CN208138146U - Water-ring vacuum pump fluid cooling water system - Google Patents

Water-ring vacuum pump fluid cooling water system Download PDF

Info

Publication number
CN208138146U
CN208138146U CN201820643176.2U CN201820643176U CN208138146U CN 208138146 U CN208138146 U CN 208138146U CN 201820643176 U CN201820643176 U CN 201820643176U CN 208138146 U CN208138146 U CN 208138146U
Authority
CN
China
Prior art keywords
water
vacuum pump
connect
cooling water
lithium bromide
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
CN201820643176.2U
Other languages
Chinese (zh)
Inventor
马琴
李伟
常娜娜
王�锋
王宸曦
倪满慧
李贞�
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.)
Huadian Distributed Energy Engineering & Technology Co Ltd
China Huadian Engineering Group Co Ltd
Original Assignee
Huadian Distributed Energy Engineering & Technology Co Ltd
China Huadian Engineering Group 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 Huadian Distributed Energy Engineering & Technology Co Ltd, China Huadian Engineering Group Co Ltd filed Critical Huadian Distributed Energy Engineering & Technology Co Ltd
Priority to CN201820643176.2U priority Critical patent/CN208138146U/en
Application granted granted Critical
Publication of CN208138146U publication Critical patent/CN208138146U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • 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
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A30/00Adapting or protecting infrastructure or their operation
    • Y02A30/27Relating to heating, ventilation or air conditioning [HVAC] technologies
    • Y02A30/274Relating to heating, ventilation or air conditioning [HVAC] technologies using waste energy, e.g. from internal combustion engine

Landscapes

  • Engine Equipment That Uses Special Cycles (AREA)

Abstract

The utility model relates to a kind of Water-ring vacuum pump fluid cooling water systems, for Gas-steam Combined Cycle distributed energy resource system, the cooling water system includes, with generate the hot water lithium bromide unit of cooling water using waste heat boiler, the vacuum pump being connect with condenser, connect with the vacuum pump and carry out cooling heat exchanger for the working solution to vacuum pump, the water inlet of the hot water lithium bromide unit is connect with the cooling water outlet of the heat exchanger, and the cooling water inlet of the heat exchanger is connect with the water outlet of the hot water lithium bromide unit.The state for improving vacuum pump, improves the generated output and efficiency of steam-turbine unit, while reducing exhaust gas temperature, improves comprehensive utilization of energy rate.

