CN216950484U - 40MW fire measurement and control system platform for rail vehicle - Google Patents

40MW fire measurement and control system platform for rail vehicle Download PDF

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Publication number
CN216950484U
CN216950484U CN202220596915.3U CN202220596915U CN216950484U CN 216950484 U CN216950484 U CN 216950484U CN 202220596915 U CN202220596915 U CN 202220596915U CN 216950484 U CN216950484 U CN 216950484U
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China
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smoke
water supply
fire
fire extinguishing
rail vehicle
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CN202220596915.3U
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杨晓菡
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Sichuan Fire Research Institute of Emergency Management Department
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Sichuan Fire Research Institute of Emergency Management Department
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02TCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO TRANSPORTATION
    • Y02T30/00Transportation of goods or passengers via railways, e.g. energy recovery or reducing air resistance

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Abstract

The utility model discloses a 40MW fire measurement and control system platform of a rail vehicle, which comprises a combustion space body, a smoke collection system arranged in the combustion space body, a rail vehicle arranged in the smoke collection system and used as a fire load, a smoke exhaust port and a smoke collection cover arranged on the smoke collection system, a smoke exhaust pipeline which is connected with the smoke collection cover and is provided with a smoke measurement section, a smoke sampling device arranged at the smoke measurement section of the smoke exhaust pipeline, a smoke exhaust fan arranged at the tail end of the smoke exhaust pipeline, a data acquisition and analysis device connected with the smoke sampling device, a display control terminal, a wall surface water spray cooling system and an emergency fire extinguishing system. The utility model realizes accurate collection and measurement of flue gas, reduces the influence of wall surface heat radiation on a test by arranging the wall surface water spray cooling system, and ensures the safety of test facilities and experimenters by arranging the emergency fire extinguishing system to carry out fire extinguishing operation when the fire is out of control.

