Firefighting equipment

The fire extinguishing system addresses the complexity and space constraints of conventional facilities by using a simplified design with a through-hole and sealing plate to prevent agent leakage, ensuring effective and easy operation.

JP7832071B2Active Publication Date: 2026-03-17NIPPON DRY CHEM CO LTD
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2022-08-02
Publication Date
2026-03-17

AI Technical Summary

Technical Problem

Conventional package type fire extinguishing facilities face complications due to their complex structure, which leads to high costs and limited installation space, and are prone to extinguishing agent leakage due to temperature fluctuations.

Method used

A fire extinguishing system with a simplified configuration that includes a gas container, fire extinguishing agent container, first and second pipes, and a sealing plate, where the second pipe has a through-hole and a sealing plate that opens to release extinguishing agent when pressure increases, preventing leakage and allowing ample space for installation.

Benefits of technology

The system effectively prevents extinguishing agent leakage due to temperature rise while providing a user-friendly, cost-effective solution with ample space for installation and easy operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a fire fighting facility with a simple configuration capable of preventing leakage of a fire extinguishing agent due to a rise in temperature.SOLUTION: A fire fighting facility 1 includes: a gas container 3; a fire extinguishing agent container 5; a first pipeline 7 for supplying pressurized gas from the gas container 3 inside the fire extinguishing agent container 5; an opening / closing valve 9 for opening / closing a flow channel of the first pipeline 7; a second pipeline 11 for discharging a fire extinguishing agent 15 inside the fire extinguishing agent container 5; and a through-hole 21 provided in the second pipeline 11 so as to penetrate a thick part positioned in an upper gas space 17 of the second pipeline 11. The fire extinguishing agent 15 is discharged through the second pipeline 11 in a state that the opening / closing valve 9 is opening the flow channel of the first pipeline 7.SELECTED DRAWING: Figure 7
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Description

Technical Field

[0001] The present invention relates to a fire extinguishing facility (package type fire extinguishing facility) including a gas container into which pressurized gas is introduced and a fire extinguishing agent container into which a fire extinguishing agent is introduced.

Background Art

[0002] Conventionally, a package type fire extinguishing facility including a gas container into which pressurized gas is introduced and a fire extinguishing agent container into which a fire extinguishing agent is introduced has been known (see Patent Document 1). In the conventional package type fire extinguishing facility, high-pressure gas is supplied from the gas container to the fire extinguishing agent container, and the fire extinguishing agent in the fire extinguishing agent container is discharged into the atmosphere.

[0003] The package type fire extinguishing facility is a stationary facility. In a conventional package type fire extinguishing facility (a general package type fire extinguishing facility other than those described in Patent Document 1), due to an increase in the ambient temperature, the pressure of the air and the fire extinguishing agent in the fire extinguishing agent container increases, and there is a risk that the fire extinguishing agent may leak to the outside. As a countermeasure, the installation location of the package type fire extinguishing facility may be a place where temperature fluctuations are relatively small. On the other hand, in the package type fire extinguishing facility described in Patent Document 1, by providing a bypass pipe and a valve, leakage of the fire extinguishing agent due to temperature rise is prevented.

Prior Art Documents

Patent Documents

[0004]

Patent Document 1

Summary of the Invention

Problems to be Solved by the Invention

[0005] By the way, in the conventional package type fire extinguishing facility, since a bypass pipe and a valve are provided, the structure is complicated. As a result, the conventional package type fire extinguishing facility is expensive, and in the housing of the conventional package type fire extinguishing facility, the installation space for piping, devices, etc. is compressed.

[0006] The present invention aims to provide a user-friendly fire extinguishing system with a simple configuration that can prevent leakage of the extinguishing agent due to temperature rise, and allows for ample space within the housing of a packaged fire extinguishing system. [Means for solving the problem]

[0007] A fire extinguishing system according to an aspect of the present invention includes a gas container into which pressurized gas enters an internal space, a fire extinguishing agent container into which a fire extinguishing agent enters the internal space such that an upper gas space is formed in the upper part of the internal space where gas is present, a first pipe connecting the internal space of the gas container and the internal space of the fire extinguishing agent container for supplying pressurized gas from the gas container to the internal space of the fire extinguishing agent container, an on / off valve for opening and closing the flow path of the first pipe, and a system for discharging the fire extinguishing agent from the internal space of the fire extinguishing agent container and the outside of the fire extinguishing agent container. The fire extinguishing system is configured such that the first pipe is connected to the second pipe, and the opening at the end of the internal space of the fire extinguishing agent container has a second pipe located within the fire extinguishing agent that has entered the internal space of the fire extinguishing agent container, and a through hole provided in the second pipe so as to penetrate the flesh portion of the second pipe located in the upper gas space, and with the on / off valve open the flow path of the first pipe, the pressurized gas is supplied from the gas container to the internal space of the fire extinguishing agent container, and the fire extinguishing agent is released to the outside of the fire extinguishing agent container through the second pipe.

