IPC분류정보
국가/구분 |
United States(US) Patent
등록
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국제특허분류(IPC7판) |
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출원번호 |
US-0964787
(2004-10-13)
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등록번호 |
US-7306038
(2007-12-11)
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발명자
/ 주소 |
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출원인 / 주소 |
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대리인 / 주소 |
Steins & Associates, P.C.
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인용정보 |
피인용 횟수 :
2 인용 특허 :
1 |
초록
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The Invention is a Well Cleaning Method and Apparatus using detonating cord having Additional Reliability and a Longer Shelf Life. The method and apparatus employs one or more subassemblies, each subassembly having a combustible material, means for igniting the combustible material, and one or more
The Invention is a Well Cleaning Method and Apparatus using detonating cord having Additional Reliability and a Longer Shelf Life. The method and apparatus employs one or more subassemblies, each subassembly having a combustible material, means for igniting the combustible material, and one or more high-strength sleeves attached around portions of the combustible material to attenuate the outwardly-directed pressure wave created by ignition of the combustible material. The assemblies further exhibit staggered detonation with the simultaneous application of electrical current to all assemblies. The combustible material is further modified to add an additional outer impervious layer such that the combustible material exhibits prolonged shelf life and durability.
대표청구항
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What is claimed is: 1. Well cleaning apparatus for a liquid well having a casing comprising: first and second subassemblies, each said subassembly comprising: an elongated tube of substantially uniform cross section containing combustible material having a deflagration rate many times greater than
What is claimed is: 1. Well cleaning apparatus for a liquid well having a casing comprising: first and second subassemblies, each said subassembly comprising: an elongated tube of substantially uniform cross section containing combustible material having a deflagration rate many times greater than the velocity of sound in the liquid of the well; means for igniting said combustible material to achieve deflagration of said material that progresses along the length of said tube and generates outwardly directed pressure; a plurality of short high strength sleeves mutually spaced by distances many times greater than the length of said sleeves secured to the exterior of said tube for attenuating said outwardly directed pressure at short areas spaced along the length of said tube by relatively long distances; a dampening element positioned between and in axial alignment with said first and second subassemblies; and means for holding said tube in the casing of the well. 2. The apparatus of claim 1, further comprising: a third said subassembly. 3. The apparatus of claim 2, wherein said means for igniting comprises first, second and third electrically activated detonator caps, each connected to a respective one of said tubes at an end of said tube, each said detonator cap having a different amount of delay, whereby upon simultaneous electrical activation of all three said detonator caps, said combustible material in one said tube is ignited first, said combustible material of said second said tube is ignited after said first ignition, and said combustible material of said third tube is ignited after said first and second ignitions. 4. The apparatus of claim 2, wherein each said tube comprises an inner sheath and an outer sheath, said inner sheath containing said combustible material. 5. The apparatus of claim 2, wherein: each said tube is further defined by a pair of opposing ends, one said end having an end cover attached thereto; and further comprising a non-drying coating of non-dried sealant between said ends and said end covers thereattached. 6. The apparatus of claim 5, wherein said end covers and said tubes thereattached are defined by a pair of circumferentially crimped indentations. 7. The apparatus of claim 1, wherein each said tube comprises an inner sheath and an outer sheath, said inner sheath containing said combustible material. 8. The apparatus of claim 1, wherein: each said tube is further defined by a pair of opposing ends, one said end having an end cover attached thereto; and p1 further comprising a non-dried coating of non-drying sealant between said ends and said end covers thereattached. 9. The apparatus of claim 8, wherein said end covers and said tubes thereattached are defined by a pair of circumferentially crimped indentations. 10. The apparatus of claim 1, further comprising tubular blast shields, one said subassembly passing through an inner chamber defined by each said blast shield, said blast shield comprising a plurality of filaments in spaced relation along their length. 