Description

40MW fire measurement and control system platform for rail vehicle
Technical Field
The utility model belongs to the technical field of fire engineering, and particularly relates to a 40MW fire measurement and control system platform of a rail vehicle.
Background
With the development of the rail transportation industry and the storage industry in China and the continuous construction of highway tunnels, the fire hazard is increased, at present, China lacks basic data of the combustion heat release rate of rail transportation vehicles, storage places and highway tunnels, and needs to develop related experiments to obtain related combustion characteristic data to fill up the blank in China, and provides key parameters for the fire prevention and safety design of rail transportation vehicles, rail transportation tunnels, storage places and highway tunnels, but the heat release rate of the rail transportation vehicles, the storage fires and the tunnel fires can reach more than 20MW and far exceeds that of common building fires, a conventional fire experiment platform is difficult to accurately and quantitatively measure the heat release rate, so that the novel protection system design based on the rail transportation vehicles, the storage places and the highway tunnels and the requirement of basic data verification are met, a fire monitoring system platform of more than 20MW is required to be established.
In carrying out conflagration measurement and control system platform test process more than 20MW, owing to can not ensure that the flue gas is not excessive, can not realize the accurate collection of flue gas to the large-scale rail vehicle conflagration causes very strong heat radiation to combustion space, and this heat radiation can disturb the accurate survey that the heat releases, and in addition large-scale rail vehicle conflagration in case develops to out of control state, the intensity of a fire can stretch fast, can damage test device and endanger experimenter's safety.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defects in the prior art, the utility model provides a 40MW fire measurement and control system platform of a rail vehicle, which can accurately collect smoke, reduce the influence of wall surface heat radiation on a test, perform emergency heat extraction and smoke exhaust when the fire is too large, and perform emergency fire extinguishing operation when the fire is out of control.
In order to achieve the purpose, the technical scheme adopted by the utility model is as follows:
a40 MW fire measurement and control system platform of a rail vehicle comprises a combustion space body, a smoke collection system arranged in the combustion space body, a rail vehicle arranged in the smoke collection system and used as fire load, a smoke exhaust port arranged on the smoke collection system, a smoke collection hood arranged on the smoke exhaust port, a smoke exhaust pipeline connected with the smoke collection hood, a smoke measurement section arranged on the smoke exhaust pipeline, a smoke sampling device arranged on the smoke measurement section, a smoke exhaust fan arranged at the tail end of the smoke exhaust pipeline, a data acquisition and analysis device connected with the smoke sampling device, a display control terminal connected with the data acquisition and analysis device, a wall surface water spray cooling system and an emergency fire extinguishing system arranged in the combustion space body, wherein the smoke collection system comprises a smoke collection area body and a heat exhaust door arranged on one side of the smoke collection area body, the smoke blocking vertical wall is arranged on the other side of the smoke collecting area body, and the air supplementing machine is arranged below the smoke blocking vertical wall.
Furthermore, the heat and smoke exhaust door comprises a door body, a fixed steel column vertically arranged on the smoke collection area body, a core penetrating through shaft hinge arranged on the fixed steel column, a diagonal reinforcing rib arranged on the door body, and a push-pull control device arranged on the smoke collection area body and connected with the door body, wherein the door body is connected with the fixed steel column through the core penetrating through shaft hinge.
Furthermore, the smoke-blocking vertical wall comprises a scroll arranged on the smoke collection area body, a roller shutter wound on the scroll, and a rotation control device arranged on the smoke collection area body and connected with the scroll.
Furthermore, the wall surface water spray cooling system comprises a cooling water supply main pipe arranged in the combustion space body, a plurality of cooling water supply branch pipes connected with the cooling water supply main pipe, cooling spray heads connected to the cooling water supply branch pipes, and a cooling system valve device arranged on the cooling water supply main pipe.
Furthermore, the cooling water supply main pipe and the cooling water supply branch pipe are provided with a first channel steel bracket for supporting and fixing.
