CN104910925A - Coke oven roof waste heat recovery power generation system based on power supply adjusting circuit - Google Patents

Coke oven roof waste heat recovery power generation system based on power supply adjusting circuit Download PDF

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Publication number
CN104910925A
CN104910925A CN201510246191.4A CN201510246191A CN104910925A CN 104910925 A CN104910925 A CN 104910925A CN 201510246191 A CN201510246191 A CN 201510246191A CN 104910925 A CN104910925 A CN 104910925A
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pole
diode
triode
electric capacity
coke oven
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CN201510246191.4A
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不公告发明人
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Chengdu MCC Energy Saving Environmental Protection Engineering Co Ltd
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Chengdu MCC Energy Saving Environmental Protection Engineering Co Ltd
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Priority to CN201510246191.4A priority Critical patent/CN104910925A/en
Publication of CN104910925A publication Critical patent/CN104910925A/en
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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
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E20/00Combustion technologies with mitigation potential
    • Y02E20/14Combined heat and power generation [CHP]
    • 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
    • Y02P20/00Technologies relating to chemical industry
    • Y02P20/10Process efficiency
    • Y02P20/129Energy recovery, e.g. by cogeneration, H2recovery or pressure recovery turbines

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Abstract

The invention discloses a coke oven roof waste heat recovery power generation system based on a power supply adjusting circuit. The system is composed of a coke oven roof pit and roof quarry tiles covering the surface of the roof. A hole steel plate, a thermal insulation plate layer and a hole steel plate are arranged inside the coke oven roof pit from bottom to top in order. an insulation tile layer arranged between the hole steel plate and the thermal insulation plate layer is poured with heatproof sealing slurry at the internal seam of the coke oven roof pit. A heat exchanger and an evaporator forming an enclosed loop are arranged outside the coke oven roof pit. A waste heat power generation system is arranged on the evaporator. A waste heat control circuit is arranged in the waste heat power generation system. A control-type power supply circuit, a power supply adjusting circuit and a control-type output circuit are arranged in the waste heat control circuit and the control-type power supply circuit, the power supply adjusting circuit and the control-type output circuit are connected in order.

Description

Based on the oven top of coke oven waste heat recovery generating system of power supply regulator circuit
Technical field
The present invention relates to a kind of afterheat generating system, specifically, relate to the oven top of coke oven waste heat recovery generating system based on power supply regulator circuit.
Background technology
Coke oven is also called pit kiln, it is a kind of stove be built into by refractory brick and refractory block, for making coal carbonization to produce the main Thermal Equipment of coke, and modern coke oven refers to production metallurgy burnt for main purpose, the horizontal-chamber type coke oven that can reclaim coking chemistry product, it is formed primarily of body of heater and auxiliary facility.
Because coke oven is produced, existing coke oven surface temperature is higher, and its furnace top surface temperature, at about 90 DEG C, accounts for more than 8% of coke oven total heat consumption.At present, following defect is all mainly there is in the world: one with domestic all coke ovens, owing to all there is no suitable recovery technology with the domestic surface radiating waste heat to coke oven in the world, simultaneously because oven top of coke oven needs long-term walking arrangement and operative employee, so cannot outside wall heat preservation be implemented, therefore the waste of the energy is not only caused, but also because the high temperature on body of heater surface causes the security incident of operator often; Its two, because coke oven top surface temperature is very high, therefore easily causes protecting coke oven tie rod Yin Gaowen and corrode.
In order to solve the problem, at present in Industrial Stoves field, devise a residual neat recovering system, although recycling can be carried out to the waste heat of part, but still waste a large amount of heat wastes, can not meet now in the world to the demand of coke oven energy-saving and emission-reduction.
In sum, there is great energy dissipation in current blast fumance, how fully effectively to utilize the waste heat slatterned in blast furnace production process, can secondary recycling be the difficult problem that people will capture.
Summary of the invention
The object of the invention is to overcome current people cannot fully coke oven be produced in the furnace roof waste heat that produce to carry out the defect of full use, provide a kind of oven top of coke oven waste heat recovery generating system based on power supply regulator circuit.
