CN207892672U - A kind of thermal power generation system utilizing function with fume afterheat - Google Patents

A kind of thermal power generation system utilizing function with fume afterheat Download PDF

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Publication number
CN207892672U
CN207892672U CN201721777600.4U CN201721777600U CN207892672U CN 207892672 U CN207892672 U CN 207892672U CN 201721777600 U CN201721777600 U CN 201721777600U CN 207892672 U CN207892672 U CN 207892672U
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China
Prior art keywords
heat
power generation
shell
thermal power
generation system
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Expired - Fee Related
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CN201721777600.4U
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Chinese (zh)
Inventor
徐德详
易法平
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HUBEI SONGYUAN GANGUE POWER GENERATION Co Ltd
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HUBEI SONGYUAN GANGUE POWER GENERATION Co Ltd
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Priority to CN201721777600.4U priority Critical patent/CN207892672U/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
    • Y02E20/30Technologies for a more efficient combustion or heat usage

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Abstract

The utility model is related to a kind of thermal power generation systems utilizing function with fume afterheat, including generator, steam turbine, steam boiler, combustion chamber, exhaust fan, heat exchanger and water pump;The output end of steam turbine is fixedly connected with the input terminal of generator, and steam turbine is equipped with low pressure return pipeline and high steam pipeline, and low pressure return pipeline and high steam pipeline are connected to steam boiler, and combustion chamber is equipped with below steam boiler;Heat exchanger includes shell, bottom plate and heat-exchange tube, and heat-exchange tube is installed in shell, and combustion chamber is connected to by exhaust fan with heat-exchange tube, heat-exchange tube is communicated with air, shell is also communicated with steam boiler, and bottom plate turns to connect with lower part of the housing, and bottom plate is detachably connected with lower part of the housing.A large amount of high-temperature flue gas that the utility model generates after capable of burning to raw material in the combustion chamber carry out heat recovery and utilization;Bottom plate and lower part of the housing are dismantled and make bottom plate relative to housing into rotation, is cleaned convenient for the residue to long-term accumulated in heat exchanger.

