd, it is incubated air supply duct;4th, blower;5th, surge tank;6th, heat-accumulating area; 7th, heat transfer zone;8th, electrical control cubicles;11st, insulation shell;12nd, it is incubated buckle closure;13rd, solid heat storage body;14th, generate heat electrode;15th, wind wind is changed Hot device;16th, interior circulation frequency conversion fan;11a, air inlet I;11b, air outlet I;12a, inlet bellows;12b, outlet bellows;12c、 Air inlet II;12d, air outlet II;12e, connection case;15a, heat exchanger tube;15b, upper mounting plate;15c, lower installation board;15d, every Plate.
Specific embodiment
This utility model is described in detail with reference to the accompanying drawings and examples.
As shown in figures 1 to 6, a kind of solid electricity thermal-storage efficient hot blast is without water heating system, including:Electric heating wind apparatus 1, air blast Machine 2, insulation air supply duct 3, blower 4, surge tank 5;
Electric heating wind apparatus 1 include insulation shell 11, insulation buckle closure 12, solid heat storage body 13, heating electrode 14, the heat exchange of wind wind Device 15, interior circulation frequency conversion fan 16;
Wind wind heat exchanger 15 includes heat exchanger tube 15a, upper mounting plate 15b, lower installation board 15c, dividing plate 15d;On heat exchanger tube 15a Portion is sealingly fastened in respectively in the through hole of upper mounting plate 15b and lower installation board 15c with bottom, and dividing plate 15d is located at upper mounting plate 15b Fix and lower installation board 15c between and with heat exchanger tube 15a sealings;
The 11a of air inlet I and the 11b of air outlet I for arranging up and down is offered on the side wall of insulation shell 11, outside wind wind heat exchanger 15 It is hung on the side wall of insulation shell 11 and is located between the 11a of air inlet I and the 11b of air outlet I;Insulation buckle closure 12 is buckled in insulation shell 11 The side of wind wind heat exchanger 15 is installed, is incubated the front side of buckle closure 12 and is provided with the import for connecting and arranging up and down with the inside of insulation buckle closure 12 Bellows 12a and outlet bellows 12b, offers the 12c of air inlet II on inlet bellows 12a, on outlet bellows 12b air outlet is offered II 12d, is incubated the rear side of buckle closure 12 and is provided with and is incubated the connection case 12e that the inside of buckle closure 12 connects, dividing plate 15d by insulation shell 11, Insulation buckle closure 12, the space between upper mounting plate 15b and lower installation board 15c are divided into " U " type air channel;Solid heat storage body 13 and send out Thermode 14 inside the insulation shell 11, interior circulation frequency conversion fan 16 on the insulation side wall of buckle closure 12 and with the 11b of air outlet I Horizontal level correspondence, between solid heat storage body 13 and the top of insulation shell 11, solid heat storage body 13 and the bottom of insulation shell 11 it Between and heat exchanger tube 15a Inner Constitution enclosed circulations air channel;
The 12c of air inlet II of electric heating wind apparatus 1 is connected with aerator 2, the 12d of air outlet II and the insulation of electric heating wind apparatus 1 Connected by surge tank 5 between air supply duct 3, the end for being incubated air supply duct 3 has been independently distributed blower 4.
Wherein:Heat exchanger tube 15a is spiral fin coil or vacuum heat-pipe.
This utility model utilizes trough-electricity, by the electrode that generates heat, heats high-temp solid heat storage, and accumulation of heat to daytime heats institute The temperature (850 DEG C of highest) for needing, daytime, first by the interior circulation frequency conversion fan in heat-insulation solid accumulation of heat body, extracts solid heat storage The heat of body, the high-efficiency helical finned tube hung in vitro through solid heat storage or Vacuum Heat manage-style wind heat exchanger, start indoor air blast Used as indoor hot air power source, through being incubated air supply duct, be sent to Factory Building needs heating area to machine, then by being located at insulation ajutage The blower being independently distributed of road end, heating hot blast is sent to the operation area for needing heating, it is not necessary to the operation area of heating The blower closed mode of distribution, does not consume heat energy, so as to reach the purpose of efficient utilization heat energy and energy-conservation.
Above-described embodiment only to illustrate technology design of the present utility model and feature, its object is to allow and be familiar with technique Personage will appreciate that content of the present utility model and implement according to this, protection domain of the present utility model can not be limited with this. All equivalence changes made according to this utility model spirit or modification, all should cover protection domain of the present utility model it It is interior.

