CN106705012A - Water-electricity heat exchange heat circulation method - Google Patents
Water-electricity heat exchange heat circulation method Download PDFInfo
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- CN106705012A CN106705012A CN201510794147.7A CN201510794147A CN106705012A CN 106705012 A CN106705012 A CN 106705012A CN 201510794147 A CN201510794147 A CN 201510794147A CN 106705012 A CN106705012 A CN 106705012A
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Abstract
The invention discloses a water-electricity heat exchange heat circulation method. A sealed shell with the hollow interior is included. A heat exchange pipe is arranged in the shell and is bent to be of a coiled structure. The bottom end of a gas-liquid separation chamber is arranged in the shell. The gas-liquid separation chamber is arranged in the coiled structure formed by the heat exchange pipe. A gas outlet pipe is arranged at the top end of the gas-liquid separation chamber. A water bath is arranged in the shell, and the water bath is connected with an electric heater. A thermocouple is arranged in the coiled structure formed by the heat exchange pipe. An electrical control box and a junction box are arranged on the outer portion of the shell, and the electrical control box is connected with the electric heater. A liquid level controller is arranged in the shell. A liquid inlet solenoid valve and a liquid phase filter are arranged at the end, arranged on the outer portion of the shell, of the heat exchange pipe. The liquid inlet solenoid valve, the thermocouple and the water level controller are all connected with the junction box. By means of the structure, the heating and gasifying efficiency can be greatly improved, the period is shortened, the service life is prolonged, energy is saved, and maximum utilization is achieved.
Description
Technical field
The present invention relates to a kind of structure, more particularly, to a kind of thermal circulation method of water power heat exchange.
Background technology
Electrical heating is at present to metal material efficiency of heating surface highest, fastest, the induction heating equipment of low-loss and energy-saving environment-friendly type.Electrical heating, also known as high frequency heating machine, HF induction heating apparatus, high-frequency induction heating apparatus, high-frequency heating power, high frequency electric source, high frequency furnace.High-frequency welder, high frequency sensing heating machine, high frequency sensing heater (soldering apparatus) etc., in addition also Intermediate Frequency Induction Heating Equipment, superelevation frequency induction heating equipment etc..Range of application is quite varied.Heat energy is converted electric energy into heat object.It is a kind of form of utilization of power.Compared with general fuel is heated, electrical heating can obtain higher temperature (such as electric arc heated, temperature is up to more than 3000 DEG C), it is easy to accomplish temperature is automatically controlled and far distance controlled, vehicle-mounted electric-heating cup.Heating object can be on demand set to keep certain Temperature Distribution.Electrical heating can inside heating object direct heat, thus the thermal efficiency is high, and programming rate is fast, and can according to the technological requirement of heating, realize overall uniform heating or it is local plus(Including surface heating), easily realize heating in vacuum and control atmosphere heating.During electrical heating, the waste gas of generation, residue and flue dust are few, can keep the cleaning of heating object, free from environmental pollution.Therefore, electrical heating is widely used in the fields such as production, scientific research and experiment.The aspects such as manufacture, machine components and surface hardening, the melting of ferroalloy and the manufacture of Delanium particularly in monocrystalline and transistor, all using Electric heating.According to the difference of electric energy conversion regime, electrical heating is generally divided into resistance heating, sensing heating, electric arc heated, electron beam heating, infrared heating and medium heating etc..The complex structure of existing electric heating gasification structure, and transformation efficiency is low during heating and gasifying, wastes the energy, it is impossible to meet factory needing.
The content of the invention
Complex structure it is an object of the invention to overcome above-mentioned existing electric heating gasification structure, and transformation efficiency is low during heating and gasifying, waste the energy, the problem of factory needing can not be met, devise a kind of thermal circulation method of water power heat exchange, the structure can greatly improve the efficiency of heating and gasifying, shorten the cycle, service life is extended, the energy has been saved, realizes maximally utilizing, solve the complex structure of existing electric heating gasification structure, and transformation efficiency is low during heating and gasifying, the energy is wasted, it is impossible to meet the problem of factory needing.
The purpose of the present invention is achieved through the following technical solutions:A kind of thermal circulation method of water power heat exchange, seal casinghousing including inner hollow, heat-exchange tube is provided with the housing, heat-exchange tube is bent into disk-like structure, one end of heat-exchange tube is arranged on hull outside through housing, the other end is communicated with gas-liquid separation chamber, the bottom of gas-liquid separation chamber is set in the housing, gas-liquid separation chamber is arranged in the disk-like structure of heat-exchange tube formation, the top of gas-liquid separation chamber is provided with escaping pipe, escaping pipe one end connects with the top of gas-liquid separation chamber, the other end is arranged on the outside of housing, water bath is provided with housing, water bath is arranged on the lower section of gas-liquid separation chamber, water bath is connected with electric heater, and electric heater is arranged on hull outside and is fixed on the outer wall of housing;Thermocouple is provided with the disk-like structure that the heat-exchange tube is formed, the bottom insertion of thermocouple is in the housing;The hull outside is provided with electric control box and terminal box, and electric control box and terminal box are connected with each other, electric control box and with electric heater connect, water level controller is provided with housing, heat-exchange tube is arranged on one end of hull outside and is provided with liquid inlet electromagnetic valve and liquid filtration device, and liquid inlet electromagnetic valve, thermocouple and water level controller are connected with terminal box.