Description

A kind of thermal power generation system utilizing function with fume afterheat
Technical field
The utility model is related to boiler afterheats to utilize field, and in particular to a kind of firepower utilizing function with fume afterheat Electricity generation system.
Background technology
Combustion refuse can bring very serious problem of environmental pollution, and there is also some environmental pollutions to ask for same thermal power generation Topic will produce the environment caused after a large amount of high-temperature flue gas these flue gases are discharged into air after raw material burning in the combustion chamber Problem has haze, flue dust, acid rain, water pollution etc..In general, the temperature of these flue gases is all up to 600~700 DEG C, directly arranges It is put into air and will also result in great energy dissipation.
The residual heat using device that existing combustion chamber installs additional often has the following problems:
1. being difficult to clean the residue of long-term accumulated in heat exchanger, cleaning up is very inconvenient in other words;
2. without the heat preservation energy storage equipment with " peak load shifting " function, because the flue gas from combustion chamber out is measured sometimes Mostly amount is few sometimes, can not ensure the quantity of steam of steam boiler generation in the reasonable scope;
3. the flow velocity in pair jet chimney cannot carry out good control.
Utility model content
The utility model provides a kind of thermal power generation system utilizing function with fume afterheat, solves the above The technical issues of.
The scheme that the utility model solves above-mentioned technical problem is as follows:It is a kind of to be sent out using the firepower of function with fume afterheat Electric system, the thermal power generation system include generator, rack, steam turbine, steam boiler, combustion chamber, exhaust fan, heat exchanger And water pump;The generator is fixedly installed in the rack, the input terminal of the output end of the steam turbine and the generator It is fixedly connected, the steam turbine is equipped with low pressure return pipeline and high steam pipeline, the low pressure return pipeline and the height Pressure jet chimney is connected to the steam boiler, and the lower section of the steam boiler is equipped with the combustion chamber;The heat exchanger Including shell and heat-exchange tube, the heat-exchange tube is installed on the inside of the shell, and the combustion chamber passes through the exhaust fan It is connected to one end of the heat-exchange tube, the other end of the heat-exchange tube is communicated with air, and the shell passes through the water pump It is connected to water source, the shell is also communicated with the steam boiler, and the bottom opening and opening of the shell are equipped with able to turn on or off Bottom plate.
The side of the bottom plate and the side of the lower part of the housing are rotatablely connected, the other side of the bottom plate and the shell The other side of lower part is detachably connected.
The utility model has the beneficial effects that:The utility model provides a kind of firepower utilizing function with fume afterheat Electricity generation system has the following advantages:It 1, can be right by adding residual heat using device on the combustion chamber of thermal power generation system The a large amount of high-temperature flue gas generated after raw material burning in the combustion chamber carry out heat recovery and utilization;2, by the way that the bottom plate to be arranged In the bottom of the shell, the side of the bottom plate and the side of the lower part of the housing are rotatablely connected, the other side of the bottom plate It is detachably connected with the other side of the lower part of the housing, the other side of the other side of bottom plate and the lower part of the housing is dismantled and made Bottom plate is obtained relative to housing into rotation, is cleaned convenient for the residue to long-term accumulated in heat exchanger, cleaning up is very convenient; 3, by the way that the steam turbine low-pressure reflux line to be connected to the steam boiler, energy loss can be reduced, power generation effect is improved Rate.
Based on the above technical solution, the utility model can also do following improvement.
Further, the thermal power generation system further includes filter, and the combustion chamber passes through the filter and the pumping Wind turbine is connected to.
Advantageous effect using above-mentioned further scheme is:The combustion chamber is connected by the filter and the exhaust fan It is logical, the larger particles in flue gas can be absorbed in order to avoid being directly discharged in air.
Further, the thermal power generation system further includes net cigarette fume extractor, and the heat-exchange tube is arranged by the net cigarette Cigarette device is communicated with air.
Advantageous effect using above-mentioned further scheme is:Heat-exchange tube passes through the net cigarette fume extractor and big gas phase It is logical, pollution environment can be further avoided.
Further, the thermal power generation system further includes controller, the pipeline that the shell is connected to the steam boiler It is equipped with heat preservation accumulation of energy branch, the heat preservation accumulation of energy branch road is equipped with the first electric controlled regulating valve and heat preservation accumulator successively, described Keep the temperature accumulator be equipped with pressure sensor, the controller respectively with first electric controlled regulating valve and the pressure sensor Electrical connection.
Advantageous effect using above-mentioned further scheme is:Pass through the pipeline being connected to the steam boiler in the shell It is equipped with heat preservation accumulation of energy branch, the heat preservation accumulation of energy branch road is equipped with the first electric controlled regulating valve and heat preservation accumulator successively, can Recycling is carried out to the heat in high-temperature flue gas and collects recycling;By being equipped with pressure sensor, controller on the accumulator For obtain pressure data that pressure sensor detects and judge whether be more than the heat preservation accumulator safe pressure, when When the pressure data that controller obtains is more than the safe pressure of heat preservation accumulator, the first electric controlled regulating valve can be ordered to close.The guarantor Warm accumulation of energy branch can ensure the quantity of steam of steam boiler generation in the reasonable scope, and keeping the temperature energy storage equipment when measuring more can be to containing The flue gas of waste heat is absorbed, and heat preservation energy storage equipment can discharge the flue gas heat stored in the past when amount is few, to ensure The quantity of steam that steam boiler generates is in the reasonable scope.
