Claims
- 1. A delayed coking system comprising:
a coke drum having at least one flange and respective sealing surfaces thereon; a component member also having a flange and a sealing surface thereon that are complimentary to said flange and said sealing surface of said coke drum, said coke drum and said component member connecting together via their respective flanges within said delayed coking system; and a high temperature, high pressure dynamic flange sealing system that seals said component member to said coke drum, said dynamic flange sealing system comprising:
a bi-material gasket supported within a recess of said sealing surface of said flange of at least one of said coke drum and said component member, said bi-material gasket comprising a flexor and a flexible sealant attached thereto, wherein upon said connection of said flange of said coke drum and said flange of said component member, said flexor and said flexible sealant contact said sealing surface of said complimentary flange, and wherein said flexor is caused to contract relative to the force exerted and applied thereon, said force resulting from the pressure generated within said flanges upon connection, said flexor resultantly forcing said flexible sealant to displace against said sealing surfaces and form a seal and a flange seal between said flanges of said coke drum and said component member.
- 2. The delayed coking system of claim 1, further comprising an iconel bellows seal contained and supported within a recess formed in said sealing surface of said flange of at least one of said component member and said coke drum and extending into a recess in said sealing surface of said complimentary flange upon connection of said flanges, said iconel bellows seal providing a biased, dynamic seal that adjusts to structural variations while maintaining the integrity of said seal, said iconel bellows seal independently forms a flange seal and also compliments said bi-material gasket to form said flange seal, if desired.
- 3. The delayed coking system of claim 1, further comprising a steam purge system designed to regulate pressure and control fluid flow within said dynamic flange sealing system and between said flanges of said coke drum and said component member, in order to preserve the integrity of said flange seal, said steam purge system comprising a plurality of passageways in which fluid and material and debris may be controlled to pass.
- 4. The delayed coking system of claim 2, wherein said iconel bellows seal comprises at least one of an internal form seal and an external form seal, and a seal spacer.
- 5. The delayed coking system of claim 1, wherein said flexor is comprised of a corrugated metal structure.
- 6. The delayed coking system of claim 1, wherein said flexor is comprised of a metal c-ring.
- 7. The delayed coking system of claim 1, wherein said flexor comprises a flex factor that is appropriately respondent to the compression force existing between said flanges when connected and applied to said flexor, said flex factor dictating the amount of proportional displacement of said flexible sealant, the force of said sealant against said flanges, and the strength of said seal between said flanges.
- 8. The delayed coking system of claim 1, wherein said flexible sealant is comprised of polycarbon graphite adhered to at least a portion of and extending from said flexor.
- 9. The delayed coking system of claim 1, wherein said flexible sealant is comprised of a flexible braided graphite sealant that is comprised of a flexible jacket of expanded exfoliated grafoil.
- 10. The delayed coking system of claim 2, wherein said iconel bellows seal is supported within said recess in a semi-sealed arrangement to allow fluid flow therethrough and between said flanges.
- 11. The delayed coking system of claim 10, wherein said iconel bellows seal is silver sealed in a first, second, and third location, thus providing said semi-sealed arrangement and allowing fluid flow therethrough and between said flanges.
- 12. The delayed coking system of claim 1, wherein said bi-material gasket is segmented around said sealing surface of said first flange.
- 13. The delayed coking system of claim 2, wherein said iconel bellows seal is segmented around said sealing surfaces of said first and second flanges.
- 14. The delayed coking system of claim 1, wherein said component member is selected from the group consisting of a transitional spool, a de-header valve, a header, an inlet feed, a bonnet, and any other similar component utilized and existing within a high temperature, high pressure environment.
- 15. The delayed coking system of claim 1, wherein said flexor comprises first and second toes at opposing ends of said flexor and that function to direct the displacement of said flexible sealant away from said flexor and toward said flanges.
- 16. The delayed coking system of claim 15, wherein said toes extend upward as they extend outward, thus allowing pressure within said system to further compress said flexor and contribute to the displacement of said flexible sealant and said flange seal.
- 17. The delayed coking system of claim 1, further comprising means for connecting said coke drum to said component, said means for connecting comprising a plurality of bolt connections, wherein said flange seal is created when said bolt connections are tightened to between about 50 and 70 percent of their yield strength.
