US2002117305A1PendingUtilityA1

Cuttings injection and annulus remediation systems for wellheads

Priority: Feb 23, 2001Filed: Feb 15, 2002Published: Aug 29, 2002
Est. expiryFeb 23, 2021(expired)· nominal 20-yr term from priority
E21B 33/076E21B 41/0057
34
PatentIndex Score
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Cited by
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Claims

Abstract

A wellhead assembly has an inner wellhead that lands in an outer wellhead, the inner wellhead having first and second internal passages. Each passage has an upper opening at the outer surface of the inner housing and a lower opening at the inner surface. An external shoulder of a casing hanger lands on an internal shoulder of the inner housing, the lower opening of the first passage being below the internal shoulder, the lower opening of the second passage being above the internal shoulder. The casing hanger has a substantially-vertical passage located in its sidewall, an upper port registering with the lower opening of the second passage, a lower port being located below the external shoulder for communicating with the annulus. Valve assemblies at the upper openings control the flow of heavy fluid injected into a casing annulus through the second passage and of cuttings injected into the annulus through the first passage.

Claims

exact text as granted — not AI-modified
I claim:  
     
         1 . A subsea wellhead assembly, comprising: 
 an outer wellhead housing;    an inner wellhead housing;    at least one casing hanger landed in the inner wellhead housing and sealed by a packoff;    a passage extending downward through a sidewall of the inner wellhead housing from an upper opening on an exterior of the inner wellhead housing to a lower opening in an interior of the inner wellhead housing, the upper opening being above the outer wellhead housing, the lower opening being below the packoff.    
     
     
         2 . The assembly of  claim 1 , wherein: 
 the lower opening of the passage is on an interior of the sidewall of the inner wellhead housing.    
     
     
         3 . The assembly of  claim 1 , further comprising: 
 a second passage extending downward through the sidewall of the inner wellhead housing from an upper opening on an exterior of the inner wellhead housing to a lower opening in the interior of the inner wellhead housing, the upper opening of the second passage being above the outer wellhead housing, the lower opening of the second passage being below the packoff.    
     
     
         4 . The assembly of  claim 3 , wherein: 
 a conduit extends downward from the lower opening of the second passage, the conduit communicating to a desired depth a fluid being pumped down the second passage.    
     
     
         5 . The assembly of  claim 3 , wherein: 
 a portion of the second passage passes through the casing hanger, the lower opening of the second passage being located on an exterior portion of the casing hanger.    
     
     
         6 . The assembly of  claim 5 , wherein: 
 the packoff comprises upper and lower portions axially spaced apart from each other, the second passage extending between the upper and lower portions.    
     
     
         7 . The assembly of  claim 1 , wherein: 
 the first-mentioned passage is capable of bi-directional fluid flow.    
     
     
         8 . The assembly of  claim 3 , further comprising: 
 a retrievable seat protector located in a bore of the inner wellhead housing and covering the lower opening of the second passage prior to the casing hanger being landed.    
     
     
         9 . In a subsea wellhead assembly having an outer wellhead housing connected to a string of conductor pipe, forming an outer wellhead assembly, an inner wellhead housing which lands in the outer wellhead housing and is connected to a first string of casing, forming an inner wellhead assembly, a casing hanger which lands on an internal landing shoulder in the inner wellhead housing and is connected to a second string of casing, the improvement comprising in combination: 
 first and second passages in the inner wellhead assembly, each passage having an upper opening at an outer surface of the inner wellhead housing and a lower opening at an inner surface of the inner wellhead housing, the lower opening of the first passage being located below the landing shoulder and in communication with the annulus, the lower opening of the second passage being located above the landing shoulder; and    a casing hanger passage in the casing hanger, the casing hanger passage having an upper opening at an outer surface of the casing hanger and above the landing shoulder, the casing hanger passage also having a lower opening at an outer surface of the casing hanger and below the landing shoulder; and    a conduit extending alongside the casing from the lower opening of the casing hanger passage for delivering a fluid into a lower portion of the annulus; and wherein 
 the lower opening of the second passage and the upper opening of the casing hanger passage are in communication with each other.  
   
     
     
         10 . The wellhead assembly of  claim 9 , further comprising: 
 a sealed interface located between the inner surface of the inner wellhead housing and the outer surface of the casing hanger, the seal defining a sealed passage between the lower opening of the second passage and the upper opening of the casing hanger passage.    
     
     
         11 . The wellhead assembly of  claim 9 , further comprising: 
 a valve assembly located at each upper opening of the first and second passages for controlling fluid flow through the passages.    
     
     
         12 . The wellhead assembly of  claim 9 , further comprising: 
 a packoff located between the casing hanger passage and the inner wellhead housing above the landing shoulder, the packoff having upper and lower seal portions axially spaced apart from each other, defining a sealed passage that communicates the lower opening of the second passage with the casing hanger passage.    
     
     
         13 . The wellhead assembly of  claim 9 , further comprising: 
 a retrievable seat protector located in a bore of the inner wellhead housing and covering the lower opening of the second passage prior to the casing hanger being landed.    
     
     
         14 . A method of injecting a fluid and a volume of cuttings into an annulus of a well, the method comprising; 
 (a) providing a wellhead assembly having a string of casing defining a casing annulus, first and second passages leading from an exterior portion of the wellhead assembly to the annulus, and a conduit extending downward in the annulus to a selected depth, the conduit having an upper end in communication with the second passage;    (b) flowing the fluid downward through the second passage, through the conduit, and into the annulus, the fluid displacing existing fluids in the annulus, the existing fluids flowing upward and out of the annuus through the first passage; and    (c) while step (b) is not occurring, flowing a fluid containing the cuttings downward through the first passage and into the annulus.    
     
     
         15 . A method of injecting a fluid and offshore well drilling cuttings into an annulus of a well, the method comprising; 
 (a) installing an outer wellhead housing at a subsea floor, the outer wellhead housing being connected to a string of conductor pipe that extends into the well;    (b) landing an inner wellhead housing in the outer wellhead housing, the inner wellhead housing having first and second passages therethrough, each passage having an upper opening at an outer surface of the inner wellhead housing and a lower opening on an inner surface of the inner wellhead housing, the lower opening of the first passage being located below an internal shoulder, the lower opening of the second passage being located above the internal shoulder;    (c) securing a string of casing to a casing hanger and landing the casing hanger on the internal shoulder, the casing hanger having a passage sealingly communicating the lower opening of the second passage and a conduit extending alongside the casing in an annulus;    (d) pumping a fluid into the annulus through the second passage, with existing fluid located in the annulus being forced out of the annulus through the first passage; and    (e) while step (d) is not occurring, pumping cuttings into the annulus through the first passage.    
     
     
         16 . The method of  claim 15 , further comprising: 
 after step (b) and before step (c), inserting a seat protector within the bore of the inner wellhead housing to prevent contact with the lower opening of the second passage during drilling.

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