CN209341216U - Applied to the clean steam system in euphausia superba - Google Patents
Applied to the clean steam system in euphausia superba Download PDFInfo
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- CN209341216U CN209341216U CN201821986298.8U CN201821986298U CN209341216U CN 209341216 U CN209341216 U CN 209341216U CN 201821986298 U CN201821986298 U CN 201821986298U CN 209341216 U CN209341216 U CN 209341216U
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- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P80/00—Climate change mitigation technologies for sector-wide applications
- Y02P80/10—Efficient use of energy, e.g. using compressed air or pressurized fluid as energy carrier
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Abstract
The utility model is provided applied to the clean steam system in euphausia superba, including fresh water transfer pump, for water preheater, clean steam generator, automatic blowdown system and control system;Fresh water transfer pump is for being delivered to the fresh water in external fresh-water tank for water preheater;For water preheater for preheating to fresh water, and the fresh water after preheating is delivered to clean steam generator;Clean steam generator is used for provide high temperature condensate for water preheater, and heats to the fresh water entered in clean steam generator;Automatic blowdown system includes external pipeline, the TDS detector being arranged on extension tube attached road, release remote-controlled valve and sampler cooler;Control system is used to control starting, stopping and the switching of water supply remote-controlled valve, steam supply remote-controlled valve, the aperture for remote-controlled valve of releasing and fresh water transfer pump.The quality of finished product shrimp med is effectively guaranteed in the steam supply problem of shrimp med machining production line on the utility model effective solution krill ship, excludes the risk of chemistry in water treatment pollution.
Description
Technical field
The utility model relates to marine vapor systems, in particular to the clean steam system being applied in euphausia superba.
Background technique
There is the full-automatic shrimp med machining production line of a set of shrimp med in euphausia superba, in the initial heating phase of the production line,
In order to avoid the albumen precipitation in krill condenses in inside production line, need quickly to improve the temperature of krill in a short time, this
When steam can be injected directly into heater and krill carry out Hybrid Heating, since steam is directly contacted with krill, once in steam
Containing impurity or other substances, then it will lead to product and quality problems occur, influence the quality and normal sale of shrimp med finished product.
Conventional industrial steam system, for scale removal and anticorrosion, it is often necessary to it is added chemicals, and common chemistry
Drug can pollute shrimp med;Phosphate is added in boiler water to prevent dissolved solid from forming scale, adds sulphite to remove
The corrosion of dissolved gas adds alkali to improve the better anti-corrosion of PH energy, scale removal and etch-proof two aspects interaction, it is necessary to
Implement the safety that just can guarantee vapour system simultaneously.
Therefore, in order to remove the impurity in steam, it will usually consider to use food grade chemical drug, or be filtered using filter
Fall chemicals.
1) marine vapor system uses food grade chemical drug;
There are problems:
Need FDA (Food and Drug Administration U.S. Food and Drug Administration) or similar means
Chemicals is authenticated;
Food grade chemical drug and technical grade chemicals difference are larger, in general require higher, and price is more expensive;
The other chemicals of food-grade does not ask to obtain specialized vendor, if existing can not verify.
2) chemicals in marine vapor system is filtered out using filter;
There are problems:
Steam, also known as cooking and steam, stainless steel filter of the marine vapor Jing Guo 5 micron pore sizes are filtered, however comes from boiler
Water treatment agent and the potential risk of cross contamination still remain, and contaminant capacity when passing through filter depends on the serious journey of problem
Degree, safeguards the property of system and the rate of steam.
Increase filter and will lead to the increasing of vapour system resistance and is needed pair to guarantee the vapor (steam) temperature after filter and pressure
The temperature and pressure of electrical system should be improved.
In order to guarantee the effect of filter, filter area is larger, causes filter volume and occupied space very big, the arrangement of filter
It is affected to the comprehensive arrangement in processing workshop.
Filter needs to clean, and duplex form, which just can guarantee not, influences shrimp med production, further increases filter volume.
This equipment is individually ordered, it is more difficult to the whole control of shrimp med quality.
