IP Library › Granted Patent US 12,234,705
Granted Patent B2
US 12,234,705 · App. 18/493,160 · Granted Feb 25, 2025

Method for applying the scale inhibitor to completion fluids during injectivity test operations

Inventors: Mario Germino Ferreira Da Silva (Rio de Janeiro, BR); Valtair Marcos Cristante (Rio de Janeiro, BR); Fernando Antonio Moreira Da Silva (Rio de Janeiro, BR); Ciro Dos Santos Guimaraes (Rio de Janeiro, BR)
Assignee: PETRÓLEO BRASILEIRO S.A.—PETROBRAS
E21B37/06E21B49/008
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Quick Facts
Patent No.
US 12,234,705
App. No.
18/493,160
Granted
Feb 25, 2025
Kind
B2
Abstract

The present invention relates to a method for applying scale inhibitor to completion fluids during injectivity test operations. Said method takes advantage of the completion fluid to inhibit scaling in the reservoir by filling the porous spaces of the reservoir rock with the inhibited completion fluid. When the well is put into production, this inhibited fluid positioned inside the reservoir will be produced together with the oil and will inhibit the formation of scale inside the reservoir and on production equipment.

Claims (27)

1. A method for applying a scale inhibitor to one or more completion fluids to be used during injectivity test operations, the method comprising

(a) defining a function and a type of one or more completion fluids;

(b) selecting a scale inhibitor compatible with the one or more completion fluids and rock formation;

(c) sizing of a volume of the scale inhibitor to be consumed; and

(d) incorporating the scale inhibitor directly into the one or more completion fluids in a tank or mixer present in a marine rig by:

providing seawater;

pumping, into a reservoir, 20 m 3 /d of the seawater with between 50 and 20000 ppm of the scale inhibitor for 20 min in a first pumping, followed by monitoring pressures and temperatures of the reservoir during the first pumping;

pumping, into the reservoir, 20 m 3 /d of the seawater containing 50 to 20,000 ppm of the scale inhibitor for 20 min in a second pumping, followed by monitoring pressures and temperatures of the reservoir during the second pumping;

pumping, into the reservoir, 10 m 3 /d of the seawater containing 50 to 20,000 ppm the scale inhibitor for 20 min in a third pumping, followed by monitoring of pressures and temperatures of the reservoir during the third pumping; and

pumping, into the reservoir, 10 m 3 /d of the seawater containing 50 to 20,000 ppm of the scale inhibitor for 20 min in a fourth pumping, followed by monitoring pressures and temperatures of the reservoir during the fourth pumping,

wherein there is a total of 600 bbl of the seawater and scale inhibitor with 4.77 liters to 1900 liters of scale inhibitor in the first, second, third, and fourth pumpings, and

wherein the scale inhibitor comprises organophosphate compounds.

2. The method according to claim 1 , wherein the one or more completion fluids are defined as a function of exerted hydrostatic pressure, not allowing production of oil from the reservoir into an oil well, during the injectivity test operations.

3. The method according to claim 1 , wherein selecting the scale inhibitor is carried out by one or more of a static compatibility test, a flow test in capillary, a flow test in porous medium, or combinations thereof.

4. A method for applying a scale inhibitor to one or more completion fluids to be used during injectivity test operations, the method comprising:

(a) defining a function and a type of one or more completion fluids;

(b) selecting a scale inhibitor compatible with the one or more completion fluids and rock formation;

(c) sizing a volume of the scale inhibitor to be consumed; and

(d) incorporating the scale inhibitor into the one or more completion fluids in a tank or mixer present in a marine rig by:

providing seawater;

pumping, into a reservoir, 20 m 3 /d of the seawater with between 50 and 20000 ppm of the scale inhibitor for 20 min in a first pumping;

monitoring pressures and temperatures of the reservoir during the first pumping;

pumping, into the reservoir, 20 m 3 /d of the seawater containing 50 to 20,000 ppm of the scale inhibitor for 20 min in a second pumping, followed by monitoring pressures and temperatures of the reservoir during the second pumping;

pumping, into the reservoir, 10 m 3 /d of the seawater containing 50 to 20,000 ppm the scale inhibitor for 20 min in a third pumping, followed by monitoring of pressures and temperatures of the reservoir during the third pumping; and

pumping, into the reservoir, 10 m 3 /d of the seawater containing 50 to 20,000 ppm of the scale inhibitor for 20 min in a fourth pumping, followed by monitoring pressures and temperatures of the reservoir during the fourth pumping.

5. The method according to claim 4 , wherein there is a total of 600 bbl of the seawater and scale inhibitor with 4.77 liters to 1900 liters of scale inhibitor in the first, second, third, and fourth pumpings.

6. The method according to claim 5 , wherein the scale inhibitor comprises organophosphate compounds.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 15, 2024
From: DA SILVA, MARIA GERMINO FERREIRA; CRISTANTE, VALTAIR MARCOS; DA SILVA, FERNANDO ANTONIO MOREIRA; GUIMARAES, CIRO DOS SANTOS
To: PETRÓLEO BRASILEIRO S.A. - PETROBRAS
Reel/Frame 066783/0247 →
Priority Claims (1)
BR 1020220216347 · Oct 25, 2022 · national
Continuity (2)
Related Publication 20240133268A1 · Apr 25, 2024
Related Publication 20240229605A9 · Jul 11, 2024
References Cited (8)
US 4860829A · Carlberg et al. · 1989 [cited by applicant]
US 5224543A · Watkins · 1993 [cited by examiner]
US 11584878B1 · Yue · 2023 [cited by examiner]
US 20090025933A1 · Garcia-Lopez de Victoria · 2009 [cited by examiner]
US 20100047156A1 · Priel · 2010 [cited by examiner]
US 20140251626A1 · Gomaa · 2014 [cited by examiner]
BR 0108245A · 2022 [cited by applicant]
EP 0040442B1 · 1983 [cited by applicant]