CN204810178U - Utilize thermoelectric power generation device of boiler afterbody flue flue gas waste heat - Google Patents

Utilize thermoelectric power generation device of boiler afterbody flue flue gas waste heat Download PDF

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Publication number
CN204810178U
CN204810178U CN201520388693.6U CN201520388693U CN204810178U CN 204810178 U CN204810178 U CN 204810178U CN 201520388693 U CN201520388693 U CN 201520388693U CN 204810178 U CN204810178 U CN 204810178U
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China
Prior art keywords
type semiconductor
generating device
waste heat
junction face
end ductwork
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Expired - Fee Related
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CN201520388693.6U
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Chinese (zh)
Inventor
王为术
徐维晖
朱晓静
张鸣
路统
郭会军
柳艺多
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North China University of Water Resources and Electric Power
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North China University of Water Resources and Electric Power
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    • 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
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P10/00Technologies related to metal processing
    • Y02P10/25Process efficiency

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  • Heat-Exchange Devices With Radiators And Conduit Assemblies (AREA)

Abstract

The utility model provides an utilize thermoelectric power generation device of boiler afterbody flue flue gas waste heat, includes boiler afterbody flue 101 and thermoelectric power generation device 109. The latter includes hot junction face 110, cold junction face 102, lead -out wire 103, welding point 104, water conservancy diversion piece 106, P type semiconductor 107, N type semiconductor 108 and insulation material layer 111, is equipped with louvre 105 on the cold junction face. The thermoelectric power generation device passes through the insulation material layer and is connected with boiler afterbody flue, hot junction face 110 that the flue gas waste heat formed among the latter and the cold junction face 102 that is in under the atmospheric temperature produce the difference in temperature, make P type and N type semiconductor produce the electromotive force respectively, the P type passes through the water conservancy diversion piece with N type semiconductor and establishes ties to export of the producing electric energy for the user through welding point and lead -out wire. The utility model discloses utilize the thermal sensitivity of semiconductor, utilize the waste heat of flue gas, be the electric energy with low temperature waste heat direct conversion, it is pollution -free, the installation is convenient to the effect that has energy saving and emission reduction.