In view of the already present problem of above-mentioned two scheme, a large amount of chemicals especially can be consumed, need to continue not
Disconnected addition marine vapor system, it is contemplated that the special circumstances of South Pole region long-term operation ship, the storage of chemicals are thrown
Larger, especially food grade chemical drug can be had by putting, consume and feeding, and can be brought to operation biggish tired
It is difficult.
Utility model content
The technical problem to be solved by the present invention is to provide one kind can secondary heat exchange generate live steam, overcome potential dirt
Dye risk not will lead to the clean steam system being applied in euphausia superba for additionally consuming a large amount of chemicals.
In order to achieve the above objectives, the technical solution of the utility model is as follows:
Applied to the clean steam system in euphausia superba, the clean steam system includes:
One fresh water transfer pump, fresh water transfer pump is for being delivered to the fresh water in external fresh-water tank for water preheater, fresh water
One end of delivery pump is connected with fresh water line, and the other end of fresh water transfer pump is connected by pipeline and the fresh water import for water preheater
It connects, which is equipped with water supply remote-controlled valve, and water supply remote-controlled valve is by control system according to the liquid level information that liquidometer is fed back come automatic
Adjust aperture;
Fresh water after preheating for water preheater, for water preheater for preheating to fresh water, and is delivered to cleaning by one
Steam generator is connect for the water outlet of water preheater with clean steam generator;For water preheater the import of high temperature condensate with
It is connect by pipeline with external steam system, which is equipped with auxiliary drain valve;
One clean steam generator, clean steam generator are used for provide high temperature condensate for water preheater, and to entrance
Fresh water in clean steam generator is heated, and the high temperature condensate outlet of clean steam generator passes through pipeline and preheating of supplying water
The high temperature condensate import of device connects, which is equipped with main drain valve;The steam inlet of clean steam generator by pipeline with
The connection of external steam system, the pipeline are equipped with steam supply remote-controlled valve;The top of clean steam generator is equipped with exhaust valve, and cleaning is steamed
The side of vapour generator is equipped with liquidometer;Clean steam generator is equipped with pressure sensor, and steam supply remote-controlled valve can be by control
System is according to the pressure information that pressure sensor is fed back come adjust automatically aperture;
One automatic blowdown system, automatic blowdown system include the extension tube attached connected with the water outlet of clean steam generator
Road, the TDS detector being arranged on extension tube attached road, release remote-controlled valve and sampler cooler;
TDS of the TDS detector for fresh water inside real-time detection clean steam generator, and TDS information is fed back into control
System processed;
Release remote-controlled valve, sampler cooler is in parallel, releases what remote-controlled valve was fed back by control system according to TDS detector
TDS information adjust automatically open and-shut mode;
The high-temperature water that sampler cooler is used to flow out clean steam generator cools down, for samplingization after cooling
It tests;
One control system, for controlling water supply remote-controlled valve, steam supply remote-controlled valve, the aperture for remote-controlled valve of releasing and fresh water conveying
Starting, stopping and the switching of pump.
In one embodiment of the utility model, clean steam system further includes fresh water conveying stand-by pump, and fresh water is defeated
One end of stand-by pump is sent to connect with fresh water line and in parallel with fresh water transfer pump, fresh water conveys stand-by pump and controls it by control system
Starting stops and switches.
In one embodiment of the utility model, clean steam system further includes a fresh water return valve, fresh water return valve
One end connect with fresh water line and with fresh water transfer pump, fresh water conveying stand-by pump it is in parallel.
In one embodiment of the utility model, clean steam system further includes the first bypass line, the first bypass pipe
Road is in parallel with water supply remote-controlled valve, manually boots in water supply remote-controlled valve failure.
In one embodiment of the utility model, clean steam system further includes the second bypass line, the second bypass pipe
Road is in parallel with for water preheater, manually boots in water supply faults of preheater or cleaning.
In one embodiment of the utility model, clean steam system further includes third bypass line, third bypass pipe
Lu Yuzhu drain valve is in parallel, manually boots in main drain valve failure.
In one embodiment of the utility model, clean steam system further includes the 4th bypass line, the 4th bypass pipe
Road is in parallel with steam supply remote-controlled valve, manually boots in steam supply remote-controlled valve failure.