The housing exterior walls are provided with water-level gauge.
The housing exterior walls are provided with thermometer, and thermometer is connected with enclosure interior.
The hull outside is provided with drainpipe, and drainpipe is connected with enclosure interior;Overflow pipe is provided with the housing, overflow pipe is connected with enclosure interior, and one end that overflow pipe is connected with enclosure interior is near the top of housing.
Blow-off pipe is provided with the gas-liquid separation chamber, one end of blow-off pipe is arranged on hull outside.
In sum, the beneficial effects of the invention are as follows:The structure can greatly improve the efficiency of heating and gasifying, shorten the cycle, extend service life, the energy is saved, realization is maximally utilized, and solves the complex structure of existing electric heating gasification structure, and transformation efficiency is low during heating and gasifying, waste the energy, it is impossible to meet the problem of factory needing.
Brief description of the drawings
Fig. 1 is structural representation of the invention.
Mark and corresponding parts title in accompanying drawing:1-liquid filtration device;2-liquid inlet electromagnetic valve;3-thermocouple;4-escaping pipe;7-electric control box;8-terminal box;9-water level controller;10-blow-off pipe;11-electric heater;12-overflow pipe;13-drainpipe;14-housing;15-water bath;16-thermometer;17-gas-liquid separation chamber;18-heat-exchange tube;19-water-level gauge.
Specific embodiment
With reference to embodiment and accompanying drawing, the present invention is described in further detail, but embodiments of the present invention are not limited only to this.
Embodiment:
As shown in Figure 1,A kind of thermal circulation method of water power heat exchange,Seal casinghousing 14 including inner hollow,Heat-exchange tube 18 is provided with the housing 14,Heat-exchange tube 18 is bent into disk-like structure,One end of heat-exchange tube 18 is arranged on outside housing 14 through housing 14,The other end is communicated with gas-liquid separation chamber 17,The bottom of gas-liquid separation chamber 17 is arranged in housing 14,Gas-liquid separation chamber 17 is arranged in the disk-like structure of the formation of heat-exchange tube 18,The top of gas-liquid separation chamber 17 is provided with escaping pipe 4,The one end of escaping pipe 4 connects with the top of gas-liquid separation chamber 17,The other end is arranged on the outside of housing 14,Water bath 15 is provided with housing 14,Water bath 15 is arranged on the lower section of gas-liquid separation chamber 17,Water bath 15 is connected with electric heater 11,And electric heater 11 is arranged on the outside of housing 14 and is fixed on the outer wall of housing 14;Thermocouple 3 is provided with the disk-like structure that the heat-exchange tube 18 is formed, the bottom of thermocouple 3 is inserted in housing 14;Electric control box 7 and terminal box 8 are provided with outside the housing 14, and electric control box 7 and terminal box 8 are connected with each other, electric control box 7 and connected with electric heater 11, water level controller 9 is provided with housing 14, heat-exchange tube 18 is arranged on the one end outside housing 14 and is provided with liquid inlet electromagnetic valve 2 and liquid filtration device 1, and liquid inlet electromagnetic valve 2, thermocouple 3 and water level controller 9 are connected with terminal box 8;The outer wall of the housing 14 is provided with water-level gauge 19;The outer wall of the housing 14 is provided with thermometer 16, and thermometer 16 is connected with the inside of housing 14;Drainpipe 13 is provided with outside the housing 14, and drainpipe 13 is connected with the inside of housing 14;Overflow pipe 12 is provided with the housing 14, overflow pipe 12 is connected with the inside of housing 14, and one end that overflow pipe 12 is connected with the inside of housing 14 is near the top of housing 14;Blow-off pipe 10 is provided with the gas-liquid separation chamber 17, one end of blow-off pipe 10 is arranged on outside housing 14.In the technical program, electric control box 7 and terminal box 8 are all existing structures, heating and gasifying process is controlled by them, convenient operation, security is improved simultaneously, before the heat-exchange tube 18 that liquid enters in housing 14, filtered by liquid filtration device 1, impurity treatment therein is clean, after liquid inlet electromagnetic valve 2 experiences liquid to be entered, just signal is transported in terminal box 8, so that the control anti-explosion electric heater 11 of electric control box 7 and thermocouple 3 proceed by heating, heat-exchange tube 18 swaps heat, so that liquid gasification, substantially increase operating efficiency, reduce the middle stand-by period.Liquid after gasification is separated in gas-liquid separation chamber 17, gas is transported to the place of needs by escaping pipe 4, after after work for a period of time, when cleaning is needed in gas-liquid separation chamber 17, sewage treatment is carried out by blow-off pipe 10, and the water in housing 14 is then discharged by drainpipe 13, overflow pipe 12 be prevent water level in housing 14 too it is high cause internal pressure excessive and design water is discharged, limit its peak level, water-level gauge 19 and thermometer 16 are that water level and temperature are monitored, it is ensured that the water level in housing 14 is with temperature in rational scope.