- 18. The delayed coking system of claim 2, wherein said iconel bellows seal and said bi-material gasket function independently of one another to create individual flange seals.
- 19. The delayed coking system of claim 2, wherein said iconel bellows seal and said bi-material gasket work together to form said flange seal.
- 20. The delayed coking system of claim 1, wherein said coke drum and said component comprise complimentary beveled segments that function to orient the two together upon connection and that protects said dynamic flange sealing system.
- 21. The delayed coking system of claim 1, wherein said second component further comprises a beveled duct adjacent said dynamic flange sealing system, said beveled duct allows material and fluid to flow therethrough and to clean any material and debris therein upon connection and separation of said coke drum and said component.
- 22. A dynamic flange sealing system comprising:
a first component having at least one sealing surface containing and supporting at least one of an iconel bellows seal and a bi-material gasket in respective recesses therein, said iconel bellows seal is biased and comprises at least one dynamic form seal situated in a semi-sealed configuration within said recess to allow controlled fluid flow through said iconel bellows seal, said bi-material gasket comprising a flexor and a flexible sealant; and a second component having at least one sealing surface and that is connectable to said first component, said sealing surface contacts said flexor upon connection to said sealing surface of said first component forcing said flexor to contract, thus resultantly causing said flexible sealant to displace against said sealing surfaces of said first and second components, said flexor comprising an amount of contraction relative to the force exerted and applied thereon, said iconel bellows seal and said bi-material gasket forming a flange seal between said first and second members.
- 23. The dynamic flange sealing system of claim 22, wherein said sealing surface of said second component comprises a recess that receives a portion of said iconel bellows seal therein upon connection of said first and second components.
- 24. The dynamic flange sealing system of claim 22, wherein said iconel bellows seal comprises a partial seal configuration to provide controlled fluid flow therethrough and through said dynamic flange sealing system and said first and second components as connected.
- 25. The dynamic flange sealing system of claim 24, wherein said iconel bellows seal is partially silver sealed to said first component in a first, second, and third location to provide a semi-sealed configuration, thus allowing controlled fluid flow therethrough.
- 26. The dynamic flange sealing system of claim 22, wherein said first and second components are selected from the group consisting of a coke drum, a transitional spool, a de-header valve, a header, an inlet feed, a bonnet, and any other similar component utilized and existing within a high temperature and pressure environment.
- 27. The dynamic flange sealing system of claim 22, wherein said iconel bellows seal is segmented around said sealing surface of said first component.
- 28. The dynamic flange sealing system of claim 22, wherein said bi-material gasket is segmented around said sealing surface of said first component.
- 29. The dynamic flange sealing system of claim 22, further comprising a steam purge system designed to provide the means for controlling and regulating pressure fluid flow within said dynamic flange sealing system and between said components.
- 30. The dynamic flange sealing system claim 22, wherein said iconel bellows seal comprises at least one of an internal form seal and an external form seal, and a seal spacer.
- 31. The dynamic flange sealing system of claim 22, wherein said flexor is comprised of corrugated metal.
- 32. The dynamic flange sealing system of claim 22, wherein said flexor is comprised of a metal c-ring.
- 33. The dynamic flange sealing system of claim 22, wherein said flexor is comprised of an iconel form seal.
- 34. The dynamic flange sealing system of claim 22, wherein said flexor comprises a flex factor that is appropriately respondent to the compression force existing between said components when connected and as applied to said flexor, said flex factor dictating the amount of proportional displacement of said flexible sealant, the force of said sealant against said components, and the strength of said seal between said sealing surfaces of said components.
- 35. The dynamic flange sealing of claim 22, wherein said flexible sealant is comprised of polycarbon graphite.
- 36. The dynamic sealing surface of claim 22, wherein said flexible sealant is comprised of a flexible braided graphite sealant that is comprised of a flexible jacket of expandable exfoliated grafoil.
- 37. The delayed coking system of claim 22, wherein said flexor comprises first and second toes comprising opposing ends of said flexor and that function to direct the displacement of said flexible sealant away from said flexor and toward said first and second components.
- 38. The delayed coking system of claim 37, wherein said toes extend upward and outward, thus allowing pressure within said system to further compress said flexor and contribute to the displacement of said flexible sealant and said flange seal.
