CN108572564A - Industrial energy supplying system based on distributed energy supply - Google Patents

Industrial energy supplying system based on distributed energy supply Download PDF

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Publication number
CN108572564A
CN108572564A CN201710130444.0A CN201710130444A CN108572564A CN 108572564 A CN108572564 A CN 108572564A CN 201710130444 A CN201710130444 A CN 201710130444A CN 108572564 A CN108572564 A CN 108572564A
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energy
module
grade
natural gas
connects
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Inventor
王元琪
曹先玉
牟超智
陈允玮
李仁发
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Hongta Tobacco Group Co Ltd
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Hongta Tobacco Group Co Ltd
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Priority to CN201710130444.0A priority Critical patent/CN108572564A/en
Publication of CN108572564A publication Critical patent/CN108572564A/en
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    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Programme-control systems
    • G05B19/02Programme-control systems electric
    • G05B19/04Programme control other than numerical control, i.e. in sequence controllers or logic controllers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25BREFRIGERATION MACHINES, PLANTS OR SYSTEMS; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS
    • F25B29/00Combined heating and refrigeration systems, e.g. operating alternately or simultaneously
    • 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
    • Y02P80/00Climate change mitigation technologies for sector-wide applications
    • Y02P80/10Efficient use of energy, e.g. using compressed air or pressurized fluid as energy carrier

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Automation & Control Theory (AREA)
  • Mechanical Engineering (AREA)
  • Thermal Sciences (AREA)
  • General Engineering & Computer Science (AREA)
  • Air Conditioning Control Device (AREA)

Abstract

The energy of the invention discloses a kind of industrial energy supplying system based on distributed energy supply, the system comes from natural gas, electric energy, solar energy, and energy consumption system is the compositions such as boiler system, air compression system, refrigeration system, air-conditioning system, heating system, lighting system.Natural air-air source, boiler, natural gas steam allotment control device, electric power source, electric power distribution regulating device, solar energy are provided equipment and carry out piping connection with industrial equipment based on distributed frame, distributed function and the energy is redistributed according to the energy cascade utilization of different system after progress intelligent optimization after ant colony operation can be selected.This system small investment, energy utilization rate are high, waste is low.It is acquired by the therrmodynamic system to factory and digitization, the energy can be redistributed according to the energy cascade utilization of different system and progress intelligent management is utilized for function pipeline and energy source secondary.

Description

Industrial energy supplying system based on distributed energy supply
Technical field
The invention belongs to industrial energy supplying system, especially tobacco industry energy supplying system, more particularly to a kind of utilization natural gas, The integrated system of electric energy, solar-heating.
Background technology
Currently, for an industrial system, such as tobacco industry system, the energy of system come from natural gas, electric energy, Solar energy, energy consumption system are the structures such as boiler system, air compression system, refrigeration system, air-conditioning system, heating system, lighting system At, in actual application, have can occur energize deficiency, energy waste, expense waste phenomena such as, and using artificially control Some drawbacks that the energy supplying system of system is brought.
Invention content
The invention discloses a kind of industrial energy supplying system based on distributed energy supply.