To achieve these goals, the present invention realizes by the following technical solutions:
Based on the oven top of coke oven waste heat recovery generating system of power supply regulator circuit, primarily of oven top of coke oven hollow place and the furnace roof clinker tile composition covering its top surface, the porose steel plate set gradually from bottom to up in the inside of oven top of coke oven hollow place, thermal baffle layer and porose steel plate, the insulating brick-layer arranged between porose steel plate and thermal baffle layer is filled out at the internal interstices place of oven top of coke oven hollow place and is filled with temperature resistant encapsulation slurry and form, the interchanger and vaporizer that form loop is had in oven top of coke oven hollow place outer setting, interchanger is by the pedestal of cement production systD, and at the heat exchange heat pipe composition that this base interior is helically coiled or serpentine coils, and also fin is provided with on the surface of this heat exchange heat pipe, the two ends of this heat exchange heat pipe are then connected with downtake with the upcast of vaporizer respectively, to have surplus heat power generation system in vaporizer arranged outside, and this afterheat generating system is by generator, the steam turbine be connected with generator, be connected with interchanger and penetrate vapour supercharging blower for pushing turbine wheel rotation, and the waste heat pilot circuit to be connected with steam turbine forms, in afterheat generating system, be provided with waste heat pilot circuit, in this waste heat pilot circuit, be provided with the control formula power source circuit, power supply regulator circuit and the formula of control output circuit that are connected successively, power supply regulator circuit is by triode VT3, transformer T2, diode bridge rectifier U1, negative pole is connected with the emtting electrode of triode VT3, the electric capacity C4 that positive pole is connected with the tap of the primary coil of transformer T2, one end is connected with the base stage of triode VT3, the slide rheostat RP2 that the other end is connected with the non-same polarity of transformer T2 primary coil, the electric capacity C5 be in parallel with slide rheostat RP2, one end is connected with the positive output end of diode bridge rectifier U1, the other end is sequentially through inductance L 1, resistance R6, diode D5, electric capacity C6, the resistance R5 be connected with the negative output terminal of diode bridge rectifier U1 after resistance R7, P pole is connected with the N pole of diode D5, the diode D6 that N pole is connected with the tie point of inductance L 1 with resistance R6, and P pole is connected with the negative pole of electric capacity C6, the diode D7 that N pole is connected with the positive pole of electric capacity C6 after resistance R8 forms, the collector electrode of described triode VT3 is connected with the Same Name of Ends of transformer T2 primary coil, and the input terminus of diode bridge rectifier U1 is then connected with the secondary coil of transformer T2.
Further, above-mentioned control formula power source circuit is by power switch, triode VT1, transformer T1, P pole is connected with the collector electrode of triode VT1, N pole is sequentially through diode D1, the diode D2 be connected with the emtting electrode of triode VT1 after resistance R1, the relay K be in parallel with diode D2, positive pole is connected with the N pole of diode D2, the electric capacity C2 that negative pole is connected with the base stage of triode VT1 after resistance R2, and positive pole is connected with the Same Name of Ends of the secondary coil of transformer T1, and the electric capacity C1 that negative pole is connected with the non-same polarity of this secondary coil forms, the P pole of described diode D1 is connected with the positive pole of electric capacity C1, and the emtting electrode of triode VT1 is then connected with the negative pole of electric capacity C1, described power switch is by button S, and the normally closed contact K-1 of the relay K in parallel with this button S-phase forms, the Same Name of Ends of the primary coil of transformer T1 is connected with one end of button S, and the non-same polarity of the primary coil of transformer T1 then forms the input terminus of external power source together with the other end of button S.
Further, above-mentioned control formula output circuit is by triode VT2, one end is connected with the emtting electrode of triode VT2, the resistance R3 of the other end ground connection after slide rheostat RP1, the electric capacity C3 that negative pole is connected with the tie point of slide rheostat RP1 with resistance R3, positive pole is connected with the positive pole of electric capacity C2, and the diode D3 that P pole is connected with the emtting electrode of triode VT2, N pole is connected with the base stage of triode VT2 in turn after diode D4, resistance R4 forms; The collector electrode of described triode VT2 is connected with the negative pole of electric capacity C2; The positive pole of described electric capacity C4 is connected with the emtting electrode of triode VT1, and its negative pole is then connected with the positive pole of electric capacity C2; The N pole of described diode D7 is connected with the P pole of diode D3, and its P pole is then connected with the negative pole of electric capacity C3.
