CN104654578A - Solid heat accumulating type electrothermal furnace - Google Patents
Solid heat accumulating type electrothermal furnace Download PDFInfo
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- CN104654578A CN104654578A CN201310583247.6A CN201310583247A CN104654578A CN 104654578 A CN104654578 A CN 104654578A CN 201310583247 A CN201310583247 A CN 201310583247A CN 104654578 A CN104654578 A CN 104654578A
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- heat
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- housing
- heat accumulating
- electrothermal furnace
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Abstract
The invention discloses a solid heat accumulating type electrothermal furnace; the solid heat accumulating type electrothermal furnace comprises a housing; the interior of the housing is partitioned into a heat accumulating chamber and a heat exchanging chamber; a plurality of heat accumulating devices are arranged inside the heat accumulating chamber; electric heaters are arranged inside the plurality of heat accumulating devices; a heat exchanger and a circulation fan are arranged inside the heat exchanging chamber; the partition board is provided with vent hole; an annular water pipe is distributed in the heat accumulating chamber; the annular water pipe is connected with the heat exchanger through two connecting pipes; the heat exchanger is connected with two heat conducting pipes which extend outside the housing; the lateral wall, the top wall and the bottom wall of the housing as well as the interior of the partition board are all filled with thermal insulation materials. The solid heat accumulating type electrothermal furnace further comprises a temperature sensor and a controller; the temperature sensor is connected with an input end of the controller; an output end of the controller is connected with a relay; the relay is connected with a power source and the electric heaters; the output end of the controller is connected with a circulation fan drive circuit; the circulation fan drive circuit is connected with the circulation fan. The solid heat accumulating type electrothermal furnace is simple in structure, is able to achieve automatic heat accumulation control, and provides high heat supply efficiency.
Description
Technical field
The present invention relates to a kind of electrothermal furnace device, particularly relate to a kind of solid heat storage formula electrothermal furnace device.
Background technology
Along with worldwide energy shortage and environment worsen, along with growth in the living standard, heat user also comes high for the requirement of heat supply, along with the increasing of electric power peak-valley difference, electricity hypodynamic defect when power department is in order to solve peak of power consumption, formulate electricity consumption preferential policy, when peak of power consumption, electricity cost is high, when low power consumption, electricity cost is low, electrothermal furnace is the equipment that a kind of electrical heating produces heat energy, if the deposit of heat energy can be carried out when low power consumption, when peak of power consumption, not needing electric energy to heat just can provide heat energy to supply people's use, greatly will decompose peak of power consumption, alleviate Voltage force on daytime, balance electrical network.
Summary of the invention
The object of the invention is to overcome above-mentioned deficiency of the prior art, a kind of solid heat storage formula electrothermal furnace device is provided.This solid heat storage formula electrothermal furnace apparatus structure is simple, can realize auto accumulation heat and control, simple to operate, improves heating efficiency.
For achieving the above object, the technical solution used in the present invention is: a kind of solid heat storage formula electrothermal furnace device, it is characterized in that: comprise housing, regenerator and Heat Room is become by baffle for separating in described housing, multiple regenerative apparatus is provided with in described regenerator, in multiple described regenerative apparatus, all electric heater is set, heat exchanger and circulating fan is provided with in described Heat Room, described dividing plate offers multiple air vent corresponding with circulating fan, be laid with in described regenerator and be centered around multiple regenerative apparatuses annular conduit of a week, between described annular conduit and multiple regenerative apparatus, there is gap, described annular conduit is connected with heat exchanger by two tube connectors through dividing plate, described heat exchanger is connected with the heat-transfer pipe that two are stretched out housing, the sidewall of described housing, all insulation material is filled with in roof and diapire and in dividing plate, also comprise control system, described control system comprises temperature sensor for detecting regenerator temperature and for receiving temperature sensor output signal and the controller of control relay break-make, described temperature sensor connects with the input of controller, the output of described controller connects with relay, described relay connects with power supply and electric heater, the output of described controller is connected to circulating fan drive circuit, and described circulating fan drive circuit connects with circulating fan.
