IP Library Patent Application 11958886
Patent Application
App. No. 11/958,886

System and Method for Delivering Cryogenic Fluid

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Quick Facts
Patent No.
US None
App. No.
11/958,886
Abstract

According to an embodiment of the present invention, a rotating nozzle assembly includes a rotatable shaft having a bore to transport a cryogenic fluid therethrough. The rotatable shaft has an upstream portion associated with a feed chamber and a downstream portion. The nozzle assembly further includes a seal disposed within the feed chamber and surrounding at least a portion of the rotatable shaft, and a seal backup disk disposed proximate the seal. The seal backup disk includes an orifice surrounding an outside diameter of the rotatable shaft, the orifice having a diameter such that, when the cryogenic fluid is flowing through the bore of the rotatable shaft, the rotatable shaft can freely rotate while the seal prevents the cryogenic fluid from seeping past the seal.

Claims (73)

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32 . A nozzle assembly, comprising:

a mixing chamber;

a cryogenic fluid feed coupled to the mixing chamber and operable to deliver high-pressure, supercritical cyrogenic fluid into the mixing chamber;

an abrasive material feed coupled to the mixing chamber and operable to deliver an abrasive material into the mixing chamber; and

a nozzle coupled to the mixing chamber and operable to direct a jet from the mixing chamber toward a target, wherein the jet comprises a mixture of the high-pressure, supercritical cryogenic fluid and the abrasive material and wherein the nozzle is sized such that the jet does not lose coherence before striking the target.

33 . The nozzle assembly of claim 32 , wherein the jet exits the nozzle at a temperature no colder than −235° F. at a pressure of approximately 55,000 psi.

34 . The nozzle assembly of claim 32 , wherein an exposed length of the nozzle is no more than two inches.

35 . The nozzle assembly of claim 32 , wherein the nozzle comprises at least one of boron nitride and tungsten carbide.

36 . The nozzle assembly of claim 32 , wherein the abrasive material comprises a water-soluble abrasive.

37 . The nozzle assembly of claim 36 , wherein the water-soluble abrasive comprises a crystalline compound.

38 . The nozzle assembly of claim 36 , wherein the water soluble abrasive comprises carbon dioxide.

39 . The nozzle assembly of claim 32 , wherein the nozzle comprises a venturi.

40 . A nozzle assembly, comprising:

a mixing chamber;

a cryogenic fluid feed coupled to the mixing chamber and operable to deliver high-pressure, supercritical cryogenic fluid into the mixing chamber;

an abrasive material feed coupled to the mixing chamber and operable to deliver an abrasive material into the mixing chamber; and

a nozzle coupled to the mixing chamber and operable to direct a jet from the mixing chamber towards a target, wherein the jet comprises a mixture of the high-pressure, supercritical cryogenic fluid and the abrasive material and wherein the nozzle has an exposed length of no more than two inches such that the high-pressure supercritical cryogenic fluid exits the nozzle at a temperature no colder than −235° F. at a pressure of approximately 55,000 psi.

41 . The nozzle assembly of claim 40 , wherein the nozzle comprises at least one of boron nitride and tungsten carbide.

42 . The nozzle assembly of claim 40 , wherein the abrasive material comprises a water-soluble abrasive.

43 . The nozzle assembly of claim 42 , wherein the water-soluble abrasive comprises a crystalline compound.

44 . The nozzle assembly of claim 42 , wherein the water-soluble abrasive comprises carbon dioxide.

45 . The nozzle assembly of claim 40 , wherein a portion of the nozzle is a venturi.

46 . A method for delivering cryogenic fluid, comprising:

feeding high-pressure, supercritical cryogenic fluid into a mixing chamber through a cryogenic fluid feed coupled to the mixing chamber;

feeding an abrasive material into the mixing chamber through an abrasive material feed coupled to the mixing chamber;

mixing the cryogenic fluid and the abrasive material in the mixing chamber; and

directing a high-pressure jet at a target from a nozzle coupled to the mixing chamber, wherein the jet comprises a mixture of the cryogenic fluid and the abrasive material and the nozzle is sized such that the jet does not lost coherence before striking the target.

47 . The method of claim 46 , wherein directing the jet comprises directing the jet at a temperature no colder than −235° F. at a pressure of approximately 55,000 psi.

48 . The method of claim 46 , wherein directing the jet from a nozzle comprises directing the jet from a nozzle having an exposed length of no more than two inches.

49 . The method of claim 46 , wherein directing the jet from a nozzle comprises directing the jet from a nozzle that comprises at least one of boron nitride and tungsten carbide.

50 . The method of claim 46 , wherein the abrasive material comprises a water-soluble abrasive.

51 . The method of claim 40 , wherein the water-soluble abrasive comprises a crystalline compound.

52 . The method of claim 40 , wherein the water soluble abrasive comprises carbon dioxide.

53 . A method for delivering cryogenic fluid, comprising:

feeding high-pressure, supercritical cryogenic fluid into a mixing chamber through a cryogenic fluid feed coupled to the mixing chamber;

feeding an abrasive material into the mixing chamber through an abrasive material feed coupled to the mixing chamber;

mixing the cryogenic fluid and the abrasive material in the mixing chamber; and

directing a high-pressure jet at a target from a nozzle coupled to the mixing chamber, wherein the jet comprises a mixture of the cryogenic fluid and the abrasive material having a temperature no colder than −235° F. at a pressure of approximately 55,000 psi and the nozzle has an exposed length of no more than two inches.

54 . The method of claim 53 , wherein the directing the jet from a nozzle comprises directing the jet from a nozzle that comprises at least one of boron nitride and tungsten carbide.

55 . The method of claim 53 , wherein the abrasive material comprises a water-soluble abrasive.

56 . The method of claim 55 , wherein the water-soluble abrasive comprises a crystalline compound.

57 . The method of claim 55 , wherein the water soluble abrasive comprises carbon dioxide.

Assignments (2)
LICENSE Recorded Apr 14, 2011
From: NITROCISION, LLC
To: CONCO SYSTEMS, INC.
Reel/Frame 026128/0437 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 11, 2008
From: HUME, HOWARD R.; WARNECKE, RONALD R.; PALMER, GARY L.; FEKETE, LESLIE J.
To: NITROCISION LLC
Reel/Frame 020352/0153 →