Well emergency separation tool for use in separating a tubular element
Abstract
A method of separating a tubular element, comprising providing a tubular element having an inner and an outer surface, a circumference of said outer surface, and a first end and a second end; radially surrounding said tubular element with an explosive material, wherein said explosive material is capable of generating a high-velocity plasma jet in response to an activation signal, and wherein said explosive material comprises an electrically conductive layer; transmitting said activation signal to said explosive material; generating said high-velocity plasma jet; and separating said tubular element into a first portion comprising said first end and a second portion comprising said second end when said high-velocity plasma jet penetrates said outer surface of said tubular element and exits said inner surface of said tubular element.
Claims
exact text as granted — not AI-modified1 . A method of separating a tubular element, comprising:
providing a tubular element having an inner and an outer surface, a circumference of said outer surface, and a first end and a second end; radially surrounding said tubular element with an explosive material, wherein said explosive material is capable of generating a high-velocity plasma jet in response to an activation signal, and wherein said explosive material comprises an electrically conductive layer; transmitting said activation signal to said explosive material; generating said high-velocity plasma jet; and separating said tubular element into a first portion comprising said first end and a second portion comprising said second end when said high-velocity plasma jet penetrates said outer surface of said tubular element and exits said inner surface of said tubular element.
2 . The method of claim 1 , further comprising securing said first end of said tubular element.
3 . The method of claim 1 , further comprising completing an electrical circuit along said electrically conductive layer of said explosive material.
4 . The method of claim 1 , further comprising providing a shock mitigator and activating said shock mitigator before said generating said high-velocity plasma jet step.
5 . The method of claim 4 , wherein said shock mitigator is a bubble curtain formed by injecting an inert gas into a fluid.
6 . The method of claim 1 , further comprising allowing said second portion of said tubular element to travel away from said first portion.
7 . The method of claim 1 , wherein said tubular element is positioned above a wellsite, wherein said wellsite comprises a well flowing a produced fluid at a first rate and a flow control device connected to said well.
8 . The method of claim 7 , further comprising closing said flow control device after said second portion of said tubular element has travelled away from said first portion.
9 . The method of claim 8 , wherein said flow control device is a blowout preventer ram.
10 . The method of claim 1 , further comprising providing a ram body, wherein at least a portion of said explosive material is contained with said ram body, said ram body having an outer surface and an inner surface, said outer surface and said inner surface connected by a substantially flat face, said flat face having an arcuate recess designed to engage a portion of said circumference of said tubular element and a sealing element fixedly attached to said flat face.
11 . The method of claim 10 , further comprising compressing said sealing element.
12 . The method of claim 10 , further comprising providing a ram housing, wherein said ram housing comprises a first ram body and a second ram body.
13 . The method of claim 12 , further comprising laterally translating said first ram body and said second ram body toward said tubular element, said first ram body radially encompassing a first portion of said circumference of said tubular element, and said second ram body radially encompassing a second portion of said circumference of said tubular element.
14 . The method of claim 13 , further comprising laterally translating said first ram body and said second ram body away from said tubular element after said separating said tubular element into said first portion and said second portion step.
15 . A well emergency separation tool for separating a tubular element, comprising:
a tubular element having an inner and an outer surface, a circumference of said outer surface, and a first end and a second end; an explosive material, said explosive material radially surrounding said tubular element; a ram body, said ram body comprising an outer surface and an inner surface, said outer surface and said inner surface connected by a substantially flat face, wherein said flat face comprises an arcuate recess designed to engage a portion of said circumference of said tubular element, wherein at least a portion of said explosive material is contained with said ram body; and a trigger adapted to send an activation signal to said explosive material.
16 . The well emergency separation tool of claim 15 , further comprising a sealing element fixedly attached to said flat face.
17 . The well emergency separation tool of claim 15 , further comprising a first ram body and a second ram body.
18 . The well emergency separation tool of claim 17 , further comprising a ram housing, said ram housing having a thru-bore and an outer surface fluidly isolated from an external environment, wherein said first ram body and said second ram body are contained with said ram housing.
19 . The well emergency separation tool of claim 18 , further comprising a shock mitigator, wherein said shock mitigator is located external to said ram housing.
20 . The well emergency separation tool of claim 15 , further comprising a wellsite, wherein said wellsite comprises a subsea well flowing a produced fluid, a flow control device fluidly connected to said well, and a riser, wherein said well emergency separation tool is fluidly connected between said flow control device and said riser.
21 . The well emergency separation tool of claim 20 , wherein said flow control device is a blowout preventer.
22 . The well emergency separation tool of claim 20 , further comprising a plurality of well emergency separation tools fluidly connected between said flow control device and said riser.Join the waitlist — get patent alerts
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