The present invention comparatively prior art compares, and has the following advantages and beneficial effect:
(1) the present invention's design is very reasonable, and not only structure is simple, well arranged, realization is convenient, level of automation is high, and can also effectively reduce manual shift error, can effectively reduce human cost.Meanwhile, the present invention need not arrange cooling tower more separately, not only can effective saves energy, also can reduce cooling water amount simultaneously, reduce running cost.
(2) the present invention concentrates the hot water after deriving heat exchange by the superconduction ring-like heat exchange ring be embedded on furnace body sidewall and the ring-like tubing system corresponded, therefore increase heat transfer intensity, improve heat exchange efficiency and cooling efficiency, and make traditional temperature of cooling water bring up to 250 DEG C from 40 DEG C, thus make the utilization of cooling heat become possibility.
(3) pipeline that the present invention is arranged on outside furnace body cooling system furnace wall decreases nearly 90% than traditional cooling system pipeline, and the quantity of furnace shell perforate also only has 2 ~ 5% of traditional process for cooling the number of openings, not only effectively reduce thermosteresis, and be conducive to the insulation of blast furnace furnace wall, thus revolutionize the present situation that high stove outer covering cannot carry out being incubated, inherently improve furnace wall heat radiation.
(4) the present invention is provided with belt fin and paraffin paper at the outer wall of superconduction ring-like heat exchange ring, therefore the carburization phenomena of the ring-like heat exchange ring of superconduction can be reduced, the charcoal infiltration of more than 75% can be stopped again, thus effectively reduce cooling duct ooze charcoal embrittlement, make improve more than twice its work-ing life.Meanwhile, due to the use of belt fin, blast furnace lining scour resistance of the present invention is made to improve more than 5 times than existing system.
(6) the present invention can utilize the heat producing steam in next life produced in blast furnace production process fully, and then while realizing energy-conserving and environment-protective, make blast furnace cooling residual heat be utilized effectively.Simultaneously, the power generation system that the present invention adopts, supporting utilizing waste heat for refrigeration unit and associated couplings method effectively raise residual heat generating efficiency, blast furnace water-cooling utilization rate of waste heat is brought up to about 90%, count traditional cooling tower energy consumption in, residual heat generating efficiency of the present invention is more than doubled, and improves the UTILIZATION OF VESIDUAL HEAT IN level of whole blast furnace ironmaking industry.
(7) the present invention is provided with the waste heat control treatment system of innovation in utilizing waste heat for refrigeration unit inside, can guarantee the steady running of whole utilizing waste heat for refrigeration unit, can guarantee that the utilization rate of waste heat of this utilizing waste heat for refrigeration unit reaches more than 90%.
(8) the present invention is provided with afterheat generating system, the waste heat that vaporizer is produced when carrying out temperature exchange carries out gas-to electricity by afterheat generating system, better utilised waste heat, avoid the waste of heat, improve the utilization ratio of the energy, and then save the production cost of enterprise.
(9) the present invention is provided with waste heat pilot circuit in afterheat generating system, also power supply regulator circuit is provided with in this waste heat pilot circuit, can better adjust the electricity in circuit according to practical situation, and then improve the stability of circuit operation, further increase the work-ing life of circuit, reduce the frequency of maintenance of enterprise, better save the maintenance cost of enterprise.
Accompanying drawing explanation
Fig. 1 is one-piece construction schematic diagram of the present invention.
Fig. 2 is ring-like pipeline system architecture schematic diagram of the present invention.
Fig. 3 is the local section structural representation shown in Fig. 2.
Fig. 4 is waste heat control treatment circuit system structural representation of the present invention.
Fig. 5 is the schematic circuit of waste heat pilot circuit of the present invention.
Fig. 6 is the schematic circuit of power supply regulator circuit of the present invention.
Wherein, the Reference numeral title in accompanying drawing is respectively:
1-oven top of coke oven hollow place, 2-furnace roof clinker tile, the porose steel plate of 3-, 4-thermal baffle layer, 5-temperature resistant encapsulation slurry, 6-insulating brick-layer, 7-atresia steel plate, 8-interchanger, 9-vaporizer, 10-pedestal, 11-heat exchange heat pipe, 12-fin, 13-base.