Description

Water-ring vacuum pump fluid cooling water system
Technical field
The present invention relates to a kind of Water-ring vacuum pump fluid cooling water systems, belong to Gas-steam Combined Cycle distribution Energy field.
Background technique
Condenser is the Important Auxiliary equipment of Steam Turbine, and the quality of vacuum is distributed to entire Gas-steam Combined Cycle The construction and safe and economical operation of energy source station have decisive influence.Large capacity condensing-type generating set is in back pressure of condenser height When design value, the every raising lkPa of back pressure, unit heat consumption increases by 0.5%, some units are even more than l%.Water-ring vacuum pump It is the condenser air-extractor being widely used in current large and medium-sized unit, effect is the incoagulable gas extracted in condenser, is protected Card and maintenance condenser vacuum.
In the conventional system, the cooling water original design water source of water ring vacuum pump is the recirculated water of cooling tower, through open type It is known as open cycle cooling water after water circulating pump boosting, conventional water ring vacuum pump system is as shown in Figure 1:When working fluid water into When entering plate heat exchanger, after cooling water enters plate heat exchanger by the side water chamber of plate heat exchanger, flowed out by other side water chamber, The water of working fluid is just cooled in this way.When cooling water temperature reduces, the enhancing of vacuum pump suction capactity, the power output of vacuum pump It can increase accordingly.When vacuum pump is run under summer outdoor high temperature, cooling water temperature is higher, and one side cooling water is to working solution Cooling design effect is not achieved, the working solution temperature of another aspect water ring vacuum pump can also be increased and be vaporized, and make the closed moon The gas for having portion gas to vaporize in thread form cavity from working solution reduces the suction to the incondensable gas in condenser Amount, makes the output drop of water-ring vacuum pump.Meanwhile the operating condition in water ring vacuum pump becomes extremely severe, causes water ring Vacuum pump impeller cavitation erosion, causes equipment damage, constitutes a serious threat to the safe operation of unit when serious.
The suction capactity of water ring vacuum pump directly influences the aggregation extent of air in condenser, and the pumping of water ring vacuum pump Energy-absorbing power is mainly influenced by its working solution temperature.Vacuum pump in summer, since summer environment temperature is generally higher, follow by open type Ring cooling water temperature is up to 35 DEG C, and cooling effect is very poor at this time.In addition pumping is mixed in the wasted work and condenser of pump rotation The heat of object transmitting, the universal superelevation of the temperature of working solution are closed, or even reaches 45 DEG C, causes the suction capactity of water ring vacuum pump serious Decline, air gather in condenser, make the vacuum decay of condenser.When working solution temperature reaches 42 DEG C, vacuum pump ideal is taken out Vacuum capacity is 93.1kPa, and vacuum reduces, and drastically influences the efficiency of unit.
Summary of the invention
Object of the present invention is to the functions to solve existing vacuum pump fluid poor cooling performance, provide a kind of Water-ring vacuum Pump fluid cooling water system is used for Gas-steam Combined Cycle distributed energy resource system, and the cooling water system includes, with The hot water lithium bromide unit, the vacuum pump connecting with condenser and the vacuum of cold source water are generated using waste heat boiler waste heat Pump connection carries out cooling heat exchanger for the working solution to vacuum pump, the water inlet of the hot water lithium bromide unit with it is described The cooling water outlet of heat exchanger connects, and the water outlet of the cooling water inlet of the heat exchanger and the hot water lithium bromide unit connects It connects.
It further, further include the low-pressure coal saver being arranged on waste heat boiler, the hot water lithium bromide unit and institute State low-pressure coal saver connection.
It further, further include the steam-water separator being connect with the vacuum pump, the steam-water separator and the heat exchange Device connection.
It further, further include the high-pressure superheater being arranged on the waste heat boiler, the vapour that is connect with high-pressure superheater Turbine, the steam turbine are also connect with the condenser;It further include being added by the axle envelope that condensate pump is connect with the condenser Hot device, the gland heater are connect with the low-pressure coal saver.
It further, further include turbine and chimney, the turbine is connect with the waste heat boiler, the waste heat boiler and institute State chimney connection.
7 DEG C of cold source water produced using hot water lithium bromide refrigeration machine, the working solution of cooling water ring vacuum pump can improve The state of vacuum pump improves the generated output and efficiency of steam-turbine unit.Meanwhile exhaust gas temperature is reduced, improve Integrated Energy benefit With rate.
Detailed description of the invention
The features and advantages of the present invention will be more clearly understood by referring to the accompanying drawings, and attached drawing is schematically without that should manage Solution is carries out any restrictions to the present invention, in the accompanying drawings:
Fig. 1 is conventional Gas-steam Combined Cycle distributed energy resource system Water-ring vacuum pump fluid cooling water system System diagram;;
Fig. 2 is the system schematic of the Water-ring vacuum pump fluid cooling water system in the present invention;
Fig. 3 is the partial enlarged view of the Water-ring vacuum pump fluid cooling water system in the present invention.
Specific embodiment
