CN213518776U - Simulation chemical industry and scientific research platform - Google Patents

Simulation chemical industry and scientific research platform Download PDF

Info

Publication number
CN213518776U
CN213518776U CN202022930158.2U CN202022930158U CN213518776U CN 213518776 U CN213518776 U CN 213518776U CN 202022930158 U CN202022930158 U CN 202022930158U CN 213518776 U CN213518776 U CN 213518776U
Authority
CN
China
Prior art keywords
tank
simulation
pipeline
spherical
liquefied gas
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.)
Active
Application number
CN202022930158.2U
Other languages
Chinese (zh)
Inventor
汤士俊
陈建东
戚喜根
陈坤
朱荣来
周晓军
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.)
Shanghai Inguard Safety Equipment Co ltd
Original Assignee
Shanghai Inguard Safety Equipment 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 Shanghai Inguard Safety Equipment Co ltd filed Critical Shanghai Inguard Safety Equipment Co ltd
Priority to CN202022930158.2U priority Critical patent/CN213518776U/en
Application granted granted Critical
Publication of CN213518776U publication Critical patent/CN213518776U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Filling Or Discharging Of Gas Storage Vessels (AREA)

Abstract

The utility model provides a simulation chemical and scientific research platform, one end of a vault tank water inlet pipeline is communicated with a vault tank simulation tank body; the vault tank stop valve is connected with a vault tank water inlet pipeline; one end of the spherical tank water inlet pipeline is communicated with the spherical tank simulation tank body; the spherical tank stop valve is connected with a spherical tank water inlet pipeline; one end of a liquefied gas tank wagon water inlet pipeline is communicated with the liquefied gas tank wagon simulation wagon body; the liquefied gas tank wagon stop valve is connected with a liquefied gas tank wagon water inlet pipeline; the air inlet of the inflation branch is communicated with the air inlet main pipeline; the air outlet of the inflation branch is connected with the corresponding composite air bottle; the tank car main stop valve is connected with the air inlet main pipeline. The device has the advantages that the device simulates various chemical engineering occasions, chemical leakage processes, and trains firefighters of emergency ability, field leakage plugging ability, field operation tension psychology, introduction of chemical product structures and the like; improve the psychological quality of the fighters, overcome psychological obstacles and improve actual combat skills.