Further, flow sensor and the second automatically controlled tune are additionally provided on the pipeline that the shell is connected to the steam boiler Valve is saved, the controller is electrically connected with second electric controlled regulating valve and the flow sensor.
Advantageous effect using above-mentioned further scheme is:By being equipped with stream on the pipeline that shell is connected to steam boiler Quantity sensor transmits flow speed data to controller for monitoring pressure release flow velocity, and the controller has been handled in oil return line After flow speed data, act on the second electro-hydraulic proportional flow valve and control its openings of sizes, can to the flow velocity in jet chimney into The good control of row.
Further, the lower section of the steam turbine is equipped with condensed water outlet pipe.
The above description is merely an outline of the technical solution of the present invention, in order to better understand the skill of the utility model Art means, and can be implemented in accordance with the contents of the specification, below on the preferred embodiment of the present invention and the accompanying drawings in detail It describes in detail bright as after.Specific embodiment of the present utility model is shown in detail by following embodiment and its attached drawing.
Description of the drawings
Attached drawing described herein is used to provide a further understanding of the present invention, and is constituted part of this application, The exemplary embodiment of the utility model and the description thereof are used to explain the utility model, does not constitute to the improper of the utility model It limits.In the accompanying drawings:
Fig. 1 is a kind of thermal power generation system with fume afterheat using function that one embodiment of the utility model provides Structural schematic diagram;
Fig. 2 is a kind of box with fume afterheat using control system in the thermal power generation system of function that Fig. 1 is provided Figure.
In attached drawing, parts list represented by the reference numerals are as follows:
100, thermal power generation system;10, generator;20, rack;30, steam turbine;31, low pressure return pipeline;32, high pressure Jet chimney;33, condensed water outlet pipe;40, steam boiler;50, combustion chamber;60, filter;70, exhaust fan;80, heat exchange Device;81, shell;82, bottom plate;83, heat-exchange tube;90, net cigarette fume extractor;101, water pump;102, water source;103, flow sensing Device;104, pressure sensor;105, accumulator is kept the temperature;106, the first electric controlled regulating valve;107, the second electric controlled regulating valve;108, it controls Device processed.
Specific implementation mode
The principles of the present invention and feature are described below in conjunction with attached drawing 1-2, example is served only for explaining this Utility model is not intended to limit the scope of the utility model.In the following passage by way of example more specifically with reference to attached drawing The utility model is described.According to following explanation and claims, will be become apparent from feature the advantages of the utility model.It needs to illustrate , attached drawing is all made of very simplified form and uses non-accurate ratio, only to it is convenient, lucidly aid in illustrating this The purpose of utility model embodiment.
It should be noted that when component is referred to as " being fixed on " another component, it can be directly on another component Or there may also be components placed in the middle.When a component is considered as " connection " another component, it can be directly connected to To another component or it may be simultaneously present component placed in the middle.When a component is considered as " being set to " another component, it Can be set up directly on another component or may be simultaneously present component placed in the middle.Term as used herein is " vertical ", " horizontal ", "left", "right" and similar statement for illustrative purposes only.
Unless otherwise defined, all of technologies and scientific terms used here by the article is led with the technology for belonging to the utility model The normally understood meaning of technical staff in domain is identical.Terminology used in the description of the utility model herein only be The purpose of description specific embodiment, it is not intended that in limitation the utility model.Term " and or " used herein includes Any and all combinations of one or more relevant Listed Items.
As shown in Figs. 1-2, the utility model provides a kind of thermal power generation system utilizing function with fume afterheat, institute It includes generator 10, rack 20, steam turbine 30, steam boiler 40, combustion chamber 50, exhaust fan 70, heat to state thermal power generation system 100 Exchanger 80 and water pump 101;The generator 10 is fixedly installed in the rack 20, the output end of the steam turbine 30 and institute The input terminal for stating generator 10 is fixedly connected, and the steam turbine 30 is equipped with low pressure return pipeline 31 and high steam pipeline 32, The low pressure return pipeline 31 and the high steam pipeline 32 are connected to the steam boiler 40, the steam boiler 40 Lower section is equipped with the combustion chamber 50;The heat exchanger 80 includes shell 81, bottom plate 82 and heat-exchange tube 83, the heat-exchange tube 83 are installed on the inside of the shell 81, and the combustion chamber 50 is connected by one end of the exhaust fan 70 and the heat-exchange tube 83 Logical, the other end of the heat-exchange tube 83 is communicated with air, and the shell 81 is connected to by the water pump 101 with water source 102, institute It states shell 81 also to communicate with the steam boiler 40, the bottom opening and opening of the shell 81 are equipped with bottom plate able to turn on or off 82。
The side of the bottom plate 82 and the side of 81 lower part of the shell are rotatablely connected, the other side of the bottom plate 82 and institute The other side for stating 81 lower part of shell is detachably connected.
A kind of thermal power generation system utilizing function with fume afterheat is provided in above-described embodiment, is had following excellent Point:It 1, can be to the former material in combustion chamber 50 by adding residual heat using device on the combustion chamber of thermal power generation system 50 The a large amount of high-temperature flue gas generated after material burning carry out heat recovery and utilization;2, by the way that the bottom plate 82 is set to the shell 81 Bottom, the side of the side of the bottom plate 82 and 81 lower part of the shell is rotatablely connected, the other side of the bottom plate 82 and institute The other side for stating 81 lower part of shell is detachably connected, and the other side of the other side of bottom plate 82 and 81 lower part of the shell is dismantled simultaneously So that bottom plate 82 is rotated relative to shell 81, cleaned convenient for the residue to long-term accumulated in heat exchanger, cleaning up is non- It is often convenient;3, by the way that 30 low pressure return pipeline 31 of the steam turbine to be connected to the steam boiler 40, energy damage can be reduced It loses, improves generating efficiency.