Embodiment
Below in conjunction with embodiment, the present invention is described in further detail, but embodiments of the present invention are not limited thereto.
Embodiment
As shown in figures 1-4, oven top of coke oven hollow place 1 of the present invention is piled up by fragment of brick or cement etc. and is formed, the cross section of its internal cavities is inverted trapezoidal shape, namely the bottom width of this oven top of coke oven hollow place 1 is less than its top width, the bottom of oven top of coke oven hollow place 1 is then the base 13 of oven top of coke oven hollow place 1, is also provided with special heat exchanger system and atresia steel plate 7 in this oven top of coke oven hollow place 1 inside.
Effectively can be incubated in order to ensure the present invention, stop defects such as smoldering, burn with anger, therefore be provided with porose steel plate 3, thermal baffle layer 4, porose steel plate 3 and furnace roof clinker tile 2 from bottom to up successively at the cavity inside of this oven top of coke oven hollow place 1.Due to when laying, between not only described porose steel plate 3 and thermal baffle layer 4, between thermal baffle layer 4 and porose steel plate 3, between porose steel plate 3 and furnace roof clinker tile 2, there is gap, and also have gap between these porose steel plate 3 and inwalls of thermal baffle layer 4 and oven top of coke oven hollow place 1, therefore, the present invention must fill with at these gap places and fill out temperature resistant encapsulation slurry 5, to guarantee that oven top of coke oven hollow place 1 inside is the entirety of a sealing.
According to actual demand during construction, the present invention also in the inside of oven top of coke oven hollow place 1, can also lay one layer of heat preservation brick layer 6 between porose steel plate 3 and thermal baffle layer 4.Correspondingly, its gap each other also needs filling to fill out temperature resistant encapsulation slurry 5.
The potash water glass that temperature resistant encapsulation slurry 5 of the present invention is preferentially 5% ~ 10% by refractory mortar and concentration mixes, described thermal baffle layer 4 is that the thermal baffle monoblock being 100mm by two layers of thickness is built by laying bricks or stones and formed, or sting block to form, the aperture of described porose steel plate 3 is then preferentially made into 60mm.
The present invention is provided with heat exchanger system, atresia steel plate 7, thermal baffle layer 4, porose steel plate 3 and furnace roof clinker tile 2 from bottom to up successively in the inside of oven top of coke oven hollow place 1, and the plane of this furnace roof clinker tile 2 will with the plane of oven top of coke oven hollow place 1 in same level.
Described heat exchanger system is then made up of the interchanger 8 between the base 13 being arranged on atresia steel plate 7 and oven top of coke oven hollow place 1 and the vaporizer 9 that is arranged on oven top of coke oven hollow place 1 outside.Interchanger 8 of the present invention is different with traditional heat exchanger structure, and it is the pedestal 10 made by cement, and the heat exchange heat pipe 11 of the inside being arranged on this pedestal 10 is formed.
In order to ensure result of use, this heat exchange heat pipe 11 is that serpentine is arranged in the inside of pedestal 10, or arranges twist, and this heat exchange heat pipe 11 is only provided with one deck in the inside of pedestal 10.The two ends of this heat exchange heat pipe 11 then respectively introduction pipe be connected with downtake with the upcast of vaporizer 9, namely make between vaporizer 9 and interchanger 8, to form a circulation loop sealed.Meanwhile, this heat exchange heat pipe 11 is also provided with fin 12, to guarantee further to improve its heat transfer rate.
In like manner, the present embodiment not only between pedestal 10 and base 13, fill with between atresia steel plate 7 and pedestal 10, between thermal baffle layer 4 and atresia steel plate 7, between porose steel plate 3 and thermal baffle layer 4 and between furnace roof clinker tile 2 and porose steel plate 3 and be filled with temperature resistant encapsulation slurry 5, and at pedestal 10, atresia steel plate 7, thermal baffle layer 4, also fill with between porose steel plate 3 and the inwall of oven top of coke oven hollow place 1 and be filled with temperature resistant encapsulation slurry 5, namely make the inside of whole oven top of coke oven hollow place 1 become as a whole by this temperature resistant encapsulation slurry 5.