Description

A kind of thermoelectric generating device utilizing boiler back end ductwork fume afterheat
Technical field
The utility model is a kind of device of back-end ductwork flue gas heat recovery, is specifically related to a kind ofly reclaim back-end ductwork fume afterheat and the thermoelectric generating device utilizing that semiconductor heat sensitivity generates electricity.
Background technology
Under the prerequisite that China's energy is relatively in short supply, energy-conservation dynamics need be strengthened.
The exhaust gas temperature of boiler is higher, generally between 150 DEG C ~ 200 DEG C, is the residual heat resources that potentiality are very large.
Existing flue gas waste heat utilization device is mainly low-pressure coal saver, but due to flue-gas temperature too low, and low-pressure coal saver heat exchange coefficient is less, so need larger heat exchange area, thus cause device volume huge, metal consumptive material is more.
The major technique that existing fume afterheat utilizes circulate for organic substance Lang Ken, but working medium amount needed for it is comparatively large, and mostly is organic substance again, make its cost of raw material and transport and maintenance cost relatively high.
Utility model content
The purpose of this utility model is to provide a kind of semiconductor generating equipment utilizing boiler back end ductwork fume afterheat, the thermal sensitivity that make use of semiconductor utilizes the waste heat of flue gas in back-end ductwork, achieve and low temperature exhaust heat is converted into electric energy, pollution-free, installation facility, belongs to energy-saving and emission-reduction field.
According to an aspect of the present utility model, provide a kind of thermoelectric generating device, it comprises face, hot junction, cold junction face, lead-out wire, pad, flow deflector, P type semiconductor, N type semiconductor and insulation material, and cold junction face is provided with louvre.Thermoelectric generating device is connected with boiler back end ductwork by fixing adiabator layer; The face, hot junction that in boiler back end ductwork, fume afterheat is formed produces the temperature difference with the cold junction face be under atmospheric temperature, makes P type semiconductor and N type semiconductor produce electromotive force respectively; P type semiconductor and N type semiconductor are together in series by flow deflector, and institute's electrogenesis can export for user or store reservation by the lead-out wire connected finally by pad.
Described cold face material can be made up of the material that the heat dispersions such as pottery are good, and can strengthen heat radiation by waveform configuration, or the louvre offering some outside its air strengthens heat radiation.
Described P type semiconductor and N type semiconductor are arranged symmetrically with, and and vertical direction angle between 15 ° ~ 30 °; Bismuth telluride thermoelectric power generation semi-conducting material or the higher material of other thermoelectric figure of merit can be used.
Described thermoelectric generating device can modularized production, and its number can be determined according to actual boiler back end ductwork physical dimension and fume afterheat amount; Installation is fixed by offering the equal size hole with insulation material.
The roundabout connection of described P type semiconductor, N type semiconductor and flow deflector, compact conformation, make module volume little, quality is light.
According to an aspect of the present utility model, provide a kind of thermoelectric generating device, it is characterized in that comprising: face, hot junction, cold junction face, lead-out wire, pad, flow deflector, multiple P type semiconductor, multiple N type semiconductor, insulation material,
Wherein
Cold junction face is provided with louvre,
Thermoelectric generating device is connected with boiler back end ductwork by fixing adiabator layer,
Multiple P type semiconductor and multiple N type semiconductor are together in series successively by flow deflector,
The lead-out wire that the electric energy that described multiple P type semiconductor of connecting successively and multiple N type semiconductor produce is connected by pad exports.
The beneficial effects of the utility model comprise:
1) low-pressure coal saver heat exchange coefficient is less, can reduce flue-gas temperature about 30 DEG C.And the principle of P, N semiconductor generating is: semiconductor heat sensitivity is high, and when flue gas flows through semiconductor surface, P, N semiconductor surface produces "+" "-" electric charge respectively, then is spread out of by electric energy by flow deflector.The temperature of utilization of power higher than atmospheric temperature more than about 60 DEG C sent out by P, N semiconductor, and fume afterheat about 150 ~ 180 DEG C, can reduce flue-gas temperature about 70 ~ 120 DEG C, substantially increase efficiency of energy utilization.
2) because flue-gas temperature is low, make working medium and flue gas heat transfer temperature difference in low-pressure coal saver little, need very large heat exchange area to utilize fume afterheat, make low-pressure coal saver device manufacture itself and processing cost high; And easily produce the phenomenons such as Slag and accumulating ash between low-pressure coal saver pipe.And P, N semiconductor generating equipment consumptive material is few, resource consumption is little, and volume is little, and structure is simple, is easy to modularized production, and compared with low-pressure coal saver, P, N semiconductor generating equipment equipment cost drops into very low, and economy is high and installation is convenient and more energy-conserving and environment-protective.
3) to the device adopting organic matter Rankine cycle mode to carry out fume afterheat utilization, owing to using organic substance as working medium, working medium use amount is large, expensive, and how toxic organic substance is and corrosivity, need to arrange tight containment measures, operating cost is high, is difficult to promote.And P, N semiconductor power plant structure is simple, modular construction is changed convenient, and operating cost is low, safeguards simple, good economy performance.
4) outside lead-out wire, install the mutual induction of voltage device of different model additional, and then the voltage of different electric pressure can be produced.Can be used in time producing the voltage of 220V electric pressure by mutual induction of voltage device domestic lighting and household electrical appliance used, also by storage battery by electrical power storage for other aspects.In time producing the voltage of 380V electric pressure by mutual induction of voltage device, can be used for factory, ore deposit electromechanical equipment used.By increasing mutual induction of voltage device, considerably increasing the scope of application of this patent, improve its applicability.
Accompanying drawing illustrates:
Fig. 1 is the profile utilizing the semiconductor generating equipment of boiler back end ductwork fume afterheat according to an embodiment of the present utility model, which includes thermoelectric generating device of the present invention;
Fig. 2 is the structural perspective of the thermoelectric generating device according to an embodiment of the present utility model;
Fig. 3 is waveform cold junction face structural representation.
In figure: 101-back-end ductwork; 102-cold junction face; 103-lead-out wire; 104-pad; 105-louvre; 106-flow deflector; 107-P type semiconductor; 108-N type semiconductor; 109-thermoelectric generating device; Face, 110-hot junction; 111-insulation material.
Embodiment:
Below in conjunction with accompanying drawing, embodiment of the present utility model is described.As shown in Figure 1, boiler back end ductwork (101) and thermoelectric generating device (109) is comprised according to the semiconductor generating equipment of boiler back end ductwork fume afterheat that utilizes of an embodiment of the present utility model.Wherein, thermoelectric generating device (109) comprises again face, hot junction (110), cold junction face (102), lead-out wire (103), pad (104), flow deflector (106), P type semiconductor (107), N type semiconductor (108) and insulation material (111), and cold junction face (102) are provided with louvre (105).
Thermoelectric generating device (109) is connected with boiler back end ductwork (101) by fixing insulation material (111) layer; The face, hot junction (110) that in boiler back end ductwork (101), fume afterheat is formed produces the temperature difference with the cold junction face (102) be under atmospheric temperature, makes P type semiconductor (107) produce contrary electromotive force respectively with N type semiconductor (108); P type semiconductor (107) and N type semiconductor (108) are together in series by flow deflector (106), institute's electrogenesis can export by the lead-out wire (103) connected finally by pad (104), retains for user or storage.
As shown in Figure 2, take to conduct electricity according to the P type semiconductor (107) in an embodiment of the present utility model thermoelectric generating device (109) (see Fig. 1) and N type semiconductor (108) and connect and the mode of heat conduction parallel connection, compact conformation, at utmost utilizes cogeneration.And the number of the utility model thermoelectric generation module quantity is unrestricted, and can install in many sides of flue.
As shown in Figure 2, the P type semiconductor (107) in the thermoelectric generating device of fume afterheat (109) (see Fig. 1) is utilized to present the angle of 15 ° ~ 30 ° with N type semiconductor (108) and vertical direction, significantly increase the disturbance of air-flow, improve the heat utilization efficiency of thermoelectric device, avoid dust stratification; When mounted, be fixed installation by the hole offering the equal size with insulation material (111) on flue, easy for installation and be easy to change.
Shown in Fig. 3 is thermoelectric generating device (109) according to an embodiment of the present utility model, wherein, in order to strengthen the heat radiation of cold junction face (102) side in thermoelectric generating device (109), cold junction face (102) are designed to waveform, and offer multiple louvre (105) at the offside of flow deflector (106) (see Fig. 1 and Fig. 2); The diameter of louvre (105) and flow deflector (106) sizableness, and the quantity of louvre (105) is unrestricted.According to a further embodiment, also by carrying out water-cooling process as working medium to it with recirculated cooling water.
According to a further embodiment, in order to the stress that face, hot junction (110) when reducing work produce, in advance heat treatment is carried out to the flow deflector (106) in P type semiconductor (107), N type semiconductor (108) and hot junction.
Owing to containing a large amount of dust, nitride, sulfide in flue gas, according to a further embodiment, in order to reduce low temperature corrosion to the flow deflector (106) in P type semiconductor (107), N type semiconductor (108) and hot junction and wearing and tearing, in advance at their chrome-faced or parcel abrasion-proof corrosion-proof corrosion material, with Loss reducing.

