CN204721643U - Electromagnet heating element and electromagnetic boiler - Google Patents

Electromagnet heating element and electromagnetic boiler Download PDF

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Publication number
CN204721643U
CN204721643U CN201520445679.5U CN201520445679U CN204721643U CN 204721643 U CN204721643 U CN 204721643U CN 201520445679 U CN201520445679 U CN 201520445679U CN 204721643 U CN204721643 U CN 204721643U
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China
Prior art keywords
conductive metal
metal pipe
medium
heating element
outlet
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Expired - Fee Related
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CN201520445679.5U
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Chinese (zh)
Inventor
袁保蓉
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CHANGZHOU DONGFANG TIELU QICAI Co Ltd
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CHANGZHOU DONGFANG TIELU QICAI Co Ltd
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Abstract

The utility model discloses a kind of electromagnet heating element and electromagnetic boiler, electromagnet heating element comprises the Electromagnetic Heating sub-element that an Electromagnetic Heating sub-element or two or more are cascaded, described Electromagnetic Heating sub-element has: tube bank group, be provided with in described tube bank group and separate face, and be fitted with conductive metal pipe in tube bank group, conductive metal pipe comprises into medium conductive metal pipe and goes out medium conductive metal pipe, enter medium conductive metal pipe and be positioned at the side separating face, go out medium conductive metal pipe and be positioned at the opposite side separating face; Turnover dielectric cavity part, described turnover dielectric cavity part is arranged on one end of tube bank group, and pass in and out in medium cavity and be divided into into dielectric cavity and go out dielectric cavity, described enter dielectric cavity be connected with the import of entering medium conductive metal pipe, the outlet going out medium conductive metal pipe with go out dielectric cavity and be connected, turnover medium cavity is provided with medium entrance and media outlet, medium entrance with enter dielectric cavity and be connected, media outlet with go out dielectric cavity and be connected.The utility model can improve electric conversion efficiency, realizes energy-saving and emission-reduction, reaches the function of zero discharge.