In one embodiment of the utility model, clean steam system further includes the 5th bypass line, the 5th bypass pipe
Road is in parallel with auxiliary drain valve, manually boots in auxiliary drain valve failure.
In one embodiment of the utility model, the top of clean steam generator is equipped with safety valve, in preventing
Portion's system pressure is more than setting value.
In one embodiment of the utility model, water supply remote-controlled valve, steam supply remote-controlled valve, remote-controlled valve of releasing are by external compression
Air is as actuator driven source.
Through the above technical solutions, the beneficial effects of the utility model are:
The steam supply problem of shrimp med machining production line, effective from multiple angles on the utility model effective solution krill ship
It ensure that the quality of finished product shrimp med, exclude the risk of chemistry in water treatment pollution, while also controlling energy consumption to a certain extent, and
Influence to marine vapor system is smaller, can be widely applied to new shipbuilding and transformation ship.
Detailed description of the invention
In order to illustrate the embodiment of the utility model or the technical proposal in the existing technology more clearly, below will be to embodiment
Or attached drawing needed to be used in the description of the prior art is briefly described, it should be apparent that, the accompanying drawings in the following description is only
It is some embodiments of the utility model, for those of ordinary skill in the art, in the premise not made the creative labor
Under, it is also possible to obtain other drawings based on these drawings.
Fig. 1 is the utility model clean steam systematic schematic diagram;
Fig. 2 is the utility model clean steam system electrical control figure;
10, fresh water transfer pump 20, fresh water convey stand-by pump 30, for water preheater 31, fresh water import 32, water outlet
33, high temperature condensate import 40, fresh water line 50, pipeline 60, water supply remote-controlled valve 70, fresh water return valve 80, the first bypass pipe
Road 90, clean steam generator 91, high temperature condensate export 92, steam inlet 93, exhaust valve 94, liquidometer 95, pressure
Sensor 96, safety valve 97, water outlet 100, the second bypass line 110, auxiliary drain valve 120, the 5th bypass line
130, main drain valve 140, steam supply remote-controlled valve 150, third bypass line 160, the 4th bypass line 170, external pipeline
180, TDS detector 190, remote-controlled valve 200 of releasing, sampler cooler 210, shut-off valve 230, check-valves 240, control
System.
Specific embodiment
In order to be easy to understand the technical means, creative features, achievement of purpose, and effectiveness of the utility model, under
Face combines and is specifically illustrating, and the utility model is further described.
Referring to figure 1 and figure 2, the utility model discloses the clean steam system being applied in euphausia superba, packets
Include fresh water transfer pump 10, for water preheater 30, clean steam generator 90, automatic blowdown system and control system 240.
Fresh water transfer pump 10 is used to for the fresh water in external fresh-water tank being delivered to for water preheater 30, fresh water transfer pump 10
One end is connected with fresh water line 40, and the other end of fresh water transfer pump 10 passes through pipeline 50 and the fresh water import 31 for water preheater 30
Connection, the pipeline 50 are equipped with water supply remote-controlled valve 60, the liquid that water supply remote-controlled valve 60 is fed back by control system 240 according to liquidometer 94
Position information carrys out adjust automatically aperture;Clean steam system further includes fresh water conveying stand-by pump 20, and fresh water conveys stand-by pump 20
One end is connected and in parallel with fresh water transfer pump 10 with fresh water line 40, and fresh water conveys stand-by pump 20 and controls it by control system 240
Starting stops and switches;Clean steam system further includes a fresh water return valve 70, one end of fresh water return valve 70 and fresh water line
40 series connection are simultaneously in parallel with fresh water transfer pump 10, fresh water conveying stand-by pump 20;Clean steam system further includes the first bypass line 80,
First bypass line 80 is in parallel with water supply remote-controlled valve 60, manually boots in water supply 60 failure of remote-controlled valve.