Description

Simulation chemical industry and scientific research platform
Technical Field
The utility model relates to a gas analyzer, in particular to simulation chemical industry and scientific research platform.
Background
In recent years, with the rapid development of petrochemical industry, the accident course of chemical pressure vessels, pipelines and dangerous chemicals road transportation is on the rise, and the accidents bring serious threats and losses to the safety of lives and properties of people. Due to the large harm, wide influence range and high requirement on the professional technology of disposal of the chemical accidents, the special fire rescue training for the chemical pressure containers, the pipelines and the chemical transportation accidents is very important.
At present, chemical fire drill works mainly borrow site equipment of the existing chemical groups or chemical transport tank cars of other companies, so that normal production work of other people is influenced, and resource consumption is increased.
SUMMERY OF THE UTILITY MODEL
The utility model provides a simulation chemical industry and scientific research platform, which adopts the modular design according to the basic configuration of the chemical industry device and in combination with the requirement characteristics of the training platform, and can be used for training independently and optionally in a combined way; the modularized training is convenient for subsequent maintenance and extending new training subjects; the leakage stoppage training work of the chemical device can be unfolded, and the teaching display can be realized; to overcome the disadvantages of the prior art.
The utility model provides a simulation chemical industry and scientific research platform, include: the device comprises a support frame 3, a vault tank simulation assembly, a spherical tank simulation assembly, a liquefied gas tank car simulation assembly and a tank car simulation assembly 6; the vault tank simulation assembly comprises a vault tank simulation tank body 1, a vault tank stop valve 1-3 and a vault tank water inlet pipeline 1-4; the arch top tank simulation tank body 1 is fixed on the support frame 3; the arch top tank simulates a tank body 1; one end of a water inlet pipeline 1-4 of the arch top tank is communicated with the arch top tank simulation tank body 1; the vault tank stop valve 1-3 is connected with the vault tank water inlet pipeline 1-4; the spherical tank simulation assembly comprises a spherical tank simulation tank body 2, a spherical tank stop valve 2-2, a spherical tank water inlet pipeline 2-3, a spherical tank ball valve 2-4 and a spherical tank spray pipeline 2-5; the spherical tank simulation tank body 2 is fixed on the support frame 3; one end of the spherical tank water inlet pipeline 2-3 is communicated with the spherical tank simulation tank body 2; the spherical tank stop valve 2-2 is connected with a spherical tank water inlet pipeline 2-3; the spherical tank spraying pipeline 2-5 is communicated with the spherical tank simulation tank body 2; the spherical tank ball valve 2-4 is connected with the spherical tank spraying pipeline 2-5; the liquefied gas tank wagon simulation component comprises a liquefied gas tank wagon simulation vehicle body 5, a liquefied gas tank wagon water inlet pipeline 5-4 and a liquefied gas tank wagon stop valve 5-3; the simulated liquefied gas tank truck body 5 is fixed on the support frame 3; one end of a liquefied gas tank wagon water inlet pipeline 5-4 is communicated with a liquefied gas tank wagon simulation wagon body 5; the liquefied gas tank wagon stop valve 5-3 is connected with a liquefied gas tank wagon water inlet pipeline 5-4; the tank truck simulation assembly 6 comprises a plurality of composite gas cylinders 6-7, a gas inlet main pipeline 6-1, a plurality of gas charging branches, a gas exhaust main pipeline 6-8 and a tank truck main stop valve 6-2; the composite gas cylinder 6-7 is fixed on the support frame 3; the number of the inflation branches is the same as that of the composite gas cylinders 6-7, and the inflation branches correspond to the composite gas cylinders one by one; the air inlet of the inflation branch is communicated with the air inlet main pipeline 6-1; the air outlet of the inflation branch is communicated with the corresponding composite gas bottle 6-7 or the exhaust main pipeline 6-8; the tank truck main stop valve 6-2 is connected with the air inlet main pipeline 6-1.
