CN201681159U - Nuclear and radiation monitoring station - Google Patents

Nuclear and radiation monitoring station Download PDF

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Publication number
CN201681159U
CN201681159U CN2010201073327U CN201020107332U CN201681159U CN 201681159 U CN201681159 U CN 201681159U CN 2010201073327 U CN2010201073327 U CN 2010201073327U CN 201020107332 U CN201020107332 U CN 201020107332U CN 201681159 U CN201681159 U CN 201681159U
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CN
China
Prior art keywords
cabin
sampling
iodine
monitoring station
radiation
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Expired - Lifetime
Application number
CN2010201073327U
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Chinese (zh)
Inventor
刘玉田
王伟华
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.)
Beijing Hua Ruihe pacifies Science and Technology Co., Ltd.
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Wuhan Donghu Tiankang Science and Technology Co Ltd
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Priority to CN2010201073327U priority Critical patent/CN201681159U/en
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Publication of CN201681159U publication Critical patent/CN201681159U/en
Anticipated expiration legal-status Critical
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Abstract

The utility model discloses a nuclear and radiation monitoring station which comprises a nuclear and radiation monitoring station cabin body formed through connection of large plates, a power and monitoring device, an automatic weather station and a high-pressure ionization chamber. The cabin body is composed of a cabin top, a cabin wall and a cabin bottom; and the cabin bottom is provided with an aerial supporting leg. The nuclear and radiation monitoring station is characterized in that: a ultra-high flow-rate automatic sampler is arranged at one side in the cabin body, an air inlet pipeline of the ultra-high flow-rate automatic sampler is arranged at the outer side on the cabin top, a radiation environment iodine automatic sampler is arranged at the other side in the cabin body, a machine cabinet of the power and monitoring device is arranged at one side of the radiation environment iodine automatic sampler, a master control computer device is arranged in the cabin body between the machine cabinet and the ultra-high flow-rate automatic sampler, an air inlet pipe of the radiation environment iodine automatic sampler is arranged at the outer side on the cabin top, the air inlet pipe of the ultra-high flow-rate automatic sampler is arranged at the outer side on the cabin top, the automatic weather station is arranged outside the cabin body, and the high-pressure ionization chamber is arranged on the cabin top. By adopting integral design and modularization, the nuclear and radiation monitoring station integrates various equipment, leads to standard as well as serialized construction, and realizes the characteristics of being safe, reliable, economical, compatible, motorized and the like; in addition, the installation and maintenance are convenient.

Description

Nuclear and radiation monitoring station
Technical field
The utility model belongs to environmental protection device, is specifically related to a kind of environment monitoring device.
Background technology
The environmental monitoring various places relatively disperse at present, various device is isolated operation, data acquisition between the equipment, exchange difficulty, security, reliability, economy, Electro Magnetic Compatibility, anticorrosion and installation and maintenance be factor such as inconvenience extremely, is difficult to collect latest data in the short time.Simultaneously because the structure of equipment self makes existing environment monitoring device be difficult to be integrated together.The particularly environmental monitoring of nuclear and radiation.
Summary of the invention
The purpose of this utility model is to provide a kind of integrated nuclear with integrated environment monitoring function and radiation monitoring station, realizes environment comprehensive monitoring real-time, to address the above problem.
The technical solution of the utility model is: nuclear and radiation monitoring station, it comprises nuclear and the radiation monitoring station cabin body that is connected and composed by big plate, the cabin body is pushed up by the cabin, the bulkhead and the bilge constitute, power and supervising device, automatic weather station, the high pressure ionization chamber, the bilge is established built on stilts supporting leg, it is characterized in that a side is provided with super-flow automatic sampler in the body of cabin, the admission line of super-flow automatic sampler is located at the top, cabin and goes up the outside, and opposite side is provided with radiation environment iodine automatic sampling device in the body of cabin, and the rack of described power and supervising device is located at radiation environment iodine automatic sampling device one side; Be provided with the main control computer device in the cabin body between rack and super-flow automatic sampler; The draft tube of radiation environment iodine automatic sampling device is located at the top, cabin and goes up the outside, and the draft tube of super-flow automatic sampler is located at the top, cabin and goes up the outside; It is external that automatic weather station is located at the cabin, and the high pressure ionization chamber is located on the top, cabin.