- 39. The delayed coking system of claim 22, further comprising means for connecting said first component to said second component, said means for connecting comprising a plurality of bolt connections, wherein said flange seal is created when said bolt connections are tightened to between about 50 and 70 percent of their yield strength.
- 40. The delayed coking system of claim 22, wherein said iconel bellows seal and said bi-material gasket function independently of one another to create individual and independent flange seals.
- 41. The delayed coking system of claim 22, wherein said flange seal comprises a dynamic seal formed from said iconel bellows seal and a seal formed from said bi-material gasket.
- 42. The delayed coking system of claim 22, wherein said first component and said second component each comprise complimentary beveled segments that function to orient the two together upon connection and that protects said dynamic flange sealing system.
- 43. The delayed coking system of claim 22, wherein said second component further comprises a beveled duct adjacent said dynamic flange sealing system, said beveled duct allows material and fluid to flow therethrough and to clean any material and debris therein upon connection and separation of said first and second components.
- 44. A flange to flange dynamic seal for use in a high pressure, high temperature environment, said seal comprising:
an iconel bellows seal contained and supported within a recess formed in a sealing surface of a first flange and extending into a recess in a sealing surface of a second flange upon connection of said flanges, each of which said flanges are complimentary to each other, said iconel bellows seal is biased and dynamic to allow for variations in the structure of said flange connection, said iconel bellows seal providing a biased, dynamic seal and flange seal between said first and second flanges.
- 45. The flange to flange dynamic seal of claim 44, further comprising a bi-material gasket supported within a recess of said sealing surface of said first flange, said bi-material gasket comprising a flexor and a flexible sealant attached to said flexor, wherein upon said connection of said first and second flanges said flexor is caused to contract and compress relative to the force exerted and applied thereon, said force resulting from the pressure generated within said flanges upon connection, said flexor resultantly forcing said flexible sealant to displace against said sealing surfaces of said first and second flanges and form a seal therebetween, said bi-material gasket contributing to said flange seal.
- 46. The flange to flange dynamic seal of claim 44, wherein said iconel bellows seal comprises a corrugated configuration.
- 47. The flange to flange dynamic seal of claim 44, wherein said iconel bellows seal comprises a semi-sealed configuration and arrangement to allow controlled fluid flow therethrough and through said flange seal.
- 48. The flange to flange dynamic seal of claim 47, wherein said iconel bellows seal is silver sealed.
- 49. The flange to flange dynamic seal of claim 44, wherein said iconel bellows seal comprises at least on form seal made of high strength corrugated metal.
- 50. The flange to flange dynamic seal of claim 44, wherein said iconel bellows seal comprises an internal form seal and an external form seal separated by a seal spacer.
- 51. A flange to flange dynamic seal for use in a high pressure, high temperature environment, said seal comprising:
a bi-material gasket supported within a recess of a sealing surface of a first flange, said bi-material gasket comprising a flexor and a flexible sealant attached thereto, that, upon said connection of said first flange to a second flange, said flexor is caused to contract an amount relative to the amount of force exerted and applied thereon as generated from said flanges upon connection, said flexor resultantly forcing said flexible sealant to displace against said sealing surfaces of said first and second flanges and form a seal and flange seal therebetween.
- 52. The flange to flange dynamic seal of claim 51, further comprising an iconel bellows seal contained and supported within said recess formed in said sealing surface of said first flange and extending into a recess in said sealing surface of said second flange upon connection of said flanges, said iconel bellows seal providing a biased, dynamic flange seal between said first and second flanges.
- 53. The flange to flange dynamic seal of claim 52, wherein said iconel bellows seal comprises a semi-sealed configuration to allow controlled fluid flow therethrough.
- 54. The flange to flange dynamic seal of claim 51, wherein said first and second flanges are a part of components selected from the group consisting of a coke drum, a transitional spool, a de-header valve, a header, an inlet feed, a bonnet, and any other similar component utilized and existing within a high temperature and pressure environment.
- 55. A flange to flange dynamic sealing system comprising:
an iconel bellows seal contained and supported within a recess formed in a first flange, said iconel bellows seal comprising at least one form seal and providing a biased, dynamic seal; and a bi-material gasket supported within said first flange and positioned adjacent said iconel bellows seal, said bi-material gasket comprising a flexor and a flexible sealant attached thereto, said flexor is caused to contract as said first flange and a second flange are coupled together, thus resultantly displacing said flexible sealant against said first and second flanges and forming a seal therein, said iconel bellows seal and said bi-material gasket function together to form a flange seal between said first flange and said second flange.