Claims (6)

1. one kind utilizes the thermoelectric generating device (109) of boiler back end ductwork fume afterheat, it is characterized in that comprising: face, hot junction (110), cold junction face (102), lead-out wire (103), pad (104), flow deflector (106), multiple P type semiconductor (107), multiple N type semiconductor (108), insulation material (111)
Wherein
Cold junction face (102) are provided with louvre (105),
Thermoelectric generating device (109) is connected with boiler back end ductwork (101) by fixing insulation material (111) layer,
Multiple P type semiconductor (107) and multiple N type semiconductor (108) are together in series successively by flow deflector (106),
The lead-out wire (103) that the electric energy that described multiple P type semiconductor (107) of connecting successively and multiple N type semiconductor (108) produce is connected by pad (104) exports.
2. utilize the thermoelectric generating device (109) of boiler back end ductwork fume afterheat as claimed in claim 1, it is characterized in that:
Cold junction face (102) is waveform,
Multiple louvre (105) is offered at the offside of flow deflector (106).
3. utilize the thermoelectric generating device (109) of boiler back end ductwork fume afterheat as claimed in claim 2, it is characterized in that:
The diameter of louvre (105) and flow deflector (106) sizableness.
4. utilize the thermoelectric generating device (109) of boiler back end ductwork fume afterheat as claimed in claim 1, it is characterized in that:
Often organize P type semiconductor (107) and N type semiconductor (108) to be arranged symmetrically with, and in vertical direction with the angle of 15 ° ~ 30 °.
5. utilize the thermoelectric generating device (109) of boiler back end ductwork fume afterheat as claimed in claim 1, it is characterized in that:
Installation is fixed by offering the equal size hole with insulation material (111) at back-end ductwork.
6. the thermoelectric generating device (109) utilizing boiler back end ductwork fume afterheat as described in one of claims 1-5, is characterized in that:
P type semiconductor (107), N type semiconductor (108) and flow deflector (106) roundabout connection.
CN201520388693.6U 2015-06-05 2015-06-05 Utilize thermoelectric power generation device of boiler afterbody flue flue gas waste heat Expired - Fee Related CN204810178U (en)

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CN201520388693.6U CN204810178U (en) 2015-06-05 2015-06-05 Utilize thermoelectric power generation device of boiler afterbody flue flue gas waste heat

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104901585A (en) * 2015-06-05 2015-09-09 华北水利水电大学 Thermoelectric power generation device using flue gas waste heat of rear smoke channel of boiler and semiconductor power generation device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104901585A (en) * 2015-06-05 2015-09-09 华北水利水电大学 Thermoelectric power generation device using flue gas waste heat of rear smoke channel of boiler and semiconductor power generation device
CN104901585B (en) * 2015-06-05 2017-06-20 华北水利水电大学 The thermoelectric generating device and semiconductor generating equipment of a kind of utilization boiler back end ductwork fume afterheat

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Granted publication date: 20151125

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