EP1165249A2

Method and apparatus for fluid jet formation

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 8 March 2020, 6.5 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

122 claims: 17 independent, 105 dependent

  1. 1
    Claims of equivalent WO 0056466 A2 CLAIMS 1. An apparatus for generating a high pressure fluid jet for treatment of a selected surface, comprising:a nozzle configured to be coupled to a source of a first fluid, the nozzle having a nozzle orifice extending therethrough in fluid communication with the source of the first fluid;and a delivery conduit having a first conduit opening in fluid communication with the nozzle orifice, the delivery conduit further having a second conduit opening spaced apart from the first conduit opening for directing the fluid jet, the delivery conduit having a conduit channel extending between the first and second conduit openings, a length of the conduit channel between the first and second conduit openings being at least approximately ten times a mean diameter of the second conduit opening, at least one of the nozzle and the delivery conduit having at least one aperture upstream of the second conduit opening, the aperture being configured to be coupled to a source of a second fluid.
  2. 7
    -An apparatus for generating a high pressure fluid jet for treatment of a selected surface, comprising:a source of a first fluid having a pressure of at least approximately 10,000 psi;a source of a second fluid;a supply conduit coupled to the source of the first fluid;a nozzle support body coupled to the supply conduit and having a nozzle passage in fluid communication with the supply conduit;a nozzle positioned in the nozzle passage, the nozzle having a nozzle orifice in fluid communication with the source of the first fluid;and a delivery conduit proximate to the nozzle support body and having a first conduit opening in fluid communication with the nozzle orifice, the delivery conduit further having a second conduit opening spaced apart from the first conduit opening for directing the fluid jet, the delivery conduit having a conduit channel extending between the first and second conduit openings, a length of the conduit channel between the first and second conduit openings being at least approximately ten times a mean diameter of the second conduit opening, at least one of the nozzle and the delivery conduit having at least one aperture coupled to the source of the second fluid, the aperture being between the nozzle orifice and the second opening of the conduit.
  3. 17
    -An apparatus for generating a high pressure fluid jet for treatment of a selected surface, comprising:a nozzle configured to be coupled to a source of fluid, the nozzle having a nozzle orifice with a first opening in fluid communication with the source of the fluid and a second opening downstream of the first opening;and a conduit having a first conduit opening in fluid communication with the second opening of the nozzle orifice, the conduit further having a second conduit opening spaced apart from the first conduit opening for directing the fluid jet, the conduit having a channel extending between the first conduit opening and the second conduit opening, the conduit and the nozzle defining a flow passage extending therebetween, the flow passage having at least one aperture between the second opening of the nozzle orifice and the second opening of the conduit, the aperture being coupled to a vacuum source for drawing a vacuum through the conduit and through the aperture.
  4. 19
    -An apparatus for generating a high pressure fluid jet for treatment of a selected surface, comprising:a supply conduit configured to be coupled to a source of a first fluid;a nozzle rotatably coupled to the supply conduit and rotatable relative to the supply conduit, the nozzle having a nozzle orifice in fluid communication with the supply conduit;and a delivery conduit having a first conduit opening in fluid communication with the nozzle orifice, the delivery conduit further having a second conduit opening spaced apart from the first conduit opening for directing the fluid jet toward the selected surface, the delivery conduit having a channel extending between the first conduit opening and the second conduit opening, at least one of the delivery conduit and the nozzle having at least one aperture configured to be coupled to a source of a second fluid, the aperture being between the nozzle orifice and the second opening of the conduit.
  5. 25
    An apparatus for controlling a coherence of a high pressure fluid jet used for treating a selected surface, the apparatus comprising:a conduit having an opening for supplying a high pressure flow of fluid;a nozzle body positioned proximate to the opening of the conduit, the nozzle body having an orifice extending therethrough;and a turbulence generator positioned at at least one of an upstream and a downstream location relative to the orifice, the turbulence generator being positioned within a selected distance of the orifice to generate turbulence in the high pressure flow of fluid passing adjacent the turbulence generator and control a coherence of the high pressure flow exiting the orifice.
  6. 35
    An apparatus for controlling a coherence of a high pressure liquid jet, comprising:a first nozzle body having a first nozzle orifice with a first flow area;a second nozzle body downstream of the first nozzle body, the second nozzle body having a second nozzle orifice with a second flow area, a ratio of the first flow area to the second flow area being at least approximately one to generate a liquid jet exiting the second nozzle having a selected coherence level;and a flow conduit having a passageway between the first and second nozzle bodies for directing high pressure liquid from the first nozzle body to the second nozzle body.
  7. 44
    An apparatus for controlling a coherence of a high pressure liquid jet, comprising:a high pressure flow conduit having an entrance aperture for receiving a flow of liquid, an exit aperture downstream of the entrance aperture, and a flow channel extending between the entrance aperture and the exit aperture, a flow area of the flow channel being greater toward the exit aperture than toward the entrance aperture;and a nozzle body positioned proximate to the exit aperture and having a nozzle orifice to direct high pressure liquid away from the exit in the form of a high pressure fluid jet.