Because coke oven is a large-scale body of heater, the quantity of the oven top of coke oven hollow place 1 arranged at its top can reach tens, even up to a hundred, but when constructing, the inside of each oven top of coke oven hollow place 1 only arranges an interchanger 8, and a vaporizer 9 is also only set in the outside of oven top of coke oven hollow place 1, all interchanger 8 are all connected with this vaporizer 9 by pipeline.
In order to ensure result of use, the closed circuit that this interchanger 8 and vaporizer 9 are formed needs to be in vacuum state, namely the pipe interior that described heat exchange heat pipe 11 is connected with vaporizer 9 is vacuum state, and is also provided with in its pipeline closed for participating in the circulation fluid circulated.The volume of this circulation fluid can regulate according to the difference in summer and winter, thus guarantees its heat exchange efficiency.
Described vaporizer 9 has four mouths of pipe, i.e. downtake, upcast, water-in and steam outlet, heat exchange heat pipe 11 in downtake and upcast and pedestal 10 forms the circulation line closed, and what then formed between water-in and steam outlet is open circulation line.During use, circulation fluid absorbs heat energy and becomes steam from oven top of coke oven hollow place 1, then the upcast place of vaporizer 9 is flow to, steam is formed after then carrying out heat exchange with this high-temperature steam from the water source that water-in enters vaporizer 9 inside, then emit from steam outlet, and the circulation fluid in pipeline becomes liquid after release heat energy, flow back to interchanger 8 from downtake inner, again participate in circulation.
As shown in Figure 5,6, to have surplus heat power generation system in vaporizer arranged outside, and this afterheat generating system is by generator, the steam turbine be connected with generator, be connected with interchanger and penetrate vapour supercharging blower for pushing turbine wheel rotation, the waste heat that vaporizer is produced when carrying out temperature exchange carries out gas-to electricity by afterheat generating system, in afterheat generating system, be provided with waste heat pilot circuit, in this waste heat pilot circuit, be provided with the control formula power source circuit, power supply regulator circuit and the formula of control output circuit that are connected successively.
Wherein, power supply regulator circuit is by triode VT3, and transformer T2, electric capacity C4, electric capacity C5, electric capacity C6, slide rheostat RP2, diode bridge rectifier U1, inductance L 1, resistance R5, resistance R6, resistance R7, resistance R8, diode D5, diode D6, diode D7 form.During connection, the negative pole of electric capacity C4 is connected with the emtting electrode of triode VT3, positive pole is connected with the tap of the primary coil of transformer T2, one end of slide rheostat RP2 is connected with the base stage of triode VT3, the other end is connected with the non-same polarity of transformer T2 primary coil, electric capacity C5 and slide rheostat RP2 is in parallel, one end of resistance R5 is connected with the positive output end of diode bridge rectifier U1, the other end is sequentially through inductance L 1, resistance R6, diode D5, electric capacity C6, be connected with the negative output terminal of diode bridge rectifier U1 after resistance R7, the P pole of diode D6 is connected with the N pole of diode D5, N pole is connected with the tie point of inductance L 1 with resistance R6, the P pole of diode D7 is connected with the negative pole of electric capacity C6, N pole is connected with the positive pole of electric capacity C6 after resistance R8, the collector electrode of described triode VT3 is connected with the Same Name of Ends of transformer T2 primary coil, and the input terminus of diode bridge rectifier U1 is then connected with the secondary coil of transformer T2.The power supply regulator circuit that the present invention is arranged, better can adjust the electricity in circuit according to practical situation, and then improve the stability of circuit operation, further increase the work-ing life of circuit, reduce the frequency of maintenance of enterprise, better save the maintenance cost of enterprise.