[0008] Furthermore, in a fire extinguishing system according to an embodiment of the present invention, a sealing plate is provided in the middle of the second piping, and in a fire extinguishing system according to an embodiment of the present invention, when the on-off valve is closed the flow path of the first piping, the sealing plate is closed the flow path of the second piping, and when the on-off valve is open the flow path of the first piping, the pressure of the gas supplied from the gas container increases the pressure of the fire extinguishing agent in the fire extinguishing agent container, the sealing plate is destroyed by the increase in the pressure of the fire extinguishing agent, the flow path of the second piping opens, and the fire extinguishing agent is released to the outside of the fire extinguishing agent container.

[0009] Furthermore, in a fire extinguishing system according to an embodiment of the present invention, the sealing plate comprises an annular outer periphery and a sealing plate body that is formed in a film-like manner and is arranged inside the ring of the outer periphery such that its thickness direction coincides with the direction of extension of the central axis of the annular ring of the outer periphery, and the fire extinguishing system according to an embodiment of the present invention is configured such that the sealing plate body is destroyed when the on / off valve opens the flow path of the first piping.

[0010] Furthermore, the fire extinguishing equipment according to an aspect of the present invention has a housing that houses the gas container, the fire extinguishing agent container, the first piping, the on-off valve, and the second piping inside, and the housing is configured to include a rectangular box-shaped housing body, a rectangular flat first housing lid that opens and closes the opening of the housing body, and a rectangular flat second housing lid that opens and closes the opening of the housing body, wherein one predetermined rectangular side of the first housing lid engages with one predetermined side of the rectangular opening of the housing body, and the portion that engages rotates relative to the housing body. The second housing lid is configured such that one predetermined rectangular side of the second housing lid engages with the housing body at the other predetermined side of the rectangular opening of the housing body, which is opposite to the side with which the first housing lid engages. The second housing lid rotates relative to the housing body at the engaged portion, and the ratio of the dimensions of the first housing lid to the dimensions of the second housing lid in the direction connecting the predetermined side of the rectangular opening of the housing body and the other predetermined side of the rectangular opening of the housing body is within the range of 2:8 to 4:6.

[0011] Furthermore, in the fire extinguishing equipment according to an embodiment of the present invention, when the opening of the housing body is closed by the first housing lid and the second housing lid, when the opening of the housing body, the first housing lid and the second housing lid are viewed together, at least one of an indicator light, a transmitter, an indicator light integrated transmitter, or a bell hole is provided in the central part of the second housing lid, in the direction connecting a predetermined side of the rectangular opening of the housing body and a predetermined other side of the rectangular opening of the housing body.

[0012] Furthermore, in the fire extinguishing system according to an embodiment of the present invention, the fire extinguishing agent container is formed in a cylindrical shape, the fire extinguishing agent container is installed in the housing such that the height direction of the cylinder of the fire extinguishing agent container is vertical, two fire extinguishing agent containers are provided, the two fire extinguishing agent containers are spaced apart from each other in the lateral direction of the housing, and their positions are roughly the same in the front-to-back direction of the housing.

[0013] Furthermore, in a fire extinguishing system according to an embodiment of the present invention, the gas container is formed in a cylindrical shape, an on-off valve is provided at the upper end of the gas container, the on-off valve is opened and closed by rotating the handle of the on-off valve, and the gas container is installed inside the housing such that the handle of the on-off valve is located on the opening side of the housing body and the lower end is located on the rear side of the housing body. [Effects of the Invention]

[0014] According to the present invention, a simple configuration can prevent leakage of the fire extinguishing agent due to temperature rise, and it also has the effect of providing ample space inside the housing of a packaged fire extinguishing system, making it easy to use. [Brief explanation of the drawing]

[0015] [Figure 1] This is a perspective view of a fire extinguishing system according to an embodiment of the present invention. [Figure 2] This is a perspective view of a fire extinguishing system according to an embodiment of the present invention, showing the second housing lid in an open state. [Figure 3] This is a view from arrow III in Figure 1. [Figure 4] This is a view from arrow IV in Figure 1. [Figure 5] This diagram corresponds to Figure 3 and shows the state after removing the first housing cover and the second housing cover. [Figure 6] This is a view from the VI-VI arrow in Figure 2. [Figure 7] This is a system diagram of a fire extinguishing system according to an embodiment of the present invention. [Figure 8] It is an enlarged view of part VIII in FIG. 7. [Figure 9] It is an enlarged view of part IX in FIG. 7. [Figure 10] It is a diagram showing a modification example of part X shown in FIG. 9. [Figure 11] It is a diagram showing a sealing plate shown in FIG. 9, and (b) is a view seen from arrow XI in (a). [Figure 12] It is a perspective view showing an installation mode of legs installed on a housing of a fire extinguishing equipment according to an embodiment of the present invention. [Figure 13] It is a diagram corresponding to FIG. 7 and is a system diagram of a fire extinguishing equipment according to a modification example.