The technical solution of an aspect of of the present present invention is a kind of industrial energy supplying system based on distributed energy supply, including as follows:
Demand conversion module connects the first human-computer interaction interface, obtains the annual energy always needed and annual electric energy Using total amount, natural gas motorcar total amount, and conversion is converted into the energy gross demand data of mark coal automatically in this module, and even It is spare to be connected to first memory;
Energy grade separation module connects the second human-computer interaction interface, obtains each equipment in industrial energy supplying system Energy grade separation data, and it is spare to be connected to second memory;
Cost of electric energy input module connects third human-computer interaction interface, obtains the variable ginseng of at least one set of step price Number;
Natural gas expense variable input module connects the 4th human-computer interaction interface, obtains local newest natural gas expense Price, while the relevant variable parameter of natural gas is obtained, the relevant variable parameter of the natural gas includes natural gas charges for disposing pollutants Variable parameter;
Solar energy expense cost module connects the 5th human-computer interaction device, and acquisition obtains solar energy expense cost variable, The solar energy expense cost variable includes at least solar energy equipment Meteorological, solar energy equipment maintenance cost;
First memory, second memory, cost of electric energy input module, natural gas expense variable input module, solar energy Expense cost module, solar energy expense cost module respectively connect distributed algorithm module;
Distributed algorithm module, for, using cost as object function, the basis of the object function to be institute using ant group algorithm The model of foundation obtains the distribution data of distributed energy, obtains the optimization energy supply data group of the industrial energy supplying system, described Model is configured to:Q expenses min=MIN (Q electric energy+Q natural gas+Q solar energy), wherein:
The optimization price of Q electric energy --- electric energy expense is carried out in conjunction with the output data of the cost of electric energy input module It calculates;
The optimization price of Q natural gases --- natural gas, in conjunction with the output number of the natural gas expense variable input module According to being calculated;
The optimization price of Q solar energy --- solar energy, in conjunction with the solar energy expense cost module output data into Row calculates;
Output module is carried out for the optimization obtained in distributed algorithm module energy supply data group to be connected to display device Output.
Illustratively, further include constraints module in the distributed algorithm module, the constraints module packet Include electric energy constraints module, natural gas constraints module;
Electric energy constraints module, obtain electric energy minimum transformer load to maximum transformer load electric energy pact Beam condition data;
Natural gas constraints module obtains the boiler gas production data of this industrial system, obtains minimum gas production and arrive Constraints data of the interval censored data of maximum gas production as natural gas.
Illustratively, the energy grade separation module include high-grade module, middle grade module, inferior grade module, High-grade waste heat recovery module, middle grade waste heat recovery module;
High-grade module for carrying out high-grade classification to being input to mould equipment in the block, and is marked energy grade It is divided into high-grade system and supplies the energy into row major, and connect high-grade waste heat recovery module;
High-grade waste heat recovery module, for calculating high-grade mould waste heat data in the block, and by the data investigation Onto the energy apportioning cost of middle grade module;
High-grade waste heat recovery module connects middle grade module;
Middle grade module for carrying out middle grade classification to being input to mould equipment in the block, and is marked energy grade The system for being divided into middle grade carries out second and preferentially supplies the energy, and connects middle grade waste heat recovery module;
Middle grade waste heat recovery module, for calculating middle grade mould waste heat data in the block, and by the data investigation Onto the energy apportioning cost of inferior grade module;
Middle grade waste heat recovery module connects inferior grade module;
Inferior grade module for carrying out inferior grade classification to being input to mould equipment in the block, and is marked energy grade The system for being divided into inferior grade optimizes the priority supply energy, and connects middle grade waste heat recovery module.
Illustratively, each equipment in the industrial energy supplying system include air compression system, refrigeration system, air-conditioning system, Boiler system, heating system, lighting system.
Illustratively, the industrial energy supplying system is tobacco industry energy supplying system, in the energy grade separation mould In block, vacuum conditioner, refrigeration machine are inputted as high-grade classification.
The technical solution that another invention of the present invention provides is a kind of industrial energy supplying system based on distributed energy supply, packet It includes:
Natural air-air source, boiler, natural gas steam allocate control device, and natural gas gas air source connects boiler, Boiler Steam Outlet connection natural gas allocates control device, and natural gas allotment control device connects the steam output pipe of each boiler;
The first steam output pipe connection Primary processing shop pretreatment steaming vapor circuit, the throwing silk thread leading portion steam of the boiler Circuit, throwing silk thread back segment steam line;
Second steam output pipe of the boiler connects heating system;
The third steam output pipe of the boiler connects refrigeration system;
4th steam output pipe of the boiler enters with the output flash steam pipeline of throwing silk thread leading portion, back segment to be mixed Connection is output to air-conditioning system after pipeline;
The entrance of the flue gas exit pipe road connection waste-heat recovery device of the boiler;
The outlet of the waste-heat recovery device connects water inlet system;
The water system of the outlet connection publilc baths of the water feed apparatus;
Water inlet system described in first condensing hot air furnace piping connection of the air-conditioning system;
The water system of publilc baths described in second condensing hot air furnace piping connection of the air-conditioning system;
Electric energy includes electric power source, electric power distribution regulating device, and electric power source is separately connected system by electric power distribution regulating device Cooling system, air compression system, heating system;
The refrigeration system, air compression system connection third condensing hot air furnace pipeline, the 4th condensing hot air furnace pipeline, third Water inlet system described in condensing hot air furnace piping connection, the water system of the publilc baths described in the 4th condensing hot air furnace piping connection;
Solar energy provides equipment and is separately connected dining room, publilc baths, area lighting system, heating system.
