CN206035648U - Gas turbine air intake heating cooling system - Google Patents

Gas turbine air intake heating cooling system Download PDF

Info

Publication number
CN206035648U
CN206035648U CN201620726470.0U CN201620726470U CN206035648U CN 206035648 U CN206035648 U CN 206035648U CN 201620726470 U CN201620726470 U CN 201620726470U CN 206035648 U CN206035648 U CN 206035648U
Authority
CN
China
Prior art keywords
air
waste
gas turbine
heat
inlet
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201620726470.0U
Other languages
Chinese (zh)
Inventor
陈梦娜
李小龙
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Inner Mongolia Dongchen Energy Saving Technology Co Ltd
Original Assignee
Inner Mongolia Dongchen Energy Saving Technology Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Inner Mongolia Dongchen Energy Saving Technology Co Ltd filed Critical Inner Mongolia Dongchen Energy Saving Technology Co Ltd
Priority to CN201620726470.0U priority Critical patent/CN206035648U/en
Application granted granted Critical
Publication of CN206035648U publication Critical patent/CN206035648U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Engine Equipment That Uses Special Cycles (AREA)

Abstract

The utility model provides a gas turbine air intake heating cooling system includes: air heat exchanger, gas turbine, exhaust -heat boiler and waste heat recoverer, air heat exchanger includes air heat exchanger air inlet, air heat exchanger gas outlet, air heat exchanger water inlet and air heat exchanger delivery port, gas turbine includes gas turbine air inlet and gas turbine gas outlet, exhaust -heat boiler includes the exhaust -heat boiler air inlet, waste heat recoverer includes waste heat recoverer water inlet and waste heat recoverer delivery port, the air heat exchanger gas outlet is connected the gas turbine air inlet, the gas turbine gas outlet is connected the exhaust -heat boiler air inlet, exhaust -heat boiler with waste heat recoverer connects, the waste heat recoverer delivery port is connected the air heat exchanger water inlet, the air heat exchanger delivery port is connected the waste heat recoverer water inlet, the hot water that waste heat recoverer produced flows to air heat exchanger to the air of realization in to air heat exchanger heats.