Control formula power source circuit is by power switch, and triode VT1, transformer T1, electric capacity C1, electric capacity C2, diode D1, diode D2, resistance R1, resistance R2, relay K forms.During connection, the P pole of diode D2 is connected with the collector electrode of triode VT1, N pole is connected with the emtting electrode of triode VT1 sequentially through after diode D1, resistance R1, relay K and diode D2 are in parallel, the positive pole of electric capacity C2 is connected with the N pole of diode D2, negative pole is connected with the base stage of triode VT1 after resistance R2, and the positive pole of electric capacity C1 is connected with the Same Name of Ends of the secondary coil of transformer T1 and negative pole is connected with the non-same polarity of this secondary coil; The P pole of described diode D1 is connected with the positive pole of electric capacity C1, and the emtting electrode of triode VT1 is then connected with the negative pole of electric capacity C1; Described power switch is by button S, and the normally closed contact K-1 of the relay K in parallel with this button S-phase forms, the Same Name of Ends of the primary coil of transformer T1 is connected with one end of button S, and the non-same polarity of the primary coil of transformer T1 then forms the input terminus of external power source together with the other end of button S.This circuit can judge whether also to need to power to it according to the practical operation situation of circuit, when relay K is energized, relay1 switch K-1 will disconnect voluntarily, when not needing to power, circuit will disconnect voluntarily, thus reaches the effect automatically controlling power-off.
Control formula output circuit is by triode VT2, and resistance R3, resistance R4, slide rheostat RP1, electric capacity C3, diode D3, diode D4 form.During connection, one end of resistance R3 is connected with the emtting electrode of triode VT2, the other end ground connection after slide rheostat RP1, the negative pole of electric capacity C3 is connected with the tie point of slide rheostat RP1 with resistance R3, positive pole is connected with the positive pole of electric capacity C2, and the P pole of diode D3 is connected with the emtting electrode of triode VT2, N pole is connected with the base stage of triode VT2 in turn after diode D4, resistance R4; The collector electrode of described triode VT2 is connected with the negative pole of electric capacity C2; The positive pole of described electric capacity C4 is connected with the emtting electrode of triode VT1, and its negative pole is then connected with the positive pole of electric capacity C2; The N pole of described diode D7 is connected with the P pole of diode D3, and its P pole is then connected with the negative pole of electric capacity C3.
As mentioned above, just the present invention can be realized preferably.

Claims (3)

1. based on the oven top of coke oven waste heat recovery generating system of power supply regulator circuit, primarily of oven top of coke oven hollow place (1), cover the furnace roof clinker tile (2) of oven top of coke oven hollow place (1) top surface, porose steel plate (3) is disposed with from bottom to up in oven top of coke oven hollow place (1) inside, thermal baffle layer (4) and porose steel plate (3), be arranged on the insulating brick-layer (6) between porose steel plate (3) and thermal baffle layer (4), fill out the temperature resistant encapsulation slurry (5) at the internal interstices place being filled in oven top of coke oven hollow place (1), be arranged on oven top of coke oven hollow place (1) outside and form the interchanger (8) of loop and vaporizer (9), to be connected with interchanger (8) and by the pedestal (10) of cement production systD, be arranged on the heat exchange heat pipe (11) of this pedestal (10) inner also helically coiling or serpentine coiling, and fin (12) composition be arranged on this heat exchange heat pipe (11) surface, the two ends of described heat exchange heat pipe (11) are connected with downtake with the upcast of vaporizer (9) respectively, it is characterized in that, to have surplus heat power generation system in vaporizer (9) arranged outside, and this afterheat generating system is by generator, the steam turbine be connected with generator, be connected with interchanger and penetrate vapour supercharging blower for pushing turbine wheel rotation, and the waste heat pilot circuit to be connected with steam turbine forms, this waste heat pilot circuit is made up of the control formula power source circuit be connected successively, power supply regulator circuit and the formula of control output circuit, described power supply regulator circuit is by triode VT3, transformer T2, diode bridge rectifier U1, negative pole is connected with the emtting electrode of triode VT3, the electric capacity C4 that positive pole is connected with the tap of the primary coil of transformer T2, one end is connected with the base stage of triode VT3, the slide rheostat RP2 that the other end is connected with the non-same polarity of transformer T2 primary coil, the electric capacity C5 be in parallel with slide rheostat RP2, one end is connected with the positive output end of diode bridge rectifier U1, the other end is sequentially through inductance L 1, resistance R6, diode D5, electric capacity C6, the resistance R5 be connected with the negative output terminal of diode bridge rectifier U1 after resistance R7, P pole is connected with the N pole of diode D5, the diode D6 that N pole is connected with the tie point of inductance L 1 with resistance R6, and P pole is connected with the negative pole of electric capacity C6, the diode D7 that N pole is connected with the positive pole of electric capacity C6 after resistance R8 forms, the collector electrode of described triode VT3 is connected with the Same Name of Ends of transformer T2 primary coil, and the input terminus of diode bridge rectifier U1 is then connected with the secondary coil of transformer T2.