Preferably, as shown in Figure 1, the thermal power generation system 100 further includes filter 60, the combustion chamber 50 passes through institute Filter 60 is stated to be connected to the exhaust fan 70.The combustion chamber 50 is connected to by the filter 60 with the exhaust fan 70, Larger particles in flue gas can be absorbed in order to avoid being directly discharged in air.
Preferably, as shown in Figure 1, the thermal power generation system 100 further includes net cigarette fume extractor 90, the heat-exchange tube 83 are communicated by the net cigarette fume extractor 90 with air.Heat-exchange tube 83 passes through the net cigarette fume extractor 90 and big gas phase It is logical, pollution environment can be further avoided.
Preferably, as shown in Figs. 1-2, the thermal power generation system 100 further includes controller 108, the shell 81 and institute The pipeline for stating the connection of steam boiler 40 is equipped with heat preservation accumulation of energy branch, and the heat preservation accumulation of energy branch road is equipped with the first automatically controlled tune successively Valve 106 and heat preservation accumulator 105 are saved, the heat preservation accumulator 105 is equipped with pressure sensor 104, and the controller 108 is distinguished It is electrically connected with first electric controlled regulating valve 106 and the pressure sensor 104.
It should be noted that the heat preservation accumulator 105 may be designed as bladder accumulator.By the way that accumulator will be kept the temperature 105 are designed as bladder accumulator, and gas-liquid is reliably isolated, good airproof performance, No leakage;And air bag inertia is small, is quick on the draw;Knot Structure is compact, light-weight;Maximum working pressure is 32MPa, and maximum gas capacity is 150L, is suitable for the storage in the liquid pressure release circuit Energy, Absorbing Fluctuation and compression shock.It is understood that the heat preservation accumulator 105 can also be that gravitational load formula, spring add All accumulators suitable for baric systerm such as load formula and other kinds of gas-loaded formula.The guarantor of the heat preservation accumulator 105 Temperature characteristics can be realized by the way that an insulating is arranged on its surface.
By being equipped with heat preservation accumulation of energy branch, the heat preservation on the pipeline that the shell 81 is connected to the steam boiler 40 Accumulation of energy branch road is equipped with the first electric controlled regulating valve 106 and heat preservation accumulator 105 successively, can be carried out to the heat in high-temperature flue gas Recycling, which is collected, to be recycled;By being equipped with pressure sensor on the accumulator, controller is for obtaining pressure sensor detection Obtained pressure data and judge whether be more than the heat preservation accumulator 105 safe pressure, when the number pressure that controller obtains When according to more than the safe pressure for keeping the temperature accumulator 105, the first electric controlled regulating valve 106 can be ordered to close.The heat preservation accumulation of energy branch energy In the reasonable scope, keeping the temperature energy storage equipment when measuring more can be to containing waste heat for the quantity of steam that enough guarantee steam boiler 40 generates Flue gas is absorbed, and heat preservation energy storage equipment can discharge the flue gas heat stored in the past when amount is few, to ensure steam boiler 40 The quantity of steam of generation is in the reasonable scope.
Preferably, as shown in Figs. 1-2, flow biography is additionally provided on the pipeline that the shell 81 is connected to the steam boiler 40 Sensor 103 and the second electric controlled regulating valve 107, the controller 108 and second electric controlled regulating valve 107 and the flow sensing Device 103 is electrically connected.
By being equipped with flow sensor 103 on the pipeline that shell 81 is connected to steam boiler 40 for monitoring steam stream Speed, and transmit flow speed data and acted on after the controller 108 has handled the flow speed data in oil return line to controller 108 Second electro-hydraulic proportional flow valve 107 simultaneously controls its openings of sizes, can carry out good control to the flow velocity in jet chimney.
Preferably, as shown in Figure 1, the lower section of the steam turbine 30 is equipped with condensed water outlet pipe 33.
As shown in Figs. 1-2, the concrete operating principle and application method of the utility model are:It is beaten first by controller 108 It opens the first electric controlled regulating valve 106 and closes the second electric controlled regulating valve 107, at the same time detected and flowed back by flow sensor 103 The flow speed data of liquid simultaneously feeds back to controller 108, and the first automatically controlled adjusting is adjusted after 108 analyzing processing of the controller flow speed data The opening of valve 106 is to suitable size, in the flow rate of liquid to zone of reasonableness to ensure to enter heat preservation accumulator 105;
Then the vapor in shell 81, which enters in heat preservation accumulator 105, carries out storage energy;By in the accumulator 105 are equipped with pressure sensor 104, and controller 108 is used to obtain pressure sensor 104 and detects obtained pressure data and judgement Whether it is more than the safe pressure for keeping the temperature accumulator 105, when the pressure data that controller 108 obtains is more than heat preservation accumulator 105 When safe pressure, the first electric controlled regulating valve 106 can be ordered to close, then open the first electric controlled regulating valve 107 release vapor and enter In steam boiler 40;
By being equipped with flow sensor 103 on the jet chimney for monitoring flow rates, and transmit flow speed data To controller 108, after the flow rates data in 108 analyzing processing pipeline of the controller, the second automatically controlled adjusting is acted on Valve 107 simultaneously controls its openings of sizes, to ensure that the steam flow rate on major loop is in normal range (NR).
The above, the only preferred embodiment of the utility model not make in any form the utility model Limitation;The those of ordinary skill of all industry can be shown in by specification attached drawing and described above and swimmingly implement this practicality It is novel;But all those skilled in the art are not departing within the scope of technical solutions of the utility model, using being taken off above The technology contents shown and the equivalent variations of a little variation, modification and evolution made, are the equivalent embodiment of the utility model; Meanwhile all substantial technologicals according to the utility model to the change of any equivalent variations made by above example, modify and drill Become etc., still fall within the protection domain of the technical solution of the utility model.