For water preheater 30 for preheating to fresh water, and the fresh water after preheating is delivered to clean steam generator
90, it is connect for the water outlet 32 of water preheater 30 with clean steam generator 90;Clean steam system further includes the second bypass pipe
Road 100, the second bypass line 100 is in parallel with for water preheater 30, manually boots when for 30 failure of water preheater or cleaning;For
The high temperature condensate import 33 of water preheater 30 is connect with by pipeline 50 with external steam system, which is equipped with auxiliary hydrophobic
Valve 110;Clean steam system further includes the 5th bypass line 120, and the 5th bypass line 120 is in parallel with auxiliary drain valve 110, auxiliary
It is manually booted when 110 failure of drain valve.
Clean steam generator 90 is used for provide high temperature condensate for water preheater 30, and to entrance clean steam generator
Fresh water in 90 is heated, and the high temperature condensate outlet 91 of clean steam generator 90 is by pipeline 50 and for water preheater 30
High temperature condensate import 33 connects, which is equipped with main drain valve 130;The steam inlet 92 of clean steam generator 90 is logical
Piping 50 is connect with external steam system, which is equipped with steam supply remote-controlled valve 140;The top of clean steam generator 90
Equipped with exhaust valve 93, the side of clean steam generator 90 is equipped with liquidometer 94;Clean steam system further includes third bypass pipe
Road 150, third bypass line 150 is in parallel with main drain valve 130, manually boots in main 130 failure of drain valve;Clean steam
System further includes the 4th bypass line 160, and the 4th bypass line 160 is in parallel with steam supply remote-controlled valve 140, in steam supply remote-controlled valve 140
It is manually booted when failure;Clean steam generator 90 is equipped with pressure sensor 95, and steam supply remote-controlled valve 140 can be by control system
240 pressure informations fed back according to pressure sensor 95 are come adjust automatically aperture;The top of clean steam generator 90 is equipped with peace
Full valve 96 is more than setting value for preventing internal system pressure.
Automatic blowdown system includes the external pipeline 170 connected with the water outlet 97 of clean steam generator 90, setting
TDS detector 180, release remote-controlled valve 190 and sampler cooler 200 on extension tube attached road;TDS detector 180 is used for
The TDS value of 90 inside fresh water of real-time detection clean steam generator, and TDS value is fed back into control system 240;It releases remote-controlled valve
190, sampler cooler 200 is in parallel, the TDS value that remote-controlled valve 190 feed back by control system 240 according to TDS detector of releasing oneself
Dynamic adjustment open and-shut mode;The high-temperature water that sampler cooler 200 is used to flow out clean steam generator 90 cools down, cooling
Afterwards for sample examination.
Control system 240 be used for control water supply remote-controlled valve 60, steam supply remote-controlled valve 140, remote-controlled valve 190 of releasing aperture with
And starting, stopping and the switching of fresh water transfer pump 10;Water supply remote-controlled valve 60, steam supply remote-controlled valve 140, remote-controlled valve 190 of releasing are by outer
Portion's compressed air is as actuator driven source.
Control system 240 can be set and be controlled to pressure, liquid level, TDS and water pump.
Control system 240 receives the pressure information from pressure sensor 95, and distant by steam supply is fed back to after information processing
Valve 140 is controlled, by the aperture of steam supply remote-controlled valve 140 come the supply of dynamic regulation external steam;
Control system 240 receives the liquid level information from liquidometer 94, and water supply remote-controlled valve will be fed back to after information processing
60, by the aperture of water supply remote-controlled valve 60 come the supply of fresh water outside dynamic regulation;
Control system 240 receives the TDS information from TDS detector 180, and remote control of releasing will be fed back to after information processing
Valve 190, by the opening and closing for remote-controlled valve 190 of releasing come the amount of releasing of water exceeded in dynamic adjusting system;
Control system 240 is remotely controlled fresh water transfer pump 10 and fresh water and conveys stand-by pump 20, water pump can be started, stop and
Switching.
Its major function of the utility model can be greatly classified into four subsystems, respectively fresh water and clean steam system,
Steam and condensate system, ventilative and bleed-off system, compressed air system.
The main flow of fresh water and clean steam system is as follows:
External steam system uses marine vapor system for heating source, RO (Reverse Osmosis, reverse osmosis) fresh water warp
After being preheated into preheater by the condensed water of main heating steam after electronic fresh water transfer pump pressurization, into main heat exchanger, after heating
Clean steam is generated, by the water separator built in main heat exchanger, isolates dry clean steam supply clean steam
System uses.