Further, the emergency fire extinguishing system comprises a fire extinguishing water supply main pipe arranged in the combustion space body, a plurality of fire extinguishing water supply branch pipes connected with the fire extinguishing water supply main pipe, fire extinguishing nozzles connected to the fire extinguishing water supply branch pipes, and fire extinguishing system valve devices arranged on the fire extinguishing water supply main pipe.
Furthermore, the fire extinguishing water supply main pipe and the fire extinguishing water supply branch pipe are provided with a second channel steel bracket for supporting and fixing.
Further, the flue gas sampling device comprises a thermocouple, a smoke density meter, a gas sampling probe and a gas differential pressure sensor which are all connected with the data acquisition and analysis device.
Compared with the prior art, the utility model has the following beneficial effects:
(1) the utility model realizes the accurate collection of the smoke by arranging the smoke collection system in the combustion space body, the smoke is sucked to the smoke collection cover through the smoke outlet and enters the smoke exhaust pipeline through the smoke collection cover by arranging the heat and smoke exhaust door, the smoke blocking vertical wall and the air supply machine, the smoke sampling device of the smoke measuring section samples the smoke and sends the collected sampling signal to the data acquisition and analysis device for analysis, the display control terminal displays the analysis result, thereby realizing the accurate measurement of the heat release rate, the wall surface water spray cooling system is arranged in the combustion space body, the cooling spray nozzle sprays water to the wall surface, the wall surface temperature is reduced, the influence of the wall surface heat radiation on the test is reduced, the emergency fire extinguishing system is arranged, when the fire in the rail vehicle is out of control, the fire extinguishing operation is carried out to the combustion object through the fire extinguishing spray nozzle, thereby ensuring the safety of test facilities and experimenters.
(2) The heat and smoke exhaust door comprises a door body, a fixed steel column, a core penetrating through shaft hinge, a diagonal reinforcing rib and a push-pull control device, a very stable structure is formed, smoke is well blocked in the smoke collection area body, the smoke is prevented from overflowing, meanwhile, when the fire is too large, the heat and smoke exhaust door is opened, high-temperature smoke can be rapidly exhausted, and the possibility that the high-temperature smoke damages experimental facilities is avoided.
(3) The smoke blocking vertical wall comprises a scroll, a rolling curtain and a rotation control device, and smoke is well blocked in the smoke collection area body, so that the smoke is prevented from overflowing.
(4) According to the utility model, the wall surface water spray cooling system is arranged, so that the wall surface temperature is reduced, the influence of wall surface heat radiation on a test is reduced, the accuracy and reliability of experimental data are ensured, and meanwhile, the support and fixation of the cooling water supply main pipe and the cooling water supply branch pipe are well realized by arranging the first channel steel bracket.
(5) According to the utility model, the emergency fire extinguishing system is arranged, when the fire is out of control, the valve device of the fire extinguishing system is opened, and the fire extinguishing operation is carried out by spraying water to the combustion object through the fire extinguishing nozzle, so that the safety of test facilities and test personnel is ensured, and meanwhile, the first channel steel bracket is arranged, so that the support and fixation of the cooling water supply main pipe and the cooling water supply branch pipe are well realized.
(6) The smoke sampling device comprises a thermocouple, a smoke density meter, a gas sampling probe and a gas differential pressure sensor, and related combustion data are obtained by detecting the temperature, the smoke density, the gas components and the gas differential pressure.
Drawings
Fig. 1 is a schematic diagram of the general structure of the measurement and control system platform of the present invention.
Fig. 2 is a schematic structural diagram of the smoke collecting system of the present invention.
FIG. 3 is a schematic view of the structure of the heat and smoke exhaust door of the present invention.
Fig. 4 is a schematic structural view of the smoke barrier of the present invention.
FIG. 5 is a schematic view of the wall spray cooling system of the present invention.
FIG. 6 is a schematic plan view of the water spray wall cooling system of the present invention.
Fig. 7 is a schematic view of an emergency fire suppression system of the present invention.
Fig. 8 is a schematic plan view of the emergency fire suppression system of the present invention.
In the drawings, the names of the parts corresponding to the reference numerals are as follows:
1-a combustion space body, 2-a smoke collecting system, 3-a smoke outlet, 4-a smoke collecting hood, 5-a smoke exhaust pipeline, 6-a smoke sampling device, 7-a smoke exhaust fan, 8-a wall surface water spray cooling system, 9-an emergency fire extinguishing system, 10-a data acquisition and analysis device, 11-a display control terminal, 12-a rail vehicle, 201-a smoke collecting area body, 202-a heat and smoke exhaust door, 203-a smoke blocking vertical wall, 204-a smoke supplementing fan, 501-a smoke measuring section, 601-a thermocouple, 602-a smoke density meter, 603-a gas sampling probe, 604-a gas differential pressure sensor, 202 a-a door body, 202 b-a fixed steel column, 202 c-a core through shaft hinge, 202 d-a diagonal reinforcing rib and 202 e-a push-pull control device, 203 a-scroll, 203 b-scroll, 203 c-rotation control device, 801-cooling water supply main pipe, 802-cooling water supply branch pipe, 803-cooling spray head, 804-cooling system valve device, 805-first channel steel bracket, 901-fire extinguishing water supply main pipe, 902-fire extinguishing water supply branch pipe, 903-fire extinguishing spray head, 904-fire extinguishing system valve device and 905-second channel steel bracket.
Detailed Description
The present invention is further illustrated by the following figures and examples, which include, but are not limited to, the following examples.
Examples
As shown in fig. 1 to 8, the present embodiment provides a 40MW fire measurement and control system platform of a rail vehicle, which includes a combustion space body 1, a smoke collection system 2, a rail vehicle 12, a smoke outlet 3, a smoke collection hood 4, a smoke exhaust pipe 5, a smoke measurement section 501, a smoke sampling device 6, a smoke exhaust fan 7, a data acquisition and analysis device 10, a display control terminal 11, a wall surface water spray cooling system 8, and an emergency fire extinguishing system 9, wherein the smoke collection system 2 includes a smoke collection area body 201, a heat extraction smoke exhaust door 202, a smoke blocking vertical wall 203, and a fan supplement 204, and the present embodiment can accurately collect smoke through a reasonable measurement and control system platform design, thereby realizing accurate measurement of combustion data, reducing the influence of wall surface heat radiation on a test, performing emergency smoke extraction when the fire is too large, and performing emergency fire extinguishing operation when the fire is out of control, and the rail vehicle 40MW fire measurement and control system platform has a very strong fire expansion performance, can make up according to actual demand and build, can adjust the size of collection cigarette system 2 capacity through the position setting to heat extraction discharge smoke door 202, fender cigarette vertical wall 203, can serve the multiple real fire simulation actual combat training demand of fire rescue team, fire measurement and control system platform in this embodiment is except being used for rail vehicle 12 fields, also can be used to fire scenes such as storage place and highway tunnel, judges for complex space fire risk and provides the ration foundation.
In this embodiment, heat extraction smoke exhaust door 202 includes door body 202a, fixed steel column 202b, wear the core to lead to axle hinge 202c, draw strengthening rib 202d to one side, push-and-pull control device 202e, wherein, door body 202a leads to axle hinge 202c through wearing the core and links to each other with fixed steel column 202b, very stable structure has been formed, block the flue gas well in collection smoke area body 201, the excessive of flue gas has been prevented, simultaneously when the intensity of a fire is too big, open heat extraction smoke exhaust door 202 and can discharge high temperature flue gas fast, avoid high temperature flue gas probably to cause the destruction to experimental facilities.
In this embodiment, the smoke barrier 203 comprises a roller 203a, a roller shutter 203b, and a rotation control device 203c, so as to block smoke in the smoke collection area 201 well and prevent the smoke from overflowing.
In this embodiment, the wall surface water spray cooling system 8 includes a main cooling water supply pipe 801, branch cooling water supply pipes 802, cooling nozzles 803, and a cooling system valve device 804, wherein the main cooling water supply pipe 801 is led from a main laboratory water supply pipe, the pipes are arranged along the length direction of the wall surface, then the main cooling water supply pipe 801 is vertically provided with a plurality of branch cooling water supply pipes 802, the branch cooling water supply pipes 802 are provided with the cooling nozzles 803, the cooling system valve device 804 is arranged on the main cooling water supply pipe 801, for safety, the cooling system valve device 804 is arranged in a safe area outside the combustion space body 1, when the temperature in the combustion space body 1 is too high, the cooling system valve device 804 is opened to spray water to the wall surface, for enhancing the cooling effect, the wall surface water spray cooling systems 8 are uniformly arranged on the left and right sides of the wall surface, and by providing the wall surface water spray cooling systems 8, the wall temperature is reduced, the influence of wall heat radiation on the test is reduced, and the accuracy and reliability of experimental data are ensured.