Description

Electromagnet heating element and electromagnetic boiler
Technical field
The utility model relates to a kind of electromagnet heating element and electromagnetic boiler.
Background technology
At present, the heating generation equipment of prior art uses heating that boils is evaporated, and then by flue gas or electricity consumption or produced thermal medium with fuel combustion again, the efficiency of heating surface of this heating generation equipment is low, a large amount of pollutants is produced in process, and consume a large amount of energy, do not reach energy-conservation, the effect of reduction of discharging.
Summary of the invention
Technical problem to be solved in the utility model is the defect overcoming prior art, provides a kind of electromagnet heating element, and it can improve electric conversion efficiency, realizes energy-saving and emission-reduction, reaches the function of zero discharge.
In order to solve the problems of the technologies described above, the technical solution of the utility model is: a kind of electromagnet heating element, and it comprises the Electromagnetic Heating sub-element that an Electromagnetic Heating sub-element or two or more are cascaded, and described Electromagnetic Heating sub-element has:
Tube bank group, be provided with in described tube bank group and separate face, and be fitted with conductive metal pipe in tube bank group, conductive metal pipe comprises into medium conductive metal pipe and goes out medium conductive metal pipe, enter medium conductive metal pipe and be positioned at the side separating face, go out medium conductive metal pipe and be positioned at the opposite side separating face;
Turnover dielectric cavity part, described turnover dielectric cavity part is arranged on one end of tube bank group, and pass in and out in medium cavity and be divided into into dielectric cavity and go out dielectric cavity, described enter dielectric cavity be connected with the import of entering medium conductive metal pipe, the outlet going out medium conductive metal pipe with go out dielectric cavity and be connected, turnover medium cavity is provided with medium entrance and media outlet, medium entrance with enter dielectric cavity and be connected, media outlet with go out dielectric cavity and be connected;
Transition medium chamber part, described transition medium chamber part is arranged on the other end of tube bank group, is provided with transition medium chamber in the part of described transition medium chamber, described in enter medium conductive metal pipe outlet be connected with transition medium chamber respectively with the import going out medium conductive metal pipe;
Energising solenoid, described solenoid is looped around on the outer wall of tube bank group, and its solenoid become cross-like around direction with the axis of conductive metal pipe.
Further, solenoid become vertical configuration around direction with the axis of conductive metal pipe.
Further, the cross section of described tube bank group is circular configuration, and described conductive metal pipe is distributed on to restrain the axial centre of group, and to be the center of circle circumferentially multiple.
Further, the length of described conductive metal pipe is 2 ~ 3m, and/or the quantity entered medium conductive metal pipe and go out medium conductive metal pipe is respectively 20 ~ 25, and/or the wall thickness of conductive metal pipe is 2mm ~ 3mm, and/or the diameter of conductive metal pipe is 25mm ~ 35mm.
Further, the frequency of the electrical current of solenoid is 10 ~ 20KHz.
The utility model additionally provides a kind of electromagnetic boiler, it adopts this electromagnet heating element, and the medium in conductive metal pipe is water, it also comprises water-softening plant and steam storage tank, water-softening plant is provided with the import passing into water, the outlet of water-softening plant is connected with the import of electromagnet heating element, and the outlet of electromagnet heating element is connected with the import of steam storage tank.
The utility model additionally provides a kind of electromagnetic boiler, it adopts this electromagnet heating element, and the medium in conductive metal pipe is water, it also comprises water-softening plant, water-softening plant is provided with the import passing into water, the outlet of water-softening plant is connected with the import of electromagnet heating element, and the outlet of electromagnet heating element directly accesses heating equipment.
The utility model additionally provides a kind of electromagnetic boiler, it adopts this electromagnet heating element, and the medium in conductive metal pipe is oil, and it also comprises fuel tank and pump, the outlet of fuel tank is connected with the import of electromagnet heating element by pump, and the outlet of electromagnet heating element is connected with heating equipment.
Further, also comprise expansion slot and gs-oil separator, the import of described gs-oil separator is connected with heating equipment, and the oil export of gs-oil separator is connected with fuel tank, and the gas outlet of gs-oil separator is connected with the import of expansion slot.