The exhaust valve 93 for opening 90 top of clean steam generator, is discharged air from clean steam generator,
Convenient for accelerating the feed rate of fresh water;What the liquidometer 94 of opening clean steam generator side was connected with clean steam generator
Two shut-off valves 210 can look on the liquid level variation examined inside clean steam generator in machine, and liquidometer 94 can simultaneously believe liquid level
Breath feeds back to control system 240.
The fresh water transfer pump 10 that is equipped with, fresh water conveying stand-by pump 20 and fresh water return valve 70 in parallel with fresh water line 40,
Stand-by pump of the middle fresh water conveying stand-by pump 20 as fresh water transfer pump 10, when 10 failure of fresh water transfer pump, control system 240
Fresh water conveying stand-by pump 20 will be started automatically, the effect of fresh water return valve 70 is the fresh water pressure in the pipeline of ballast pump front and back.
Shut-off valve 210, fresh water transfer pump 10 and the fresh water return valve 70 on fresh water line 40 are opened, in external fresh-water tank
RO fresh water enters clean steam system by fresh water line 40, fresh water transfer pump 10, then flows to fresh water return valve 70 and supply water distant
Control valve 60, water supply remote-controlled valve 60 can by control system 240 according to the level value that liquidometer 94 is fed back come adjust automatically aperture;Work as confession
When water 60 failure of remote-controlled valve, the water supply of the first bypass line 80 can be opened manually;When liquidometer 94 not up to sets liquid level, supply water
Remote-controlled valve 60 can be automatically regulated to be maximum opening, maximum by the water of water supply remote-controlled valve 60 to guarantee;When liquidometer 94 reaches
When setting liquid level, water supply remote-controlled valve 60 can be automatically closed, and fresh water all passes through the entrance that fresh water return valve 70 is back to pump.
Fresh water enters water supply preheater 30 after water supply remote-controlled valve 60, is discharged from clean steam generator 90
High temperature condensate preheated, the fresh water after preheating enters clean steam generator 90;When for 30 failure of water preheater or cleaning
When, the water supply of the second bypass line 100 can be opened manually.
By steam indirect heating in clean steam generator 90, the clean steam of generation supplies fresh water from its top discharge
To downstream production line.
The main flow of steam and condensate system is as follows:
External steam system provides 8bar marine vapor to clean steam system, into clean steam system after by valve member control
It makes it and flows to clean steam generator 90 and for water preheater 30.
Clean steam generator 90 is flowed to all the way, and steam flows through filter and steam supply remote-controlled valve 140, and steam supply remote-controlled valve 140 can
By control system 240 according to the pressure value that pressure sensor 95 is fed back come adjust automatically aperture;When 140 failure of steam supply remote-controlled valve
When, 160 steam supply of the 4th bypass line can be opened manually;When pressure sensor 95 not up to sets pressure, steam supply remote-controlled valve 140
It can be automatically regulated to be maximum opening, it is maximum by the quantity of steam of steam supply remote-controlled valve 140 to guarantee;It is set when pressure sensor 95 reaches
When constant-pressure, steam supply remote-controlled valve 140 can be automatically closed.
Steam is discharged after completing the heating procedure to fresh water from clean steam generator 90 by pipeline, and main drain valve is flowed through
130 and check-valves 230, the effect of main drain valve 130 is draining resistance vapour, enters water supply by the high temperature condensate of main drain valve 130
Preheater 30 carries out indirect preheating to for the fresh water in water preheater 30;When main 130 failure of drain valve, can be opened manually
Three bypass lines, 150 steam discharge.
It is flowed to all the way for water preheater 30, steam flows through filter, auxiliary drain valve 110 and check-valves 230, when system warm-up amount
When insufficient, can manual opening conduits 50 directly provide high temperature condensate to for water preheater 30;It, can when auxiliary 110 failure of drain valve
120 steam supply of the 5th bypass line is opened manually.