Illustratively, the electric power distribution regulating device, for being powered according to different power supply priority levels;
Electric power distribution regulating device is separately connected high energy step equipment group, intermediate energy step equipment group, low-grade energy Source step equipment group, the high energy step equipment group includes air compressor machine, vacuum machine, dust pelletizing system, rolling up and connecting machine, packaging Machine, refrigeration machine;
The intermediate energy step equipment group includes air-conditioning, elevator;
The rudimentary energy step equipment group includes illumination, office electric appliance.
Illustratively, the natural gas steam allocates control device, for the demand according to different natural gas steams Rank carries out intelligent control distribution steam and supplies ratio, and it includes that high energy step pipeline is defeated that natural gas steam, which allocates control device, Outlet, intermediate energy step pipeline delivery outlet, rudimentary energy step pipeline delivery outlet,
The high energy step pipeline delivery outlet connection first steam output pipe, third steam output pipe The entrance in road, first steam output pipe are also connected with the input port of vacuum conditioning steam line;
The intermediate energy step pipeline delivery outlet connects the entrance of the 4th steam output pipe, connects the air-conditioning The vapor inlet port of system, the air-conditioning system include volume packet air-conditioning, auxiliary material air-conditioning, molding air-conditioning, oxygen-eliminating device;
The rudimentary energy step pipeline delivery outlet connects the entrance of the second steam output pipe, the rudimentary energy Step pipeline delivery outlet also passes through piping connection publilc baths vapor inlet port, dining room vapor inlet port.
The energy of energy supplying system comes from natural gas, electric energy, solar energy, and energy consumption system is boiler system, air compression system, system The compositions such as cooling system, air-conditioning system, heating system, lighting system.It is combed by heat flow diagrams to factory and value chain It is different that the conditions of demand of the energy are integrated with energy department.Energy is redistributed according to the energy cascade utilization of different system Source, and establish model by considering that the technical characteristic of different energy sources is different and its effective utilization is different and carry out intelligent optimization point The energy supplying system of cloth.
This system small investment, energy utilization rate is high, and waste is low.It is combed by heat flow diagrams to factory and value chain, To it is different with can demands of the department to the energy be acquired and digitization, divide again according to the energy cascade utilization of different system A kind of distribution energy supplying system for carrying out intelligent management is utilized with the energy and for function pipeline and energy source secondary.
Description of the drawings
The structure connection diagram of one embodiment of the industrial energy supplying system based on distributed energy supply of Fig. 1 present invention;
The energy grade classification of one embodiment of the industrial energy supplying system based on distributed energy supply of Fig. 2 present invention is illustrated Figure;
The energy comparative situation figure of one embodiment of the industrial energy supplying system based on distributed energy supply of Fig. 3 present invention;
The structure connection signal of another embodiment of the industrial energy supplying system based on distributed energy supply of Fig. 4 present invention Figure.
Specific implementation mode
It is that the energy that whole year always needs and annual electric energy are converted into mark coal using total amount, natural gas motorcar total amount first, Uniform units (such as it is annual need to use 80 unit mark coals in total, and electric energy and natural gas that current year is bought are 100 unit marks Coal).As shown in figure 3, can be seen that our total energy effective efficiencies by comparison, and all wastes and energy can be searched The place of recycling, like this it is contemplated that being recycled to the flue gas after residual heat of air compressor and boiler combustion natural gas, after recycling Heating water probably can allow water to be heated to 70 DEG C or so.