Further, the utility model provides a simulation chemical industry and scientific research platform can also have such characteristic: each inflation branch comprises a tank car four-way 6-4; 6-3 parts of a tank car stop valve, 6-9 parts of a tank car ball valve and 6-6 parts of a safety valve; one path of the tank car four-way joint 6-4 is communicated with an air inlet main pipeline 6-1, and a tank car stop valve 6-3 is connected with the path; one path of the tank car four-way joint 6-4 is communicated with the corresponding composite gas cylinder 6-7; one path of the tank car four-way joint 6-4 is communicated with an exhaust main pipeline 6-8, and a tank car ball valve 6-9 is connected with the path; the remaining one path of the four-way joint 6-4 of the tank car is connected with a safety valve 6-6.
Further, the utility model provides a simulation chemical industry and scientific research platform can also have such characteristic: the pipelines among the air inlet main pipeline 6-1, the air charging branch and the air exhaust main pipeline 6-8 are connected by a pipe joint 6-5.
Further, the utility model provides a simulation chemical industry and scientific research platform can also have such characteristic: the arch top tank simulation tank body 1 is provided with an exhaust valve 1-1; and/or the liquefied gas tank car simulation car body 5 is provided with a breather valve 5-1 and/or a liquid level meter 5-2.
Further, the utility model provides a simulation chemical industry and scientific research platform can also have such characteristic: the arch crown tank simulation tank body 1, the liquefied gas tank wagon simulation vehicle body 5 and/or the tank wagon simulation assembly 6 are/is provided with a pressure gauge.
Further, the utility model provides a simulation chemical industry and scientific research platform can also have such characteristic: and part of the communication positions are in non-sealing connection, and part of the connection positions are in non-sealing connection.
Further, the utility model provides a simulation chemical industry and scientific research platform can also have such characteristic: the arch crown tank simulation tank body 1, the spherical tank simulation tank body 2, the liquefied gas tank car simulation vehicle body 5 and the composite gas cylinders 6-7 are provided with a plurality of leakage points.
Further, the utility model provides a simulation chemical industry and scientific research platform can also have such characteristic: any one or more of the arch crown tank simulation assembly, the spherical tank simulation assembly and the liquefied gas tank wagon simulation assembly is provided with any one or more of an access hole, a vertical ladder and an access platform.
Further, the utility model provides a simulation chemical industry and scientific research platform can also have such characteristic: a smoking assembly 4; the smoke generating component is fixed on the support frame 3.
Further, the utility model provides a simulation chemical industry and scientific research platform can also have such characteristic: the smoke generating component 4 comprises a smoke generator 4-1 and a smoke conveying pipeline 4-2; the smoke conveying pipeline 4-2 is fixed on the support frame 3; the smoke conveying pipeline 4-2 is provided with a plurality of smoke outlets; the smoke conveying pipeline 4-2 is communicated with the smoke generator 4-1.
The utility model provides a simulation chemical and scientific research platform, which simulates various chemical occasions, chemical leakage process, emergency ability of firemen, field leakage plugging ability, field operation tension psychology, introduction of chemical product structures and the like; improve the psychological quality of the fighters, overcome psychological obstacles and improve actual combat skills.
Drawings
FIG. 1 is a top view of an exemplary simulation and research platform.
FIG. 2 is a front view of the simulation chemical and scientific platform in the embodiment.
FIG. 3 is a right side view of the simulation, chemical and scientific platform in an embodiment.
FIG. 4 is a front view of a liquefied gas tank wagon simulator assembly in an embodiment.
FIG. 5 is a left side view of the liquefied gas tank wagon simulator assembly in the embodiment.
Detailed Description
The invention is further described with reference to the accompanying drawings and specific embodiments.
Examples
FIG. 1 is a schematic structural diagram of a simulation chemical and scientific research platform in an embodiment.
As shown in fig. 1, the simulation chemical and scientific research platform in this embodiment includes: the support frame 3, the arch crown tank simulation assembly, the spherical tank simulation assembly, the liquefied gas tank wagon simulation assembly, the tank wagon simulation assembly 6 and the smoke generating assembly 4.
In this embodiment, the dome can simulation subassembly includes: the device comprises a vault tank simulation tank body 1, vault tank stop valves 1-3, vault tank water inlet pipelines 1-4, vault tank access holes 1-5 and vault tank vertical ladders 1-6.