- 56. The flange to flange dynamic sealing system of claim 55, further comprising a steam purge system designed to regulate pressure and control fluid within said system.
- 57. A flange connection and sealing system comprising:
a first flange; a second flange; means for connecting said first flange to said second flange; a dynamic flange sealing system designed to seal said first flange to said second flange, said dynamic flange sealing system comprising:
an iconel bellows seal supported within said second flange and extending to and received by said first flange upon connection of said first and second flanges, said iconel bellows seal providing a biased, dynamic seal between said first and second flanges; and a bi-material gasket supported within said second flange, said bi-material gasket comprising a flexor that contracts as a result of said first flange being connected and secured to said second flange, and a flexible sealant partially connected to said flexor, wherein said flexible sealant displaces and seals against respective sealing surfaces of said first and second flanges relative to the amount of contraction of said flexor, said iconel bellows seal and said bi-material gasket function together to form a flange seal between said first flange and said second flange.
- 58. The flange connection system of claim 57, further comprising a steam purge system in fluid connection with said dynamic flange sealing system, said steam purge inlet providing the means for regulating pressure throughout said flange connection system.
- 59. A method for sealing flanged components within a high temperature, high pressure environment, said method comprising the steps of:
obtaining a first component having a flange; obtaining a second component having a flange, each of said flanges being complimentary to each other; providing a dynamic flange sealing system within at least one of said flanges of said first and second components, said dynamic flange sealing system comprising:
an iconel bellows seal supported in one of said flanges of said first and second components and extending to and received by said complimentary flange upon their connection, said iconel bellows seal providing a dynamic seal between said first and second components; a bi-material gasket supported within one of said flanges of said first and second components, said bi-material gasket comprising a flexor and a flexible sealant partially connected to said flexor; and securing said first component to said second component via their respective said flanges, said step of securing causes said flexor to contract, wherein said flexible sealant displaces and seals against respective sealing surfaces on said flanges of said first and second components relative to the amount said flexor contracts, said dynamic flange sealing system providing a flange seal between said first and second components.
- 60. The method of claim 59, wherein said first and second components are selected from a group consisting of a coke drum, a transitional spool, a de-header valve, a header, an inlet feed, a bonnet, and any other similar component utilized and existing within a high temperature and pressure environment.
- 61. A method for modifying an existing flange connection to enhance the seal between a first and second flange, said method comprising the steps of:
obtaining a first component having a flange and at least one sealing surface thereon; obtaining a second component having a flange and at least one sealing surface thereon, each of said flanges are complimentary to each other; retro-fitting at least one of said flanges of said first and second components with a dynamic flange sealing system supported within said respective sealing surface, said dynamic flange sealing system comprising:
a bi-material gasket supported within one of said flanges of said first and second components, said bi-material gasket comprising a flexor and a flexible sealant partially connected to said flexor; and securing said first component to said second component via their respective said flanges, thus causing said flexor to contract, wherein said flexible sealant displaces and seals against respective sealing surfaces on said flanges of said first and second components relative to the amount said flexor contracts, said dynamic flange sealing system providing a flange seal between said first and second components.
- 62. The method of claim 61, wherein said dynamic flange sealing system further comprises an iconel bellows seal supported in one of said flanges of said first and second components and extending to and received by said complimentary flange upon their connection, said iconel bellows seal providing a dynamic seal between said first and second components.
- 63. The method of claim 61, wherein said step of retro-fitting comprises cutting a recess in said sealing surface to support said bi-material gasket.
- 64. The method of claim 61, wherein said first and second components are selected from a group consisting of a coke drum, a transitional spool, a de-header valve, a header, an inlet feed, a bonnet, and any other similar component utilized and existing within a high temperature and pressure environment.
RELATED APPLICATIONS
[0001] This application claims priority to U.S. patent application Ser. No. 09/946,917, entitled COKE DRUM BOTTOM DE-HEADING SYSTEM, filed Sep. 5, 2001, listing the same inventor as the application.