CN1840970A - Electromagnetic heating system with superconductive composite heat energy converter - Google Patents

Electromagnetic heating system with superconductive composite heat energy converter Download PDF

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Publication number
CN1840970A
CN1840970A CN 200510059905 CN200510059905A CN1840970A CN 1840970 A CN1840970 A CN 1840970A CN 200510059905 CN200510059905 CN 200510059905 CN 200510059905 A CN200510059905 A CN 200510059905A CN 1840970 A CN1840970 A CN 1840970A
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China
Prior art keywords
heating system
energy converter
superconductive
electromagnetic heating
heat energy
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Pending
Application number
CN 200510059905
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Chinese (zh)
Inventor
高云书
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Individual
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Individual
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Priority to CN 200510059905 priority Critical patent/CN1840970A/en
Publication of CN1840970A publication Critical patent/CN1840970A/en
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Abstract

The invention discloses a superconducting composite heat-energy converter electromagnetic heating system of separate chambered control, which is characterized by the following: the control panel, electronic circuit board and coil connect sequently in the stove box; the control panel is loaded on the front of box; the vacuum meter is loaded on the top of control panel; the coil is loaded on two sides of liquor-tank, which is set under the box; the top of liquor-tank contains gas-outlet and liquor return pipe, which serials, parallels small or largely with radiation piece; when the power is on, the alternative magnetic field makes liquor generate convolution heat superconductive dielectric, which is gasified gradually; the dielectric flows into the liquor-tank through outlet pipe in the vacuum condition, which can be circulated repeatedly.

Description

Electromagnetic heating system with superconductive composite heat energy converter
Affiliated technical field
The present invention relates to a kind of is hot media with the superconductive medium, be thermal source heating system, the especially energy-saving and environmental protection of alternating electromagnetic field generated eddy current hotwork, efficient, safety, convenience, but the autonomous heating of separate house and separate room's formula.
Background technology
At present, coal-fired, combustion gas and manyly with electric heating system be hot media with water and mainly comprise coal burning and gas burning, electric boiler and be distributed in indoor radiator everywhere, heat medium water by the boiler heating after, enter the heat exchanger heat exchange through water inlet pipe, and return into boiler through return pipe, form Natural Circulation.Though this system is practical, an outstanding defective, promptly not enough cleaning, the flue dust that fire coal or gas fired-boiler produced is quite serious to the pollution of indoor and outdoor surroundings, in case poisonous gas leakage can cause accident to take place, and needs the professional to keep an eye on, troublesome poeration, can not control automatically, start-up time is long, and the thermal efficiency is low.The volume of fire coal or gas fired-boiler and floor space are all bigger, for the sake of security, preferably are installed on draughty place separately, for the narrow family of living space, this is difficult to accomplish, for coal-burning boiler, also needs to lay in a considerable amount of coals.And electric boiler power is big, needs three-phase electricity mostly, and energy consumption is big, and family uses and is restricted.The part electric heating system is to be thermal source with the electrothermal tube, and as hot media, its shortcoming is that electrothermal tube is short service life with hot spit of fland oil, and thermal losses is big, and water power does not separate, and has hidden danger, and hot spit of fland oil is easy to generate carbon deposit, influence the heating heat radiation, the thermal efficiency is low, thereby influences the heating effect.All of these factors taken together all makes the use of fire coal, combustion gas or electric boiler heating system be restricted.
Electromagnetic heating system with superconductive composite heat energy converter utilizes alternating electromagnetic field generated eddy current heat, is a kind of thermal source of cleaning, and the heat utilization efficiency height can be controlled automatically.Do hot media with superconductive medium, heat conduction is fast, the conserve water resource.Utilize electromagnetic heating system with superconductive composite heat energy converter, can fundamentally stop fire coal or smoke contamination that combustion gas brought, volume and floor space are all smaller, can alleviate the general family crowded difficulty of living.
The objective of the invention is to design a kind of is hot media with the superconductive medium, with the heating system of electromagnetism heating, thereby reaches energy-saving and environmental protection, efficient, safety, convenience, the purpose that separate house and separate room independently heats.
Summary of the invention:
For overcome existing coal burning and gas burning, low, dangerous with pollution, the heat utilization efficiency of electric heating system, volume big, the deficiency of troublesome poeration, the invention provides a kind of electromagnetic heating system with superconductive composite heat energy converter, it can not only reach the purpose of heating, and energy-saving and environmental protection, efficient, safety, convenience, but separate house and separate room independently heats.
The technical scheme that the present invention solves its technical problem employing is: control panel, electronic circuit board, coil are electrically connected in proper order in housing, and receiver, steam outlet pipe, liquid back pipe, fin link to each other, and coil stationary is on receiver.Connect the power switch on the control panel, electronic circuit board produces high frequency electric makes coil produce alternating magnetic field, make the metal receiver in the magnetic field produce eddy current heat, thereby the superconductive medium in the heating receiver, superconductive medium gasifies gradually, under vacuum state, flow to fin, carry out flowing back to receiver after the heat exchange and circulate repeatedly by steam outlet pipe.The fin serial or parallel connection is on trunk line.
Receiver cutting magnetic line in magnetic field produces heat energy and heats receiver with electrothermal tube or fire and will reduce the heating link than traditional, the flames of anger, and no flue dust is so energy-conservation, safety, environmental protection, convenience.Conduct heat under vacuum state by superconductive medium, water not, no vapour lock, conduction of velocity are fast, and heat energy is fully used, thus energy-conservation, water saving.Utilize aluminium matter radiating fin, arrange closely, strengthened area of dissipation, energy can exchange fast.Copper pipe and aluminium fin thermal conductivity height are so heating effect is good.The casing of radiator surrounds fin all around, when fin heats up, forms draught head in casing, has quickened cross-ventilation, makes between indoor cold air and fin heat exchange faster.Superconductive medium does not have burn into heating part electronic component quality to pipeline and reaches a standard and guaranteed the service life of native system.
The invention has the beneficial effects as follows: native system is more reasonably combined mode of heating, heating link, heat transfer type, heat transfer material, heat radiation material and overall structure, not only reach the purpose of heating, and energy-saving and environmental protection, fast, convenience, safety, volume be little, long service life, control automatically.
Description of drawings
The present invention is further described below in conjunction with drawings and Examples.
Accompanying drawing 1 is a stove and accessory outside drawing of the present invention.
Accompanying drawing 2 is control panel figure of the present invention.
Accompanying drawing 3 is electric component connection layouts of the present invention.
Accompanying drawing 4 is receiver structure charts of the present invention.
Accompanying drawing 5 is circulatory system series connection figure of the present invention.
Accompanying drawing 6 is the little figure in parallel of general assembly of the present invention.
Accompanying drawing 7 is the big figure in parallel of fin of the present invention.
1. control panels among the figure, 2. pressure vacuum gauge, 3. steam outlet pipe, 4. electronic circuit board, 5. coil, 6. receiver, 7. internal partition, 8. casing, 9. fin, 10. liquid back pipe, 11. superconductive mediums.
The specific embodiment
In Fig. 5, casing (8) is divided into two parts by internal partition (7), control panel (1), electronic circuit (4), coil (5) order is electrically connected, control panel (1) and pressure vacuum gauge (2) are fixed on the front upper of casing, pressure vacuum gauge (2) is fixed on the middle and upper part of control panel, pressure vacuum gauge (2) links to each other with steam outlet pipe (3), electronic circuit board (4) is fixed on the dividing plate (7), control panel (1) links to each other with electronic circuit board (4), wiring board (4) links to each other with coil (5), coil (5) is fixed on the receiver (6), superconductive medium (11) is contained in the receiver (6), receiver (6), steam outlet pipe (3), liquid back pipe (10), fin (9) links to each other, and receiver (6) is fixed on casing (8) bottom.Fin (9) is connected with steam outlet pipe (3), little parallel connection or big in parallel.During this heating system work, give an order by control panel (1), electronic circuit board (4) produces alternating current makes coil (5) produce alternating electromagnetic field, receiver in alternating electromagnetic field (6) produces eddy current heat, is contained in the receiver (6) superconductive medium (11) and begins vaporization and be transported to diffusing sheet (9) and form circulation repeatedly with extraneous heat exchange after liquid back pipe (10) flows back to receiver (6).

