Claims
- 1. A pressure reducing assembly for a high pressure well comprising
a housing formed of a metallic material, said housing having an upstream channel, a downstream channel, and a central channel that interconnect with each other; a first ceramic liner disposed in said upstream channel for lining the internal surface of said upstream channel; a second ceramic liner disposed in said downstream channel for lining the internal surface of the downstream channel; a third ceramic liner disposed in said central channel for lining the internal surface of the central channel, said third ceramic liner having an orifice formed therein that is positioned and dimensioned to align substantially coaxially with said first ceramic liner for providing a flow path between said upstream channel and said central channel; and means for providing access to said central channel to facilitate insertion or removal of said third ceramic liner.
- 2. A pressure reducing assembly as set forth in claim 1 further comprising a ceramic pressure reducing insert disposed in the flow path in said third ceramic liner, said pressure reducing insert having:
an inlet orifice formed therein that is positioned and dimensioned to align substantially coaxially with the orifice in said third ceramic liner; an outlet orifice; and an internal channel that extends substantially from said inlet orifice to the outlet orifice, said internal channel having a reduced cross-sectional dimension relative to said third ceramic liner so that fluid flow through said internal channel can be substantially reduced relative to said inlet channel, thereby reducing the fluid pressure.
- 3. A pressure reducing assembly as set forth in claim 2 further comprising a plurality of said pressure reducing inserts wherein each insert has an internal channel configuration that is distinct from the other inserts, said inserts being configured for selective placement in the flow path to provide a desired amount of fluid pressure reduction.
- 4. A pressure reducing assembly as set forth in any of claims 1 to 3 wherein said first, second, and third ceramic liners, and said ceramic pressure reducing insert are formed of a technical ceramic material selected from the group consisting of alumina, chromium oxide, titania, zirconia, partially stabilized zirconia, silicon nitride, silicon carbide, and combinations thereof.
- 5. A pressure reducing assembly, comprising:
A. a hollow body having an upstream channel, a downstream channel and a central flow channel between the upstream channel and the downstream channel; B. a first liner disposed in the upstream channel; C. a second liner disposed in the downstream channel; D. an outer sleeve disposed in the central flow channel and having an internal bore; and E. a first inner sleeve disposed in the internal bore of the outer sleeve and having a first internal configuration, wherein the first inner sleeve is removable from the internal bore of the outer sleeve and interchangeable with a second inner sleeve configured for insertion in the internal bore of the outer sleeve, said second inner sleeve having a second internal configuration.
- 6. The pressure reducing assembly of claim 5, wherein the first liner, second liner, outer sleeve, and inner sleeves are formed of a ceramic material.
- 7. The pressure reducing assembly of claim 5, further comprising an end cap releasably connected to the body and configured for removal from the body to provide access to the internal bore of the outer sleeve.
- 8. A method for operating a pressure reducing assembly, comprising the steps of:
A. providing a pressure reducing assembly having a hollow body and a central flow channel formed therein; B. placing a wear resistant outer sleeve formed of a ceramic material in the central flow channel; C. inserting a first inner sleeve in the outer sleeve, said first inner sleeve being operable to discharge oil from the pressure reducing assembly at a first pressure and a first flow rate; and D. removing the first inner sleeve from the outer sleeve and replacing the first inner sleeve with a second inner sleeve, said second inner sleeve being operable to discharge oil from the pressure reducing assembly at a second pressure and a second flow rate.
- 9. A flow control assembly, comprising:
A. a hollow body having an upstream channel, a downstream channel, and a central flow channel between the upstream channel and the downstream channel; B. a first liner disposed in the upstream channel; C. a second liner disposed in the downstream channel; D. an outer sleeve disposed in the central flow channel and having an internal bore; and E. an inner sleeve disposed in the internal bore of the outer sleeve.
RELATED APPLICATIONS
[0001] This application claims priority under 35 U.S.C. §120 from U.S. application Ser. No. 10/130,651, filed as International Application No. PCT/US00/32150 on Nov. 28, 2000, which is hereby incorporated herein by reference.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10130651 |
May 2002 |
US |
Child |
10379097 |
Mar 2003 |
US |