Claims (7)

1. a kind of thermal power generation system utilizing function with fume afterheat, which is characterized in that the thermal power generation system (100) Including generator (10), rack (20), steam turbine (30), steam boiler (40), combustion chamber (50), exhaust fan (70), heat exchange Device (80) and water pump (101);
The generator (10) is fixedly installed in the rack (20), output end and the generator of the steam turbine (30) (10) input terminal is fixedly connected, and the steam turbine (30) is equipped with low pressure return pipeline (31) and high steam pipeline (32), The low pressure return pipeline (31) and the high steam pipeline (32) are connected to the steam boiler (40), the steam copper The lower section of stove (40) is equipped with the combustion chamber (50);The heat exchanger (80) includes shell (81) and heat-exchange tube (83), institute State the inside that heat-exchange tube (83) is installed on the shell (81), the combustion chamber (50) by the exhaust fan (70) with it is described One end of heat-exchange tube (83) is connected to, and the other end of the heat-exchange tube (83) is communicated with air, and the shell (81) passes through institute It states water pump (101) to be connected to water source (102), the shell (81) also communicates with the steam boiler (40), the shell (81) Bottom opening and opening be equipped with bottom plate (82) able to turn on or off.
2. a kind of thermal power generation system utilizing function with fume afterheat according to claim 1, which is characterized in that described The side of bottom plate (82) is rotatablely connected with the side of the shell (81) lower part, the other side and the shell of the bottom plate (82) (81) other side of lower part is detachably connected.
3. a kind of thermal power generation system utilizing function with fume afterheat according to claim 1, which is characterized in that described Thermal power generation system (100) further includes filter (60), and the combustion chamber (50) passes through the filter (60) and the exhausting Machine (70) is connected to.
4. a kind of thermal power generation system utilizing function with fume afterheat according to claim 1, which is characterized in that described Thermal power generation system (100) further includes net cigarette fume extractor (90), and the heat-exchange tube (83) passes through the net cigarette fume extractor (90) it is communicated with air.
5. a kind of thermal power generation system utilizing function with fume afterheat according to claim 1, which is characterized in that described Thermal power generation system (100) further includes controller (108), on the pipeline that the shell (81) is connected to the steam boiler (40) Equipped with heat preservation accumulation of energy branch, the heat preservation accumulation of energy branch road is equipped with the first electric controlled regulating valve (106) and heat preservation accumulator successively (105), the heat preservation accumulator (105) is equipped with pressure sensor (104), and the controller (108) is respectively with described first Electric controlled regulating valve (106) and the pressure sensor (104) electrical connection.
6. a kind of thermal power generation system utilizing function with fume afterheat according to claim 5, which is characterized in that described The second electric controlled regulating valve (107) and flow sensor are additionally provided on the pipeline that shell (81) is connected to the steam boiler (40) (103), the controller (108) is electrically connected with second electric controlled regulating valve (107) and the flow sensor (103).
7. according to a kind of any thermal power generation systems utilizing function with fume afterheat of claim 1-6, feature exists In the lower section of the steam turbine (30) is equipped with condensed water outlet pipe (33).
CN201721777600.4U 2017-12-18 2017-12-18 A kind of thermal power generation system utilizing function with fume afterheat Expired - Fee Related CN207892672U (en)

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CN201721777600.4U CN207892672U (en) 2017-12-18 2017-12-18 A kind of thermal power generation system utilizing function with fume afterheat

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Application Number Priority Date Filing Date Title
CN201721777600.4U CN207892672U (en) 2017-12-18 2017-12-18 A kind of thermal power generation system utilizing function with fume afterheat

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107975393A (en) * 2017-12-18 2018-05-01 湖北松源矸石发电有限公司 A kind of thermal power generation system that there is fume afterheat and utilize

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107975393A (en) * 2017-12-18 2018-05-01 湖北松源矸石发电有限公司 A kind of thermal power generation system that there is fume afterheat and utilize

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Granted publication date: 20180921

Termination date: 20181218