Ventilative and bleed-off system main flow is as follows:
It is respectively provided with a shut-off valve 210 in 90 bottom minimum point of clean steam generator and 94 the bottom of the pipeline of liquidometer, is used
Fresh water in release in stop safe 90 inside of clean steam generator and 94 pipeline of liquidometer, in order to avoid pollution system
System.
Safety valve 96 at the top of clean steam generator is for preventing internal system pressure more than setting value, when safety valve 96
When opening, internal high temperature steam water interface will be discharged, and steam will be connected to outdoor security position, high-temperature water then directly release to
Outboard underwater.
TDS detector 180 on the external pipeline 170 of clean steam generator bottom automatic blowdown system can in real time constantly
The TDS of internal fresh water is monitored, while TDS information is fed back into control system 240, internal fresh water can be controlled its flow direction by valve member and be let out
Put remote-controlled valve 190 and sampler cooler 200.
Remote-controlled valve 190 of releasing is flowed to all the way, and remote-controlled valve 190 of releasing can be anti-according to TDS detector 180 by control system 240
The TDS value of feedback carrys out adjust automatically open and-shut mode;When TDS is more than setting value, the remote control of releasing on external pipeline will automatically turn on
Valve 190;When TDS is less than setting value, the remote-controlled valve 190 of releasing on external pipeline will turn off;Pass through remote-controlled valve of releasing
High-temperature water is directly released to outboard underwater;
Sampler cooler 200 is flowed to all the way, and the shut-off valve 210 before opening sampler cooler 200, clean steam occurs
High-temperature water inside device 90 can be released by external pipeline 170, can be to after sampled device cooler 200 carries out cooling by fresh water
Sampling water after cooling is chemically examined.
The main flow of compressed air system is as follows:
Compressed air enters clean steam system, and water supply remote-controlled valve 60, the steam supply being respectively connected in clean steam system are distant
Control valve 140 and remote-controlled valve 190 of releasing, the actuator driven source as these three remote-controlled valves.
All contact fresh water of the utility model and the material of clean steam use Stainless steel 316 L, have more than 60 DEG C
Equipment, pipeline and valve attachment be insulated cladding, avoid damaging personnel.
The basic principles and main features of the present invention and the advantages of the present invention have been shown and described above.Current row
The technical staff of industry is described in above embodiments and description it should be appreciated that the present utility model is not limited to the above embodiments
Only illustrate the principles of the present invention, on the premise of not departing from the spirit and scope of the utility model, the utility model is also
It will have various changes and improvements, these various changes and improvements fall within the scope of the claimed invention.The utility model
Claimed range is defined by the appending claims and its equivalent thereof.
Claims (10)
1. being applied to the clean steam system in euphausia superba, which is characterized in that the clean steam system includes:
One fresh water transfer pump, fresh water transfer pump are used to for the fresh water in external fresh-water tank being delivered to for water preheater, fresh water conveying
One end of pump is connected with fresh water line, and the other end of fresh water transfer pump is connect by pipeline with the fresh water import for water preheater,
The pipeline is equipped with water supply remote-controlled valve, and the liquid level information that water supply remote-controlled valve is fed back by control system according to liquidometer is come adjust automatically
Aperture;
Fresh water after preheating for water preheater, for water preheater for preheating to fresh water, and is delivered to clean steam by one
Generator is connect for the water outlet of water preheater with clean steam generator;For water preheater the import of high temperature condensate with pass through
Pipeline is connect with external steam system, which is equipped with auxiliary drain valve;
One clean steam generator, clean steam generator are used for provide high temperature condensate for water preheater, and clean to entering
Fresh water in steam generator is heated, and the high temperature condensate outlet of clean steam generator is by pipeline and for water preheater
High temperature condensate import connection, the pipeline are equipped with main drain valve;The steam inlet of clean steam generator passes through pipeline and outside
Vapour system connection, the pipeline are equipped with steam supply remote-controlled valve;The top of clean steam generator is equipped with exhaust valve, clean steam hair
The side of raw device is equipped with liquidometer;Clean steam generator is equipped with pressure sensor, and steam supply remote-controlled valve can be by control system root
Carry out adjust automatically aperture according to the pressure information that pressure sensor is fed back;
One automatic blowdown system, automatic blowdown system include with the water outlet of clean steam generator connect external pipeline,
The TDS detector being arranged on extension tube attached road, release remote-controlled valve and sampler cooler;
TDS of the TDS detector for fresh water inside real-time detection clean steam generator, and TDS information is fed back into control system
System;
Releasing, remote-controlled valve, sampler cooler are in parallel, and remote-controlled valve of releasing is believed by control system according to the TDS that TDS detector is fed back
Cease adjust automatically open and-shut mode;
The high-temperature water that sampler cooler is used to flow out clean steam generator cools down, for sample examination after cooling;
One control system, for controlling water supply remote-controlled valve, steam supply remote-controlled valve, the aperture for remote-controlled valve of releasing and fresh water transfer pump
Starting stops and switches.