Above-mentioned a kind of solid heat storage formula electrothermal furnace device, it is characterized in that: described regenerative apparatus is built into by refractory block, this regenerative apparatus arranges longitudinal through hole, described electric heater is arranged in described longitudinal through hole.
The present invention compared with prior art has the following advantages:
1, structure of the present invention is simple, rationally novel in design.
2, the present invention is by increasing energy storage equipment for electrothermal furnace, electric energy during low power consumption is carried out heating and is converted to thermal energy storage, needs to be discharged by heat energy when using, and economize energy, reduces use cost.
3, of the present invention to realize cost low, and result of use is good, is convenient to promote the use of.
In sum, structure of the present invention is simple, and rationally novel in design, functional reliability is high, long service life, and result of use is good, is convenient to promote the use of.
Below by drawings and Examples, technical scheme of the present invention is described in further detail.
Accompanying drawing explanation
Fig. 1 is structural representation of the present invention.
Fig. 2 is the schematic block circuit diagram of control system of the present invention.
Description of reference numerals:
1-housing; 2-insulation material; 3-temperature sensor;
4-regenerator; 5-dividing plate; 6-air vent;
7-circulating fan; 8-Heat Room; 9-electric heater;
10-regenerative apparatus; 11-annular conduit; 12-tube connector;
13-heat-transfer pipe; 14-heat exchanger; 15-controller;
16-relay; 17-power supply; 18-fan drive circuit.
Detailed description of the invention
A kind of solid heat storage formula electrothermal furnace device as depicted in figs. 1 and 2, comprise housing 1, regenerator 4 and Heat Room 8 is separated into by dividing plate 5 in described housing 1, multiple regenerative apparatus 10 is provided with in described regenerator 4, in multiple described regenerative apparatus 10, electric heater 9 is all set, heat exchanger 14 and circulating fan 7 is provided with in described Heat Room 8, described dividing plate 5 offers multiple air vent 6 corresponding with circulating fan 7, be laid with in described regenerator 4 and be centered around multiple regenerative apparatuses annular conduit of 10 1 weeks 11, between described annular conduit 11 and multiple regenerative apparatus 10, there is gap, described annular conduit 11 is connected with heat exchanger 14 by two tube connectors 12 through dividing plate 5, described heat exchanger 14 is connected with the heat-transfer pipe 13 that two are stretched out housing 1, the sidewall of described housing 1, all insulation material is filled with in roof and diapire and in dividing plate 5, also comprise control system, described control system comprises the temperature sensor 3 for detecting regenerator 4 temperature and outputs signal and the controller 15 of control relay 16 break-make for receiving temperature sensor 3, described temperature sensor 3 connects with the input of controller 15, the output of described controller 15 connects with relay 16, described relay 16 connects with power supply 17 and electric heater 9, the output of described controller 15 is connected to circulating fan drive circuit 18, and described circulating fan drive circuit 18 connects with circulating fan 7.
In the present embodiment, after power supply 17 is connected, the electric heater 9 interted in regenerative apparatus 10 starts heating, heat is passed to the regenerative apparatus 10 be built into by refractory block, detected by the temperature in temperature sensor 3 pairs of regenerator, and Detection Information is passed to controller 15, when the temperature in regenerator 4 reaches setting value, controller 15 cuts off power supply 17 automatically, by the insulation material 2 of regenerative apparatus 10 and housing 1, thermal energy storage is got up, when needs heat, start the circulating fan 7 in Heat Room 8, by the air vent 6 of insulation material 2, air is sent in regenerator 4, the air themperature entering regenerator 4 improves, hot-air is by the water heating in annular conduit 11, water in annular conduit 11 enters heat exchanger 8, by heat exchanger 8 heat passed to the recirculated water in heat exchanger 8, carry out heat supply to external world.