Step 1:Whole year is converted using total energy amount, calculates the energy of the how many mark coals of total needs.Then to complete Electric energy, the natural gas that year uses are counted, and whole year total electric energy used and natural gas can be provided how much marking coal.
Step 2:After uniform units, according to electric energy, the efficiency of two kinds of energy of natural gas, loss, predictable cost (such as electricity Take and carries out step price, the price reduction that natural gas expense is penetrated through with Yunnan Burma burning line, blowdown expense caused by natural gas of burning Deng) ant group algorithm is utilized, f (Xmin) is established using cost as object function, finds the globally optimal solution of rational use of energy, is avoided Before the considerations of, is not thorough, the case where having to local optimum.
It needs to consider constraints in ant group algorithm, based on the formulations such as our factory's boiler gas production, transformer load constraint Condition;
Natural gas constraints:
Hmin≤Hgas≤Hmax,
Hmin minimum gas production
Hmax maximum gas production
Electric energy constraints:
Hmin≤Hele≤Hmax
Hmin minimum transformer loads
Hmax maximum transformer loads.
In a specific embodiment, in the step 2, because local electricity price carries out step price, winter electricity consumption is got over Multivalence lattice are more expensive.And steam is used to consider heat loss, thermal losses etc., and combustion of natural gas are caused because jet chimney is long Annual blowdown NOX (nitrogen oxides) discharge capacity can be excessively caused to have potential risk of exceeding criterion.Comprehensive several factors consideration is calculated with ant colony Method seeks globally optimal solution, and the use of reasonable arrangement natural gas and electric energy.
Step 3, distribution energy supply is obtained according to result of calculation.Pool calculating is carried out using natural gas and electric energy to whole year, is had Many equipment are both to could be used that electric energy with steam (consumption natural gas obtains), as refrigeration machine is divided into steam-refrigerated machine and electricity Refrigeration machine, which also has, to heat, can also electricity consumption with steam.It is natural to can both use and according to the optimal combination calculated before Gas, the equipment that can also use electric energy, carries out energy distribution.It should be noted that this is for buying and can play for new equipment Preferable directive significance.
In a specific embodiment, it carries out data acquisition and searches all wastes and recoverable place, to pneumatics Flue gas after machine waste heat and boiler combustion natural gas is recycled, and water is heated after recycling can probably allow water to be heated to 70 DEG C of left sides It is right.
Step 4, it exports energy step and carries out intelligent management.
In a specific embodiment, it is assigned with after energy-provision way, and pays close attention to energy step, such as throwing equipment, use Be heat contained by steam, condensed water still has very high latent heat, and steam pressure is also very high, can meet air-conditioning completely Required steam needs, therefore by the combing of distributed energy supply thought, a set of Utilizing Energy Sources in Reason is established, waste is greatly reduced And the energy supplying system of consumption.
It is divided according to energy step, after being recycled to high-grade energy waste heat, is according to circumstances used.(such as throwing After vacuum conditioning steam, leading portion, back segment steam, the waste heat recycled in condensed water is more, is used it for by flash process Air-conditioning equipment and dining room, publilc baths use).