To better understand the objects, features and advantages of the present invention, with reference to the accompanying drawing and specific real Applying mode, the present invention is further described in detail.It should be noted that in the absence of conflict, the implementation of the application Feature in example and embodiment can be combined with each other.
In the following description, numerous specific details are set forth in order to facilitate a full understanding of the present invention, still, the present invention may be used also To be implemented using other than the one described here other modes, therefore, protection scope of the present invention is not by described below Specific embodiment limitation.
The present invention is for the problem that due to poor cooling performance, so that the suction capactity degradation of water ring vacuum pump, proposes A kind of modernization system to existing system.For Gas-steam Combined Cycle distributed energy resource system, suction-type lithium bromide It is relatively conventional refrigeration modes that refrigeration, which is in distributed energy, generates heat source water using exhaust-heat boiler flue gas tail portion waste heat, Using heat source water as the driving heat source of hot water lithium bromide machine, generate cold source water (for 7 DEG C/12 DEG C of return water).Summer high temperature weather, When the colod-application family deficiency of external waste heat, by 7 DEG C of cold source water, the working solution of the water ring vacuum pump of steam turbine is cooled down, The vacuum degree of flow 6.5t/h, condenser can increase 3.7kPa or so.
7 DEG C of cold source water produced using hot water lithium bromide refrigeration machine, the working solution of cooling water ring vacuum pump can improve The state of vacuum pump improves the generated output and efficiency of steam-turbine unit.Meanwhile exhaust gas temperature is reduced, improve Integrated Energy benefit With rate.Detailed process See Figure 2.
Specifically, the present invention provides a kind of Water-ring vacuum pump fluid cooling water systems 100, join for fuel gas-steam Loop distribution formula energy resource system is closed, the cooling water system 100 includes generating cold source water with using 110 waste heat of waste heat boiler Hot water lithium bromide unit 120, the vacuum pump 140 connecting with condenser 130 are connect with the vacuum pump 140 for vacuum The working solution of pump carries out cooling heat exchanger 150, the water inlet of the hot water lithium bromide unit 120 and the heat exchanger 150 Cooling water outlet connection, the water outlet of the cooling water inlet of the heat exchanger 150 and the hot water lithium bromide unit 120 connects It connects.Cold source water is generated by hot water lithium bromide unit 120 using the waste heat of waste heat boiler 110, cold source water is introduced into described In heat exchanger 150, working solution is introduced into the heat exchanger 150 in the vacuum pump 140, is carried out by cold source water to working solution It is cooling, the state of vacuum pump is improved, the generated output and efficiency of steam-turbine unit are improved, reduces exhaust gas temperature, improves energy Source comprehensive utilization ratio.
It specifically, further include the low-pressure coal saver 160 being arranged on waste heat boiler 110, the hot water lithium bromide unit 120 connect with the low-pressure coal saver 160, and the low-pressure coal saver 160 generates heat source using the flue gas in waste heat boiler 110 Water is drained into the hot water lithium bromide unit 120, to generate cold source water.
The vacuum pump 140 is also connect with steam-water separator 170, and the steam-water separator 170 connects with the heat exchanger 150 It connects, gas in working solution is discharged using steam-water separator 170.
It further, further include the high-pressure superheater 180 being arranged on the waste heat boiler 110 and high-pressure superheater 180 The steam turbine 190 of connection, the steam turbine 190 are also connect with the condenser 130;It further include by condensate pump 200 and institute The gland heater 210 of the connection of condenser 130 is stated, the gland heater 210 is connect with the low-pressure coal saver 160.To remaining The energy of flue gas is utilized in heat boiler 110, improves energy utilization rate.
In the present invention in Gas-steam Combined Cycle distributed energy resource system, air is by compressor, natural gas by day The right preposition module of gas is introduced into combustion chamber, generates energy supply gas turbine, and the flue gas of generation is drained into waste heat by turbine 220 In boiler 110, after heat exchange, flue gas is drained into the chimney 230 from the waste heat boiler 110.Flue-gas temperature passes through remaining After heat boiler 110, temperature is effectively reduced, and carries out energy regenerating.
Hot water lithium bromide unit 120 in the present invention is also connect with other cold source demand equipment.
7 DEG C of cold source water produced using hot water lithium bromide refrigeration machine, the working solution of cooling water ring vacuum pump can improve The state of vacuum pump improves the generated output and efficiency of steam-turbine unit.Meanwhile exhaust gas temperature is reduced, improve Integrated Energy benefit With rate.
In the present invention, term " first ", " second ", " third " are used for description purposes only, and should not be understood as instruction or Imply relative importance.Term " multiple " refers to two or more, unless otherwise restricted clearly.
The foregoing is only a preferred embodiment of the present invention, is not intended to restrict the invention, for the skill of this field For art personnel, the invention may be variously modified and varied.All within the spirits and principles of the present invention, made any to repair Change, equivalent replacement, improvement etc., should all be included in the protection scope of the present invention.