Description

Gas turbine inlet air heating/cooling system
Technical field
The application is related to energy field, more particularly to a kind of gas turbine inlet air heating/cooling system.
Background technology
Energy problem is one of Social Events that contemporary world various countries face, and demographic and economic is increased rapidly, plus The consumption and exhaustion of acute fossil energy, causes environment to receive serious pollution and destruction.Especially in China, power industry is Big power consumer, and the heat utilization rate of current China only about 30%, far below the 60% of western developed country.High energy consumption Consequence is exactly that energy expenditure is greatly improved, and environment is greatly destroyed.Therefore, people need section while tapping a new source of energy About energy resource consumption.
At present, mainly gas combustion-gas vapor combined cycle technology (the abbreviation combustion gas wheel that China's gas turbine power generation is used Machine generates electricity).Gas turbine power generation is in addition to natural gas is consumed, in addition it is also necessary to which substantial amounts of air, its inlet air temperature is to gas turbine Efficiency has considerable influence with exerting oneself.When air themperature is higher, atmospheric density is reduced, and specific volume is increased, into gas turbine Air capacity is reduced, and Gas Turbine Output declines.When gas turbine is run under part load condition, due to the variable stator of air inlet Aperture relation, inlet air temperature are lower, and the variable leaf divergence of leading of air inlet is less, and gas turbine proficiency will be reduced.To sum up Described, the change of gas turbine inlet air themperature can produce different impacts to gas turbine under different running statuses. Current China operation of power networks pattern:Winter in spring and autumn economize on electricity net is run typically under part load condition, and electricity during the broiling summer Net is often run under full load condition.Due to operation of power networks feature, the gas turbine power generation of winter in spring and autumn will certainly be caused to imitate Rate is not high, and summer Gas Turbine Output is not enough.Therefore, how efficiently to realize entering trip temperature control to the air into gas turbine System has become industry a great problem.
Therefore, it is necessary to provide a kind of new technical scheme to solve the above problems in fact.
Utility model content
The application provides a kind of gas turbine inlet air heating/cooling system, efficiently to realize to entering gas turbine Air carry out temperature adjustment.
To achieve these goals, the application provides a kind of gas turbine inlet air heating/cooling system, including:Air is changed Hot device, gas turbine, waste heat boiler and waste-heat recoverer;The air heat exchanger includes that air heat exchanger air inlet, air are changed Hot device gas outlet, air heat exchanger water inlet and air heat exchanger outlet;The gas turbine includes gas turbine inlet air mouth And gas turbine gas outlet;The waste heat boiler includes waste heat boiler air inlet;The waste-heat recoverer includes waste-heat recoverer Water inlet and waste-heat recoverer outlet;The air heat exchanger gas outlet connects the gas turbine inlet air mouth;The combustion gas Turbine gas outlet connects the waste heat boiler air inlet;The waste heat boiler is connected with the waste-heat recoverer;The waste heat is returned Receive device outlet and connect the air heat exchanger water inlet;The air heat exchanger outlet connects the waste-heat recoverer water inlet Mouthful.
In a kind of preferred embodiment, the waste-heat recoverer outlet is provided with hot water with the air heat exchanger water inlet Pump.
In a kind of preferred embodiment, between the waste-heat recoverer outlet and the heat-exchanger pump, water tank is provided with.
To achieve these goals, the application provides a kind of gas turbine inlet air heating/cooling system, including:Air is changed Hot device, gas turbine, waste heat boiler and waste-heat recoverer;The air heat exchanger includes that air heat exchanger air inlet, air are changed Hot device gas outlet, air heat exchanger water inlet and air heat exchanger outlet;The gas turbine includes gas turbine inlet air mouth And gas turbine gas outlet;The waste heat boiler includes waste heat boiler air inlet;The waste-heat recoverer includes waste-heat recoverer Water inlet and waste-heat recoverer outlet;The air heat exchanger gas outlet connects the gas turbine inlet air mouth;The combustion gas Turbine gas outlet connects the waste heat boiler air inlet;The waste heat boiler is connected with the waste-heat recoverer;The combustion gas wheel Machine inlet air heating/cooling system also includes refrigeration machine;The refrigeration machine includes the first refrigeration machine water inlet, the water inlet of the second refrigeration machine Mouth, the first refrigeration machine outlet and the second refrigeration machine outlet;The first refrigeration machine water inlet connects the waste-heat recoverer Outlet;The second refrigeration machine water inlet connects the air heat exchanger outlet;The first refrigeration machine outlet connection The waste-heat recoverer water inlet;The second refrigeration machine outlet connects the waste-heat recoverer water inlet.
In a kind of preferred embodiment, set between the second refrigeration machine outlet and the waste-heat recoverer water inlet There is water supply pump.
In a kind of preferred embodiment, the gas turbine inlet air heating/cooling system also includes cooling tower;The cooling Tower includes cooling tower water inlet and cooling tower outlet;The refrigeration machine also includes the 3rd refrigeration machine water inlet and the 3rd refrigeration machine Outlet;The cooling tower water inlet connects the 3rd refrigeration machine outlet;The cooling tower outlet connection the described 3rd Refrigeration machine water inlet.
In a kind of preferred embodiment, between the cooling tower outlet and the 3rd refrigeration machine water inlet, cooling is provided with Water pump.
Compared with prior art, the application has the advantages that:Due to the waste-heat recoverer outlet and the sky Gas heat exchanger water inlet connects, and the hot water that waste-heat recoverer is produced flows to air heat exchanger, to realize in air heat exchanger Air is heated.Or, as the waste-heat recoverer outlet is connected with the first refrigeration machine water inlet, the refrigeration Machine realizes refrigeration.The first refrigeration machine outlet connects the waste-heat recoverer water inlet, to realize in air heat exchanger Air cooled down.
Description of the drawings
Configuration diagrams of the Fig. 1 for the application gas turbine inlet air heating/cooling system;
The configuration diagram of the gas turbine inlet air heating/cooling system that Fig. 2 is provided for the application second embodiment.
Specific embodiment mode