Following table is the energy table of grading in a specific embodiment:
Table 1:Energy table of grading
Fig. 4 shows the structure chart of one embodiment of the application,
As shown in figure 4, a kind of industrial energy supplying system based on distributed energy supply, including it is as follows:
Demand conversion module connects the first human-computer interaction interface, obtains the annual energy always needed and annual electric energy Using total amount, natural gas motorcar total amount, and conversion is converted into the energy gross demand data of mark coal automatically in this module, and even It is spare to be connected to first memory;
Energy grade separation module connects the second human-computer interaction interface, obtains each equipment in industrial energy supplying system Energy grade separation data, and it is spare to be connected to second memory;
Cost of electric energy input module connects third human-computer interaction interface, obtains the variable ginseng of at least one set of step price Number;
Natural gas expense variable input module connects the 4th human-computer interaction interface, obtains local newest natural gas expense Price, while the relevant variable parameter of natural gas is obtained, the relevant variable parameter of the natural gas includes natural gas charges for disposing pollutants Variable parameter;
Solar energy expense cost module connects the 5th human-computer interaction device, and acquisition obtains solar energy expense cost variable, The solar energy expense cost variable includes at least solar energy equipment Meteorological, solar energy equipment maintenance cost;
First memory, second memory, cost of electric energy input module, natural gas expense variable input module, solar energy Expense cost module, solar energy expense cost module respectively connect distributed algorithm module;
Distributed algorithm module, for, using cost as object function, the basis of the object function to be institute using ant group algorithm The model of foundation obtains the distribution data of distributed energy, obtains the optimization energy supply data group of the industrial energy supplying system, described Model is configured to:Q expenses min=MIN (Q electric energy+Q natural gas+Q solar energy), wherein:
The optimization price of Q electric energy --- electric energy expense is carried out in conjunction with the output data of the cost of electric energy input module It calculates;
The optimization price of Q natural gases --- natural gas, in conjunction with the output number of the natural gas expense variable input module According to being calculated;
The optimization price of Q solar energy --- solar energy, in conjunction with the solar energy expense cost module output data into Row calculates;
Output module is carried out for the optimization obtained in distributed algorithm module energy supply data group to be connected to display device Output.
In a specific embodiment, further include constraints module in the distributed algorithm module, it is described about Beam condition module includes electric energy constraints module, natural gas constraints module;
Electric energy constraints module, obtain electric energy minimum transformer load to maximum transformer load electric energy pact Beam condition data;
Natural gas constraints module obtains the boiler gas production data of this industrial system, obtains minimum gas production and arrive Constraints data of the interval censored data of maximum gas production as natural gas.
In a specific embodiment, the energy grade separation module include high-grade module, middle grade module, Inferior grade module, high-grade waste heat recovery module, middle grade waste heat recovery module;
High-grade module for carrying out high-grade classification to being input to mould equipment in the block, and is marked energy grade It is divided into high-grade system and supplies the energy into row major, and connect high-grade waste heat recovery module;
High-grade waste heat recovery module, for calculating high-grade mould waste heat data in the block, and by the data investigation Onto the energy apportioning cost of middle grade module;
High-grade waste heat recovery module connects middle grade module;
Middle grade module for carrying out middle grade classification to being input to mould equipment in the block, and is marked energy grade The system for being divided into middle grade carries out second and preferentially supplies the energy, and connects middle grade waste heat recovery module;
Middle grade waste heat recovery module, for calculating middle grade mould waste heat data in the block, and by the data investigation Onto the energy apportioning cost of inferior grade module;
Middle grade waste heat recovery module connects inferior grade module;
Inferior grade module for carrying out inferior grade classification to being input to mould equipment in the block, and is marked energy grade The system for being divided into inferior grade optimizes the priority supply energy, and connects middle grade waste heat recovery module.
In a specific embodiment, each equipment in the industrial energy supplying system includes air compression system, refrigeration system System, air-conditioning system, boiler system, heating system, lighting system.
In a specific embodiment, the industrial energy supplying system is tobacco industry energy supplying system, in the energy In the grade separation module of source, vacuum conditioner, refrigeration machine are inputted as high-grade classification.