Super-flow automatic sampler comprises vacuum blower, vacuum blower connects admission line and outlet pipe, the entrance point of admission line connects atmospheric aerosol sampling cabin, the atmospheric aerosol sampling is established atmospheric aerosol sampling by filtration device in the cabin, sampling top, cabin connects draft tube, and the draft tube end connects airscoop shroud; Described atmospheric aerosol sampling cabin comprises air deflector, establishes the filter material cabin that is communicated with it on the air deflector, and base plate is established in the bottom in the filter material cabin, offers through hole on the base plate, and atmospheric aerosol sampling by filtration device is located on the through hole.
Radiation environment iodine automatic sampling device, it comprises main casing, be provided with vacuum blower in the main casing, vacuum blower connects admission line and gas outlet, control device, connect iodine sampling cabin on the admission line, iodine sampling cabin comprises the sampling housing, and the iodine sampling is established the iodine sampling head in the cabin, and the iodine sampling head is connected UNICOM with admission line, establish the iodine sampling apparatus in the iodine sampling head, iodine sampling head and atmosphere UNICOM, described iodine sampling apparatus comprises the lower support cavity, iodine sampling carbon box in the lower support cavity, the lower support cavity is provided with upper cavity, connects iodine sampling membrane device on the upper cavity.
Nuclear that described big plate connects and composes and radiation monitoring station cabin body are by the big plate of being made up of steel skeleton, aluminium alloy plate and polyurethane foam material etc., and be assembled between the big plate, has the good comprehensive performance.
Be provided with dividing plate in the body of cabin, the cabin body is divided into two cabins, super-flow automatic sampler is located in the cabin, and the rack of main control computer device, radiation environment iodine automatic sampling device and power and supervising device is located in another cabin.
The described image data that is located at the external automatic weather station in cabin passes to the main control computer device; Automatic weather station can adopt commercially available weather monitoring device.
The high pressure ionization chamber is located on the top, cabin; Be provided with temperature compensation means in it, the high pressure ionization chamber is a detecting devices, is used for continuously and in real time the radiant matter of atmospheric environment is surveyed and detected, and surveys, detects and monitor as media such as alpha ray, β ray and gamma-rays in the atmospheric environment
Modularization is adopted in this station integration design, and various device is integrated, with the computer data monitoring, realizes control in real time each other, and data sync communication, and computing machine and Internet connection realize on national network.Can understand national environmental change in real time, in time react, make deployment.Real realization security, reliability, economy, Electro Magnetic Compatibility, anticorrosion and convenient for installation and maintenance.Radiation monitoring station adopts the integration design, adopts modularization, and various device is integrated, makes radiation monitoring station construction criteriaization, seriation.Characteristics such as safe, reliable, economic, compatible, motor-driven, convenient for installation and maintenance have been realized.It can realize air mass flow 〉=600m 3The air of the super-flow of/h carries out the sampling of atmospheric aerosol, and can carry out the constant sampling of atmospheric aerosol on the airflow value that sets; Realization is to airborne particulate iodine, inorganic iodine and organic iodine particulate iodine; Elemental iodine and the non-element inorganic iodine plain organic iodine of negation element of advocating peace is gathered.
Description of drawings
Fig. 1 Radiation monitoring station owner looks outside drawing.
Fig. 2 radiation monitoring station is overlooked outside drawing.
Outside drawing is looked on Fig. 3 radiation monitoring station left side.
Outside drawing is looked on Fig. 4 radiation monitoring station right side.
Fig. 5 radiation monitoring station internal placement schematic top plan view.
Fig. 6 radiation monitoring station internal placement master looks synoptic diagram.
Synoptic diagram is looked on Fig. 7 super-flow automatic sampler layout left side
Fig. 8 radiation environment iodine automatic sampling device is arranged synoptic diagram.
Fig. 9 radiation environment iodine automatic sampling device structural representation.
Figure 10 iodine sampling apparatus synoptic diagram.
Figure 11 rectifier synoptic diagram.
Figure 12 integrated super-flow automatic sampler structural representation.
Figure 13 cabin synoptic diagram of sampling.