In this embodiment, the cooling water supply main pipe 801 and the cooling water supply branch pipe 802 are provided with the first channel steel bracket 805 for supporting and fixing, so that the cooling water supply main pipe 801 and the cooling water supply branch pipe 802 can be supported and fixed well, fire protection measures are taken for the cooling water supply main pipe 801, the cooling water supply branch pipe 802 and the first channel steel bracket 805 in consideration of special requirements for fire extinguishment and actual field conditions, for example, high-density aluminum silicate wool is wound on each surface, so as to ensure that the cooling water supply main pipe 801, the cooling water supply branch pipe 802 and the first channel steel bracket 805 are not damaged in a high-temperature state.
In this embodiment, emergent fire extinguishing systems 9 is including the water supply main pipe 901 of putting out a fire, water supply branch 902 of putting out a fire, the shower nozzle 903 of putting out a fire, fire extinguishing systems valve device 904, because the system water consumption is big, set up large-traffic water supply facility specially, set up the water supply pipe alone, the pipeline adopts seamless steel pipe and does fire protection, for the safety, fire extinguishing systems valve device 904 arranges in the safe area outside combustion space body 1, open fire extinguishing systems valve device 904 and supply water to the experimental area when confirming to supply water, for reinforcing fire suppression effect, establish emergent fire extinguishing systems 9 to rail vehicle 12's top and lateral part equipartition, when the intensity of a fire in rail vehicle 12 is out of control, spout the operation of putting out a fire to rail vehicle 12 through the shower nozzle 903 of putting out a fire simultaneously.
In this embodiment, the main pipe 901 of supplying water of putting out a fire and the branch pipe 902 of supplying water of putting out a fire are equipped with and are used for supporting fixed second channel-section steel support 905, realized well that the support to main pipe 901 of supplying water of putting out a fire and branch pipe 902 of supplying water of putting out a fire is fixed, consider the special requirement and the on-the-spot actual conditions of putting out a fire, main pipe 901 of supplying water of putting out a fire, branch pipe 902 of supplying water of putting out a fire, second channel-section steel support 905 all takes fire prevention protection measure, for example adopt the winding of high density aluminium silicate cotton on each surface, under the high temperature state in order to guarantee, main pipe 901 of supplying water of putting out a fire, branch pipe 902 of supplying water of putting out a fire, second channel-section steel support 905 does not receive the harm.
In this embodiment, the flue gas sampling device 6 includes a thermocouple 601, a smoke density meter 602, a gas sampling probe 603, and a gas differential pressure sensor 604, and detects temperature, smoke density, gas composition, and gas differential pressure to obtain related sampling signals, and the data acquisition and analysis device 10 performs online processing on each sampling signal to obtain various combustion data including heat release rate.
When the utility model is used, the smoke collection system 2 is arranged in the combustion space body, the smoke collection system 2 realizes accurate collection of smoke through arranging the heat and smoke exhaust door 202, the smoke blocking vertical wall 203 and the air supply fan 204, the smoke is sucked to the smoke collection hood 4 through the smoke exhaust port 3 and enters the smoke exhaust pipeline 5 through the smoke collection hood 4, the smoke sampling device 6 in the smoke exhaust pipeline 5 samples the smoke and sends the collected sampling signal to the data acquisition and analysis device 10 for analysis, the display control terminal 11 displays the analysis result, thereby realizing accurate measurement of the heat release rate, the wall surface water spray cooling system 8 is arranged in the combustion space body 1, the cooling spray nozzle 803 sprays water to the wall surface, the wall surface temperature is reduced, the influence of the wall surface heat radiation on the test is reduced, through arranging the emergency fire extinguishing system 9, when the fire in the rail vehicle 12 is out of control, the fire extinguishing operation is performed by spraying water to the combustion object through the fire extinguishing nozzle 903, so that the safety of test facilities and experimenters is ensured.
The above embodiments are only preferred embodiments of the present invention, and are not intended to limit the scope of the present invention, but all changes that can be made by applying the principles of the present invention and performing non-inventive work on the basis of the principles shall fall within the scope of the present invention.