11. A method of cleaning the casing of a fluid well comprising the steps of: providing first, second and third tubes of detonator cord having a substantially uniform cross section filled with combustible material, each said cord further defined by an inner sheath and an outer sheath; forming a suspending cable and an electrically conductive wire extending along the length thereof; forming first and second pairs of series connection terminals on said wire at first and second mutually spaced electric connection points along said cable; positioning a plurality of short mutually spaced high strength sleeves on each of said first, second and third tubes at positions mutually spaced along the length of said tubes by a distance greater than the length of said sleeves; sealing the ends of each of said tubes; securing said tubes in end to end relation to said cable and electrical wire with adjacent ends of said first and second tubes spaced apart by a selected distance near said first electric connection point of said cable and the remote end of said third tube positioned near said second electric connection point; securing a first end of first, second and third connector sleeves, respectively, to first, second and third detonator caps, each said detonator cap having first and second electrical ignitor wires; securing the first and second ignitor wires of said first detonator to one another and securing the first and second ignitor wires of said second detonator to one another to prevent accidental detonation thereof; transporting said tubes, cable, wire and detonators with said detonators displaced separate containers from said tubes; positioning said detonators adjacent to and in contact with the ends of said first, second and third tubes with said second and third detonators being positioned between said second and third tubes; inserting adjacent ends of said second and third tubes into the other ends of said second and third connector sleeves with the ends of said tubes adjacent said second and third detonator caps, respectively; attaching a second end of said first tube to a second end of said second tube, said attaching further defined by inserting a dampener element between said end of said first tube and said end of said second tube and within said second connector sleeve; securing said first and second connector sleeves to said first and second tubes respectively; inserting the end of said first tube into the other end of said third connector sleeve, and securing said first connector sleeve to said first connecting tube; connecting the first and second igniter wires of said first detonator to said series connection terminals at said second connecting point; disconnecting said first and second wires of said second and third detonators from each other and connecting such first wires to said series connection terminals at said first connection point; connecting said second wires of said second and third detonators to each other, inserting said cable, electrical wire, tubes and detonators into a desired location within a well casing; and activating each of said detonators by electrically energizing said electrically conductive wire to thereby produce a series of outwardly directed pressure pulses within said well casing and effect cleaning of said casing. 12. The method of claim 11, wherein said sealing step further comprises the steps of: applying a coating of non-drying sealant to said tube ends; and attaching an end cover over each said coated tube end. 13. The method of claim 12, wherein said attaching step of said sealing step comprises crimping said end covers to said tube ends in two adjacent locations. 14. An apparatus for cleaning a liquid well having a casing comprising: first and second subassemblies, each said subassembly comprising: a length of detonator cord, said cord further defined by an inner sheath and an outer sheath, said outer sheath applied directly over said inner sheath, and having a substantially uniform cross section and further containing combustible material having a deflagration rate many times greater than the velocity of sound in the liquid of the well; means for igniting said combustible material to achieve deflagration of said material that progresses along the length of said cord and generates outwardly directed pressure; a plurality of short high strength sleeves mutually spaced by distances many times greater than the length of said sleeves secured to the exterior of said cord for attenuating said outwardly directed pressure at short areas spaced along the length of said tube by relatively long distances; a dampening element positioned between said first and second subassemblies in axial alignment with said lengths of detonator cord; and means for holding said cord in the casing of the well. 15. The apparatus of claim 14, further comprising: a third said subassembly. 16. The apparatus of claim 15, wherein: each said cord is further defined by a pair of opposing ends, one said end having an end cover attached thereto; and further comprising a non-dried coating of non-drying sealant between said ends and said end covers thereattached. 17. The apparatus of claim 16, wherein said end covers and said cords thereattached are defined by a pair of circumferentially crimped indentations. 18. The apparatus of claim 14, further comprising tabular blast shields, one said subassembly passing through an inner chamber defined by each said blast shield, said blast shield comprising a plurality of filaments in spaced relation along their length.
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