Mode for Carrying Out the Invention

[0016] A fire extinguishing equipment (package type fire extinguishing equipment) 1 according to an embodiment of the present invention is configured to include a gas container 3, a fire extinguishing agent container 5, a first pipe 7, an on-off valve 9, and a second pipe 11, as shown in FIGS. 5 to 9.

[0017] For the convenience of explanation here, a horizontal predetermined one direction in the fire extinguishing equipment is defined as the lateral direction, a horizontal predetermined one direction that is perpendicular to the lateral direction is defined as the front-back direction, and a direction perpendicular to both the lateral direction and the front-back direction is defined as the up-down direction.

[0018] Pressurized gas (for example, nitrogen gas) enters the internal space (gas container internal space) of the gas container 3. Fire extinguishing agent 15 enters the internal space (fire extinguishing agent container internal space) 13 of the fire extinguishing agent container 5. When the fire extinguishing agent 15 enters the fire extinguishing agent container internal space 13, an upper gas space 17, which is a space filled with gas (for example, air) at the upper part of the fire extinguishing agent container internal space 13, is formed. The fire extinguishing agent 15 enters the lower space of the fire extinguishing agent container internal space 13 excluding the upper gas space 17. As the fire extinguishing agent 15, for example, liquid fire extinguishing agents such as water, enhanced liquid, mechanical foam (aqueous film-forming foam), water containing wetting agent, water containing third type wetting agent, and liquid fire extinguishing agents such as No. 11-1 of fire inspection agent are adopted.

[0019] The first pipe 7 connects the internal space 13 of the gas container 3 to the internal space 13 of the fire extinguishing agent container 5 in order to supply pressurized gas from the gas container 3 to the internal space 13 of the fire extinguishing agent container 5. Furthermore, the opening at the end of the first pipe 7 within the internal space 13 of the fire extinguishing agent container 5 is located in the upper gas space 17 that is formed when the fire extinguishing agent 15 enters the internal space 13 of the fire extinguishing agent container.

[0020] The shut-off valve 9 is installed, for example, at the gas outlet of the gas container 3. Alternatively, the shut-off valve 9 may be installed in the middle of the first piping 7. The shut-off valve 9 opens and closes the flow path of the first piping 7.

[0021] The second pipe 11 connects the internal space 13 of the fire extinguishing agent container 5 to the outside of the fire extinguishing agent container 5 in order to release the fire extinguishing agent 15 from the internal space 13 of the fire extinguishing agent container 5 into the atmosphere. The opening at the end of the second pipe 11 inside the internal space 13 of the fire extinguishing agent container 5 is located inside the fire extinguishing agent 15 that has entered the internal space 13 of the fire extinguishing agent container 5.

[0022] The second pipe 11 enters the fire extinguishing agent container 5 from its upper end, for example, and extends vertically within the internal space 13 of the fire extinguishing agent container 5. The portion of the second pipe 11 that extends vertically within the internal space 13 of the fire extinguishing agent container is called the siphon pipe 19. The opening at the lower end of the second pipe 11 within the internal space 13 of the fire extinguishing agent container becomes the opening located within the fire extinguishing agent 15 mentioned above. The second pipe 11 also extends for a predetermined length outside the fire extinguishing agent container 5.

[0023] As shown in Figure 8, the second pipe 11 is provided with a through-hole 21. The through-hole 21 is provided in the second pipe 11 so as to penetrate the wall portion located in the upper gas space 17 of the second pipe 11. The through-hole 21 has a small diameter, for example, 3 mm or less, and has a predetermined large flow resistance to the flow of fluids such as gases and liquids. In order to obtain the desired performance by increasing the flow resistance, it is preferable that the diameter be 1 mm or less, and more preferably 0.5 mm or less.

[0024] In the fire extinguishing system 1, with the shut-off valve 9 closing the flow path of the first pipe 7, the upper gas space 17 is filled with atmospheric pressure gas (for example, air or nitrogen), and the fire extinguishing agent 15 is not released through the second pipe 11 into the space outside the fire extinguishing agent container 5.

[0025] Furthermore, in the fire extinguishing system 1, with the on / off valve 9 open the flow path of the first pipe 7, pressurized gas is supplied from the gas container 3 to the internal space 13 of the fire extinguishing agent container 5 via the first pipe 7. Then, in the fire extinguishing system 1, the pressure in the internal space 13 of the fire extinguishing agent container 5 increases, and the fire extinguishing agent 15 is released through the second pipe 11 into the space outside the fire extinguishing agent container 5.