The arch top tank simulation tank body 1 is fixed on the support frame 3. The upper end of the arch top tank simulation tank body 1 is provided with an exhaust valve 1-1, and the middle part is provided with an arch top tank pressure gauge 1-2. One end of a water inlet pipeline 1-4 of the arch top tank is communicated with the arch top tank simulation tank body 1; the other end can be connected with a quick connector to be connected with a municipal fire hydrant system or a fire engine to supply water. And the vault tank stop valve 1-3 is connected with the vault tank water inlet pipeline 1-4. And the vault tank access hole 1-5 is formed in the top of the vault tank simulation tank body 1. The vault tank vertical ladder 1-6 is fixed on the vault tank simulation tank body 1, and maintenance operation is facilitated.
In this embodiment, the spherical tank simulation subassembly includes: the device comprises a spherical tank simulation tank body 2, a spherical tank access hole 2-1, a spherical tank stop valve 2-2, a spherical tank water inlet pipeline 2-3, a spherical tank ball valve 2-4, a spherical tank spray pipeline 2-5, a spherical tank vertical ladder and an operation platform 2-6.
The spherical tank simulation tank body 2 is fixed on the support frame 3; one end of the spherical tank water inlet pipeline 2-3 is communicated with the spherical tank simulation tank body 2; the other end can be connected with a quick connector to be connected with a municipal fire hydrant system or a fire engine to supply water. The spherical tank stop valve 2-2 is connected with a spherical tank water inlet pipeline 2-3; the spherical tank spraying pipeline 2-5 is communicated with the spherical tank simulation tank body 2; the spherical tank ball valve 2-4 is connected with the spherical tank spraying pipeline 2-5. The spherical tank access hole 2-1 is arranged at the top of the spherical tank simulation tank body 2. The vertical ladder of the spherical tank and the operation platform 2-6 are fixed on the spherical tank simulation tank body 2, so that the maintenance operation is convenient.
In this embodiment, liquefied gas tank wagon simulation subassembly includes: the liquefied gas tank wagon simulation vehicle body 5, the liquefied gas tank wagon water inlet pipeline 5-4, the liquefied gas tank wagon stop valve 5-3, the liquefied gas tank wagon inspection hole 5-5 and the liquefied gas tank wagon inspection platform 5-7.
The simulated vehicle body 5 of the liquefied gas tank wagon is fixed on the support frame 3. The top of the simulated vehicle body 5 of the liquefied gas tank wagon is provided with a breather valve 5-1, and the front side is provided with a liquid level meter 5-2 and a liquefied gas tank wagon pressure gauge 5-6. One end of a liquefied gas tank wagon water inlet pipeline 5-4 is communicated with a liquefied gas tank wagon simulation wagon body 5; the other end can be connected with a quick connector to be connected with a municipal fire hydrant system or a fire engine to supply water. The liquefied gas tank wagon stop valve 5-3 is connected with a liquefied gas tank wagon water inlet pipeline 5-4. The liquefied gas tank car access hole 5-5 is arranged at the top of the liquefied gas tank car simulation car body 5. The liquefied gas tank car maintenance platform 5-7 is fixed on the liquefied gas tank car simulation car body 5, and maintenance operation is convenient.
In this embodiment, the tank wagon simulation module 6 includes: 6-7 composite gas cylinders, 6-1 air inlet main pipeline, 4 air charging branch pipelines, 6-8 exhaust main pipeline and 6-2 tank truck main stop valve;
the compound gas cylinder 6-7 is fixed on the support frame 3. The air inlet of the inflation branch is communicated with the air inlet main pipeline 6-1. The tank truck main stop valve 6-2 is connected with the air inlet main pipeline 6-1. The air inlet main pipeline 6-1 is communicated with the four air charging branches through a four-way joint.
The number of the inflation branches is the same as that of the composite gas cylinders 6-7, and the inflation branches correspond to the composite gas cylinders one by one. Each inflation branch comprises: 6-4 parts of a tank car cross; 6-3 parts of tank car stop valve, 6-9 parts of tank car ball valve, 6-6 parts of safety valve, 6-5 parts of cutting sleeve type pipe joint and 6-11 parts of tank car pressure gauge.