Embodiment
Present embodiment is in order to the explanation to the utility model claim, various changes that are different from present embodiment that those skilled in the art did and modification and do not break away from spirit and scope of the present utility model.Like this, if of the present utility model these are revised and modification belongs within the scope of the utility model claim and equivalent technologies thereof, then the utility model also is intended to comprise these changes and modification interior.
Shown in Fig. 1,2,3,4, the big plate of being made up of steel skeleton, aluminium alloy plate and polyurethane foam material etc. is spliced to form cabin body 100, and it is by top, cabin 101, and the bulkhead 103,104,105,106 and the bilge 102 constitute.Top, cabin 101, bulkhead 103,104,105 and 106 mating surface brushing fluid sealants, the angle press strip in the riveting dress shelter.The even brushing fluid sealant of surface of contact of the big plate in bound edge riveting dress forward position.
The bilge 102 is provided with floor, cabin rubber cushion, and material is the polyurethane Oil Resistant Rubber Plate, and on-the-spot whole pouring is shaped.Adhere to firmly, seamless, the rubber floor covering of on-the-spot integrated poured shaping is adopted on no press strip station floor, before pouring into a mould the station base plate is carried out leveling, guarantees that rubber face shaping back thickness is evenly smooth, adhere to firm, seamless, makes station reach beautiful and clean effect.The bilge is provided with built on stilts supporting leg 113 for 102 4 jiaos.
Two sealing hatch doors 107 are set on the bulkhead 103, promptly are provided with sealing strip between door and doorframe, they can guarantee the sealing of station effectively.
Bulkhead 105 is provided with conditioner 109 (air-conditioning).
The bulkhead 105 outer ladders 110 that are provided with lead to top, cabin 101.Top, cabin 101 is provided with flood level 114.
Automatic weather station 111 is located on the bulkhead 104.
In the present embodiment, the filter material cabin 325 that super-flow automatic sampler 300 is set on the bulkhead 104 is provided with hatch door 345.
High pressure ionization chamber 700 is located on the top, cabin; Be provided with temperature compensation means in it, high pressure ionization chamber 700 is detecting devicess, is used for continuously and in real time the radiant matter of atmospheric environment is surveyed and detected, and surveys, detects and monitor as media such as alpha ray, β ray and gamma-rays in the atmospheric environment.
Shown in Fig. 5,6, be provided with dividing plate 115 in the cabin body 100, the cabin body is divided into two cabins.A left side is provided with super-flow automatic sampler 300 in the cabin, is provided with main control computer device 200 in the right cabin, printing device 201, device 210 such as power, lightning protection, communication and monitoring and radiation environment iodine automatic sampling device 400.Devices 210 such as power, lightning protection, communication and monitoring comprise that power and supervising device 210 comprise the ups power 214 that support 211 is provided with from bottom to up on the support 211, the lightning-arrest and A/D of lightning protection, D/A conversion equipment 212, industrial computer 213; The controller 216 of super-flow automatic sampler and confession power distribution cabinet and communication apparatus 215.
As shown in Figure 7, bulkhead 106 is provided with gas outlet 112, and gas outlet 112 is connected UNICOM with the outlet pipe 303 of the exhaust end of the vacuum blower 301 of super-flow automatic sampler 300.
Radiation environment iodine automatic sampling device 400 is fixed on the dividing plate 115 shown in Fig. 5,8.
As shown in Figure 9, radiation environment iodine automatic sampling device 400 structures:
Radiation environment iodine automatic sampling device comprises housing, and housing is made of lower house 405 and upper shell 403; Be provided with vacuum blower 401 in the lower house 405, vacuum blower 401 connects admission line and gas outlet 406; Controller 404 is located at vacuum blower 401 belows or both sides.Connect hatch door 428 down on the lower house 405.
Upper shell 403 constitutes iodine sampling cabin 402 with dividing plate 407, and iodine sampling cabin 402 connects sealing hatch door 415.The iodine sampling is provided with Boolean value output sensor 409 in the cabin 402.The iodine sampling is established iodine sampling head 408 in the cabin 402.Iodine sampling head 408 and atmosphere UNICOM, i.e. iodine sampling cabin 402 and atmosphere UNICOM; Connect wind-guiding stream lead device 410 on the iodine sampling cabin 402, connect UNICOM's draft tube 411 on the last wind-guiding stream lead device 410, establish airscoop shroud 412 on the draft tube 411, establish air intake opening 413 between airscoop shroud 412 and the draft tube, last wind-guiding stream lead device is a cone.Airscoop shroud 412 is bearing on the draft tube 411 in the present embodiment, and forms air intake opening 413 between draft tube 411 openings; Airscoop shroud 412 tools are prevented the rainwater effect.
