Well-component severing tool with a radially-nonuniform explosive cartridge
An assembly for an explosive device for severing a well component is provided. The assembly can include an outer housing. The assembly can also include a radially-nonuniform explosive cartridge disposed within the outer housing, and the radially-nonuniform explosive cartridge can include at least four protrusions.
1. An assembly for an explosive device for severing a well component, the assembly comprising:
an outer housing; and
a radially-nonuniform explosive cartridge disposed within the outer housing, the radially-nonuniform explosive cartridge comprising a top end having a corrugated circumferential shape with four or more protrusions, a bottom end also having a corrugated circumferential shape with four or more protrusions, and a middle between the top end and the bottom end, wherein the radially-nonuniform explosive cartridge slopes inwardly from the top end and the bottom end toward the middle,
wherein the radially-nonuniform explosive cartridge is positioned in a longitudinal middle of a longitudinal axis of the outer housing.
2. The assembly of claim 1 , wherein the radially-nonuniform explosive cartridge comprises a spoke shape or starburst shape cross-sectionally.
3. The assembly of claim 1 , wherein each of the protrusions at the top end and at the bottom end slopes inwardly toward the middle to form a respective angled surface.
4. The assembly of claim 1 , wherein the radially-nonuniform explosive cartridge comprises: Research Department Explosive, High Melting Explosive, or Hexanitrostilbene.
5. The assembly of claim 1 , wherein the exterior of the radially-nonuniform explosive cartridge has a corrugated shape.
6. The assembly of claim 1 , wherein the radially-nonuniform explosive cartridge includes an explosive that is coated with a clad metal or a powdered metal.
7. The assembly of claim 1 , further comprising a mechanical connector coupled to a wireline for positioning the explosive device in the well component.
8. An assembly comprising:
a radially-nonuniform explosive cartridge housed within an explosive device for severing a well component, wherein the radially-nonuniform explosive cartridge comprises a top end having a corrugated circumferential shape with four or more protrusions, a bottom end also having a corrugated circumferential shape with four or more protrusions, and a middle between the top end and the bottom end, wherein the radially-nonuniform explosive cartridge slopes inwardly from the top end and the bottom end to the middle, and wherein the radially-nonuniform explosive cartridge is positioned in a longitudinal middle of a longitudinal axis of the explosive device.
9. The assembly of claim 8 , wherein the radially-nonuniform explosive cartridge comprises a spoke shape or starburst shape cross-sectionally.
10. The assembly of claim 8 , wherein the radially-nonuniform explosive cartridge comprises: Research Department Explosive, High Melting Explosive, or Hexanitrostilbene.
11. The assembly of claim 8 , wherein an exterior of the radially-nonuniform explosive cartridge has a corrugated shape.
12. The assembly of claim 8 , wherein the radially-nonuniform explosive cartridge includes an explosive that is coated with a clad metal or a powdered metal.
13. The assembly of claim 8 , further comprising a mechanical connector coupled to a wireline for positioning the explosive device in the well component.
14. A method, comprising:
generating a plurality of pressure waves from a radially-nonuniform explosive cartridge positioned within a well component, wherein the radially-nonuniform explosive cartridge is positioned in a longitudinal middle of a longitudinal axis of an outer housing and comprises a top end having a corrugated circumferential shape with four or more protrusions, a bottom end also having a corrugated circumferential shape with four or more protrusions, and a middle between the top end and the bottom end, and wherein the radially-nonuniform explosive cartridge slopes inwardly from the top end and the bottom end toward the middle;
generating a plurality of fractures in the well component from the plurality of pressure waves; and
severing, by an expansion of the plurality of fractures, the well component.
15. The method of claim 14 , wherein at least two of the plurality of pressure waves are generated substantially simultaneously.
16. The method of claim 15 , further comprising:
generating, by a collision of the at least two of the plurality of pressure waves, a combined pressure wave directed towards the well component.