[go: up one dir, main page]

WO2005090897A1 - Improvements in and relating to blast mitigation structures - Google Patents

Improvements in and relating to blast mitigation structures Download PDF

Info

Publication number
WO2005090897A1
WO2005090897A1 PCT/GB2005/001128 GB2005001128W WO2005090897A1 WO 2005090897 A1 WO2005090897 A1 WO 2005090897A1 GB 2005001128 W GB2005001128 W GB 2005001128W WO 2005090897 A1 WO2005090897 A1 WO 2005090897A1
Authority
WO
WIPO (PCT)
Prior art keywords
blast mitigation
water
further characterised
containers
mitigation device
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.)
Ceased
Application number
PCT/GB2005/001128
Other languages
French (fr)
Inventor
Peter James
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.)
Cintec International Ltd
Original Assignee
Cintec International 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 Cintec International Ltd filed Critical Cintec International Ltd
Priority to JP2007503419A priority Critical patent/JP2007529710A/en
Priority to US10/593,163 priority patent/US20080257137A1/en
Publication of WO2005090897A1 publication Critical patent/WO2005090897A1/en
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F42AMMUNITION; BLASTING
    • F42DBLASTING
    • F42D5/00Safety arrangements
    • F42D5/04Rendering explosive charges harmless, e.g. destroying ammunition; Rendering detonation of explosive charges harmless
    • F42D5/045Detonation-wave absorbing or damping means

Definitions

  • This invention relates to blast mitigation structures which use liquid-filled containers such as water-filled flexible bags, arranged so as to mitigate the effects of a blast or explosion by dissipitating and/or converting to heat the resulting blast energy.
  • Blast mitigation structures using water-based technology are well known and for instance US patent no. 4836079, the disclosure of which is incorporated herein by reference, teaches various embodiments of bomb blast inhibitors which can be inflated with air, placed around e.g. a bomb, and then filled with water, the water then acting to suppress or otherwise mitigate against the effects of any ensuing explosion.
  • the car bomb is of the "dirty" type, such as one involving the explosive spread of e.g. radioactive materials or poisonous chemicals
  • a primary consideration is not just to protect personnel in the immediate vicinity of the bomb but also to minimise the spread of the pollutant such that it is wholly or substantially kept within the immediate vicinity of the explosion, thereby requiring a presence of a blast mitigation barrier which completely covers the vehicle including the top of the vehicle.
  • the present invention is derived from the realisation that, especially when dealing with potential car bombs i.e. suspect vehicles, speed is of the essence in quickly and safely erecting a blast protection structure around the vehicle using rupturable liquid-filled containers such as water-filled bags, but in conjunction with means for rapidly deploying the containers therearound.
  • a blast mitigation device comprising one or more inflatable, rigidisable, free-standing arched frames comprised of one or more compartments, the or each compartment being fillable, in use, with a gaseous medium under pressure, and one or more water- fillable containers supported or supportable by the or each free-standing frame, which water-fillable container(s) form a blast mitigation structure in use.
  • the or each container(s) making up the inflatable generally rigid free-standing arched inflatable frame is made up of individual compartments of drop stitch material by which respectively opposite outer walls are prevented or inhibited from bulging outwards under pressure, although in an alternative construction the compartments are simply made up of pressurisable material which bulges outwardly under pressure to assume e.g.
  • the water-fillable containers are also made of drop stitch material so as to increase the total rigidity of the entire structure in use, although it will be apparent that provided the water-fillable containers are sufficiently densely packed around and over the or each arched frame or frames so as to ensure that a blast mitigation structure is present substantially entirely around e.g. an explosive device, the use of the, relatively expensive drop stitch material may be dispensed with and simple containers may be used in substitution for containing the water.
  • the invention therefore provides a blast mitigation device having few or no hard components, which could otherwise become shrapnel in the event of e.g. a car bomb exploding.
  • a further advantage is that such a blast mitigation device may take the form of a tunnel with an arched roof which may be quickly erected around e.g. a suspect vehicle by the simple expedient of inflating the containers making up the generally rigid free-standing frame or frames until a generally rigid structure is formed and then filling the water-fillable containers with water, all of which may be done remotely or semi-remotely, whereafter e.g. a suspect vehicle may be simply left in place with a suitable warning to keep away from it, or overt action may be taken by the use of a disruptor charge placed by a remotely controlled vehicle.
  • the invention also envisages in one embodiment that one or more of the inflatable containers making up the one or more free-standing frames may be removable along with corresponding containers for water to allow for the placement of such a charge, whereafter they may be replaced prior to detonation of the charge.
  • two or more devices are used, each being in the form of a walled tunnel having an arched roof, there being one closed end, made up, in combination of air inflatable generally rigid or rigidisable containers and containers filled or fillable with water, the walled tunnel also having an open end which may e.g. be used to allow the structure to be moved over e.g. one half of a vehicle to substantially enclose that half, the other of such structures being used to substantially enclose the other half of the vehicle.
  • each rigidisable arched frame is made of independently inflatable semi-arched halves connectable at the apex of the arch through the use of e.g. webbing, strapping, Velcro ® fasteners or other such non rigid fastener means.
  • These semi-arched halves may themselves be formed by "pinching" one side of an otherwise parallel-walled layer of drop stitch material to form, when inflated, a semi-arch, the pinching occurring at regular intervals radially from a sidewall portion of the structure to the apex of the arch.
  • strapping or other such means may be connected or connectable between such opposing legs.
  • each device making up a rigidisable frame each has an independent air inlet for forming the inner wall and an independent air/water inlet for filling the outer containers, which each conveniently including a respective air relief valve adjacent the apex of the arch so that after the water fillable containers are first filled with air in order to assume their desired shape, they can thereafter be filled with water and air may thereafter be allowed to escape without altering the overall shape of the blast mitigation device.
  • a chicane may be built into the or each free-standing device whereby access to the inside of the structure is possible but is indirect, such that a subsequent blast from an explosive device always encounters the water-fillable containers.
  • blast mitigation device may simply be in the form of a stepped wall, or if two blast mitigation structures are to be used in tandem they may each be of size sufficient to enclose one entire end of the vehicle plus an amount by which access may be gained through such a chicane, such that an opposing pair of such structures meet each other in a stepped configuration.
  • the or each blast mitigation device also incorporates means by which it may be inflated remotely, such as by including integrally formed air and water filling pipes which may simply be unreeled from the deflated components of the device such that the filling takes place at a distance from the suspect device/vehicle.
  • Sensing apparatus may also be integrally incorporated to e.g.
  • a camera may also be provided integrally with the device to visually monitor the inside thereof once it has been erected.
  • Electric wires may be included for these and other such devices which again may be unreeled and attached to e.g. monitoring apparatus remote from the structure to thereby minimise the danger to personnel.
  • Figure 1 is a front elevation of an inflated blast mitigation structure according to a first embodiment of the invention
  • Figure 2 is a side elevation of the structure shown in Figure 1
  • Figure 3 is a plan view of a second embodiment of the invention having chicane access means
  • Figure 4 is a part-exposed end view of a third embodiment of the invention in which the rigidisable arched frame is made up of independently inflatable semi-arched halves
  • Figure 5 is a sectional plan view of the plane 'A'-' A' of Figure 4
  • Figure 6 is a side view of the embodiment shown in Figure 4
  • Figure 7 is a schematic view showing how two of the containers shown in
  • Figure 6 are joined together by a series of flange valves and Figure 8 is an end view of one of the containers of Figure 7 showing the flange valves.
  • Figures 1 and 2 there is shown a front elevation of a fully inflated and assembled blast mitigation device 1 in which for clarity its individual component segments are shown made of transparent material such that the inside may be viewed.
  • the inflated device 1 takes the form of an arched tunnel which may be erected around a suspect vehicle 2 such that in the event it explodes the device 1 is able to mitigate against the effect of the subsequent blast. This is primarily achieved by the presence of a wall of water around the vehicle 2 disposed in water fillable interconnected bags or containers 3, some of which are arcuate, to form an arched shell of water around the vehicle 2.
  • This shell is supported by an arched inner tunnel of inflatable bags or containers 4 which are also pneumatically interconnected such that when filled under pressure by e.g. air from a high pressure hose it becomes a free standing frame which provides sufficient support to counter the weight of the water in the containers 3.
  • the gas fillable containers 4 are made of drop stitch material such that their outer walls are prevented or inhibiting from bulging outwards under the internal pressure of gas from within and where the device is intended to form a large structure
  • the outer containers or bags 3 are also made of drop stitch material as opposed to being, as shown in Figure 1 , simple bags which can be filled with water and by virtue of the volume of water be expanded to their limit.
  • a rear wall 5 may also be provided although not necessarily integrally and may be of solid material or may itself be formed of e.g. water fillable bags or containers made of drop stitch material which may be self-supporting or partly supported by the arched tunnel of gas-filled bags or containers 4.
  • a pair of such blast mitigation devices 1 are shown disposed open end on end to each other for totally enclosing the vehicle 2 and in order to gain access to the vehicle for e.g. inspection to investigate for the presence or otherwise of explosives material one or more of the bags or containers 3, 4 may be removable for such purpose, or access may be gained via a suitable removable panel in the end wall 5 of each device 1.
  • an arrangement like that shown in Figure 3 may be adopted where internal walls are shown in dotted outline.
  • a doorway 6 is shown cut into the end wall 5 to allow access into the interior and this may be simply rectangular rather than being arched.
  • a water-filled wall 7 of generally "L" shape is provided, preferably made of drop stitch material and pneumatically connected to the bags 3 if made of drop stitch material so that a single water inlet valve may be used to erect the entire wall of water around the suspect vehicle 2 after the gas-fillable bags 4 have been fully erected.
  • access to the inside of the device 1 via the doorway 6 may enable e.g.
  • the blast mitigation devices 1 are made up of semi-arched halves 1a, 1 b which are connected at their apex 8 by any suitable fastener means such as opposing strips of Velcro ® or some other such non rigid fastener means.
  • each blast mitigation device 1 has just two outer containers 3a for containing water, one for each semi-arched half 1a, 1b, and a pair of respective inner containers 4a, for containing air under pressure.
  • the containers 3a, 4a are made of drop stitch material such that the desired generally arched shape is retained even when the containers 4a are inflated with air or some other suitable gas such as nitrogen under pressure and the containers 3a are filled with water intended to mitigate against the effects of an explosion occurring within the arched tunnel formed by the devices 1.
  • Each half 1a, 1b may selectively be provided with a large inlet pipe 15 suitable for initially supplying air under pressure to both containers 3a, 4a to form the structure as shown in Figure 4, whereafter through the use of a nonreturn valve 16 in the inlet pipe 15 and pressure relief valve 17 adjacent the apex 8 the outer containers 3a can then be exhausted of air and filled instead with water to complete the required structure.
  • strapping 18 is used to connect the lower portions of the semi-arched halves 1a, 1 b in a manner best illustrated with reference to Figure 5 where four such straps are used to prevent outward splaying of the semi-arched halves 1a, 1 b at regular intervals between connected blast mitigation devices 1 , such connections being illustrated with reference to Figures 7 and 8.
  • FIG 7 shows a pair of devices 1 joined together by two-piece flange valves 19 comprised of a male flange half 20 fixed to and through an end wall 21 (shown in Figure 8) of one of the blast mitigation devices 1 and a female flange half 22 fixed to and extending through the opposite wall 23 of an adjacent blast mitigation device 1 such that any number of devices 1 may be linked together to form a single blast mitigation structure requiring just a single pair of inlet pipes 16, one for each half, 1a, 1 b.
  • a large blast suppression structure comprised of interconnected individual devices 1 may therefore be constructed and filled with air and water as required.
  • end containers 24 may be provided and be fillable via their own water inlet pipes 25 and attendant valves (not shown), the containers 24 being releaseably secured to devices 1 at respective ends of the blast mitigation structure, such as by the use of Velcro ® strips or other such fastening means, to thereafter completely enclose e.g. a suspect vehicle.
  • drop stitch material has been used to form blast mitigation structures in which, generally, initially air under pressure is replaced with water, it will be understood that the weight of water imposes an upper practical limit upon the size and shape of such structures without them requiring separate support.
  • the present invention therefore provides an elegant solution to this problem to the extent that it has been found that essentially air-filled containers made of drop stitch material can be used to provide sufficient support, either separately or in conjunction with support required by the presence of water in the containers fillable therewith, depending upon whether or not the water fillable containers are also made of drop stitch material, such that they also enjoy integral support as a consequence.

Landscapes

  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Fittings On The Vehicle Exterior For Carrying Loads, And Devices For Holding Or Mounting Articles (AREA)
  • Filling Or Discharging Of Gas Storage Vessels (AREA)
  • Air Bags (AREA)

Abstract

According to the invention, there is provided a blast mitigation device (1) comprising one or more inflatable, rigidisable , free-standing arched frames comprised of one or more compartments (4, 4a), the or each compartment being fillable, in use, with a gaseous medium under pressure, and one or more water-fillable containers (3, 3a) supported or supportable by the or each free-standing frame, which water-fillable container(s) form a blast mitigation structure in use.

Description

Improvements in and relating to Blast Mitigation Structures This invention relates to blast mitigation structures which use liquid-filled containers such as water-filled flexible bags, arranged so as to mitigate the effects of a blast or explosion by dissipitating and/or converting to heat the resulting blast energy. Blast mitigation structures using water-based technology are well known and for instance US patent no. 4836079, the disclosure of which is incorporated herein by reference, teaches various embodiments of bomb blast inhibitors which can be inflated with air, placed around e.g. a bomb, and then filled with water, the water then acting to suppress or otherwise mitigate against the effects of any ensuing explosion. This concept has been taken at least a further step by the use of, effectively, twin-walled containers as taught in GB2374625A, the disclosure of which is also incorporated herein by reference, which include internal connectors between opposing walls and surfaces, such as through the use of drop stitch material, by which the container is prevented from bulging outwardly, the main benefit being that a protective wall can then be erected which is taller than the width of the base without the container collapsing or toppling over under the weight of water. A problem with such prior art devices is that although they are very efficient in safely dealing with the effects of explosions, given that the containers themselves are not made of rigid material and hence when fragmented by an explosion such fragments do not constitute flying debris equivalent to shrapnel, it will be apparent that the inflation of such containers by air followed by substitution of air under pressure for water under pressure by e.g. the use of a suitable pressure relief valve arrangement, still necessarily takes some time to complete a structure comprising multiple containers. In the event of e.g. a car bomb having to be dealt with it will be understood that this may jeopardise the safety of personnel erecting such blast mitigation structures around the car. In addition, where the car bomb is of the "dirty" type, such as one involving the explosive spread of e.g. radioactive materials or poisonous chemicals, a primary consideration is not just to protect personnel in the immediate vicinity of the bomb but also to minimise the spread of the pollutant such that it is wholly or substantially kept within the immediate vicinity of the explosion, thereby requiring a presence of a blast mitigation barrier which completely covers the vehicle including the top of the vehicle. The present invention is derived from the realisation that, especially when dealing with potential car bombs i.e. suspect vehicles, speed is of the essence in quickly and safely erecting a blast protection structure around the vehicle using rupturable liquid-filled containers such as water-filled bags, but in conjunction with means for rapidly deploying the containers therearound. According to the invention, there is provided a blast mitigation device comprising one or more inflatable, rigidisable, free-standing arched frames comprised of one or more compartments, the or each compartment being fillable, in use, with a gaseous medium under pressure, and one or more water- fillable containers supported or supportable by the or each free-standing frame, which water-fillable container(s) form a blast mitigation structure in use. Conveniently, the or each container(s) making up the inflatable generally rigid free-standing arched inflatable frame is made up of individual compartments of drop stitch material by which respectively opposite outer walls are prevented or inhibited from bulging outwards under pressure, although in an alternative construction the compartments are simply made up of pressurisable material which bulges outwardly under pressure to assume e.g. a part cylindrical shape which nevertheless, in combination, are sufficiently rigid to support the weight of water from the water-fillable containers. Preferably, the water-fillable containers are also made of drop stitch material so as to increase the total rigidity of the entire structure in use, although it will be apparent that provided the water-fillable containers are sufficiently densely packed around and over the or each arched frame or frames so as to ensure that a blast mitigation structure is present substantially entirely around e.g. an explosive device, the use of the, relatively expensive drop stitch material may be dispensed with and simple containers may be used in substitution for containing the water. The invention therefore provides a blast mitigation device having few or no hard components, which could otherwise become shrapnel in the event of e.g. a car bomb exploding. A further advantage is that such a blast mitigation device may take the form of a tunnel with an arched roof which may be quickly erected around e.g. a suspect vehicle by the simple expedient of inflating the containers making up the generally rigid free-standing frame or frames until a generally rigid structure is formed and then filling the water-fillable containers with water, all of which may be done remotely or semi-remotely, whereafter e.g. a suspect vehicle may be simply left in place with a suitable warning to keep away from it, or overt action may be taken by the use of a disruptor charge placed by a remotely controlled vehicle. The invention also envisages in one embodiment that one or more of the inflatable containers making up the one or more free-standing frames may be removable along with corresponding containers for water to allow for the placement of such a charge, whereafter they may be replaced prior to detonation of the charge. Conveniently, two or more devices are used, each being in the form of a walled tunnel having an arched roof, there being one closed end, made up, in combination of air inflatable generally rigid or rigidisable containers and containers filled or fillable with water, the walled tunnel also having an open end which may e.g. be used to allow the structure to be moved over e.g. one half of a vehicle to substantially enclose that half, the other of such structures being used to substantially enclose the other half of the vehicle. Preferably, each rigidisable arched frame is made of independently inflatable semi-arched halves connectable at the apex of the arch through the use of e.g. webbing, strapping, Velcro® fasteners or other such non rigid fastener means. These semi-arched halves may themselves be formed by "pinching" one side of an otherwise parallel-walled layer of drop stitch material to form, when inflated, a semi-arch, the pinching occurring at regular intervals radially from a sidewall portion of the structure to the apex of the arch. In order to prevent the "legs" of the arched frame from splaying outwardly with the weight of water contained in the water filled containers webs, strapping or other such means may be connected or connectable between such opposing legs. Preferably, where two devices making up a rigidisable frame are used each has an independent air inlet for forming the inner wall and an independent air/water inlet for filling the outer containers, which each conveniently including a respective air relief valve adjacent the apex of the arch so that after the water fillable containers are first filled with air in order to assume their desired shape, they can thereafter be filled with water and air may thereafter be allowed to escape without altering the overall shape of the blast mitigation device. Conveniently, a chicane may be built into the or each free-standing device whereby access to the inside of the structure is possible but is indirect, such that a subsequent blast from an explosive device always encounters the water-fillable containers. This may simply be in the form of a stepped wall, or if two blast mitigation structures are to be used in tandem they may each be of size sufficient to enclose one entire end of the vehicle plus an amount by which access may be gained through such a chicane, such that an opposing pair of such structures meet each other in a stepped configuration. Conveniently, the or each blast mitigation device also incorporates means by which it may be inflated remotely, such as by including integrally formed air and water filling pipes which may simply be unreeled from the deflated components of the device such that the filling takes place at a distance from the suspect device/vehicle. Sensing apparatus may also be integrally incorporated to e.g. 'sniff the interior of the device when it is erected for the presence of explosives material. A camera may also be provided integrally with the device to visually monitor the inside thereof once it has been erected. Electric wires may be included for these and other such devices which again may be unreeled and attached to e.g. monitoring apparatus remote from the structure to thereby minimise the danger to personnel. The invention will now be described, by way of example only, with reference to the accompanying drawings in which: Figure 1 is a front elevation of an inflated blast mitigation structure according to a first embodiment of the invention, Figure 2 is a side elevation of the structure shown in Figure 1 , Figure 3 is a plan view of a second embodiment of the invention having chicane access means, and Figure 4 is a part-exposed end view of a third embodiment of the invention in which the rigidisable arched frame is made up of independently inflatable semi-arched halves, Figure 5 is a sectional plan view of the plane 'A'-' A' of Figure 4, Figure 6 is a side view of the embodiment shown in Figure 4, Figure 7 is a schematic view showing how two of the containers shown in
Figure 6 are joined together by a series of flange valves and Figure 8 is an end view of one of the containers of Figure 7 showing the flange valves. Referring firstly to Figures 1 and 2, there is shown a front elevation of a fully inflated and assembled blast mitigation device 1 in which for clarity its individual component segments are shown made of transparent material such that the inside may be viewed. The inflated device 1 takes the form of an arched tunnel which may be erected around a suspect vehicle 2 such that in the event it explodes the device 1 is able to mitigate against the effect of the subsequent blast. This is primarily achieved by the presence of a wall of water around the vehicle 2 disposed in water fillable interconnected bags or containers 3, some of which are arcuate, to form an arched shell of water around the vehicle 2. This shell is supported by an arched inner tunnel of inflatable bags or containers 4 which are also pneumatically interconnected such that when filled under pressure by e.g. air from a high pressure hose it becomes a free standing frame which provides sufficient support to counter the weight of the water in the containers 3. In order to increase their rigidity the gas fillable containers 4 are made of drop stitch material such that their outer walls are prevented or inhibiting from bulging outwards under the internal pressure of gas from within and where the device is intended to form a large structure preferably the outer containers or bags 3 are also made of drop stitch material as opposed to being, as shown in Figure 1 , simple bags which can be filled with water and by virtue of the volume of water be expanded to their limit. A rear wall 5 may also be provided although not necessarily integrally and may be of solid material or may itself be formed of e.g. water fillable bags or containers made of drop stitch material which may be self-supporting or partly supported by the arched tunnel of gas-filled bags or containers 4. In Figure 2 a pair of such blast mitigation devices 1 are shown disposed open end on end to each other for totally enclosing the vehicle 2 and in order to gain access to the vehicle for e.g. inspection to investigate for the presence or otherwise of explosives material one or more of the bags or containers 3, 4 may be removable for such purpose, or access may be gained via a suitable removable panel in the end wall 5 of each device 1. Alternatively, an arrangement like that shown in Figure 3 may be adopted where internal walls are shown in dotted outline. In this arrangement a doorway 6 is shown cut into the end wall 5 to allow access into the interior and this may be simply rectangular rather than being arched. In order to mitigate against the effects of any subsequent explosive blast exiting the device 1 through the doorway 6 a water-filled wall 7 of generally "L" shape is provided, preferably made of drop stitch material and pneumatically connected to the bags 3 if made of drop stitch material so that a single water inlet valve may be used to erect the entire wall of water around the suspect vehicle 2 after the gas-fillable bags 4 have been fully erected. As will be apparent, access to the inside of the device 1 via the doorway 6 may enable e.g. a remotely-controlled robotic vehicle to subsequently enter the free-standing frame of pressurised bags 4 to carry out an inspection of the vehicle and/or place a disruptor charge before retreating, or even physically destroy the suspect device by e.g. discharge of a shotgun. Referring now to the preferred embodiment shown in Figures 4-6, the blast mitigation devices 1 are made up of semi-arched halves 1a, 1 b which are connected at their apex 8 by any suitable fastener means such as opposing strips of Velcro® or some other such non rigid fastener means. Each of the semi-arched halves 1a, 1 b, are formed from originally planar drop stitch material which are then pinched together on one side at regular intervals 9, 10, 11 in respect of the subsequently semi-arched half 1a and 12, 13, 14 in respect of semi-arched half 1 b. However, in this embodiment, unlike the structure described with reference to Figures 1 to 3, each blast mitigation device 1 has just two outer containers 3a for containing water, one for each semi-arched half 1a, 1b, and a pair of respective inner containers 4a, for containing air under pressure. In this embodiment, the containers 3a, 4a are made of drop stitch material such that the desired generally arched shape is retained even when the containers 4a are inflated with air or some other suitable gas such as nitrogen under pressure and the containers 3a are filled with water intended to mitigate against the effects of an explosion occurring within the arched tunnel formed by the devices 1. Each half 1a, 1b may selectively be provided with a large inlet pipe 15 suitable for initially supplying air under pressure to both containers 3a, 4a to form the structure as shown in Figure 4, whereafter through the use of a nonreturn valve 16 in the inlet pipe 15 and pressure relief valve 17 adjacent the apex 8 the outer containers 3a can then be exhausted of air and filled instead with water to complete the required structure. In order to prevent outward splaying of the lower parts of the halves 1a, 1 b near to the ground under the weight of water, strapping 18 is used to connect the lower portions of the semi-arched halves 1a, 1 b in a manner best illustrated with reference to Figure 5 where four such straps are used to prevent outward splaying of the semi-arched halves 1a, 1 b at regular intervals between connected blast mitigation devices 1 , such connections being illustrated with reference to Figures 7 and 8. Figure 7 shows a pair of devices 1 joined together by two-piece flange valves 19 comprised of a male flange half 20 fixed to and through an end wall 21 (shown in Figure 8) of one of the blast mitigation devices 1 and a female flange half 22 fixed to and extending through the opposite wall 23 of an adjacent blast mitigation device 1 such that any number of devices 1 may be linked together to form a single blast mitigation structure requiring just a single pair of inlet pipes 16, one for each half, 1a, 1 b. Hence, by the use of the flange valves 19 a large blast suppression structure comprised of interconnected individual devices 1 may therefore be constructed and filled with air and water as required. As shown in Figures 5 and 6, to complete the structure end containers 24 may be provided and be fillable via their own water inlet pipes 25 and attendant valves (not shown), the containers 24 being releaseably secured to devices 1 at respective ends of the blast mitigation structure, such as by the use of Velcro® strips or other such fastening means, to thereafter completely enclose e.g. a suspect vehicle. Whilst, as aforesaid, drop stitch material has been used to form blast mitigation structures in which, generally, initially air under pressure is replaced with water, it will be understood that the weight of water imposes an upper practical limit upon the size and shape of such structures without them requiring separate support. The present invention therefore provides an elegant solution to this problem to the extent that it has been found that essentially air-filled containers made of drop stitch material can be used to provide sufficient support, either separately or in conjunction with support required by the presence of water in the containers fillable therewith, depending upon whether or not the water fillable containers are also made of drop stitch material, such that they also enjoy integral support as a consequence.

Claims

Claims
1. A blast mitigation device (1 ) comprising one or more inflatable, rigidisable, free-standing arched frames comprised of one or more compartments (4, 4a), the or each compartment being fillable, in use, with a gaseous medium under pressure, and one or more water-fillable containers (3, 3a) supported or supportable by the or each free-standing frame, which water-fillable container(s) form a blast mitigation structure in use.
2. A blast mitigation device according to claim 1 further characterised in that the or each container (4, 4a) making up the inflatable generally rigid free- standing arched inflatable frame is made up of individual compartments of drop stitch material by which respectively opposite outer walls are prevented or inhibited from bulging outwards under pressure.
3. A blast mitigation device according to claim 1 further characterised in that the compartments (4) are made up of pressurisable material which bulges outwardly under pressure to assume e.g. a part cylindrical shape which, in combination are sufficiently rigid to support the weight of water from water- fillable containers.
4. A blast mitigation device according to claim 2 further characterised in that the water-fillable containers (4, 4a) are made of drop stitch material so as to increase the total rigidity of the entire structure in use.
5. A blast mitigation device according to any preceding claim further characterised in that one or more of the inflatable containers (4, 4a) making up the one or more free-standing frames are removable along with corresponding containers for water (3, 3a) to allow for the placement of such a charge, whereafter they may be replaced prior to detonation of the charge.
6. A blast mitigation device according to any preceding claim further characterised in that the or each rigidisable arched frame (1 ) is made of independently inflatable semi-arched halves (1a, 1 b) connectable at the apex (8) of the arch through the use of e.g. webbing, strapping, Velcro® fasteners or other such non rigid fastener means.
7. A blast mitigation device according to claim 6 further characterised in that each semi-arched half (1a, 1 b) is formed by "pinching" one side of an otherwise parallel-walled layer of drop stitch material to form, when inflated, a semi-arch, the pinching occurring at regular intervals radially from a sidewall portion of the structure to the apex of the arch.
8. A blast mitigation device according to any preceding claim further characterised in that in order to prevent the "legs" of the arched frame (1 ) from splaying outwardly with the weight of water contained in the water filled containers (3, 3a) webs, strapping or other such means may be connected or connectable between such opposing legs.
9. A blast mitigation device according to any preceding claim further characterised in that a chicane is built into the or each free-standing device (1 ) whereby access to the inside of the structure is possible but is indirect.
10. A blast mitigation device according to claim 9 further characterised in that access to the inside of the structure is provided in the form of a stepped wall (7).
11. A blast mitigation device according to any preceding claim further characterised in that the device (1 ) also incorporates means by which it may be inflated remotely.
12. A blast mitigation device according to any preceding claim further characterised in including integrally formed air and water filling pipes which may be unreeled from the deflated components of the device such that the filling takes place at a distance from the suspect device/vehicle.
13. A blast mitigation device according to any preceding claim further characterised in including sensing apparatus may also be integrally incorporated to e.g. 'sniff the interior of the device (1 ) when it is erected for the presence of explosives material.
14. A blast mitigation device according to any preceding claim further characterised in that a camera is provided integrally with the device (1 ) to visually monitor the inside thereof once it has been erected.
15. A blast mitigation device according to any preceding claim further characterised in that electric wires are included for these devices (1 ) which may be unreeled and attached to e.g. monitoring apparatus remote from the structure to thereby minimise the danger to personnel.
16. A blast mitigation structure comprising a plurality of blast mitigation devices according to any preceding claim connected or connectable to each other by means flange valves (19) whereby they may be pneumatically/hydraulically interconnected, at least one of said devices (1 ) including at least one fluid inlet pipe (16) and at least one pressure relief valve (17).
17. A blast mitigation device substantially as hereinbefore described with reference to Figure 1 , or Figures 2 and 3, or Figures 4 to 6, or Figures 7 and 8.
PCT/GB2005/001128 2004-03-16 2005-03-15 Improvements in and relating to blast mitigation structures Ceased WO2005090897A1 (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
JP2007503419A JP2007529710A (en) 2004-03-16 2005-03-15 Gust mitigation device and structure
US10/593,163 US20080257137A1 (en) 2004-03-16 2005-03-15 Blast Mitigation Structures

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
GB0405859.0 2004-03-16
GBGB0405859.0A GB0405859D0 (en) 2004-03-16 2004-03-16 Improvements in and relating to blast mitigation structures

Publications (1)

Publication Number Publication Date
WO2005090897A1 true WO2005090897A1 (en) 2005-09-29

Family

ID=32117764

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/GB2005/001128 Ceased WO2005090897A1 (en) 2004-03-16 2005-03-15 Improvements in and relating to blast mitigation structures

Country Status (4)

Country Link
US (1) US20080257137A1 (en)
JP (1) JP2007529710A (en)
GB (1) GB0405859D0 (en)
WO (1) WO2005090897A1 (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7421936B2 (en) * 2005-04-22 2008-09-09 Bbn Technologies Corp. Systems and methods for explosive blast wave mitigation
CN101799262A (en) * 2010-04-12 2010-08-11 胡铭益 Smoothwall blasting method for digging tunnel
WO2012128691A1 (en) * 2011-03-22 2012-09-27 Area Clearance Services Sweden Ab Mobile transport container for handling of detonation-dangerous objects and method for this same
DE102013105416B3 (en) * 2013-05-27 2014-09-25 Millenium Packaging GmbH Mobile in its form flexible protective device for explosive ordnance disposal as well as methods for the controlled detonation of an explosive device

Families Citing this family (16)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CA2513633A1 (en) * 2003-01-17 2004-08-05 Projectile Limited Blast attenuating, blast-directing and extinguishing apparatus
CA2438802C (en) * 2003-08-27 2007-01-30 Sameh Guirgis A structural system with high absorption capacity to impactive and impulsive loads
US8555768B1 (en) * 2009-05-28 2013-10-15 Raytheon Company Shock wave barrier using multidimensional periodic structures
WO2011034474A1 (en) * 2009-09-17 2011-03-24 Telefonaktiebolaget Lm Ericsson (Publ) Method and arrangement for sharing media content
CA2784607C (en) * 2009-12-14 2016-02-09 Dynamic Shelters Inc. Tethermast and frag wall
WO2012015510A2 (en) * 2010-05-06 2012-02-02 Warwick Mills, Inc. Suicide bomber blast threat mitigation system
US8573571B2 (en) 2010-06-03 2013-11-05 Battelle Energy Alliance, Llc Dissipative structures and related methods
EP3201560B1 (en) * 2014-09-29 2018-10-31 Rina Consulting S.p.A. Blast mitigation device and method
US9429408B1 (en) * 2015-09-29 2016-08-30 The United States Of America As Represented By The Secretary Of The Navy Collapsible container for fluid-jet generation
WO2019136235A1 (en) * 2018-01-05 2019-07-11 Rowan University Inflatable impact shield system
US10739113B1 (en) * 2018-08-14 2020-08-11 Armorworks Holdings, Inc. Rapid deployment anti-ballistic shelter
WO2020047445A1 (en) * 2018-09-01 2020-03-05 Carlisle Matthew Chase Base for performing physical therapy and method of using the same
EP3718608B1 (en) * 2019-04-01 2021-11-17 Volvo Car Corporation Inflatable structure
RU2728003C1 (en) * 2019-10-24 2020-07-28 Российская Федерация, от имени которой выступает Государственная корпорация по атомной энергии "Росатом" Method to increase npp explosion safety
JP6966829B1 (en) * 2020-06-02 2021-11-17 株式会社メルカリ Mobile
CN114620167A (en) * 2022-02-28 2022-06-14 上海新金桥环保有限公司 Safety belt coiler intelligence ignition

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5719350A (en) * 1993-09-24 1998-02-17 John Humphries Parkes Blast and splinter proof screening device and his method of use
US5864767A (en) * 1997-06-09 1999-01-26 The United States Of America As Represented By The Secretary Of The Army Chemical biological explosive containment system
GB2337805A (en) * 1996-06-27 1999-12-01 John Humphries Parkes Explosion-suppressing barriers
US6439120B1 (en) * 1997-12-12 2002-08-27 Her Majesty The Queen In Right Of Canada As Represented By The Solicitor General Acting Through The Commissioner Of Royal Canadian Mounted Police Apparatus and method for blast suppression
DE20220429U1 (en) * 2002-04-10 2003-07-17 TDW Gesellschaft für verteidigungstechnische Wirksysteme mbH, 86529 Schrobenhausen Protective cover for fragmentation munitions has water filled cellular casing to fit around munition and absorb explosion

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
SE428199B (en) * 1981-09-22 1983-06-13 Bofors Ab PREFERRED TO CLOSE EFFECTS FROM EXPLOSIONS, DEFLAGRATIONS OR DETONATIONS APPLICABLE CONTAINERS AND WAY TO MAKE THEMSELVES
EP0276918B1 (en) * 1987-01-14 1993-09-15 Cube Overseas Trading Ltd. Bomb blast inhibitor and method of bomb blast inhibition
US7421936B2 (en) * 2005-04-22 2008-09-09 Bbn Technologies Corp. Systems and methods for explosive blast wave mitigation

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5719350A (en) * 1993-09-24 1998-02-17 John Humphries Parkes Blast and splinter proof screening device and his method of use
GB2337805A (en) * 1996-06-27 1999-12-01 John Humphries Parkes Explosion-suppressing barriers
US5864767A (en) * 1997-06-09 1999-01-26 The United States Of America As Represented By The Secretary Of The Army Chemical biological explosive containment system
US6439120B1 (en) * 1997-12-12 2002-08-27 Her Majesty The Queen In Right Of Canada As Represented By The Solicitor General Acting Through The Commissioner Of Royal Canadian Mounted Police Apparatus and method for blast suppression
DE20220429U1 (en) * 2002-04-10 2003-07-17 TDW Gesellschaft für verteidigungstechnische Wirksysteme mbH, 86529 Schrobenhausen Protective cover for fragmentation munitions has water filled cellular casing to fit around munition and absorb explosion

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7421936B2 (en) * 2005-04-22 2008-09-09 Bbn Technologies Corp. Systems and methods for explosive blast wave mitigation
CN101799262A (en) * 2010-04-12 2010-08-11 胡铭益 Smoothwall blasting method for digging tunnel
WO2012128691A1 (en) * 2011-03-22 2012-09-27 Area Clearance Services Sweden Ab Mobile transport container for handling of detonation-dangerous objects and method for this same
EP2689209A4 (en) * 2011-03-22 2014-08-13 Dynasafe Internat Ab MOBILE TRANSPORT CONTAINER FOR HANDLING HAZARDOUS DETONATING OBJECTS AND METHOD THEREOF
US9004558B2 (en) 2011-03-22 2015-04-14 Dynasafe International Ab Mobile transport container for handling of detonation-dangerous objects and method for this same
DE102013105416B3 (en) * 2013-05-27 2014-09-25 Millenium Packaging GmbH Mobile in its form flexible protective device for explosive ordnance disposal as well as methods for the controlled detonation of an explosive device

Also Published As

Publication number Publication date
GB0405859D0 (en) 2004-04-21
JP2007529710A (en) 2007-10-25
US20080257137A1 (en) 2008-10-23

Similar Documents

Publication Publication Date Title
US20080257137A1 (en) Blast Mitigation Structures
AU737672B2 (en) Apparatus and method for blast suppression
US5719350A (en) Blast and splinter proof screening device and his method of use
US20070119851A1 (en) Bomb bin
ES2210376T3 (en) METHOD AND APPLIANCE TO CONTAIN AND DELETE DETONATIONS OF EXPLOSIVES.
US5864767A (en) Chemical biological explosive containment system
US7213494B2 (en) Blast protection structures
US7581478B2 (en) Apparatus for blast suppression
ES2349670T3 (en) METHOD AND APPLIANCE TO CONTAIN AND DELETE EXPLOSIVE DETONATIONS.
US20070094944A1 (en) Blast mitigation structures
EP0983776B1 (en) Building safety system
WO2005090898A1 (en) Improvements in and relating to blast mitigation devices
EP1654513B1 (en) Shock suppression apparatus
GB2314614A (en) Explosion-suppressing barriers
ES2387367B1 (en) INFLATABLE PROTECTOR FOR ALL KIND OF OBSTACLES IN RISK SPORTS
CN113653529A (en) A kind of instantaneous isolation device of airbag type disaster body in underground roadway
CA2616566A1 (en) Combined blast protection structure and vehicle barrier
CN121158278A (en) An integrated UAV protective airbag landing gear and its installation method
HK1033353B (en) Apparatus and method for blast suppression
WO2006103473A1 (en) Vehicle safety system

Legal Events

Date Code Title Description
AK Designated states

Kind code of ref document: A1

Designated state(s): AE AG AL AM AT AU AZ BA BB BG BR BW BY BZ CA CH CN CO CR CU CZ DE DK DM DZ EC EE EG ES FI GB GD GE GH GM HR HU ID IL IN IS JP KE KG KP KR KZ LC LK LR LS LT LU LV MA MD MG MK MN MW MX MZ NA NI NO NZ OM PG PH PL PT RO RU SC SD SE SG SK SL SM SY TJ TM TN TR TT TZ UA UG US UZ VC VN YU ZA ZM ZW

AL Designated countries for regional patents

Kind code of ref document: A1

Designated state(s): BW GH GM KE LS MW MZ NA SD SL SZ TZ UG ZM ZW AM AZ BY KG KZ MD RU TJ TM AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HU IE IS IT LT LU MC NL PL PT RO SE SI SK TR BF BJ CF CG CI CM GA GN GQ GW ML MR NE SN TD TG

121 Ep: the epo has been informed by wipo that ep was designated in this application
WWE Wipo information: entry into national phase

Ref document number: 2007503419

Country of ref document: JP

NENP Non-entry into the national phase

Ref country code: DE

WWW Wipo information: withdrawn in national office

Country of ref document: DE

122 Ep: pct application non-entry in european phase
WWE Wipo information: entry into national phase

Ref document number: 10593163

Country of ref document: US