As shown in Figure 1, one of present invention one embodiment for application is:
Industrial energy supplying system based on distributed energy supply, including:
Natural air-air source, boiler, natural gas steam allocate control device, and natural gas gas air source connects boiler, Boiler Steam Outlet connection natural gas allocates control device, and natural gas allotment control device connects the steam output pipe of each boiler;
The first steam output pipe connection Primary processing shop pretreatment steaming vapor circuit, the throwing silk thread leading portion steamline of boiler Road, throwing silk thread back segment steam line;
Second steam output pipe of boiler connects heating system;
The third steam output pipe of boiler connects refrigeration system;
4th steam output pipe of boiler and the output flash steam pipeline of throwing silk thread leading portion, back segment enter mixed pipe line Connection is output to air-conditioning system afterwards;
The entrance of the flue gas exit pipe road connection waste-heat recovery device of boiler;
The outlet of waste-heat recovery device connects water inlet system;
The water system of the outlet connection publilc baths of water feed apparatus;
Water inlet system described in first condensing hot air furnace piping connection of air-conditioning system;
The water system of publilc baths described in second condensing hot air furnace piping connection of air-conditioning system;
Electric energy includes electric power source, electric power distribution regulating device, and electric power source is separately connected system by electric power distribution regulating device Cooling system, air compression system, heating system;
Refrigeration system, air compression system connection third condensing hot air furnace pipeline, the 4th condensing hot air furnace pipeline, third condensation Water recovery culvert connects the water inlet system, the water system of the publilc baths described in the 4th condensing hot air furnace piping connection;
Solar energy provides equipment and is separately connected dining room, publilc baths, area lighting system, heating system.
It should be noted that boiler is gas fired-boiler.
In a specific embodiment, the electric power distribution regulating device, for according to different power supply priority It does not power;
Electric power distribution regulating device is separately connected high energy step equipment group, intermediate energy step equipment group, low-grade energy Source step equipment group, the high energy step equipment group includes air compressor machine, vacuum machine, dust pelletizing system, rolling up and connecting machine, packaging Machine, refrigeration machine;
The intermediate energy step equipment group includes air-conditioning, elevator;
The rudimentary energy step equipment group includes illumination, office electric appliance.
In a specific embodiment, the natural gas steam allocates control device, for according to different natural The demand levels of gas steam carry out intelligent control distribution steam and supply ratio, and it includes high-grade energy that natural gas steam, which allocates control device, Source step pipeline delivery outlet, intermediate energy step pipeline delivery outlet, rudimentary energy step pipeline delivery outlet,
The high energy step pipeline delivery outlet connection first steam output pipe, third steam output pipe The entrance in road, first steam output pipe are also connected with the input port of vacuum conditioning steam line;
The intermediate energy step pipeline delivery outlet connects the entrance of the 4th steam output pipe, connects the air-conditioning The vapor inlet port of system, the air-conditioning system include volume packet air-conditioning, auxiliary material air-conditioning, molding air-conditioning, oxygen-eliminating device;
The rudimentary energy step pipeline delivery outlet connects the entrance of the second steam output pipe, the rudimentary energy Step pipeline delivery outlet also passes through piping connection publilc baths vapor inlet port, dining room vapor inlet port.
The embodiment of the present invention is described with above attached drawing, but the invention is not limited in above-mentioned specific Embodiment, the above mentioned embodiment is only schematical, rather than restrictive, those skilled in the art Under the inspiration of the present invention, without breaking away from the scope protected by the purposes and claims of the present invention, it can also make very much Form, all of these belong to the protection of the present invention.