Iodine sampling head 408 is connected with iodine sampling head base pipe box 414.
The admission line of vacuum blower 401 comprises and is connected UNICOM's section 420 with vacuum blower, be connected the measurement standard pipeline section 421 of UNICOM with iodine sampling head base pipe box 414 by dividing plate 407, measurement standard pipeline section 421 is connected with vacuum blower and is connected with whole wave duct section 422 between UNICOM's section 420; Whole wave duct section 422 adopts flexible pipe, can reduce the influence of vacuum blower vibration to the sampling cabin effectively; Vacuum blower connects UNICOM's section 420 and plays the effect that vacuum blower connects base again; Vacuum blower connects between UNICOM's section and the whole wave duct section and is connected rectifier 423.
Measurement standard pipeline section 421 is provided with temperature sensor 424, humidity sensor 425 and examines device senses device 426 outward.Be connected with vacuum blower at iodine sampling head base pipe box 414 and be respectively equipped with flow sensor 427 on UNICOM's section 420.
Iodine sampling head 408 as shown in figure 10, establish iodine sampling apparatus 430 in the iodine sampling head, iodine sampling apparatus 430 comprises lower support cavity 431, iodine sampling carbon box 432 in the lower support cavity 431, lower support cavity 431 is provided with upper cavity 433, connect iodine sampling membrane device on the upper cavity 433, iodine sampling membrane device comprises that iodine sampling membrane 434 is that first order iodine filtering layer is the glass fiber filter paper layer, the top board 435 that is connected with upper cavity 433.Be divided into two-layerly in the carbon box 432, the upper strata is second level iodine filtering layer-activated charcoal filtering layer and lower floor's third level iodine filtering layer-Immesion active carbon filtering layer.Lower support cavity 431 bottoms are provided with the distinguished and admirable lead device 416 of following wind-guiding of back taper, and the distinguished and admirable lead device 416 of following wind-guiding is divided into sleeve pipe 417.
Sleeve pipe 417 is enclosed within the iodine sampling head base pipe box 414.Iodine sampling head base pipe box 414 is provided with taper rectification section 418, and iodine sampling head base pipe box 414 lower ends are provided with web joint 419, and web joint 419 is connected (not shown) by sealing gasket with dividing plate.
Rectifier 423 as shown in figure 11, comprise the sleeve pipe 440 that is enclosed within the vacuum blower connection UNICOM section 420, establish back taper commutator tube 441 on the sleeve pipe 440, establish whole wave duct section connector 442 on the back taper commutator tube 441, whole wave duct section connector outer wall is provided with vacuum blower and is connected UNICOM's section joint flange 443, and this structure realizes the variation (reducing) of the interior diameter of whole wave duct section connector 442 and sleeve pipe 440.Flange 443 is connected with vacuum blower establishes sealing gasket 444 between UNICOM's section 420.
Vacuum blower, vacuum pump connect admission line, iodine sampling head, following wind-guiding flow diverter and last wind-guiding stream lead device with the vertical axes setting.
Guarantee in the said structure that airborne particulate iodine, inorganic iodine and organic iodine particulate iodine are collected on the glass fiber filter paper, elemental iodine and non-element inorganic iodine mainly are collected on the activated charcoal filtering layer tube, and the plain organic iodine of negation element mainly is collected in the Immesion active carbon filtering layer.
As shown in figure 12, integrated super-flow automatic sampler structure:
Vacuum blower 301 adopts heavy load vacuum blower (P Int.max=20kPa, maximum flow is 1000m 3/ h).The control end of vacuum blower 301 connects frequency converter, can realize like this vacuum blower 301 variable frequency control, realizes the vacuum blower soft start, and has perfect defencive function.The inlet end of vacuum blower 301 connects admission line, and the exhaust end of vacuum blower 301 connects outlet pipe 303.