Claims (8)

1. 40MW conflagration measurement and control system platform of rail vehicle, its characterized in that: including combustion space body (1), set up in collection cigarette system (2) in combustion space body (1), set up in as the track traffic tool (12) of conflagration load in collection cigarette system (2), set up in exhaust port (3) on collection cigarette system (2), set up in collection petticoat pipe (4) on exhaust port (3), with smoke exhaust pipe (5) that collection petticoat pipe (4) link to each other, set up in smoke gas measurement section (501) on the smoke exhaust pipe, set up in smoke gas sampling device (6) of smoke gas measurement section (501), set up in terminal smoke exhaust fan (7) of smoke exhaust pipe (5), with data acquisition and analytical equipment (10) that smoke gas sampling device (6) link to each other, with display control terminal (11) that data acquisition and analytical equipment (10) link to each other, and set up in wall water spray cooling system (8) in combustion space body (1), Emergent fire extinguishing systems (9), wherein, collection cigarette system (2) including collection cigarette district body (201), set up in heat extraction smoke exhaust door (202) of collection cigarette district body (201) one side, set up in the wall (203) that hangs down keeps off the cigarette of collection cigarette district body (201) opposite side, and set up in keep off cigarette and hang down supplementary fan (204) of wall (203) below.
2. The rail vehicle 40MW fire detection and control system platform of claim 1, wherein: the heat and smoke exhaust door (202) comprises a door body (202a), a fixed steel column (202b) vertically arranged on the smoke collection area body (201), a core penetrating through shaft hinge (202c) arranged on the fixed steel column (202b), a diagonal pulling reinforcing rib (202d) arranged on the door body (202a), and a push-pull control device (202e) arranged on the smoke collection area body (201) and connected with the door body (202a), wherein the door body (202a) is connected with the fixed steel column (202b) through the core penetrating through shaft hinge (202 c).
3. The rail vehicle 40MW fire detection and control system platform of claim 1, wherein: the smoke blocking vertical wall (203) comprises a scroll (203a) arranged on the smoke collection area body (201), a roller shutter (203b) wound on the scroll (203a), and a rotation control device (203c) arranged on the smoke collection area body (201) and connected with the scroll (203 a).
4. The rail vehicle 40MW fire detection and control system platform of claim 1, wherein: the wall surface water spray cooling system (8) comprises a cooling water supply main pipe (801) arranged in the combustion space body (1), a plurality of cooling water supply branch pipes (802) connected with the cooling water supply main pipe (801), cooling spray heads (803) connected to the cooling water supply branch pipes (802), and a cooling system valve device (804) arranged on the cooling water supply main pipe (801).
5. The rail vehicle 40MW fire detection and control system platform of claim 4, wherein: the cooling water supply main pipe (801) and the cooling water supply branch pipe (802) are provided with a first channel steel bracket (805) for supporting and fixing.
6. The rail vehicle 40MW fire detection and control system platform of claim 1, wherein: the emergency fire extinguishing system (9) comprises a fire extinguishing water supply main pipe (901) arranged in the combustion space body (1), a plurality of fire extinguishing water supply branch pipes (902) connected with the fire extinguishing water supply main pipe (901), fire extinguishing spray heads (903) connected to the fire extinguishing water supply branch pipes (902), and fire extinguishing system valve devices (904) arranged on the fire extinguishing water supply main pipe (901).
7. The rail vehicle 40MW fire detection and control system platform of claim 6, wherein: the fire extinguishing water supply main pipe (901) and the fire extinguishing water supply branch pipe (902) are provided with a second channel steel bracket (905) for supporting and fixing.
8. The rail vehicle 40MW fire detection and control system platform of claim 1, wherein: the flue gas sampling device (6) comprises a thermocouple (601), a smoke density meter (602), a gas sampling probe (603) and a gas differential pressure sensor (604), which are all connected with the data acquisition and analysis device (10).
CN202220596915.3U 2022-03-18 2022-03-18 40MW fire measurement and control system platform for rail vehicle Active CN216950484U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220596915.3U CN216950484U (en) 2022-03-18 2022-03-18 40MW fire measurement and control system platform for rail vehicle

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220596915.3U CN216950484U (en) 2022-03-18 2022-03-18 40MW fire measurement and control system platform for rail vehicle

Publications (1)

Publication Number Publication Date
CN216950484U true CN216950484U (en) 2022-07-12

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CN202220596915.3U Active CN216950484U (en) 2022-03-18 2022-03-18 40MW fire measurement and control system platform for rail vehicle

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