One path of the tank car four-way joint 6-4 of each inflation branch is communicated with the air inlet main pipeline 6-1, and the tank car stop valve 6-3 is connected with the path. One path of the tank car four-way joint 6-4 is communicated with a corresponding composite gas bottle 6-7 through a ferrule type pipe joint 6-5. One path of the tank car four-way joint 6-4 is communicated with an exhaust main pipeline 6-8 through a tank car ball valve 6-9. The remaining one path of the four-way joint 6-4 of the tank car is connected with a safety valve 6-6. The tank truck pressure gauge 6-11 is arranged on the air inlet main pipeline 6-1.
The positions of the pipeline connection, the positions of the inspection covers and the positions of the measuring instruments in the arch crown tank simulation assembly, the spherical tank simulation assembly, the liquefied gas tank wagon simulation assembly and the tank wagon simulation assembly 6 can realize sealing connection, and during testing, the sealing parts of the tank wagon simulation assembly can be randomly taken out or damaged, or the connectors can be unscrewed to form leakage points. In addition, the vault tank simulation tank body 1, the spherical tank simulation tank body 2, the liquefied gas tank car simulation vehicle body 5 and the composite gas cylinders 6-7 can be randomly perforated to form leakage points. The leakage points on the tank body can be welded and sealed or sealed by adopting a sealing device, and other leakage points are opened in the next test.
The smoke generating component is fixed on the support frame 3. The smoke generating component 4 comprises a smoke generator 4-1 and a smoke conveying pipeline 4-2; the smoke conveying pipeline 4-2 is fixed on the support frame 3; the smoke conveying pipeline 4-2 is provided with a plurality of smoke outlets; the smoke conveying pipeline 4-2 is communicated with the smoke generator 4-1. The smoke generator 4-1 can adopt a smoke bomb burning mode, and the smoke generated is emitted to the lower end of the support frame 3 through the gas transmission pipeline 4-2, so that the scene of a simulated rescue scene is achieved, and the test difficulty is increased.
The working principle of the chemical engineering and scientific research platform is simulated.
The vault tank simulation assembly is connected with a municipal fire hydrant system or a fire engine for water supply through a quick connector at the end part of a vault tank water inlet pipeline 1-4, a vault tank stop valve 1-3 is opened to input tap water of 0.3Mpa, an exhaust valve 1-1 is opened at the moment, and after the tank body is filled with the tap water, leakage points can be opened on the tank body, a pipeline and the stop valve to simulate leakage stoppage operation. And the vertical ladder can climb to the top end to simulate a leaking stoppage access hole and the like.
The spherical tank simulation assembly is connected with a municipal fire hydrant system or a fire engine for water supply through a spherical tank water inlet pipeline 2-3, a quick connector at the end part is connected with the municipal fire hydrant system or the fire engine for water supply, a spherical tank stop valve 2-2 is opened, tap water of 0.3Mpa is input, a spherical tank ball valve 2-4 can be opened at the moment, and the tap water input into a spherical tank spray pipeline 2-5 is sprayed to a spherical tank body to simulate a self-spray system. The climbing operation can be carried out through the vertical ladder and the operation platform 2-6, and the leaking stoppage access hole 2-1 and the like are simulated.
The liquefied gas tank wagon simulation assembly is connected with a municipal fire hydrant system or a fire engine for supplying water through a liquefied gas tank wagon water inlet pipeline 5-4, a quick connector at the end part is connected with the municipal fire hydrant system or the fire engine for supplying water, a liquefied gas tank wagon stop valve 5-3 is opened, tap water of 0.3Mpa is input, at the moment, a liquid level meter 5-2 and a pressure gauge 5-4 are used for displaying relevant liquid level and pressure conditions, the damaged points of a tank body and a pipeline begin to leak, and the top leakage stopping work can be carried out by climbing an overhaul platform 5-7 with the help of.
The tank car simulation assembly 6 inputs about 0.7Mpa medium-pressure gas through an air inlet main pipeline 6-1, at the moment, a pressure gauge 6-11 displays a corresponding pressure value, a tank car main stop valve 6-2 and four tank car stop valves 6-3 are opened, the medium-pressure gas is input into a composite gas cylinder 6-7 through a ferrule type pipe joint 6-5 through a tank car four-way valve 6-4, one way of the medium-pressure gas is input into a safety valve 6-6 for protection, and the other way of the medium-pressure gas is input into an exhaust main pipeline 6-8 through a tank car ball valve 6-9 and is discharged into the atmosphere.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (10)