Claims (3)

1. a kind of solid electricity thermal-storage efficient hot blast is without water heating system, it is characterised in that include:Electric heating wind apparatus (1), aerator (2), air supply duct (3), blower (4) are incubated;
The electric heating wind apparatus (1) include insulation shell (11), insulation buckle closure (12), solid heat storage body (13), heating electrode (14), wind wind heat exchanger (15), interior circulation frequency conversion fan (16);
The wind wind heat exchanger (15) includes heat exchanger tube (15a), upper mounting plate (15b), lower installation board (15c), dividing plate (15d); Heat exchanger tube (15a) top is sealingly fastened in respectively in the through hole of upper mounting plate (15b) and lower installation board (15c) with bottom, The dividing plate (15d) is located between upper mounting plate (15b) and lower installation board (15c) and fixes with heat exchanger tube (15a) sealing;
The air inlet I (11a) and air outlet I (11b) arranged up and down, the wind wind are offered on the wall of insulation shell (11) side It is hung on the wall of insulation shell (11) side outside heat exchanger (15) and is located between air inlet I (11a) and air outlet I (11b);The guarantor Warm buckle closure (12) is buckled in insulation shell (11) and is provided with wind wind heat exchanger (15) side, insulation buckle closure (12) front side be provided with The inlet bellows (12a) for connecting inside insulation buckle closure (12) and arranging up and down and outlet bellows (12b), the inlet bellows (12a) air inlet II (12c) is offered on, air outlet II (12d), the insulation button is offered on outlet bellows (12b) Lid (12) rear side is provided with and is incubated the connection case (12e) that connects inside buckle closure (12), and the dividing plate (15d) is by insulation shell (11), buckle closure (12), the space between upper mounting plate (15b) and lower installation board (15c) are incubated and are divided into " U " type air channel;It is described Solid heat storage body (13) and heating electrode (14) are internal located at insulation shell (11), and the interior circulation frequency conversion fan (16) is located at guarantor It is on the wall of warm buckle closure (12) side and corresponding with air outlet I (11b) horizontal level, the solid heat storage body (13) and insulation shell (11) Between top, between solid heat storage body (13) and insulation shell (11) bottom and heat exchanger tube (15a) Inner Constitution enclosed circulation Air channel;
The air inlet II (12c) of the electric heating wind apparatus (1) is connected with aerator (2), the air outlet of the electric heating wind apparatus (1) II (12d) is connected with insulation air supply duct (3), and the end of insulation air supply duct (3) has been independently distributed blower (4).
2. according to a kind of solid electricity thermal-storage efficient hot blast described in claim 1 without water heating system, it is characterised in that the system System also includes surge tank (5), by equal between the air outlet II (12d) of the electric heating wind apparatus (1) and insulation air supply duct (3) Pressure case (5) connection.
3. according to a kind of solid electricity thermal-storage efficient hot blast described in claim 1 without water heating system, it is characterised in that described to change Heat pipe (15a) is spiral fin coil or vacuum heat-pipe.
CN201621133012.2U 2016-10-18 2016-10-18 High -efficient hot -blast anhydrous heating system of solid electricity heat accumulation Expired - Fee Related CN206094253U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201621133012.2U CN206094253U (en) 2016-10-18 2016-10-18 High -efficient hot -blast anhydrous heating system of solid electricity heat accumulation

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201621133012.2U CN206094253U (en) 2016-10-18 2016-10-18 High -efficient hot -blast anhydrous heating system of solid electricity heat accumulation

Publications (1)

Publication Number Publication Date
CN206094253U true CN206094253U (en) 2017-04-12

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CN201621133012.2U Expired - Fee Related CN206094253U (en) 2016-10-18 2016-10-18 High -efficient hot -blast anhydrous heating system of solid electricity heat accumulation

Country Status (1)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106352389A (en) * 2016-10-18 2017-01-25 郭雁斌 Solid electrical thermal storage high-efficiency warm air anhydrous heating system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106352389A (en) * 2016-10-18 2017-01-25 郭雁斌 Solid electrical thermal storage high-efficiency warm air anhydrous heating system

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GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right

Effective date of registration: 20211102

Address after: 110000 e03-705-4, No. 861-3 (705), shangshengou village, Hunnan District, Shenyang City, Liaoning Province

Patentee after: Zhongyuan Meicheng (Liaoning) Technology Development Co.,Ltd.

Address before: 110000 gate 77-23-2, Baishan Road, Yuhong District, Shenyang City, Liaoning Province

Patentee before: Guo Yanbin

TR01 Transfer of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20170412

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