In the present embodiment, described regenerative apparatus 10 is built into by refractory block, and this regenerative apparatus 10 arranges longitudinal through hole, and described electric heater 9 is arranged in described longitudinal through hole.
The above; it is only preferred embodiment of the present invention; not the present invention is imposed any restrictions, every above embodiment is done according to the technology of the present invention essence any simple modification, change and equivalent structure transformation, all still belong in the protection domain of technical solution of the present invention.
Claims (2)
1. a solid heat storage formula electrothermal furnace device, it is characterized in that: comprise housing (1), regenerator (4) and Heat Room (8) is separated into by dividing plate (5) in described housing (1), multiple regenerative apparatus (10) is provided with in described regenerator (4), in multiple described regenerative apparatus (10), electric heater (9) is all set, heat exchanger (14) and circulating fan (7) is provided with in described Heat Room (8), described dividing plate (5) offers multiple air vent (6) corresponding with circulating fan (7), be laid with in described regenerator (4) and be centered around multiple regenerative apparatus annular conduit (11) of (10) weeks, between described annular conduit (11) and multiple regenerative apparatus (10), there is gap, described annular conduit (11) is connected with heat exchanger (14) by two tube connectors (12) through dividing plate (5), described heat exchanger (14) is connected with the heat-transfer pipe (13) that two are stretched out housing (1), the sidewall of described housing (1), all insulation material is filled with in roof and diapire and in dividing plate (5), also comprise control system, described control system comprises the temperature sensor (3) for detecting regenerator (4) temperature and outputs signal and the controller (15) of control relay (16) break-make for receiving temperature sensor (3), described temperature sensor (3) connects with the input of controller (15), the output of described controller (15) connects with relay (16), described relay (16) connects with power supply (17) and electric heater (9), the output of described controller (15) is connected to circulating fan drive circuit (18), described circulating fan drive circuit (18) connects with circulating fan (7).
2. a kind of solid heat storage formula electrothermal furnace device according to claim 1, it is characterized in that: described regenerative apparatus (10) is built into by refractory block, (10) arrange longitudinal through hole to this regenerative apparatus, and described electric heater (9) is arranged in described longitudinal through hole.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201310583247.6A CN104654578A (en) | 2013-11-17 | 2013-11-17 | Solid heat accumulating type electrothermal furnace |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201310583247.6A CN104654578A (en) | 2013-11-17 | 2013-11-17 | Solid heat accumulating type electrothermal furnace |
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CN104654578A true CN104654578A (en) | 2015-05-27 |
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CN201310583247.6A Pending CN104654578A (en) | 2013-11-17 | 2013-11-17 | Solid heat accumulating type electrothermal furnace |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106482341A (en) * | 2016-12-02 | 2017-03-08 | 唐山铸锐科技有限公司 | Accumulation of energy firing equipment and accumulation of energy heater |
CN114370662A (en) * | 2022-01-10 | 2022-04-19 | 北京市煤气热力工程设计院有限公司 | Water heat exchange type solid heat storage and supply device and method |
RU213034U1 (en) * | 2022-05-18 | 2022-08-22 | Лилия Рамильевна Филиппова | ELECTRIC HEATER |
-
2013
- 2013-11-17 CN CN201310583247.6A patent/CN104654578A/en active Pending
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106482341A (en) * | 2016-12-02 | 2017-03-08 | 唐山铸锐科技有限公司 | Accumulation of energy firing equipment and accumulation of energy heater |
CN114370662A (en) * | 2022-01-10 | 2022-04-19 | 北京市煤气热力工程设计院有限公司 | Water heat exchange type solid heat storage and supply device and method |
CN114370662B (en) * | 2022-01-10 | 2022-11-04 | 北京市煤气热力工程设计院有限公司 | Water heat exchange type solid heat storage and supply device and method |
RU213034U1 (en) * | 2022-05-18 | 2022-08-22 | Лилия Рамильевна Филиппова | ELECTRIC HEATER |
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Application publication date: 20150527 |