The utility model additionally provides a kind of electromagnetic boiler, it adopts this electromagnet heating element, and the medium in conductive metal pipe is air, it also comprises blower fan and roots blower, the import of blower fan communicates with air, the outlet of blower fan is connected with the import of electromagnet heating element, and the outlet of electromagnet heating element is connected with the import of roots blower, and the outlet of roots blower passes into heating equipment.
After have employed technique scheme, structural relation of the present utility model makes that the volume of its effective heat medium is very large, very large, the total circulation area of heat exchange area is very large, make alternating magnetic field play maximum effect, make " electricity-heat " conversion ratio of electromagnet heating element of the present utility model reach maximum.The utility model produces high-frequency current by special electronic equipment, and then produces alternating magnetic field, when conductive metal pipe is placed in magnetic field, due to the effect of alternating magnetic field, produce the current vortex of alternation because of cutting magnetic line at conducting metal tube-surface, this eddy current makes the conducting metal atom high speed random motion in conductive metal pipe, atom collides with each other, rub and produce heat energy, thus play electric conduction of heating metal tube and transfer other medium (steam of heating, conduction oil, water, air, industrial chemicals etc.) effect, because be conductive metal pipe self-heating, so be that the conversion ratio of heat energy is high especially by electric energy conversion, can 95% be reached, with compared with heating wire Electric heating, energy-conservation 30% ~ 50%, fundamentally solve electric heating piece, the resistance-types such as electric heating coil, by the inefficient problem of heat exchange pattern heat hot.Thus Electromagnetic Heating energy-saving and environmental protection, safety and life-span are long, and maintenance rate is low; Once be out of order, maintenance or replacing are easily.
Accompanying drawing explanation
Fig. 1 is the structural representation of electromagnet heating element of the present utility model;
Fig. 2 be tube bank group of the present utility model partly cut open structure chart;
Fig. 3 is the structural representation of the first structure of electromagnetic boiler of the present utility model;
Fig. 4 is the structural representation of the second structure of electromagnetic boiler of the present utility model;
Fig. 5 is the structural representation of the third structure of electromagnetic boiler of the present utility model;
Fig. 6 is the structural representation of the 4th kind of structure of electromagnetic boiler of the present utility model;
Embodiment
In order to make content of the present utility model more easily be clearly understood, below according to specific embodiment also by reference to the accompanying drawings, the utility model is described in further detail.
As shown in Figure 1, 2, a kind of electromagnet heating element, it comprises the Electromagnetic Heating sub-element that an Electromagnetic Heating sub-element or two or more are cascaded, and described Electromagnetic Heating sub-element has:
Tube bank group 1, be provided with in tube bank group 1 and separate face, and be fitted with conductive metal pipe in tube bank group 1, conductive metal pipe comprises into medium conductive metal pipe and goes out medium conductive metal pipe, enter medium conductive metal pipe and be positioned at the side separating face, go out medium conductive metal pipe and be positioned at the opposite side separating face;
Turnover dielectric cavity part, turnover dielectric cavity part is arranged on one end of tube bank group 1, and pass in and out in medium cavity and be divided into into dielectric cavity 2 and go out dielectric cavity 3, enter dielectric cavity 2 to be connected with the import of entering medium conductive metal pipe, the outlet going out medium conductive metal pipe with go out dielectric cavity 3 and be connected, turnover medium cavity is provided with medium entrance 21 and media outlet 31, medium entrance 21 with enter dielectric cavity 2 and be connected, media outlet 31 with go out dielectric cavity 3 and be connected;
Transition medium chamber part 4, transition medium chamber part 4 is arranged on the other end of tube bank group 1, is provided with transition medium chamber in transition medium chamber part 4, described in enter medium conductive metal pipe outlet be connected with transition medium chamber respectively with the import going out medium conductive metal pipe;
Energising solenoid 5, solenoid 5 is looped around on the outer wall of tube bank group 1, and its solenoid 5 become cross-like around direction with the axis of conductive metal pipe.
Wherein, single Electromagnetic Heating sub-element is as the elementary cell of various electromagnetic boiler, and can connecting, it is multiple upwards to superpose, and makes to which constitute power ascending, the seriation electromagnetic boiler that ability grows from weak to strong.
As shown in Figure 1, solenoid 5 become vertical configuration around direction with the axis of conductive metal pipe.