Claims (8)

1. a kind of industrial energy supplying system based on distributed energy supply, which is characterized in that including as follows:
Demand conversion module connects the first human-computer interaction interface, obtains the annual energy always needed and annual electric energy uses Total amount, natural gas motorcar total amount, and conversion is converted into the energy gross demand data of mark coal automatically in this module, and be connected to First memory is spare;
Energy grade separation module connects the second human-computer interaction interface, obtains the energy of each equipment in industrial energy supplying system Grade separation data, and it is spare to be connected to second memory;
Cost of electric energy input module connects third human-computer interaction interface, obtains the variable parameter of at least one set of step price;
Natural gas expense variable input module connects the 4th human-computer interaction interface, obtains local newest natural gas expense price, The relevant variable parameter of natural gas is obtained simultaneously, the relevant variable parameter of the natural gas includes the change of natural gas blowdown expense Measure parameter;
Solar energy expense cost module connects the 5th human-computer interaction device, and acquisition obtains solar energy expense cost variable, described Solar energy expense cost variable includes at least solar energy equipment Meteorological, solar energy equipment maintenance cost;
First memory, second memory, cost of electric energy input module, natural gas expense variable input module, solar energy expense Cost module, solar energy expense cost module respectively connect distributed algorithm module;
Distributed algorithm module, for, using cost as object function, the basis of the object function is to be established using ant group algorithm Model, obtain the distribution data of distributed energy, obtain the optimization energy supply data group of the industrial energy supplying system, the model It is configured to:Q expenses min=MIN (Q electric energy+Q natural gas+Q solar energy), wherein:
The optimization price of Q electric energy --- electric energy expense is calculated in conjunction with the output data of the cost of electric energy input module;
The optimization price of Q natural gases --- natural gas, in conjunction with the natural gas expense variable input module output data into Row calculates;
The optimization price of Q solar energy --- solar energy is counted in conjunction with the output data of the solar energy expense cost module It calculates;
Output module, it is defeated for the optimization obtained in distributed algorithm module energy supply data group to be connected to display device progress Go out.
2. a kind of industrial energy supplying system based on distributed energy supply as described in claim 1, which is characterized in that
Further include constraints module in the distributed algorithm module, the constraints module includes electric energy constraints Module, natural gas constraints module;
Electric energy constraints module, obtain electric energy minimum transformer load to maximum transformer load electric energy constraint item Number of packages evidence;
Natural gas constraints module obtains the boiler gas production data of this industrial system, obtains minimum gas production to maximum Constraints data of the interval censored data of gas production as natural gas.
3. a kind of industrial energy supplying system based on distributed energy supply as described in claim 1, which is characterized in that the energy Grade separation module include high-grade module, middle grade module, inferior grade module, high-grade waste heat recovery module, more than middle grade Heat recovery module;
High-grade module for carrying out high-grade classification to being input to mould equipment in the block, and is marked energy grade classification The energy is supplied into row major for high-grade system, and connects high-grade waste heat recovery module;
High-grade waste heat recovery module, for calculating high-grade mould waste heat data in the block, and by the data investigation in In the energy apportioning cost of grade module;
High-grade waste heat recovery module connects middle grade module;
Middle grade module for carrying out middle grade classification to being input to mould equipment in the block, and is marked energy grade classification The second preferential supply energy is carried out for the system of middle grade, and connects middle grade waste heat recovery module;
Middle grade waste heat recovery module, for calculating middle grade mould waste heat data in the block, and by the data investigation to low In the energy apportioning cost of grade module;
Middle grade waste heat recovery module connects inferior grade module;
Inferior grade module for carrying out inferior grade classification to being input to mould equipment in the block, and is marked energy grade classification The priority supply energy is optimized for the system of inferior grade, and connects middle grade waste heat recovery module.
4. a kind of industrial energy supplying system based on distributed energy supply as described in claims 1 to 3 any one, feature exist In each equipment in the industrial energy supplying system includes air compression system, refrigeration system, air-conditioning system, boiler system, heating system System, lighting system.
5. a kind of industrial energy supplying system based on distributed energy supply as described in claim 1, which is characterized in that the industry Energy supplying system be tobacco industry energy supplying system, in the energy grade separation module, using vacuum conditioner, refrigeration machine as High-grade classification is inputted.