The structure can greatly improve the efficiency of heating and gasifying, shorten the cycle, extend service life, the energy is saved, realization is maximally utilized, and solves the complex structure of existing electric heating gasification structure, and transformation efficiency is low during heating and gasifying, waste the energy, it is impossible to meet the problem of factory needing.
The above; only it is presently preferred embodiments of the present invention; any formal limitation is not done to the present invention, every any simple modification, equivalent variations substantially made to above example according to technology of the invention, method are each fallen within protection scope of the present invention.
Claims (5)
1. a kind of thermal circulation method of water power heat exchange, it is characterised in that:Seal casinghousing including inner hollow(14), the housing(14)In be provided with heat-exchange tube(18), heat-exchange tube(18)It is bent into disk-like structure, heat-exchange tube(18)One end pass through housing(14)It is arranged on housing(14)Outside, the other end is communicated with gas-liquid separation chamber(17), gas-liquid separation chamber(17)Bottom be arranged on housing(14)In, gas-liquid separation chamber(17)It is arranged on heat-exchange tube(18)In the disk-like structure of formation, gas-liquid separation chamber(17)Top be provided with escaping pipe(4), escaping pipe(4)One end and gas-liquid separation chamber(17)Top connection, the other end is arranged on housing(14)Outside, housing(14)In be provided with water bath(15), water bath(15)It is arranged on gas-liquid separation chamber(17)Lower section, water bath(15)It is connected with electric heater(11), and electric heater(11)It is arranged on housing(14)Outside is simultaneously fixed on housing(14)Outer wall on;The heat-exchange tube(18)Thermocouple is provided with the disk-like structure of formation(3), thermocouple(3)Bottom be inserted in housing(14)In;The housing(14)Outside is provided with electric control box(7)And terminal box(8), and electric control box(7)And terminal box(8)It is connected with each other, electric control box(7)With and electric heater(11)Connection, housing(14)In be provided with water level controller(9), heat-exchange tube(18)It is arranged on housing(14)Liquid inlet electromagnetic valve is provided with outside one end(2)With liquid filtration device(1), liquid inlet electromagnetic valve(2), thermocouple(3)And water level controller(9)And terminal box(8)Connection, before the heat-exchange tube (18) that liquid enters in housing (14), filtered by liquid filtration device (1), after liquid inlet electromagnetic valve (2) experiences liquid to be entered, just signal is transported in terminal box (8), so that electric control box (7) control anti-explosion electric heater(11)And thermocouple(3)Proceed by heating, heat-exchange tube(18)Heat is swapped so that liquid gasification;Liquid after gasification is in gas-liquid separation chamber(17)Separated, gas passes through escaping pipe(4)The place of needs is transported to, after after work for a period of time, gas-liquid separation chamber(17)In need cleaning when, by blow-off pipe(10)Carry out sewage treatment, and housing(14)In water then pass through drainpipe(13)Discharge, overflow pipe(12)It is to prevent housing(14)Middle water level is too high to cause internal pressure excessive and design discharge water, limits its peak level, water-level gauge(19)And thermometer(16)It is that water level and temperature are monitored, it is ensured that housing(14)In water level and temperature in rational scope.
2. the thermal circulation method of a kind of water power heat exchange according to claim 1, it is characterised in that:The housing(14)Outer wall is provided with water-level gauge(19).
3. the thermal circulation method of a kind of water power heat exchange according to claim 1, it is characterised in that:The housing(14)Outer wall is provided with thermometer(16), thermometer(16)With housing(14)Inside connection.
4. the thermal circulation method of a kind of water power heat exchange according to claim 1, it is characterised in that:The housing(14)Outside is provided with drainpipe(13), and drainpipe(13)With housing(14)Inside connection;The housing(14)In be provided with overflow pipe(12), overflow pipe(12)With housing(14)Inside connection, and overflow pipe(12)With housing(14)One end of inside connection is near housing(14)Top.
5. the thermal circulation method of a kind of water power heat exchange according to claim 1, it is characterised in that:The gas-liquid separation chamber(17)In be provided with blow-off pipe(10), blow-off pipe(10)One end be arranged on housing(14)It is outside.
Priority Applications (1)
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CN201510794147.7A CN106705012A (en) | 2015-11-17 | 2015-11-17 | Water-electricity heat exchange heat circulation method |
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CN201510794147.7A CN106705012A (en) | 2015-11-17 | 2015-11-17 | Water-electricity heat exchange heat circulation method |
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CN106705012A true CN106705012A (en) | 2017-05-24 |
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CN201510794147.7A Pending CN106705012A (en) | 2015-11-17 | 2015-11-17 | Water-electricity heat exchange heat circulation method |
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2015
- 2015-11-17 CN CN201510794147.7A patent/CN106705012A/en active Pending
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Application publication date: 20170524 |