1. A simulation chemical industry and scientific research platform which is characterized in that: comprises a supporting frame (3), a vault tank simulation component, a spherical tank simulation component, a liquefied gas tank car simulation component and a tank car simulation component (6);
the vault tank simulation assembly comprises a vault tank simulation tank body (1), a vault tank stop valve (1-3) and a vault tank water inlet pipeline (1-4);
the arch top tank simulation tank body (1) is fixed on the support frame (3); the arch top tank simulates a tank body (1); one end of the water inlet pipeline (1-4) of the arch top tank is communicated with the arch top tank simulation tank body (1); the vault tank stop valve (1-3) is connected with the vault tank water inlet pipeline (1-4);
the spherical tank simulation assembly comprises a spherical tank simulation tank body (2), a spherical tank stop valve (2-2), a spherical tank water inlet pipeline (2-3), a spherical tank ball valve (2-4) and a spherical tank spray pipeline (2-5);
the spherical tank simulation tank body (2) is fixed on the support frame (3); one end of the spherical tank water inlet pipeline (2-3) is communicated with the spherical tank simulation tank body (2); the spherical tank stop valve (2-2) is connected with the spherical tank water inlet pipeline (2-3); the spherical tank spraying pipeline (2-5) is communicated with the spherical tank simulation tank body (2); the spherical tank ball valve (2-4) is connected with the spherical tank spraying pipeline (2-5);
the liquefied gas tank wagon simulation assembly comprises a liquefied gas tank wagon simulation vehicle body (5), a liquefied gas tank wagon water inlet pipeline (5-4) and a liquefied gas tank wagon stop valve (5-3);
the liquefied gas tank car simulation car body (5) is fixed on the support frame (3); one end of the liquefied gas tank car water inlet pipeline (5-4) is communicated with the liquefied gas tank car simulation car body (5); the liquefied gas tank wagon stop valve (5-3) is connected with the liquefied gas tank wagon water inlet pipeline (5-4);
the tank truck simulation assembly (6) comprises a plurality of composite gas cylinders (6-7), a gas inlet main pipeline (6-1), a plurality of gas charging branches, a gas exhaust main pipeline (6-8) and a tank truck main stop valve (6-2);
the composite gas cylinder (6-7) is fixed on the support frame (3); the number of the inflation branches is the same as that of the composite gas cylinders (6-7), and the inflation branches correspond to the composite gas cylinders one by one; the air inlet of the inflation branch is communicated with the air inlet main pipeline (6-1); the air outlet of the inflation branch is communicated with the corresponding composite gas bottle (6-7) or the exhaust main pipeline (6-8); the tank car main stop valve (6-2) is connected with the air inlet main pipeline (6-1).
2. The simulated chemical and scientific research platform as claimed in claim 1, wherein:
wherein each inflation branch comprises a tank car four-way joint (6-4); a tank car stop valve (6-3), a tank car ball valve (6-9) and a safety valve (6-6);
one path of the tank car four-way joint (6-4) is communicated with the air inlet main pipeline (6-1), and the tank car stop valve (6-3) is connected with the path;
one path of the tank car four-way joint (6-4) is communicated with the corresponding composite gas cylinder (6-7);
one path of the tank car four-way joint (6-4) is communicated with the exhaust main pipeline (6-8), and the tank car ball valve (6-9) is connected with the path;
the remaining one path of the tank truck four-way joint (6-4) is connected with the safety valve (6-6).
3. The simulated chemical and scientific research platform as claimed in claim 2, wherein:
the pipelines among the air inlet main pipeline (6-1), the air charging branch and the air exhaust main pipeline (6-8) are connected by pipe joints (6-5).
4. The simulated chemical and scientific research platform as claimed in claim 1, wherein:
wherein the arch top tank simulation tank body (1) is provided with an exhaust valve (1-1);
and/or the liquefied gas tank car simulation car body (5) is provided with a breather valve (5-1) and/or a liquid level meter (5-2).
5. The simulated chemical and scientific research platform as claimed in claim 1, wherein:
the arch crown tank simulation tank body (1), the liquefied gas tank car simulation vehicle body (5) and/or the tank car simulation assembly (6) are/is provided with a pressure gauge.
6. The simulated chemical and scientific platform as claimed in any one of claims 1 to 5, wherein:
wherein, part of the communication positions are in non-sealing connection, and part of the connection positions are in non-sealing connection.
7. The simulated chemical and scientific platform as claimed in any one of claims 1 to 5, wherein:
the arch crown tank simulation tank body (1), the spherical tank simulation tank body (2), the liquefied gas tank car simulation vehicle body (5) and the composite gas cylinder (6-7) are provided with a plurality of leakage points.
8. The simulated chemical and scientific platform as claimed in any one of claims 1 to 5, wherein:
wherein, any one or more of the arch crown tank simulation assembly, the spherical tank simulation assembly and the liquefied gas tank wagon simulation assembly is provided with any one or more of an access hole, a vertical ladder and an access platform.
9. The simulated chemical and scientific platform as claimed in any one of claims 1 to 5, wherein:
further comprising a smoking assembly (4); the smoking assembly is fixed on the support frame (3).
10. The simulated chemical and scientific research platform as claimed in claim 9, wherein:
wherein the smoking assembly (4) comprises a smoking device (4-1) and a smoke conveying pipeline (4-2);
the smoke conveying pipeline (4-2) is fixed on the support frame (3);
the smoke conveying pipeline (4-2) is provided with a plurality of smoke outlets;
the smoke conveying pipeline (4-2) is communicated with the smoke generator (4-1).
CN202022930158.2U 2020-12-09 2020-12-09 Simulation chemical industry and scientific research platform Active CN213518776U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022930158.2U CN213518776U (en) 2020-12-09 2020-12-09 Simulation chemical industry and scientific research platform