It is for making the purpose of this utility model, technical scheme and advantage clearer, concrete below in conjunction with this utility model Embodiment and corresponding accompanying drawing are clearly and completely described to technical solutions of the utility model.Obviously, described embodiment Only it is a part of embodiment of this utility model, rather than the embodiment of whole.Based on the embodiment in this utility model, this area The acquired every other embodiment under the premise of creative work is not made of those of ordinary skill, belongs to this utility model The scope of protection.
Below in conjunction with accompanying drawing, the technical scheme that each embodiment of this utility model is provided is described in detail.
The configuration diagram of the gas turbine inlet air heating/cooling system that Fig. 1 is provided for the application first embodiment.
Fig. 1 is refer to, the gas turbine inlet air heating/cooling system that this utility model first embodiment is provided can be wrapped Include:Air heat exchanger 10, gas turbine 20, waste heat boiler 30 and waste-heat recoverer 40.The air heat exchanger 10 is used for being fed The air for entering gas turbine 20 carries out temperature adjustment.The waste-heat recoverer 40 is heated using the energy of waste heat boiler 30 Water.The air heat exchanger 10 includes air heat exchanger air inlet 11, air heat exchanger gas outlet 12, air heat exchanger water inlet 13 and air heat exchanger outlet 14.The gas turbine 20 includes gas turbine inlet air mouth 21 and gas turbine gas outlet 22. The waste heat boiler 30 includes waste heat boiler air inlet 31.The waste-heat recoverer 40 includes waste-heat recoverer water inlet 41 and remaining Heat regenerator outlet 42.The air heat exchanger gas outlet 12 connects the gas turbine inlet air mouth 21.The gas turbine Gas outlet 22 connects the waste heat boiler air inlet 31.The waste heat boiler 30 is connected with the waste-heat recoverer 40.It is described remaining Heat regenerator outlet 42 connects the air heat exchanger water inlet 13.The air heat exchanger outlet 14 connects the waste heat Withdrawer water inlet 41.Heat-exchanger pump is provided between the waste-heat recoverer outlet 42 and the air heat exchanger water inlet 13 61, for providing the power source of fluid.The waste-heat recoverer outlet 42 is provided with water tank 62 with the heat-exchanger pump 61, for receiving The hot water that collection waste-heat recoverer 40 is produced, in the preferred embodiment, the water tank 62 has heat insulation effect.In other preferable enforcements In example, the connecting pipe between each part has heat insulation effect.
As the waste-heat recoverer outlet 42 is connected with the air heat exchanger water inlet 13, waste-heat recoverer 40 is produced Raw hot water flows to air heat exchanger 10, to realize heating the air in air heat exchanger 10.
The configuration diagram of the gas turbine inlet air heating/cooling system that Fig. 2 is provided for the application second embodiment.
Fig. 2 is refer to, the gas turbine inlet air heating/cooling system that this utility model second embodiment is provided can be wrapped Include:Air heat exchanger 10, gas turbine 20, waste heat boiler 30 and waste-heat recoverer 40.The air heat exchanger 10 is used for being fed The air for entering gas turbine 20 carries out temperature adjustment.The waste-heat recoverer 40 is heated using the energy of waste heat boiler 30 Water.The air heat exchanger 10 includes air heat exchanger air inlet 11, air heat exchanger gas outlet 12, air heat exchanger water inlet 13 and air heat exchanger outlet 14.The gas turbine 20 includes gas turbine inlet air mouth 21 and gas turbine gas outlet 22. The waste heat boiler 30 includes waste heat boiler air inlet 31.The waste-heat recoverer 40 include waste-heat recoverer water inlet 41 and Waste-heat recoverer outlet 42.The air heat exchanger gas outlet 12 connects the gas turbine inlet air mouth 21.The combustion gas wheel Machine gas outlet 22 connects the waste heat boiler air inlet 31.The waste heat boiler 30 is connected with the waste-heat recoverer 40.It is described Air heat exchanger outlet 14 connects the waste-heat recoverer water inlet 41.
The gas turbine inlet air heating/cooling system can also include refrigeration machine 80.The refrigeration machine 80 can be bromine Change lithium refrigeration machine.The refrigeration machine 80 includes that the first refrigeration machine water inlet 81, the second refrigeration machine water inlet 82, the first refrigeration machine go out The mouth of a river 83 and the second refrigeration machine outlet 84.The first refrigeration machine water inlet 81 connects the waste-heat recoverer outlet 42. Heat-exchanger pump 61 is provided between the waste-heat recoverer outlet 42 and the first refrigeration machine water inlet 81, for providing fluid Power source.The waste-heat recoverer outlet 42 is provided with water tank 62 with the heat-exchanger pump 61, produces for collecting waste-heat recoverer 40 Raw hot water, in the preferred embodiment, the water tank 62 has heat insulation effect.In other preferred embodiments, between each part Connecting pipe there is heat insulation effect.The second refrigeration machine water inlet 82 connects the air heat exchanger outlet 14.It is described First refrigeration machine outlet 83 connects the waste-heat recoverer water inlet 41.The second refrigeration machine outlet 84 connects the sky Gas heat exchanger air inlet 13.Water supply pump is provided between the second refrigeration machine outlet 84 and the air heat exchanger air inlet 13 64, for providing the power source of fluid.The gas turbine inlet air heating/cooling system can also include cooling tower 90.It is described Cooling tower 90 includes cooling tower water inlet 91 and cooling tower outlet 92.The refrigeration machine 80 also includes the 3rd refrigeration machine water inlet 85 and the 3rd refrigeration machine outlet 86.The cooling tower water inlet 91 connects the 3rd refrigeration machine outlet 86.The cooling Tower outlet 92 connects the 3rd refrigeration machine water inlet 85.The cooling tower outlet 92 and the 3rd refrigeration machine water inlet Cooling water pump 65 is provided between 85.
As the waste-heat recoverer outlet 42 is connected with the first refrigeration machine water inlet 81, the refrigeration machine 80 is real Now freeze.The first refrigeration machine outlet 83 connects the waste-heat recoverer water inlet 41, to realize to air heat exchanger 10 In air cooled down.
In various embodiments above, the gas turbine inlet air heating/cooling system can also include chimney, and the chimney connects Connect the waste-heat recoverer 40.
It should be noted that term " including ", "comprising" or its any other variant are intended to the bag of nonexcludability Contain, so that a series of process, method, product or equipment including key elements is not only including those key elements, but also including Other key elements being not expressly set out, or also include the key element intrinsic for this process, method, product or equipment. In the absence of more restrictions, the key element for being limited by sentence "including a ...", it is not excluded that including the key element Process, method, also there is other identical element in product or equipment.
Embodiments herein is the foregoing is only, the application is not limited to.For those skilled in the art For, the application can have each kind of change and change.All any modifications made within spirit herein and principle, etc. With replacement, improvement etc., within the scope of should be included in claims hereof.

Claims (7)

1. a kind of gas turbine inlet air heating/cooling system, it is characterised in that include:Air heat exchanger, gas turbine, waste heat Boiler and waste-heat recoverer;The air heat exchanger includes air heat exchanger air inlet, air heat exchanger gas outlet, air heat-exchange Device water inlet and air heat exchanger outlet;The gas turbine includes gas turbine inlet air mouth and gas turbine gas outlet;Institute Stating waste heat boiler includes waste heat boiler air inlet;The waste-heat recoverer includes that waste-heat recoverer water inlet and waste-heat recoverer go out The mouth of a river;The air heat exchanger gas outlet connects the gas turbine inlet air mouth;The gas turbine gas outlet connection is described remaining Heat boiler air inlet;The waste heat boiler is connected with the waste-heat recoverer;The waste-heat recoverer outlet connects the sky Gas heat exchanger water inlet;The air heat exchanger outlet connects the waste-heat recoverer water inlet.
2. gas turbine inlet air heating/cooling system as claimed in claim 1, it is characterised in that the waste-heat recoverer goes out The mouth of a river is provided with heat-exchanger pump with the air heat exchanger water inlet.
3. gas turbine inlet air heating/cooling system as claimed in claim 2, it is characterised in that the waste-heat recoverer goes out Water tank is provided between the mouth of a river and the heat-exchanger pump.
4. a kind of gas turbine inlet air heating/cooling system, it is characterised in that include:Air heat exchanger, gas turbine, waste heat Boiler and waste-heat recoverer;The air heat exchanger includes air heat exchanger air inlet, air heat exchanger gas outlet, air heat-exchange Device water inlet and air heat exchanger outlet;The gas turbine includes gas turbine inlet air mouth and gas turbine gas outlet;Institute Stating waste heat boiler includes waste heat boiler air inlet;The waste-heat recoverer includes that waste-heat recoverer water inlet and waste-heat recoverer go out The mouth of a river;The air heat exchanger gas outlet connects the gas turbine inlet air mouth;The gas turbine gas outlet connection is described remaining Heat boiler air inlet;The waste heat boiler is connected with the waste-heat recoverer;The gas turbine inlet air heating/cooling system is also Including refrigeration machine;The refrigeration machine includes the first refrigeration machine water inlet, the second refrigeration machine water inlet, the first refrigeration machine outlet And the second refrigeration machine outlet;The first refrigeration machine water inlet connects the waste-heat recoverer outlet;Second refrigeration Machine water inlet connects the air heat exchanger outlet;The first refrigeration machine outlet connects the waste-heat recoverer water inlet Mouthful;The second refrigeration machine outlet connects the air heat exchanger air inlet.
5. gas turbine inlet air heating/cooling system as claimed in claim 4, it is characterised in that second refrigeration machine goes out Water supply pump is provided between the mouth of a river and the air heat exchanger air inlet.
6. gas turbine inlet air heating/cooling system as claimed in claim 4, it is characterised in that the gas turbine inlet air Heating/cooling system also includes cooling tower;The cooling tower includes cooling tower water inlet and cooling tower outlet;The refrigeration machine Also include the 3rd refrigeration machine water inlet and the 3rd refrigeration machine outlet;The cooling tower water inlet connects the 3rd refrigeration machine and goes out The mouth of a river;The cooling tower outlet connects the 3rd refrigeration machine water inlet.
7. gas turbine inlet air heating/cooling system as claimed in claim 6, it is characterised in that the cooling tower outlet Cooling water pump is provided between the 3rd refrigeration machine water inlet.
CN201620726470.0U 2016-07-01 2016-07-01 Gas turbine air intake heating cooling system Expired - Fee Related CN206035648U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620726470.0U CN206035648U (en) 2016-07-01 2016-07-01 Gas turbine air intake heating cooling system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620726470.0U CN206035648U (en) 2016-07-01 2016-07-01 Gas turbine air intake heating cooling system

Publications (1)

Publication Number Publication Date
CN206035648U true CN206035648U (en) 2017-03-22

Family

ID=58311314

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201620726470.0U Expired - Fee Related CN206035648U (en) 2016-07-01 2016-07-01 Gas turbine air intake heating cooling system

Country Status (1)

Country Link
CN (1) CN206035648U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105986906A (en) * 2016-07-01 2016-10-05 南京东辰节能科技有限公司 Air inlet temperature adjusting system for combustion gas turbine

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105986906A (en) * 2016-07-01 2016-10-05 南京东辰节能科技有限公司 Air inlet temperature adjusting system for combustion gas turbine

Similar Documents

Publication Publication Date Title
Li et al. A technology review on recovering waste heat from the condensers of large turbine units in China
WO2016127698A1 (en) Energy storage type combined cooling, heating and power device suitable for active power distribution network and operation method thereof
CN206055742U (en) A kind of flat peak heating system based on heating system with multi-eat sources
CN104481611A (en) Dead steam waste heat recovery system based on large temperature difference heat exchange technology
CN105783330B (en) A kind of distributed energy resource system of heat engine driving VM circulating heat pumps
CN105443170A (en) High-and-low-temperature supercritical carbon dioxide waste heat utilization system
CN103953966A (en) High-capacity heat storage system and high-capacity heat storage method for increasing wind energy absorption
CN206611233U (en) A kind of oil gas field distribution is provided multiple forms of energy to complement each other energy micro-grid system
CN203717051U (en) Combined cycling low-temperature exhaust heat recycling device
CN108798898B (en) System and method for supplying steam and hot water by combining proton exchange membrane fuel cell and gas turbine
WO2015066831A1 (en) Combined heat exchanger set
CN104457023B (en) Installed power configuration optimization method for regional type combined cooling heating and power system
CN106440903B (en) Heat reservoir for extraction condensing type cogeneration unit
CN107676842A (en) The system of hydro-thermal alliance and the regulation and control method of the system are realized using residual heat of electric power plant
CN204186430U (en) A kind of gas distributing system pressure regulation power generating refrigeration system
CN206035648U (en) Gas turbine air intake heating cooling system
CN203718884U (en) Heat-pump-based combined heat and power generation centralized heating system
CN203036658U (en) Boiler flue gas waste heat multipurpose utilization system
CN205936722U (en) Waste heat multistage utilization's distributed energy power generation system
CN204404220U (en) Based on the distributed energy resource system of city biogas
CN204704011U (en) A kind of distributed energy fume afterheat deep exploitation system
CN101368749A (en) Recirculated water low-level regenerated energy heating system of cooling column in thermal plant and refrigeration plant
CN207740056U (en) A kind of CO2The machine furnace cooling of cycle can recycle and power generation and heat supply integral system
CN206875543U (en) A kind of heating system
CN204492908U (en) A kind of exhaust steam residual heat reclaiming system based on large temperature difference technology

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20170322

Termination date: 20200701