2. the clean steam system according to claim 1 applied in euphausia superba, which is characterized in that clean steam
System further include a fresh water conveying stand-by pump, fresh water conveying stand-by pump one end connect with fresh water line and with fresh water transfer pump simultaneously
Connection, fresh water convey stand-by pump and control its starting, stopping and switching by control system.
3. the clean steam system according to claim 1 applied in euphausia superba, which is characterized in that clean steam
System further includes a fresh water return valve, and one end of fresh water return valve is connected with fresh water line and conveyed with fresh water transfer pump, fresh water
Stand-by pump is in parallel.
4. the clean steam system according to claim 1 applied in euphausia superba, which is characterized in that clean steam
System further includes the first bypass line, and the first bypass line is in parallel with water supply remote-controlled valve, is opened manually in water supply remote-controlled valve failure
It is dynamic.
5. the clean steam system according to claim 1 applied in euphausia superba, which is characterized in that clean steam
System further includes the second bypass line, and the second bypass line is in parallel with for water preheater, in water supply faults of preheater or cleaning
It manually boots.
6. the clean steam system according to claim 1 applied in euphausia superba, which is characterized in that clean steam
System further includes third bypass line, and third bypass line is in parallel with main drain valve, is manually booted in main drain valve failure.
7. the clean steam system according to claim 1 applied in euphausia superba, which is characterized in that clean steam
System further includes the 4th bypass line, and the 4th bypass line is in parallel with steam supply remote-controlled valve, is opened manually in steam supply remote-controlled valve failure
It is dynamic.
8. the clean steam system according to claim 1 applied in euphausia superba, which is characterized in that clean steam
System further includes the 5th bypass line, and the 5th bypass line is in parallel with auxiliary drain valve, is manually booted in auxiliary drain valve failure.
9. the clean steam system according to claim 1 applied in euphausia superba, which is characterized in that clean steam
The top of generator is equipped with safety valve, is more than setting value for preventing internal system pressure.
10. the clean steam system according to claim 1 applied in euphausia superba, which is characterized in that supply water distant
Valve, steam supply remote-controlled valve, remote-controlled valve of releasing are controlled by external compression air as actuator driven source.
Priority Applications (1)
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CN201821986298.8U CN209341216U (en) | 2018-11-29 | 2018-11-29 | Applied to the clean steam system in euphausia superba |
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CN201821986298.8U CN209341216U (en) | 2018-11-29 | 2018-11-29 | Applied to the clean steam system in euphausia superba |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110894936A (en) * | 2018-11-29 | 2020-03-20 | 上海和创船舶工程有限公司 | Clean steam system and fishing boat applying same |
CN111381619A (en) * | 2020-03-18 | 2020-07-07 | 中国水产科学研究院渔业机械仪器研究所 | Temperature control system and control method of euphausia superba cooking equipment |
-
2018
- 2018-11-29 CN CN201821986298.8U patent/CN209341216U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110894936A (en) * | 2018-11-29 | 2020-03-20 | 上海和创船舶工程有限公司 | Clean steam system and fishing boat applying same |
CN111381619A (en) * | 2020-03-18 | 2020-07-07 | 中国水产科学研究院渔业机械仪器研究所 | Temperature control system and control method of euphausia superba cooking equipment |
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