As shown in Figure 1, the cross section of tube bank group 1 is circular configuration, and conductive metal pipe is distributed on to restrain the axial centre of group 1, and to be the center of circle circumferentially multiple.
The length of conductive metal pipe is 2 ~ 3m, and/or the quantity entered medium conductive metal pipe and go out medium conductive metal pipe is respectively 20 ~ 25, and/or the wall thickness of conductive metal pipe is 2mm ~ 3mm, and/or the diameter of conductive metal pipe is 25mm ~ 35mm.
The frequency of the electrical current of solenoid 5 is 10 ~ 20KHz.
As shown in Figure 3, a kind of electromagnetic boiler, it adopts this electromagnet heating element, and the medium in conductive metal pipe is water, it also comprises water-softening plant 6 and steam storage tank 7, water-softening plant 6 is provided with the import passing into water, and the outlet of water-softening plant 6 is connected with the import of electromagnet heating element, and the outlet of electromagnet heating element is connected with the import of steam storage tank 7.This electromagnetic boiler is steam boiler.
As shown in Figure 5, a kind of electromagnetic boiler, it adopts this electromagnet heating element, and the medium in conductive metal pipe is water, it also comprises water-softening plant 6, water-softening plant 6 is provided with the import passing into water, and the outlet of water-softening plant 6 is connected with the import of electromagnet heating element, and the outlet of electromagnet heating element directly accesses heating equipment 8.This electromagnetic boiler is Lukewarm water boiler.
As shown in Figure 4, a kind of electromagnetic boiler, it adopts this electromagnet heating element, and the medium in conductive metal pipe is oil, it also comprises fuel tank 9 and pump 10, and the outlet of fuel tank 9 is connected with the import of electromagnet heating element by pump 10, and the outlet of electromagnet heating element is connected with heating equipment 8.This electromagnetic boiler is thermo oil boiler.
As shown in Figure 4, electromagnetic boiler also comprises expansion slot 11 and gs-oil separator 12, the import of described gs-oil separator 12 is connected with heating equipment 8, and the oil export of gs-oil separator 12 is connected with fuel tank 9, and the gas outlet of gs-oil separator 12 is connected with the import of expansion slot 11.
As shown in Figure 6, a kind of electromagnetic boiler, its electromagnet heating element, and the medium in conductive metal pipe is air, it also comprises blower fan 13 and roots blower 14, and the import of blower fan 13 communicates with air, and the outlet of blower fan 13 is connected with the import of electromagnet heating element, the outlet of electromagnet heating element is connected with the import of roots blower 14, and the outlet of roots blower 14 passes into heating equipment.This electromagnetic boiler is gas boiler.
Certainly, adopt the electromagnetic boiler of this electromagnet heating element to be not limited to above several, also can be used for the electromagnetic boiler of other types.
Operation principle of the present utility model is as follows:
The volume that structural relation of the present utility model makes its effective heat medium is very large, very large, the total circulation area of heat exchange area is very large, makes alternating magnetic field play maximum effect, makes " electricity-heat " conversion ratio of electromagnet heating element of the present utility model reach maximum.The utility model produces high-frequency current by special electronic equipment, and then produces alternating magnetic field, when conductive metal pipe is placed in magnetic field, due to the effect of alternating magnetic field, produce the current vortex of alternation because of cutting magnetic line at conducting metal tube-surface, this eddy current makes the conducting metal atom high speed random motion in conductive metal pipe, atom collides with each other, rub and produce heat energy, thus play electric conduction of heating metal tube and transfer other medium (steam of heating, conduction oil, water, air, industrial chemicals etc.) effect, because be conductive metal pipe self-heating, so be that the conversion ratio of heat energy is high especially by electric energy conversion, can 95% be reached, with compared with heating wire Electric heating, energy-conservation 30% ~ 50%, fundamentally solve electric heating piece, the resistance-types such as electric heating coil, by the inefficient problem of heat exchange pattern heat hot.Thus Electromagnetic Heating energy-saving and environmental protection, safety and life-span are long, and maintenance rate is low; Once be out of order, maintenance or replacing are easily.
Above-described specific embodiment; technical problem, technical scheme and beneficial effect that the utility model solves are further described; be understood that; the foregoing is only specific embodiment of the utility model; be not limited to the utility model; all within spirit of the present utility model and principle, any amendment made, equivalent replacement, improvement etc., all should be included within protection range of the present utility model.