6. a kind of industrial energy supplying system based on distributed energy supply, which is characterized in that the system includes:
Natural air-air source, boiler, natural gas steam allocate control device, and natural gas gas air source connects boiler, Boiler Steam outlet It connects natural gas and allocates control device, natural gas allotment control device connects the steam output pipe of each boiler;
The first steam output pipe connection Primary processing shop pretreatment steaming vapor circuit, the throwing silk thread leading portion steamline of the boiler Road, throwing silk thread back segment steam line;
Second steam output pipe of the boiler connects heating system;
The third steam output pipe of the boiler connects refrigeration system;
4th steam output pipe of the boiler and the output flash steam pipeline of throwing silk thread leading portion, back segment enter mixed pipe line Connection is output to air-conditioning system afterwards;
The entrance of the flue gas exit pipe road connection waste-heat recovery device of the boiler;
The outlet of the waste-heat recovery device connects water inlet system;
The water system of the outlet connection publilc baths of the water feed apparatus;
Water inlet system described in first condensing hot air furnace piping connection of the air-conditioning system;
The water system of publilc baths described in second condensing hot air furnace piping connection of the air-conditioning system;
Electric energy includes electric power source, electric power distribution regulating device, and electric power source is separately connected refrigeration system by electric power distribution regulating device System, air compression system, heating system;
The refrigeration system, air compression system connection third condensing hot air furnace pipeline, the 4th condensing hot air furnace pipeline, third condensation Water recovery culvert connects the water inlet system, the water system of the publilc baths described in the 4th condensing hot air furnace piping connection;
Solar energy provides equipment and is separately connected dining room, publilc baths, area lighting system, heating system.
7. a kind of industrial energy supplying system based on distributed energy supply according to claim 6, which is characterized in that
The electric power distribution regulating device, for being powered according to different power supply priority levels;
Electric power distribution regulating device is separately connected high energy step equipment group, intermediate energy step equipment group, rudimentary energy ladder Grade equipment group, the high energy step equipment group includes air compressor machine, vacuum machine, dust pelletizing system, rolling up and connecting machine, packing machine, system Cold;
The intermediate energy step equipment group includes air-conditioning, elevator;
The rudimentary energy step equipment group includes illumination, office electric appliance.
8. a kind of industrial energy supplying system based on distributed energy supply described according to claim 6 or 7, which is characterized in that
The natural gas steam allocates control device, for carrying out intelligent tune according to the demand levels of different natural gas steams Control distribution steam supplies ratio, and natural gas steam allotment control device includes high energy step pipeline delivery outlet, the intermediate energy Step pipeline delivery outlet, rudimentary energy step pipeline delivery outlet,
The described high energy step pipeline delivery outlet connection first steam output pipe, third steam output pipe Entrance, first steam output pipe are also connected with the input port of vacuum conditioning steam line;
The intermediate energy step pipeline delivery outlet connects the entrance of the 4th steam output pipe, connects the air-conditioning system Vapor inlet port, the air-conditioning system includes volume packet air-conditioning, auxiliary material air-conditioning, molding air-conditioning, oxygen-eliminating device;
The rudimentary energy step pipeline delivery outlet connects the entrance of the second steam output pipe, the rudimentary energy step Pipeline delivery outlet also passes through piping connection publilc baths vapor inlet port, dining room vapor inlet port.
CN201710130444.0A 2017-03-07 2017-03-07 Industrial energy supplying system based on distributed energy supply Pending CN108572564A (en)

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CN103982299A (en) * 2014-04-02 2014-08-13 北京恩耐特分布能源技术有限公司 Novel urban power supply system based on comprehensive utilization of resources, and its optimization method
CN205245604U (en) * 2015-05-29 2016-05-18 中国能源建设集团广东省电力设计研究院有限公司 Distributing type energy is supplied with system for hospital
CN106447529A (en) * 2016-08-30 2017-02-22 上海交通大学 Distributed energy system modeling and running optimization method considering hot water pipe network
CN206497325U (en) * 2017-03-07 2017-09-15 红塔烟草(集团)有限责任公司 Industrial energy supplying system based on distributed energy supply

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Publication number Priority date Publication date Assignee Title
US20110106321A1 (en) * 2009-11-03 2011-05-05 Spirae, Inc. Dynamic distributed power grid control system
CN103982299A (en) * 2014-04-02 2014-08-13 北京恩耐特分布能源技术有限公司 Novel urban power supply system based on comprehensive utilization of resources, and its optimization method
CN205245604U (en) * 2015-05-29 2016-05-18 中国能源建设集团广东省电力设计研究院有限公司 Distributing type energy is supplied with system for hospital
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