Claims (7)

1, a kind of electromagnetic heating system with superconductive composite heat energy converter, it is characterized in that: in casing, control panel, electronic circuit board, coil are electrically connected in proper order, control panel is fixed on the front upper of casing, coil stationary is on receiver, superconductive medium is arranged in the receiver, and there are steam outlet pipe, liquid back pipe in top and outside casing and fin.
2, electromagnetic heating system with superconductive composite heat energy converter according to claim 1 is characterized in that: control panel, electronic circuit board, coil are electrically connected in proper order.
3, electromagnetic heating system with superconductive composite heat energy converter according to claim 1 is characterized in that: control panel is contained in the positive front upper of casing, and outward appearance is circular, and vacuum meter is contained in the top in this circle, and electronic circuit board is fixed on above the casing internal partition.
4, electromagnetic heating system with superconductive composite heat energy converter according to claim 1 is characterized in that: receiver is a cylinder, is fixed on the Lower Half in the casing, and two sides have coil respectively, and venthole, liquid return hole are arranged at top.
5, electromagnetic heating system with superconductive composite heat energy converter according to claim 1 is characterized in that: receiver is equipped with superconductive medium, makes receiver produce eddy current heat by alternating electromagnetic field and heats superconductive medium and form the circulatory system under vacuum state.
6, electromagnetic heating system with superconductive composite heat energy converter according to claim 1 is characterized in that: the fin serial or parallel connection perhaps is connected in parallel between steam outlet pipe and the liquid-feeding tube on steam outlet pipe.
7, electromagnetic heating system with superconductive composite heat energy converter according to claim 1 is characterized in that: fin is through on the copper pipe with aluminium matter thin slice, arranges closely, is with the housing protection outward, the top louvre of fin with below communicate, be beneficial to heat exchange.
CN 200510059905 2005-04-01 2005-04-01 Electromagnetic heating system with superconductive composite heat energy converter Pending CN1840970A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 200510059905 CN1840970A (en) 2005-04-01 2005-04-01 Electromagnetic heating system with superconductive composite heat energy converter

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 200510059905 CN1840970A (en) 2005-04-01 2005-04-01 Electromagnetic heating system with superconductive composite heat energy converter

Publications (1)

Publication Number Publication Date
CN1840970A true CN1840970A (en) 2006-10-04

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN 200510059905 Pending CN1840970A (en) 2005-04-01 2005-04-01 Electromagnetic heating system with superconductive composite heat energy converter

Country Status (1)

Country Link
CN (1) CN1840970A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102022772A (en) * 2010-12-17 2011-04-20 李东升 Electromagnetic heating superconducting heating system
CN106440004A (en) * 2016-10-10 2017-02-22 浙江天运机电科技有限公司 Electric-heating heater

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102022772A (en) * 2010-12-17 2011-04-20 李东升 Electromagnetic heating superconducting heating system
CN106440004A (en) * 2016-10-10 2017-02-22 浙江天运机电科技有限公司 Electric-heating heater

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