AU2005291131B2

Method and composition for enhancing coverage and displacement of treatment fluids into subterranean formations

Abstract

A method of injecting a treatment fluid into a portion of a subterranean formation, comprising providing a treatment fluid having a viscosity; determining the breakdown pressure of the portion of the subterranean formation; calculating the maximum sustainable flow rate for the treatment fluid; and, injecting the treatment fluid into the portion of the subterranean formation at a flow rate less than or equal to the maximum sustainable flow rate for the treatment fluid. A method of injecting a treatment fluid into a portion of a subterranean formation, comprising providing a treatment fluid having a viscosity; determining the breakdown pressure of the portion of the subterranean formation; calculating the maximum allowable treatment fluid viscosity; adjusting the viscosity of the treatment fluid to a viscosity less than or equal to the maximum allowable treatment fluid viscosity; and injecting the treatment fluid into the subterranean formation at the selected treatment fluid flow rate.

AU2005291131B2, drawing sheet 1
Sheet 1 of 1

Term

Term ended

Expired 29 September 2025, 1 year ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

5 claims: 1 independent, 4 dependent

  1. 1
    The claims defining the invention are as follows:1. A method of injecting a treatment fluid into a portion of a subterranean formation, said method including: 5 providing a treatment fluid having a viscosity;determining the breakdown pressure of the portion of the subterranean formation;calculating a maximum allowable treatment fluid viscosity;adjusting the viscosity of the treatment fluid to a viscosity less than or equal 10 to the maximum allowable treatment fluid viscosity;and injecting the treatment fluid into the subterranean formation at the selected treatment fluid flow rate.
  2. 2
    The method of Claim 1, wherein the treatment fluid includes a water 15 controlling agent.
  3. 3
    The method of Claim 2, wherein the water controlling agent includes a surfactant formed of one or more fatty acid imidazolyl compounds, a water-resistant polymer, or a combination thereof.
  4. 4
    The method of Claim 2, wherein the water controlling agent includes a polyacrylamide, a hydrolyzed polyacrylamide, xanthan, scleroglucan, a polysaccharide, an amphoteric polymer made from acrylamide, acrylic acid, diallyldimethylammonium chloride, a vinyl sulfonate/vinyl amide/acrylamide 25 terpolymer, a vinyl sulfonate/acrylamide copolymer, an acrylamide/acrylamidomethylpropanesulfonic acid copolymer, an acrylamide/vinylpyrrolidone copolymer, sodium carboxymethyl cellulose, a poly[dialkylaminoacrylate-co-acrylate-gpoly(ethyleneoxide)], an acrylamide/octadecyldimethylammoniumethyl methacrylate bromide copolymer, a dimethylaminoethyl methacrylate/vinyl 30 pyrrolidone/hexadecyldimethylaunTiomummethyl methacrylate bromide terpolymer, an acrylamide/2-acrylamido-2 -methyl propane sulfonic acid/2-ethylhexyl methacrylate terpolymer, or a combination thereof 02/06/10jm 16490jun2.spcci.doc, 10 2005291131 02Jun2010 - 11 5. The method of any one of Claims 1 to 4, wherein the treatment fluid includes a curable resin. 6. The method of Claim 5, wherein the resin includes a two component epoxy 5 based resin, a novolak resin, a polyepoxide resin, a phenol-aldehyde resin, a ureaaldehyde resin, a urethane resin, a phenolic resin, a furan resin, a furan/furfuryl alcohol resin, a phenolic/latex resin, a phenol formaldehyde resin, a polyester resins, a hybrid polyester resin, a copolymer polyester resin, a polyurethane resin, a hybrid polyurethane resin, a copolymer polyurethane resin, an acrylate resin, or a 10 combination thereof. 7. The method of Claim 5 or Claim 6, wherein the treatment chemical further includes an internal catalyst or activator. 15 8. The method of Claim 5, wherein the treatment fluid includes a solvent. 9. The method of Claim 8, wherein the solvent includes water, a hydrocarbon, or an alcohol. 20 10. The method of any one of Claims 1 to 9, wherein the viscosity of the treatment fluid is from 0.1 to 30 cP. 11. The method of any one of Claims 1 to 10, wherein the treatment fluid viscosity is less than or equal to about 90% of the maximum allowable treatment 25 fluid viscosity. 12. The method of any one of Claims 1 to 10, wherein the treatment fluid viscosity is less than or equal to about 80% of the maximum allowable treatment fluid viscosity. 13. The method of any one of the preceding Claims, wherein the portion of the subterranean formation includes more than one area having distinct permeabilities. 02/06/I0jml6490jun2.speci.doc, I 1 - 122005291131 02Jun2010 14. The method of any one of the preceding Claims further including the steps of:providing a preflush fluid having a viscosity;calculating a maximum allowable preflush fluid viscosity;
  5. 5
    5 adjusting the preflush fluid viscosity to a viscosity less than or equal to the maximum allowable preflush fluid viscosity; and, before the step of injecting the treatment fluid into the portion of the subterranean formation, injecting the preflush fluid into the portion of the subterranean formation at the selected preflush fluid flow rate. 15. The method of Claim 14, wherein the preflush fluid includes an aqueous liquid and a surfactant. 16. The method of Claim 15, wherein the aqueous liquid includes fresh water, 15 salt water, brine, or a combination thereof. 17. The method of Claim 15 or Claim 16, wherein the surfactant includes an ethoxylated nonyl phenol phosphate ester, a cationic surfactant, a nonionic surfactant, an alkyl phosphonate surfactant, or a combination thereof. 18. The method of any one of Claims 15 to 17, wherein the preflush fluid further includes a mutual solvent. 19. The method of Claim 18, wherein the mutual solvent includes a glycol 25 ether. 20. The method of any one of the preceding Claims, further including the steps of:providing an afterflush fluid having a viscosity;30 calculating a maximum allowable afterflush fluid viscosity;adjusting the afterflush fluid viscosity to a viscosity less than or equal to the maximum allowable afterflush fluid viscosity;and, after the step of injecting the 02/06/l0jml 6490jun2.speci.doc, 12 2005291131 02Jun2010 -13treatment fluid into the portion of the subterranean formation, injecting the afterflush fluid into the portion of the subterranean formation at the selected afterflush flow rate. 5 21. The method of Claim 20, wherein the afterflush fluid includes an aqueous liquid and a surfactant. 22. The method of Claim 21, wherein the aqueous liquid includes fresh water, salt water, brine, or a combination thereof. 23. The method of Claim 21 or Claim 22, wherein the surfactant includes an ethoxylated nonyl phenol phosphate ester, a cationic surfactant, a nonionic surfactant, an alkyl phosphonate surfactant, or a combination thereof. 15 24. A method of injecting a treatment fluid into a portion of a subterranean formation, substantially as described herein with reference to the Examples. 02/06/1 Ojm 16490jun2.speci.doc, 13