Claims (5)

1. a kind of Water-ring vacuum pump fluid cooling water system, which is characterized in that be used for Gas-steam Combined Cycle distribution energy Source system, the cooling water system include generating the hot water lithium bromide unit of cold source water with utilization waste heat boiler waste heat and coagulating The vacuum pump of vapour device connection connect with the vacuum pump and carries out cooling heat exchanger for the working solution to vacuum pump, the heat The water inlet of water type lithium bromide chiller is connect with the cooling water outlet of the heat exchanger, the cooling water inlet of the heat exchanger and institute State the water outlet connection of hot water lithium bromide unit.
2. Water-ring vacuum pump fluid cooling water system according to claim 1, which is characterized in that further include being arranged remaining Low-pressure coal saver on heat boiler, the hot water lithium bromide unit are connect with the low-pressure coal saver.
3. Water-ring vacuum pump fluid cooling water system according to claim 1 or 2, which is characterized in that further include and institute The steam-water separator of vacuum pump connection is stated, the steam-water separator is connect with the heat exchanger.
4. Water-ring vacuum pump fluid cooling water system according to claim 1 or 2, which is characterized in that further include setting High-pressure superheater on the waste heat boiler, the steam turbine being connect with high-pressure superheater, the steam turbine also with the condensing Device connection;Further include the gland heater being connect by condensate pump with the condenser, the gland heater with it is described low Press economizer connection.
5. Water-ring vacuum pump fluid cooling water system according to claim 4, which is characterized in that further include turbine and cigarette Chimney, the turbine are connect with the waste heat boiler, and the waste heat boiler is connect with the chimney.
CN201820643176.2U 2018-05-02 2018-05-02 Water-ring vacuum pump fluid cooling water system Expired - Fee Related CN208138146U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201820643176.2U CN208138146U (en) 2018-05-02 2018-05-02 Water-ring vacuum pump fluid cooling water system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201820643176.2U CN208138146U (en) 2018-05-02 2018-05-02 Water-ring vacuum pump fluid cooling water system

Publications (1)

Publication Number Publication Date
CN208138146U true CN208138146U (en) 2018-11-23

Family

ID=64311794

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201820643176.2U Expired - Fee Related CN208138146U (en) 2018-05-02 2018-05-02 Water-ring vacuum pump fluid cooling water system

Country Status (1)

Country Link
CN (1) CN208138146U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108757471A (en) * 2018-05-02 2018-11-06 中国华电科工集团有限公司 Water-ring vacuum pump fluid cooling water system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108757471A (en) * 2018-05-02 2018-11-06 中国华电科工集团有限公司 Water-ring vacuum pump fluid cooling water system

Similar Documents

Publication Publication Date Title
CN104482772B (en) Vertical sintering waste heat drives cooling heating and power generation system and method thereof
CN201560812U (en) Cogeneration low temperature thermal energy recovery device
CN104763484B (en) Air cooling turbine high back pressure heat supply power generating simultaneously method
CN102878603A (en) Gas-steam circulation combined double-stage coupling heat pump heat supply device
CN102022144A (en) Thermal power generation system with function of exhaust steam recovery
CN110542240B (en) Single-effect and double-effect composite steam type first-class lithium bromide absorption heat pump unit
CN111121389A (en) Liquefied air energy storage and power generation system of deep coupling coal-fired unit
CN107905897A (en) Gas turbine cycle flue gas waste heat recovery and inlet gas cooling association system and method
CN204693371U (en) One directly reclaims turbine discharge waste heat and heat-setting water system
CN108758584A (en) A kind of cold and hot storage alliance coal fired power plant air cooling system and its operation regulation and control method of waste heat combination driving
CN105698161B (en) Coal fired power plant level-density parameter around First air is thermally integrated system
CN103233821B (en) A kind of air temperature regulating system
KR101386179B1 (en) District heating water supply system for increasing gas turbin output by using heat pump
CN108757471A (en) Water-ring vacuum pump fluid cooling water system
CN208138146U (en) Water-ring vacuum pump fluid cooling water system
CN203594565U (en) Steam-driven driving system for solar thermal power generation large power pump
CN101788141B (en) Application of absorption type heat regenerator in regenerative circulation system of power plant
CN110542238A (en) Single-double effect composite direct combustion type first-class lithium bromide absorption heat pump unit
CN110185512A (en) A kind of supply system that industrial afterheat power generation is coupled with heat pump heating
CN112576375B (en) System and method for utilizing cold and heat quantity between coal presses of low-heat-value combined cycle unit
CN213980964U (en) Cold and heat quantity optimal utilization system between coal press of low-heat-value combined cycle unit
CN211204491U (en) Single-double effect composite direct combustion type first-class lithium bromide absorption heat pump unit
CN108638794B (en) Comprehensive system for utilizing waste heat of automobile exhaust
CN207162510U (en) A kind of waste heat boiler afterbody heat exchanger system
CN209145661U (en) A kind of empty clammy condensing equipment coupling energy-saving system of two-stage surface-type

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20181123

CF01 Termination of patent right due to non-payment of annual fee