The entrance point of admission line connects atmospheric aerosol sampling cabin 320, and the atmospheric aerosol sampling is established atmospheric aerosol sampling by filtration device in the cabin 320, and atmospheric aerosol sampling top, cabin connects draft tube 321, and draft tube 321 ends connect airscoop shroud 322; Airscoop shroud 322 is bearing on the draft tube 321 in the present embodiment, and forms air intake opening 323 between draft tube 321 openings; Airscoop shroud 322 tools are prevented the rainwater effect.
Atmospheric aerosol sampling cabin 320 comprises air deflector 324, establishes the filter material cabin 325 that is communicated with it on the air deflector 324.
Air deflector 324 is up big and down small pipeline, and upper end and filter material cabin 325 connect, and lower end and admission line connect.Air deflector 324 forms the nozzle flow device.
Admission line comprises the airduct section 302 that is connected UNICOM with vacuum blower, is connected the measurement standard pipeline section 305 of UNICOM with air deflector, is connected UNICOM's rectifier 306 between airduct section 302 and the measurement standard pipeline section 305.Be connected with whole wave duct 307 between airduct section 302 and the vacuum blower 301, whole wave duct 307 adopts flexible pipe.
Measurement standard pipeline section 305 is provided with temperature sensor 310, humidity sensor 311 and outer checkout equipment sensor 312; Be respectively equipped with flow sensor 313 on airduct section 302 and the air deflector 307.
Air deflector 307 structures are identical with rectifier 423 structures, not tired stating.
Filter material cabin 325 as shown in figure 13, base plate 330 is established in bottoms in the filter material cabin 325, offers through hole 331 on the base plate 330, atmospheric aerosol sampling by filtration device 340 is located on the through hole.Atmospheric aerosol sampling by filtration device 340 comprises the lower filter screen frame 341 that is provided with filter screen 344, and lower filter screen frame 341 connects upward filtration rack 342, clamping sampling membrane 343 between lower filter screen frame 341 and the upward filtration rack 342.Filter material cabin 325 is provided with hatch door 345, and filter material cabin 325 is provided with Boolean value output sensor 346.Be provided with barometric pressure sensor 327 in the filter material cabin 325.The hole of filter screen 344 forms pod apertures.Atmospheric aerosol sampling by filtration device 340 fixed heads 329 are articulated and connected on the base plate 330.
Adopt the intelligent power electric power systems for power distribution cabinet 213, by the 220V civil power, leave civil power (2) interface, ups power, thunder resisting equipment etc. and forms the electricity consumption of confession station equipment.
The electric energy that online UPS provides in the intelligent power power supply terminus module is for the major equipment emergence power.
External civil power has priority function, and when civil power inserted, the intelligent power system changed automatically, guarantees that civil power preferentially powers.As need to reserve civil power (2) because of expansion, civil power (2) is automatic conversion power supply after civil power (1) outage, and the user can select the zero-time conversion, also can compatible power (this mark of civil power (2) does not require to be unworthy of).
Precision equipments such as computer are powered by UPS, and conventional equipment is directly powered.
Enlarging system is protected in the intelligent power power supply.
Share the power supply plate between them, a FA power supply smart power supply monitoring system is arranged himself, make it safe and reliable, reduce electromagnetic interference (EMI).
When civil power inserts, adopt special-purpose water-proof industry connector, be arranged on the shelter rear portion.

Claims (9)

1. examine and radiation monitoring station for one kind, it comprises nuclear and the radiation monitoring station cabin body that is connected and composed by big plate, the cabin body is pushed up by the cabin, the bulkhead and the bilge constitute, power, lightning protection, communication and supervising device, automatic weather station, the high pressure ionization chamber, the bilge is established built on stilts supporting leg, it is characterized in that a side is provided with super-flow automatic sampler in the body of cabin, the admission line of super-flow automatic sampler is located at the top, cabin and goes up the outside, and opposite side is provided with radiation environment iodine automatic sampling device in the body of cabin, and the rack of described power and supervising device is located at radiation environment iodine automatic sampling device one side; Be provided with the main control computer device in the cabin body between rack and super-flow automatic sampler; The draft tube of radiation environment iodine automatic sampling device is located at the top, cabin and goes up the outside, and the draft tube of super-flow automatic sampler is located at the top, cabin and goes up the outside; It is external that automatic weather station is located at the cabin, and the high pressure ionization chamber is located on the top, cabin.