2. the oven top of coke oven waste heat recovery generating system based on power supply regulator circuit according to claim 1, it is characterized in that, described control formula power source circuit is by power switch, triode VT1, transformer T1, P pole is connected with the collector electrode of triode VT1, N pole is sequentially through diode D1, the diode D2 be connected with the emtting electrode of triode VT1 after resistance R1, the relay K be in parallel with diode D2, positive pole is connected with the N pole of diode D2, the electric capacity C2 that negative pole is connected with the base stage of triode VT1 after resistance R2, and positive pole is connected with the Same Name of Ends of the secondary coil of transformer T1, and the electric capacity C1 that negative pole is connected with the non-same polarity of this secondary coil forms, the P pole of described diode D1 is connected with the positive pole of electric capacity C1, and the emtting electrode of triode VT1 is then connected with the negative pole of electric capacity C1, described power switch is by button S, and the normally closed contact K-1 of the relay K in parallel with this button S-phase forms, the Same Name of Ends of the primary coil of transformer T1 is connected with one end of button S, and the non-same polarity of the primary coil of transformer T1 then forms the input terminus of external power source together with the other end of button S.
3. the oven top of coke oven waste heat recovery generating system based on power supply regulator circuit according to claim 2, it is characterized in that, described control formula output circuit is by triode VT2, one end is connected with the emtting electrode of triode VT2, the resistance R3 of the other end ground connection after slide rheostat RP1, negative pole is connected with the tie point of slide rheostat RP1 with resistance R3, the electric capacity C3 that positive pole is connected with the positive pole of electric capacity C2, and P pole is connected with the emtting electrode of triode VT2, N pole is in turn through diode D4, the diode D3 be connected with the base stage of triode VT2 after resistance R4 forms, the collector electrode of described triode VT2 is connected with the negative pole of electric capacity C2, the positive pole of described electric capacity C4 is connected with the emtting electrode of triode VT1, and its negative pole is then connected with the positive pole of electric capacity C2, the N pole of described diode D7 is connected with the P pole of diode D3, and its P pole is then connected with the negative pole of electric capacity C3.
CN201510246191.4A 2015-05-14 2015-05-14 Coke oven roof waste heat recovery power generation system based on power supply adjusting circuit Pending CN104910925A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113583687A (en) * 2020-04-30 2021-11-02 宝山钢铁股份有限公司 Method for improving environment of top area of coke oven

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1799187A (en) * 2003-05-30 2006-07-05 田渊电机株式会社 Inverter power source control circuit for high-frequency heater
CN1961612A (en) * 2004-04-07 2007-05-09 松下电器产业株式会社 High-frequency heating device
CN102322623A (en) * 2011-08-24 2012-01-18 成都中冶节能环保工程有限公司 Coke oven top waste heat reclaiming system
CN104184396A (en) * 2014-08-13 2014-12-03 上海电机学院 Photovoltaic power supply system and control method thereof

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1799187A (en) * 2003-05-30 2006-07-05 田渊电机株式会社 Inverter power source control circuit for high-frequency heater
CN1961612A (en) * 2004-04-07 2007-05-09 松下电器产业株式会社 High-frequency heating device
CN102322623A (en) * 2011-08-24 2012-01-18 成都中冶节能环保工程有限公司 Coke oven top waste heat reclaiming system
CN104184396A (en) * 2014-08-13 2014-12-03 上海电机学院 Photovoltaic power supply system and control method thereof

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113583687A (en) * 2020-04-30 2021-11-02 宝山钢铁股份有限公司 Method for improving environment of top area of coke oven
CN113583687B (en) * 2020-04-30 2022-10-21 宝山钢铁股份有限公司 Method for improving environment of top area of coke oven

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Application publication date: 20150916