  8. 47
    A removable nozzle assembly for a high pressure fluid jet device, the fluid jet device including a supply conduit having a channel with an open end, the removable nozzle assembly comprising:a flow conduit having a first end and a second end downstream of the first end, the flow conduit further having a first opening toward the first end, a second opening toward the second end, and a flow channel between the first and second openings;and at least one nozzle body positioned proximate one of the first and second openings of the flow conduit, the nozzle body having an orifice with an upstream opening for receiving fluid flow and a downstream opening for exiting the fluid flow, the nozzle body and the flow conduit being movable as a unit relative to the supply conduit between an installed position with the orifice of the nozzle body in fluid communication with the channel of the supply conduit and an uninstalled position with the orifice of the nozzle body out of fluid communication with the channel of the supply conduit.
  9. 52
    An apparatus for generating a high pressure fluid jet for treatment of a selected surface, comprising:a nozzle having a nozzle orifice extending therethrough, the nozzle being configured to withstand pressures generated by a first fluid passing through the nozzle orifice from a source of the first fluid where the first fluid has a static pressure of at least approximately 100,000 psi;and a delivery conduit having a first conduit opening in fluid communication with the nozzle orifice, the delivery conduit further having a second conduit opening spaced apart from the first conduit opening for directing the fluid jet, the delivery conduit having a conduit channel extending between the first and second conduit openings, the delivery conduit being configured to withstand pressures generated by the first fluid passing through the conduit channel, at least one of the nozzle and the delivery conduit having at least one aperture upstream of the second conduit opening, the aperture being configured to be coupled to a source of a second fluid.
  10. 58
    An apparatus for controlling a coherence of a high pressure fluid jet used for treating a selected surface, the apparatus comprising:a conduit having an opening for supplying a high pressure flow of fluid;a nozzle body positioned proximate to the opening of the conduit, the nozzle body having an orifice extending therethrough;and turbulence generation means positioned at at least one of an upstream and a downstream location relative to the orifice, the turbulence generation means being positioned within a selected distance of the orifice to generate turbulence in the high pressure flow of fluid passing adjacent the turbulence generation means and control a coherence of the high pressure flow exiting the orifice.
  11. 68
    A method for treating a selected surface with a high pressure fluid jet, comprising:directing a first fluid through a nozzle orifice to form a high pressure fluid jet;controllably entraining a second fluid in the high pressure fluid jet downstream of the nozzle orifice;and directing the high pressure fluid jet with entrained second fluid toward the selected surface through a conduit having a length equal to at least ten time a mean diameter of an exit opening of the conduit.
  12. 88
    A method for treating a selected surface with a high pressure fluid jet, comprising:directing a first fluid through a nozzle orifice to form a high pressure fluid jet;controllably entraining a second fluid in the high pressure fluid jet downstream of the nozzle orifice by applying a vacuum proximate to a first axial location of the high pressure fluid jet between the nozzle orifice and the selected surface to draw the second fluid toward the fluid jet at a second axial location spaced apart from the first axial location;and directing the high pressure fluid jet with entrained second fluid toward the selected surface.
  13. 92
    A method for increasing a coherence of a high pressure fluid jet directed toward a selected surface, comprising:directing a first fluid through a nozzle orifice to form a high pressure fluid jet;controllably entraining a second fluid in the fluid jet downstream of the nozzle orifice to reduce a tendency for the first fluid to diverge from an axis between the nozzle orifice and the selected surface;and directing the high pressure fluid jet with entrained second fluid toward the selected surface.
  14. 95
    A method for controlling a coherence of a high pressure fluid jet, comprising:directing a flow of high pressure fluid toward a nozzle orifice;manipulating a turbulence level of the flow at at least one of an upstream location and a downstream location relative to the nozzle orifice to at least partially separate the flow exiting the nozzle orifice into a plurality of discrete droplets;and directing a jet of the discrete droplets toward a selected surface for treating the selected surface.
  15. 108
    A method for controlling a coherence of a high pressure fluid jet, comprising:directing a flow of high pressure fluid through a first nozzle orifice having a first flow area;and directing the flow exiting the first nozzle orifice through a second nozzle orifice having a second flow area less than the first flow area to separate at least a portion of the flow exiting the second nozzle orifice into a plurality of discrete droplets.
  16. 114
    A method for controlling coherence a of a high pressure fluid jet, comprising:directing a fluid through a channel having a flow area that increases in a downstream direction to increase a turbulence level of the fluid;and passing the fluid from the channel directly into and through a nozzle orifice to separate the flow exiting the nozzle orifice into a plurality of discrete droplets.
  17. 116
    A method for cutting a fibrous material, comprising:forming a flow of high pressure fluid;passing the high pressure fluid through a nozzle orifice to form a high pressure fluid jet;increasing a turbulence level of the high pressure fluid at one of an upstream and a downstream location relative to the orifice to at least partially separate the high pressure fluid into discrete droplets;and directing the high pressure fluid jet toward a surface of the fibrous material to cut the fibrous material.
Independent claims17