2. examine according to claim 1 and radiation monitoring station, it is characterized in that being provided with dividing plate in the body of cabin, the cabin body is divided into two cabins, super-flow automatic sampler is located in the cabin, and the rack of main control computer device, radiation environment iodine automatic sampling device and power and supervising device is located in another cabin.
3. as nuclear and radiation monitoring station as described in the claim 2, it is characterized in that radiation environment iodine automatic sampling device is located on the dividing plate.
4. examine as claimed in claim 1 or 2 and radiation monitoring station, it is corresponding with two cabins to it is characterized in that being provided with on the bulkhead two sealing hatch doors.
5. examine according to claim 1 and radiation monitoring station, it is characterized in that super-flow automatic sampler comprises vacuum blower, vacuum blower connects admission line and outlet pipe, the entrance point of admission line connects atmospheric aerosol sampling cabin, the atmospheric aerosol sampling is established atmospheric aerosol sampling by filtration device in the cabin, sampling top, cabin connects draft tube, and the draft tube end connects airscoop shroud; Described atmospheric aerosol sampling cabin comprises air deflector, establishes the filter material cabin that is communicated with it on the air deflector, and base plate is established in the bottom in the filter material cabin, offers through hole on the base plate, and atmospheric aerosol sampling by filtration device is located on the through hole.
6. as nuclear and radiation monitoring station as described in the claim 5, it is characterized in that air deflector is up big and down small pipeline, upper end and filter material cabin connect, and lower end and admission line connect; Described admission line comprises the airduct section that is connected UNICOM with vacuum blower, is connected the measurement standard pipeline section of UNICOM with air deflector, is connected UNICOM's rectifier between airduct section and the measurement standard pipeline section.
7. as nuclear and radiation monitoring station as described in the claim 6, it is characterized in that described rectifier comprises the sleeve pipe that is enclosed within the airduct section, establish the commutator tube of back taper on the sleeve pipe, establish joint flange on the commutator tube.
8. examine according to claim 1 and radiation monitoring station, it is characterized in that radiation environment iodine automatic sampling device, it comprises main casing, be provided with vacuum blower in the main casing, vacuum blower connects admission line and gas outlet, control device connects iodine sampling cabin on the admission line, iodine sampling cabin comprises the sampling housing, the iodine sampling is established the iodine sampling head in the cabin, the iodine sampling head is connected UNICOM with admission line, establishes the iodine sampling apparatus in the iodine sampling head, iodine sampling head and atmosphere UNICOM, described iodine sampling apparatus comprises the lower support cavity, iodine sampling carbon box in the lower support cavity, the lower support cavity is provided with upper cavity, connects iodine sampling membrane device on the upper cavity.
9. as nuclear and radiation monitoring station as described in the claim 8, it is characterized in that described iodine sampling head with atmosphere UNICOM is: be connected wind-guiding stream lead device on the iodine sampling cabin, connect UNICOM's draft tube on the last wind-guiding stream lead device, establish airscoop shroud on the draft tube, establish air intake opening between airscoop shroud and the draft tube, described upward wind-guiding stream lead device is a cone, and iodine sampling cabin is provided with the sealing hatch door.
CN2010201073327U 2010-01-29 2010-01-29 Nuclear and radiation monitoring station Expired - Lifetime CN201681159U (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101788681B (en) * 2010-01-29 2013-04-10 北京华瑞核安科技有限公司 Nucleus and radiation monitoring station
CN104166154A (en) * 2014-06-26 2014-11-26 中国核电工程有限公司 PIG sampling and monitoring system and method
CN109752751A (en) * 2019-01-23 2019-05-14 成都理工大学 In air131I dynamic equilibrium monitoring device and monitoring method

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101788681B (en) * 2010-01-29 2013-04-10 北京华瑞核安科技有限公司 Nucleus and radiation monitoring station
CN104166154A (en) * 2014-06-26 2014-11-26 中国核电工程有限公司 PIG sampling and monitoring system and method
CN104166154B (en) * 2014-06-26 2017-02-15 中国核电工程有限公司 PIG sampling and monitoring system and method
CN109752751A (en) * 2019-01-23 2019-05-14 成都理工大学 In air131I dynamic equilibrium monitoring device and monitoring method

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Granted publication date: 20101222