[0026] Here, we will further explain the flow resistance of the through-hole 21. A cylindrical second pipe 11 (siphon pipe 19) extends vertically within the upper gas space 17. The portion of the space inside the siphon pipe 19 that is located in the same vertical position as the upper gas space 17 is referred to as the upper space 23 inside the second pipe (see Figure 8). The through-hole 21 connects the upper space 23 inside the second pipe to the upper gas space 17.

[0027] Assume that the on-off valve 9 closes the flow path of the first pipe 7, and that the difference between the gas pressure in the upper gas space 17 and the gas pressure in the upper space 23 of the second pipe is small (for example, 0.05 MPa or less). Furthermore, assume that the change in the difference between the gas pressure in the upper gas space 17 and the gas pressure in the upper space 23 of the second pipe due to temperature changes at the installation location of the fire extinguishing equipment 1 is gradual (changes in an almost quasi-static process). Under these assumptions, gas (air) flows slowly through the through-hole 21, eliminating the difference between the gas pressure in the upper gas space 17 and the gas pressure in the upper space 23 of the second pipe.

[0028] When the shut-off valve 9 opens the flow path of the first pipe 7, high-pressure gas is supplied to the upper gas space 17. As a result, even when the difference between the gas pressure in the upper gas space 17 and the gas pressure in the upper space 23 of the second pipe increases rapidly (for example, when it exceeds 5 MPa), gas flows through the through-hole 21.

[0029] However, due to the flow resistance of the through-hole 21, the gas pressure in the upper gas space 17 hardly decreases, and the gas pressure in the upper space 23 inside the second pipe hardly increases. In other words, the ratio of the gas pressure in the upper gas space 17 to the gas pressure in the upper space 23 inside the second pipe hardly changes. As a result, the gas pressure in the upper gas space 17 pushes the fire extinguishing agent 15, and it is released through the second pipe 11 into the space outside the fire extinguishing agent container 5.

[0030] In the fire extinguishing system 1, a sealing plate (rupture disc) 25 is provided in the middle of the second pipe 11, as shown in Figure 9, etc. When the shut-off valve 9 is closed to the flow path of the first pipe 7, the sealing plate 25 is closed to the flow path of the second pipe 11. When the shut-off valve 9 is open to the flow path of the first pipe 7, the pressure of the gas supplied from the gas container 3 increases the pressure of the fire extinguishing agent 15 in the fire extinguishing agent container 5. Then, the seal plate 25 is broken by the increase in the pressure of the fire extinguishing agent 15, the flow path of the second pipe 11 opens, and the fire extinguishing agent 15 is released into the space outside the fire extinguishing agent container 5.

[0031] The sealing plate 25 shown in Figure 9 is formed in the shape of a thin disc. Here, the sealing plate 25 may be configured to include an outer peripheral portion 27 and a sealing plate body portion 29, as shown in Figures 10 and 11. The outer peripheral portion 27 is formed in the shape of an annular ring (for example, a torus shape like an O-ring). The outer peripheral portion 27 also functions as a packing. The sealing plate body portion 29 is formed in the shape of a thin film and is positioned inside the ring of the outer peripheral portion 27 such that its thickness direction coincides with the extension direction of the central axis of the ring of the outer peripheral portion 27, and so as to close the space inside the ring of the outer peripheral portion 27.

[0032] The system is configured such that, with the shut-off valve 9 open the flow path of the first pipe 7, the sealing plate body 29 is destroyed by the increase in pressure of the fire extinguishing agent 15, opening the flow path of the second pipe 11. The sealing plate 25 is integrally molded from an elastic material such as silicone rubber. In addition, as shown in Figure 11, the sealing plate body 29 has a recess 30 formed therein to facilitate the above-mentioned destruction. The recess 30 consists of two "V"-shaped grooves, and when viewed in the thickness direction of the sealing plate body 29, the recess 30 is "X" shaped.

[0033] The recesses 30 are provided on both sides of the sealing plate body 29 in the thickness direction, and when viewed in the thickness direction of the sealing plate body 29, the recesses 30 on both sides overlap each other. Also, when viewed in the thickness direction of the sealing plate body 29, the four ends of the two "X" shaped line segments of the recess 30 are located on the inner circumference of the outer circumference 27.

[0034] Furthermore, the fire extinguishing system 1 is configured with a housing 31, as shown in Figures 1 to 6. The housing 31 houses the gas container 3, the fire extinguishing agent container 5, the first pipe 7, the on / off valve 9, and the second pipe 11 inside the housing space 33.

[0035] The housing 31 is comprised of a rectangular, box-shaped housing body 35, a rectangular, flat first housing lid (first door) 39 that opens and closes the opening 37 of the housing body, and a rectangular, flat second housing lid (second door) 41 that opens and closes the opening 37 of the housing body 35. The first housing lid 39 and the second housing lid 41 are configured to close the entire opening 37 of the housing body 35.

[0036] The first housing lid portion 39 has one predetermined rectangular side that engages with the housing body portion 35 at one predetermined side of the rectangular opening 37 of the housing body portion 35, and rotates relative to the housing body portion 35 at this engaged portion (first engaging side) 43.

[0037] The second housing lid 41 also engages with the housing body 35 at a predetermined rectangular side which is opposite to the other predetermined side of the rectangular opening 37 of the housing body 35, and is engaged with the housing body 35 at the side with which the first housing lid 39 is engaged. The second housing lid 41 rotates relative to the housing body 35 at this engaged portion (second engaging side) 45.

[0038] The direction connecting one predetermined side (first engaging side) 43 of the rectangular opening 37 of the housing body 35 and the other predetermined side (second engaging side) 45 of the rectangular opening 37 of the housing body 35 is the lateral direction. The ratio of the dimension L1 of the first housing lid 39 to the dimension L2 of the second housing lid 41 in the lateral direction is within the range of 2:8 to 4:6 (see Figure 3).

[0039] The above ratio is preferably in the range of 2.5:7.5 to 3.5:6.5, more preferably in the range of 2.8:7.2 to 3.2:6.8, and ideally 3:7. Alternatively, without specifying the above ratio, the dimensions of the second housing lid 41 in the lateral direction may be larger than the dimensions of the first housing lid 39 in the lateral direction.

[0040] Furthermore, when viewing the housing 31 from the front of the fire extinguishing equipment 1 (housing 31), the first housing cover 39 is located on the left side, and the second housing cover 41 is located on the right side. To explain further, the first of the four sides of the opening 37 of the housing body 35 extends vertically at the left end of the opening 37 of the housing body 35. The second of the four sides of the opening 37 of the housing body 35 extends vertically at the right end of the opening 37 of the housing body 35. The third of the four sides of the opening 37 of the housing body 35 extends horizontally at the upper end of the opening 37 of the housing body 35. The fourth of the four sides of the opening 37 of the housing body 35 extends horizontally at the lower end of the opening 37 of the housing body 35. The first engaging side 43 is located at the location of the first side, and the second engaging side 45 is located at the location of the second side.

[0041] When the opening 37 of the housing body 35 is closed by the first housing lid 39 and the second housing lid 41, the opening 37 of the housing body 35 and the first housing lid 39 and the second housing lid 41 are viewed. At least one of the following is provided in the center in the lateral direction: an indicator light 47, a transmitter (not shown), an indicator light integrated transmitter (not shown), or a bell hole (not shown). The lateral direction is the direction connecting one predetermined side of the rectangular opening 37 of the housing body 35 to another predetermined side of the rectangular opening 37 of the housing body 35. The state in which the opening 37 of the housing body 35 is closed by the first housing lid 39 and the second housing lid 41 is maintained unless an external force of a predetermined magnitude is separately applied to the housing lids 39 and 41.

[0042] A second housing cover 41 is located where the indicator light 47, transmitter, integrated indicator light transmitter, and bell hole are situated in the central part of the above-mentioned structure. The indicator light 47, transmitter, integrated indicator light transmitter, and bell hole are all located on the second housing cover 41. Reference numeral 49 in Figure 3, etc., indicates a handle for opening and closing the second housing cover 41.

[0043] The fire extinguishing agent container 5 is formed in a cylindrical shape. The fire extinguishing agent container 5 is installed inside the housing 31 with the height direction of the cylinder of the fire extinguishing agent container 5 being the vertical direction. Two fire extinguishing agent containers 5 are provided. The two fire extinguishing agent containers 5 are spaced apart from each other in the lateral direction of the housing 31, their positions are roughly the same in the front-to-back direction of the housing 31 (depth direction of the housing body 35), and their positions are also roughly the same in the vertical direction. Furthermore, the two fire extinguishing agent containers 5 are arranged symmetrically with respect to a plane perpendicular to the lateral direction and containing the center of the housing 31. As a result, a space (central space) 51 is formed inside the housing 31 between the two fire extinguishing agent containers 5, where a gas container 3 or the like is installed (see Figure 5). Furthermore, when the gas container 3 is installed in the lower part of the space (central space) 51 where the gas container 3 is installed, a space is formed in the upper part of the space (central space) 51 to accommodate equipment such as the indicator light 47, transmitter, indicator light integrated transmitter, bell, and bell hole provided on the second housing lid 41.

[0044] The gas container 3 is also formed in a cylindrical shape, and an on-off valve 9 is provided at the upper end of the gas container 3. The on-off valve 9 is configured to be opened and closed by manually rotating the handle 53 of the on-off valve 9. The height of the cylinder of the gas container 3 is lower than the height of the cylinder of the fire extinguishing agent container 5, and the diameter of the cylinder of the gas container 3 is smaller than the diameter of the cylinder of the fire extinguishing agent container 5 (see Figure 5).

[0045] The gas container 3 is installed inside the housing 31 such that the handle 53 of the on / off valve 9 is located on the opening side of the housing body 35, and its lower end is located on the rear (front) side of the housing body 35. As a result, the cylindrical gas container 3 is tilted at a slight angle relative to the vertical direction (it stands upright at a slight angle; see Figure 6).

[0046] The gas container 3 is positioned in the space 51 between the two fire extinguishing agent containers 5. When viewed in the front-to-back direction, the gas container 3 is not tilted, and the central axis of the cylinder of the gas container 3 extends vertically (see Figure 5). Furthermore, in the vertical direction, the gas container 3 is positioned below the housing 31. The position of the handle 53 of the on-off valve 9 in the vertical direction is approximately the same as the position of the fingers of an adult standing with their arms and hands lowered, making it easy to turn the handle 53 by hand.

[0047] Furthermore, as shown in Figure 12, legs 55 are provided at the lower end of the main body 35 of the housing to support the housing 31. The legs 55 are configured so that the mounting orientation (direction) of the housing 31 relative to the main body 35 can be easily changed to suit the shape of the installation location of the housing 31.

[0048] Here, the fire extinguishing equipment 1 will be described in more detail. The housing body 35 is formed in a rectangular box shape by comprising one rectangular flat bottom plate 57 and four rectangular flat side plates 59 (59A, 59B, 59C, 59D). The first housing lid 39 is supported on the side plate 59A, for example via a hinge (not shown), and the second housing lid 41 is also supported on the side plate 59B, for example via a hinge (not shown).

[0049] A channel steel section of a predetermined length (equal to or slightly shorter than the front-to-back dimension of the housing body 35) is used as the legs 55. Two legs 55 are used. The legs 55 are also configured to be easily attached to and detached from the side plate 59D of the housing body 35 using fastening members such as bolts (not shown). Then, as shown in Figure 12, the orientation of the legs 55 is selected and the legs 55 are installed on the housing body 35.

[0050] As shown in Figure 5, the two fire extinguishing agent containers 5 are placed on the lower side plate portion 59D. The two fire extinguishing agent containers 5 are identical in shape, and a small space is formed between the two fire extinguishing agent containers 5 and the upper side plate portion 59C. One of the two fire extinguishing agent containers 5 is in contact with or near the side plate portion 59A. The other fire extinguishing agent container 5 is in contact with or near the side plate portion 59B.

[0051] The shut-off valve 9 (handle 53) is located at the upper end of the gas container 3. The component indicated by reference numeral 61 in Figure 5 is a regulator that adjusts the pressure of the gas supplied from the gas container 3 to the fire extinguishing agent container 5.

[0052] As shown in Figure 5, two first pipes 7 are provided, corresponding to the number of fire extinguishing agent containers 5. One longitudinal end of each of the two first pipes 7 is connected to the on-off valve 9. The other longitudinal end of the first first pipe 7 is connected to the first fire extinguishing agent container 5. The other longitudinal end of the second first pipe 7 is connected to the second fire extinguishing agent container 5. In Figure 7, the first pipes 7 do not extend at all within the upper gas space 17, but the first pipes 7 may extend slightly within the upper gas space 17.

[0053] As shown in Figure 5, the second piping system 11 consists of a connecting pipe 63 that connects the outlets (outlets from the fire extinguishing agent containers 5) of the two siphon pipes 19 provided on each of the two fire extinguishing agent containers 5, and an extension pipe 67. A tee 65 is provided in the middle of the connecting pipe 63. The extension pipe 67 extends from the tee 65. As a result, the fire extinguishing agent 15 discharged from the two fire extinguishing agent containers 5 merge and flow through the extension pipe 67 before being discharged. The extension pipe (hose) 67 is made of a flexible, shape-retaining pipe.

[0054] As shown in Figure 5, the tip of the extension pipe 67 is equipped with a nozzle 69 that serves as the discharge port for the fire extinguishing agent 15 that has flowed through the extension pipe 67, and the nozzle 69 is equipped with an operating lever 71. When the operating lever 71 is operated, the flow path through which the fire extinguishing agent 15 flows in the nozzle 69 is opened and closed.

[0055] When no fire is occurring, the extension pipe 67 and nozzle 69 are housed inside the housing 31. In this state, the extension pipe 67 is appropriately wound up inside the housing 31 and housed within the housing 31. When a fire occurs, the extension pipe 67 extends outside the housing 31.

[0056] Here, we will explain the discharge operation of the fire extinguishing agent 15 in the fire extinguishing system 1. In the initial state, compressed gas is contained in the gas container 3, the fire extinguishing agent 15 is contained in the fire extinguishing agent container 5, the on / off valve 9 closes the flow path of the first pipe 7, and the flow path of the nozzle 69 is also closed. In addition, in the initial state, the first housing cover 39 and the second housing cover 41 are closed.

[0057] When releasing the fire extinguishing agent 15, in the initial state described above, at least the second housing lid 41 is opened, and the handle 53 of the on-off valve 9 is turned to open the flow path of the first pipe 7. The pressure rise at this time causes the sealing plate 25 to break. Next, the extension pipe 67 is pulled out from the housing 31 and extended as appropriate. Then, the operating lever 71 is operated to open the flow path of the nozzle 69, and the fire extinguishing agent 15 is released from the tip of the nozzle 69. The fire extinguishing agent 15 is then released toward the fire point to carry out firefighting activities. At this time, the pressure at which the sealing plate 25 breaks is 0.3 to 0.4 MPa, and the adjustment pressure of the pressurized gas is set to 0.8 to 0.99 MPa, preferably to 0.98 MPa.

[0058] In the fire extinguishing system 1, a through-hole 21 is provided so as to penetrate the wall portion of the second pipe 11. Even when the temperature rises due to seasonal or diurnal temperature fluctuations, the pressure in the upper gas space 17 and the pressure in the upper space 23 inside the second pipe remain equal. This allows for a simple configuration without the need for bypass routes, preventing leakage of the fire extinguishing agent 15 due to temperature increases.

[0059] Furthermore, in the fire extinguishing system 1, a sealing plate 25 is provided in the middle of the second pipe 11. When the shut-off valve 9 closes the flow path of the first pipe 7, the sealing plate 25 closes the second pipe 11. On the other hand, when the shut-off valve 9 opens the flow path of the first pipe 7, the sealing plate 25 is destroyed. This makes it possible to more reliably prevent leakage of the fire extinguishing agent 15 due to temperature rise, and when it is necessary to release the fire extinguishing agent 15, it can be reliably released.

[0060] Furthermore, in the fire extinguishing system 1, the sealing plate 25 is configured to include an annular outer circumference 27 and a sealing plate body 29 positioned inside the ring of the outer circumference 27. This simplifies the structure of the sealing plate 25 and allows the outer circumference 27 of the sealing plate 25 to function as a packing.

[0061] Furthermore, in the fire extinguishing system 1, the ratio of the dimensions of the first housing lid 39 to the dimensions of the second housing lid 41 is within the range of 2:8 to 4:6. This allows for the installation of specially designed equipment in the space 51 between the two fire extinguishing agent containers 5 inside the housing 31, and facilitates its operation. Additionally, by installing the specially designed equipment in the second housing lid 41, an indicator light 47, a transmitter, an indicator light integrated transmitter, a bell, and a bell hole can be positioned at the front end of the center of the front of the housing 31.

[0062] Furthermore, the hose (extension pipe) 67 and gas container 3, which constitute the second piping 11, are installed in the space 51 created between the two fire extinguishing agent containers 5. With this installation, the hose 67 can be removed from the housing 31 simply by opening the second housing lid 41, and the on / off valve 9 can be operated, making it easier to use.

[0063] Furthermore, in the fire extinguishing system 1, an indicator light 47, a transmitter, an indicator light integrated transmitter, and a bell hole are provided in the central part of the housing 31, specifically in the area of ​​the second housing lid 41. This improves the visibility of the indicator light 47 and other components, and also enhances the design.

[0064] Furthermore, in the fire extinguishing system 1, the two fire extinguishing agent containers 5 are spaced apart from each other in the lateral direction of the housing 31. This prevents the outer diameter of the fire extinguishing agent containers 5 from increasing even if the capacity of the fire extinguishing agent 15 is increased, and allows the dimensions of the housing 31 in the front-to-back direction to be reduced. In addition, since the handle 53 of the on-off valve 9 is located on the side of the opening 37 of the housing body 35, it is easier to operate the handle 53 of the on-off valve 9 by opening the second housing lid 41. Moreover, the orientation (direction) of the legs 55 attached to the housing body 35 can be easily changed to suit the shape of the installation location of the housing 31. This allows the fire extinguishing system 1 to be installed in various locations.

[0065] Although this embodiment has been described above, this embodiment is not limited to these, and various modifications are possible within the scope of the gist of this embodiment.

[0066] For example, instead of the sealing plate 25, a pilot check valve 73 may be installed in the middle of the second pipe 11, as shown in Figure 13(a), or a check valve 75 may be installed instead of the pilot check valve 73, as shown in Figure 13(b). If a check valve 75 is installed, the flow path of the second pipe 11 will be closed by the check valve 75 until the pressure of the fire extinguishing agent 15 in the fire extinguishing agent container 5 reaches the cracking pressure of the check valve 75. [Explanation of Symbols]

[0067] 1 Fire extinguishing equipment 3. Gas containers 5. Fire extinguishing agent container 7. First piping 9. Shut-off valves 11. Second piping 13. Internal space (internal space of the fire extinguishing agent container) 15. Fire extinguishing agent 17 Upper gas space 21 Through hole 25 Sealing plate 27 Outer perimeter 29 Sealing plate body 31 cabinets 35 Main body of the enclosure 37 Opening of the main body of the housing 39. First enclosure lid (first door) 41. Second enclosure lid (second door) 43. Engaged portion (first engagement edge) 45. Engaged portion (second engagement edge) 47 Indicator light 53 Handle of the shut-off valve L1 Dimensions of the first housing lid L2 Dimensions of the second housing lid

Claims

1. A gas container into which pressurized gas enters the internal space, A fire extinguishing agent container in which a fire extinguishing agent is placed in the internal space such that an upper gas space is formed at the top of the internal space, which is a space in which gas is present. A first pipe connecting the internal space of the gas container and the internal space of the fire extinguishing agent container is provided in order to supply pressurized gas from the gas container to the internal space of the fire extinguishing agent container. A shut-off valve for opening and closing the flow path of the first piping, In order to release the fire extinguishing agent from the internal space of the fire extinguishing agent container, a second pipe connects the internal space of the fire extinguishing agent container to the outside of the fire extinguishing agent container, A through-hole provided in the second pipe is provided so as to penetrate the flesh portion located in the upper gas space of the second pipe, A fire extinguishing system comprising the following: when the on / off valve opens the flow path of the first piping, the pressurized gas is supplied from the gas container to the internal space of the fire extinguishing agent container, and the fire extinguishing agent is discharged to the outside of the fire extinguishing agent container through the second piping.

2. A sealing plate is provided in the middle of the second pipe. When the on / off valve is closing the flow path of the first pipe, the sealing plate is closing the flow path of the second pipe. The fire extinguishing system according to claim 1, configured such that when the on / off valve is in a state where the flow path of the first piping is open, the pressure of the gas supplied from the gas container increases the pressure of the fire extinguishing agent in the fire extinguishing agent container, the seal plate is broken by the increase in the pressure of the fire extinguishing agent, the flow path of the second piping opens, and the fire extinguishing agent is released to the outside of the fire extinguishing agent container.

3. The sealing plate comprises an annular outer periphery and a sealing plate body that is formed in a film-like manner and is positioned inside the ring of the outer periphery such that its thickness direction coincides with the direction of extension of the central axis of the annular ring of the outer periphery. The fire extinguishing system according to claim 2, wherein the sealing plate body is destroyed when the on / off valve is in a state where the flow path of the first piping is open.

4. The housing has an internal structure that houses the gas container, the fire extinguishing agent container, the first piping, the on / off valve, and the second piping. The housing is configured to include a rectangular, box-shaped housing body, a rectangular, flat first housing lid that opens and closes the opening of the housing body, and a rectangular, flat second housing lid that opens and closes the opening of the housing body. The first housing lid has one predetermined rectangular side that engages with the housing body at one predetermined side of the rectangular opening in the housing body, and is configured to rotate relative to the housing body at the engaged portion. The second housing lid also has one predetermined rectangular side that engages with the housing body at the other predetermined side of the rectangular opening of the housing body, which is the side opposite to the side with which the first housing lid engages, and the second housing lid rotates relative to the housing body at the engaged portion. The fire extinguishing equipment according to any one of claims 1 to 3, wherein the ratio of the dimensions of the first housing lid to the dimensions of the second housing lid in the direction connecting a predetermined side of the rectangular opening of the housing body and a predetermined other side of the rectangular opening of the housing body is within the range of 2:8 to 4:

6.

5. The fire extinguishing equipment according to claim 4, in a state where the opening of the housing body is closed by the first housing lid and the second housing lid, when the opening of the housing body, the first housing lid and the second housing lid are viewed together, at least one of an indicator light, a transmitter, an indicator light integrated transmitter and a bell hole is provided in the central part in the direction connecting a predetermined side of the rectangular opening of the housing body and a predetermined other side of the rectangular opening of the housing body, in the portion of the second housing lid.

6. The fire extinguishing equipment according to claim 4, wherein the fire extinguishing agent container is formed in a cylindrical shape, the fire extinguishing agent container is installed in the housing such that the height direction of the cylinder of the fire extinguishing agent container is vertical, two fire extinguishing agent containers are provided, the two fire extinguishing agent containers are spaced apart from each other in the lateral direction of the housing, and their positions are approximately the same in the front-to-back direction of the housing.

7. The fire extinguishing equipment according to claim 4, wherein the gas container is formed in a cylindrical shape, an on-off valve is provided at the upper end of the gas container, the on-off valve is opened and closed by rotating the handle of the on-off valve, and the gas container is installed inside the housing such that the handle of the on-off valve is located on the opening side of the housing body and the lower end is located on the rear side of the housing body.

Citation Information

Patent Citations

  • Fire extinguishing device

    JP2012187282A

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    JP2020048881A