Claims (10)

1. an electromagnet heating element, is characterized in that, it comprises the Electromagnetic Heating sub-element that an Electromagnetic Heating sub-element or two or more are cascaded, and described Electromagnetic Heating sub-element has:
Tube bank group (1), be provided with in described tube bank group (1) and separate face, and restrain in group (1) and be fitted with conductive metal pipe, conductive metal pipe comprises into medium conductive metal pipe and goes out medium conductive metal pipe, enter medium conductive metal pipe and be positioned at the side separating face, go out medium conductive metal pipe and be positioned at the opposite side separating face;
Turnover dielectric cavity part, described turnover dielectric cavity part is arranged on one end of tube bank group (1), and pass in and out in medium cavity and be divided into into dielectric cavity (2) and go out dielectric cavity (3), described enter dielectric cavity (2) be connected with the import of entering medium conductive metal pipe, the outlet going out medium conductive metal pipe with go out dielectric cavity (3) and be connected, turnover medium cavity is provided with medium entrance (21) and media outlet (31), medium entrance (21) with enter dielectric cavity (2) and be connected, media outlet (31) with go out dielectric cavity (3) and be connected;
Transition medium chamber part (4), described transition medium chamber part (4) is arranged on the other end of tube bank group (1), be provided with transition medium chamber in described transition medium chamber part (4), described in enter medium conductive metal pipe outlet be connected with transition medium chamber respectively with the import going out medium conductive metal pipe;
Energising solenoid (5), described solenoid (5) is looped around on the outer wall of tube bank group (1), and its solenoid (5) become cross-like around direction with the axis of conductive metal pipe.
2. electromagnet heating element according to claim 1, is characterized in that: solenoid (5) become vertical configuration around direction with the axis of conductive metal pipe.
3. electromagnet heating element according to claim 1, is characterized in that: the cross section of described tube bank group (1) is circular configuration, and the axial centre that described conductive metal pipe is distributed on to restrain group (1) is the circumferentially multiple of the center of circle.
4. electromagnet heating element according to claim 1, it is characterized in that: the length of described conductive metal pipe is 2 ~ 3m, and/or the quantity entered medium conductive metal pipe and go out medium conductive metal pipe is respectively 20 ~ 25, and/or the wall thickness of conductive metal pipe is 2mm ~ 3mm, and/or the diameter of conductive metal pipe is 25mm ~ 35mm.
5. electromagnet heating element according to claim 1, is characterized in that: the frequency of the electrical current of described solenoid (5) is 10 ~ 20KHz.
6. an electromagnetic boiler, it is characterized in that: it adopts the electromagnet heating element according to any one of claim 1 to 5, and the medium in conductive metal pipe is water, it also comprises water-softening plant (6) and steam storage tank (7), water-softening plant (6) is provided with the import passing into water, the outlet of water-softening plant (6) is connected with the import of electromagnet heating element, and the outlet of electromagnet heating element is connected with the import of steam storage tank (7).
7. an electromagnetic boiler, it is characterized in that: it adopts the electromagnet heating element according to any one of claim 1 to 5, and the medium in conductive metal pipe is water, it also comprises water-softening plant (6), water-softening plant (6) is provided with the import passing into water, the outlet of water-softening plant (6) is connected with the import of electromagnet heating element, and the outlet of electromagnet heating element directly accesses heating equipment (8).
8. an electromagnetic boiler, it is characterized in that: it adopts the electromagnet heating element according to any one of claim 1 to 5, and the medium in conductive metal pipe is oil, it also comprises fuel tank (9) and pump (10), the outlet of fuel tank (9) is connected with the import of electromagnet heating element by pump (10), and the outlet of electromagnet heating element is connected with heating equipment (8).
9. a kind of electromagnetic boiler according to claim 8, it is characterized in that: also comprise expansion slot (11) and gs-oil separator (12), the import of described gs-oil separator (12) is connected with heating equipment (8), the oil export of gs-oil separator (12) is connected with fuel tank (9), and the gas outlet of gs-oil separator (12) is connected with the import of expansion slot (11).
10. an electromagnetic boiler, it is characterized in that: it adopts the electromagnet heating element according to any one of claim 1 to 5, and the medium in conductive metal pipe is air, it also comprises blower fan (13) and roots blower (14), the import of blower fan (13) communicates with air, the outlet of blower fan (13) is connected with the import of electromagnet heating element, the outlet of electromagnet heating element is connected with the import of roots blower (14), and the outlet of roots blower (14) passes into heating equipment.
CN201520445679.5U 2015-06-25 2015-06-25 Electromagnet heating element and electromagnetic boiler Expired - Fee Related CN204721643U (en)

Priority Applications (1)

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CN201520445679.5U CN204721643U (en) 2015-06-25 2015-06-25 Electromagnet heating element and electromagnetic boiler

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CN201520445679.5U CN204721643U (en) 2015-06-25 2015-06-25 Electromagnet heating element and electromagnetic boiler

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CN204721643U true CN204721643U (en) 2015-10-21

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104936322A (en) * 2015-06-25 2015-09-23 常州东方铁路器材有限公司 Electromagnetic heating element and electromagnetic boiler

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104936322A (en) * 2015-06-25 2015-09-23 常州东方铁路器材有限公司 Electromagnetic heating element and electromagnetic boiler

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CF01 Termination of patent right due to non-payment of annual fee
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Granted publication date: 20151021

Termination date: 20160625