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022930158.2U CN213518776U (en) 2020-12-09 2020-12-09 Simulation chemical industry and scientific research platform

Publications (1)

Publication Number Publication Date
CN213518776U true CN213518776U (en) 2021-06-22

Family

ID=76426983

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022930158.2U Active CN213518776U (en) 2020-12-09 2020-12-09 Simulation chemical industry and scientific research platform

Country Status (1)

Country Link
CN (1) CN213518776U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113706957A (en) * 2021-08-27 2021-11-26 中国救援广东机动专业支队 Mobile simulation chemical treatment simulation training device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113706957A (en) * 2021-08-27 2021-11-26 中国救援广东机动专业支队 Mobile simulation chemical treatment simulation training device

Similar Documents

Publication Publication Date Title
CN201439012U (en) Mobile fire simulation training device
CN206194178U (en) Leaking stoppage trainer
CN103745625B (en) A kind of emergency leakage blocking simulated fire fighting training device with pressure
CN213518776U (en) Simulation chemical industry and scientific research platform
CN206162920U (en) Dangerization article tank wagon trainer
CN203433733U (en) Simulation apparatus for chemical disaster accident
Ordin Review of hydrogen accidents and incidents in NASA operations
CN109658799A (en) Emergency leakage blocking simulated fire fighting training device with pressure
KR102387676B1 (en) Fluid leak response training method
CN104500977A (en) Test system for pipeline maintenance and repair technology
CN206075695U (en) A kind of transparent emulation dangerous materials groove tank car teaching simulating device
CN103810916A (en) Fire-fighting leakage training experiment device
CN204463661U (en) Portable leakage blockage simulation training facilities
CN215770129U (en) Mobile simulation chemical treatment simulation training device
CN208538392U (en) Comprehensive experimental system for oil and gas pipelines based on safety detection
CN203706478U (en) Emergent leaking stoppage fire fighting simulation training apparatus with pressure
CN109165880A (en) A kind of LNG receiving station accident emergency drilling simulation system and analogy method
CN114566072A (en) Blowout emergency drilling simulation system
RU2279140C1 (en) Device for training specialists in removal of gas leaks from gas pipelines
CN107944675A (en) Display methods and device are deduced in explosion accident simulation based on GIS-Geographic Information System
CN208460293U (en) Dangerous chemical leakage leak stopping training device
KR102348761B1 (en) Fluid discharge apparatus for fluid leak response training
CN113706957B (en) A mobile simulated chemical disposal simulation training device
KR102348753B1 (en) Fluid discharge kit for fluid leak response training
RU203044U1 (en) Nozzles with foam generators for auto-mechanical fire escape

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant