The invention relates to a blast valve as defined in the preamble of independent claim 1.
The invention relates especially to blast valves designed for industrial use to protect personnel and critical equipment against blast wave created by an explosion in an industrial facility such as in an oil and/or gas platform or in an oil refinery.
Publication FI 124126 presents a blast valve.
One problem with the blast valve presented in publication FI 124126 is that if the size of the blast valve is large such as if the blast valve comprises over six parallel rows of closure devices each row comprising over ten closure devices, transportation of the blast valve to the mounting site is a problem.
The object of the invention is to solve the above identified problem.
The blast valve of the invention is characterized by the definitions of independent claim 1. Preferred embodiments of the blast valve are defined in the dependent claims.
In the following the invention will described in more detail by referring to the figures, of which
The figures show an embodiment of the blast valve.
The blast valve comprises a frame 1 having a first elongated side member 2, a second elongated side member 3, an elongated bottom member 4, and an elongated top member 5.
The first elongated side member 2 and the second elongated side member 3 are parallel and the elongated bottom member 4 and the elongated top member 5 are parallel.
Each of the first elongated side member 2, the second elongated side member 3, the elongated bottom member 4 and the elongated top member 5 have two opposite first ends 6.
One of the opposite first ends 6 of the first elongated side member 2 is attached to one of the opposite first ends 6 of the elongated bottom member 4 and the other of the opposite first ends 6 of the first elongated side member 2 is attached to one of the opposite first ends 6 of the elongated bottom member 4.
One of opposite first ends 6 of the second elongated side member 3 is attached to one of the opposite first ends 6 of the elongated bottom member 4 and the other of the opposite first ends 6 of the second elongated side member 3 is attached to one of the opposite first ends 6 of the elongated bottom member 4.
A plurality of parallel rows of closure devices 7 arranged in the frame 1.
The number of closure devices in each parallel row of closure devices can for example be between 2 and 20. The number of parallel rows of closure devices can for example be between 2 and 20.
The closure devices 7 are preferably, but not necessarily, closure devices 7 of the type as presented in publication WO 2016/0135380 or in publication U.S. Pat. No. 4,733,606.
The closure devices 7 are preferably, but not necessarily, attached to the frame 1 by means of external fastening means 8.
The first elongated side member 2 is attached to the elongated bottom member 4 and to the elongated top member 5 by external fastening means 8, and the second elongated side member 3 is attached to the elongated bottom member 4 and to the elongated top member 5 by external fastening means 8. This makes is possible to transport the frame 1 of the blast valve in pieces to the site where the blast valve is mounted, which reduces the transportation costs and makes the transportation easier.
The frame 1 of the blast valve comprises preferably, but not necessarily, as shown in
The frame 1 comprises preferably, but not necessarily, as shown in the figures and especially in
If the frame 1 comprises an outer frame, the outer frame 9 can, as shown in
In the embodiment shown in the figures, especially in
The blast valve comprises preferably, but not necessarily, as shown in the figures, at least two blast valve sections 17 joined together to form the blast valve. In this embodiment, each blast valve sections comprises at least two parallel frame section 11 of said plurality of parallel frame sections 11. Provision of such blast valve sections 17 makes it possible to transport the blast valve in assembled pieces to the site at which the blast valve is to be mounted. In this embodiment, each of said at least two parallel frame sections 11 comprises an upper outer horizontal beam 21, which that forms a part of the elongated top member 5 and the outer frame 9, and a lower outer horizontal beam 22, which forms a part of the elongated bottom member 4 and outer frame 9. The length of the upper outer horizontal beam 21 can be essentially the same as the lower outer horizontal beam 22 in each blast valve section 17. The upper outer horizontal beam 21 is connected to each of said least two parallel frame sections 11 in one of said at least two blast valve sections 17, and the lower outer horizontal beam 22 is connected to each of said least two parallel frame sections 11 in one of said at least two blast valve sections 17. Each blast valve section 17 having at least one connection surface 23 formed in part by the web 19 of one of a first vertical beam 13 and a second vertical beam 14 of a parallel frame section 11 in each blast valve section 17. The blast valve sections 17 are joined together by mating the connection surfaces 23 of adjacent blast valve section 17 and by connecting adjacent blast valve sections 17 by external fastening means 8.
If the blast valve comprises a blast valve sections 17 as described earlier, the upper outer horizontal beam 21, which forms a part of the elongated top member 5 and of the outer frame 9, are preferably, but not necessarily, at the connection surface 23 of the blast valve section 17 provided with an upper connection flange 24, which forms a part of the connection surface 23 of the blast valve section 17. The upper connection flange 24 is preferably, but not necessarily, provided with apertures 29 for external fastening means 8. The upper outer horizontal beam 21 is preferably, but not necessarily, formed of a u-beam having two flanges 18, a web 19, and a channel 20 between the two flanges 18 and the web 19, and the web 19 of the upper outer horizontal beam 21 is preferably, but not necessarily, in contact with the web 19 of the U-beam forming the upper horizontal beam 15 in each frame section 11. Provision of such upper connection flanges 24 makes the blast valve stronger.
If the blast valve comprises at least two blast valve sections 17 as described earlier, the lower outer horizontal beams 22, which forms a part of the elongated bottom member 4 and of the outer frame 9, are preferably, but not necessarily, at the connection surface 23 of the blast valve section 17 provided with a lower connection flange 25, which forms a part of the connection surface 23 of the blast valve section 17. The lower connection flange 25 is preferably, but not necessarily, provided with apertures 29 for external fastening means 8. The lower outer horizontal beam 22 is preferably, but not necessarily, formed of a u-beam having two flanges 18, a web 19, and a channel 20 between the two flanges 18 and the web 19, and the web 19 of the lower outer horizontal beam 22 is preferably, but not necessarily, in contact with the web 19 of the U-beam forming the lower horizontal beam 16 in each frame section 11. Provision of such lower connection flanges 25 makes the blast valve stronger.
If the blast valve comprises at least two blast valve sections 17 as described above, two blast valve sections 17 of the blast valve are preferably, but not necessarily, provided with an outer vertical beam 26 in contact with the web 19 of one of a first vertical beam 13 and a second vertical beam 14 of a parallel frame section 11, wherein the outer vertical beam 26 forms a part of the outer frame 9 and one of the first elongated side member 2 and the second elongated side member 3. The outer vertical beam 26 is preferably but not necessarily, formed of u-beams having two flanges 18, a web 19, and a channel 20 between the two flanges 18 and the web 19. In such case, the web 19 of the outer vertical beam 26 is preferably, but not necessarily, in contact with the web 19 of one of a first vertical beam 13 and a second vertical beam 14 of the parallel frame section 11 of the blast valve section 17. The outer vertical beam 26 is preferably, but not necessarily, formed of at least two outer vertical beam sections 27 connected together by external fastening means 8. Provision of such outer vertical beams 26 makes the blast valve stronger and facilitates mounting of the blast valve.
If the blast valve comprises a plurality of frame sections 11 as described earlier, each first vertical beam 13 and each second vertical beam 14 of each frame section 11 comprises preferably, but not necessarily, reinforcements 28 in the channel 20 of the u-beam and connecting the two flanges 18 and the web 19, and each first vertical beam 13 and each second vertical beam 14 comprises preferably, but not necessarily, reinforcements 28 at each second end 30 of the channel 20 of the u-beam. The reinforcements 28 at each second end 30 of the channel 20 of the u-beam comprises preferably, but not necessarily, apertures 29 for external fastening means 8.
If the blast valve comprises a plurality of frame sections 11 as described earlier, each upper horizontal beam 15 and each lower horizontal beam 16 of each frame section 11 comprises preferably, but not necessarily, reinforcements 28 at each second end 30 of the channel 20 of the u-beam. The reinforcements 28 at each second end 30 of the channel 20 of the u-beam comprises preferably, but not necessarily, apertures 29 for external fastening means 8.
The external fastening means 8 comprises preferably, but not necessarily, bolts and nuts.
It is apparent to a person skilled in the art that as technology advances, the basic idea of the invention can be implemented in various ways. The invention and its embodiments are therefore not restricted to the above examples, but they may vary within the scope of the claims.
Number | Date | Country | Kind |
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20165872 | Nov 2016 | FI | national |
Number | Date | Country | |
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Parent | PCT/FI2017/050799 | Nov 2017 | US |
Child | 16418088 | US |