Method and product for use of guar powder in treating subterranean formations
Abstract
A method of treating a subterranean formation using a well-treating fluid is provided, the subterranean formation penetrated by a wellbore, the method comprising preparing the well-treating fluid by admixing a fast-hydrating high-viscosity guar powder to a hydrating liquid to prepare the well-treating fluid; hydrating the guar powder; admixing a cross-linker to the well-treating fluid; and introducing the well-treating fluid to the wellbore at a temperature and a pressure sufficient to treat the subterranean formation. A product is also provided comprising a well-treating fluid for use in treating subterranean formations with the well-treating fluid comprising a hydrating liquid; a gelling agent, the gelling agent comprising a fast-hydrating high-viscosity guar powder; and a cross-linker.
Claims
exact text as granted — not AI-modifiedI claim:
1 . A method of treating a subterranean formation using a well-treating fluid, the subterranean formation penetrated by a wellbore, the method comprising:
(A) preparing the well-treating fluid by admixing a fast-hydrating high-viscosity guar powder to a hydrating liquid to prepare the well-treating fluid; (B) hydrating the guar powder; (C) admixing a cross-linker to the well-treating fluid; and (D) introducing the well-treating fluid to the wellbore at a temperature and a pressure sufficient to treat the subterranean formation.
2 . The method of claim 1 , wherein (A) further comprises admixing the guar powder in an amount comprising from about 0.05 to about 1.0 percent by weight of the hydrating liquid.
3 . The method of claim 1 , wherein (A) further comprises admixing the guar powder in an amount comprising from about 0.15 to about 0.3 percent by weight of the hydrating liquid.
4 . The method of claim 1 , wherein the guar powder of (A) is selected from the group consisting of:
( 1 ) a de-polymerized fast-hydrating high-viscosity guar powder; and ( 2 ) a derivative of the fast-hydrating high-viscosity guar powder.
5 . The method of claim 4 , wherein the derivative of the fast-hydrating high-viscosity guar powder is selected from the group consisting of:
( 1 ) hydroxy propyl guar powder; ( 2 ) carboxy methyl guar powder; and ( 3 ) carboxy methyl hydroxy propyl guar powder.
6 . The method of claim 1 , wherein (C) comprises using a cross-linker comprising a cross-linking agent.
7 . The method of claim 6 , wherein a delaying agent is admixed to the well-treating fluid prior to the admixing of the cross-linker.
8 . The method of claim 1 , wherein (C) comprises using a cross-linker comprising a cross-linking agent and a delaying agent.
9 . The method of claim 8 , wherein the cross-linker is disposed to delay the cross-linking until after the well-treating fluid is introduced into the wellbore.
10 . The method of claim 8 , wherein the cross-linking agent comprises from about 10.0 to about 40.0 percent by weight of the guar powder.
11 . The method of claim 8 , wherein the cross-linking agent comprises from about 20.0 to about 35.0 percent by weight of the guar powder.
12 . The method of claim 8 , wherein the delaying agent comprises from about 0.5 to about 25.0 percent by weight of the guar powder.
13 . The method of claim 8 , wherein the delaying agent comprises from about 2.0 to about 10.0 percent by weight of the guar powder.
14 . The method of claim 1 , wherein (C) further comprises admixing a delayed breaking agent to the well-treating fluid.
15 . The method of claim 14 , wherein (C) further comprises admixing the delayed breaking agent in an amount comprising from about 0.01 to about 2.5 percent by weight of the hydrating liquid.
16 . The method of claim 14 , wherein (C) further comprises admixing a propping agent to the well-treating fluid.
17 . The method of claim 1 , wherein (C) further comprises admixing a propping agent to the well-treating fluid.
18 . The method of claim 1 , wherein (D) further comprises admixing a propping agent to the well-treating fluid before introduction of the well-treating fluid into the wellbore.
19 . The method of claim 18 , wherein (D) further comprises admixing a delayed breaking agent to the well-treating fluid before introduction of the well-treating fluid into the wellbore.
20 . The method of claim 19 , wherein the delayed breaking agent is admixed in an amount comprising from about 0.01 to about 2.5 percent by weight of the hydrating liquid.
21 . The method of claim 1 , wherein (D) further comprises admixing a delayed breaking agent to the well-treating fluid before introduction of the well-treating fluid into the wellbore.
22 . The method of claim 21 , wherein the delayed breaking agent is admixed in an amount comprising from about 0.01 to about 2.5 percent by weight of the hydrating liquid.
23 . The method of claim 1 , further comprising:
(E) introducing a breaking agent to the wellbore, the breaking agent introduced after the subterranean formation has been treated with the well-treating fluid.
24 . A well-treating fluid for use in treating subterranean formations, the well-treating fluid comprising:
a hydrating liquid; a gelling agent, the gelling agent comprising a fast-hydrating high-viscosity guar powder; and a cross-linker.
25 . The well-treating fluid of claim 24 , wherein the guar powder comprises from about 0.05 to about 1.0 percent by weight of the hydrating liquid.
26 . The well-treating fluid of claim 24 , wherein the guar powder comprises from about 0.15 to about 0.3 percent by weight of the hydrating liquid.
27 . The well-treating fluid of claim 24 , wherein the guar powder is selected from the group consisting of:
( 1 ) a de-polymerized fast-hydrating high-viscosity guar powder; and ( 2 ) a derivative of the fast-hydrating high-viscosity guar powder.
28 . The well-treating fluid of claim 27 , wherein the derivative of the fast-hydrating high-viscosity guar powder is selected from the group consisting of:
( 1 ) hydroxy propyl guar powder; ( 2 ) carboxy methyl guar powder; and ( 3 ) carboxy methyl hydroxy propyl guar powder.
29 . The well-treating fluid of claim 24 , wherein the cross-linker comprises a cross-linking agent.
30 . The well-treating fluid of claim 29 , wherein the well-treating fluid further comprises a delaying agent.
31 . The well-treating fluid of claim 24 , wherein the cross-linker comprises a cross-linking agent and a delaying agent.
32 . The well-treating fluid of claim 31 , wherein the cross-linking agent comprises from about 10.0 to about 40.0 percent by weight of the guar powder.
33 . The well-treating fluid of claim 31 , wherein the cross-linking agent comprises from about 20.0 to about 35.0 percent by weight of the guar powder.
34 . The well-treating fluid of claim 31 , wherein the delaying agent comprises from about 0.5 to about 25.0 percent by weight of the guar powder.
35 . The well-treating fluid of claim 31 , wherein the delaying agent comprises from about 2.0 to about 10.0 percent by weight of the guar powder.
36 . The well-treating fluid of claim 24 , wherein the well-treating fluid further comprises a delayed breaking agent.
37 . The well-treating fluid of claim 36 , wherein the delayed breaking agent comprises from about 0.01 to about 2.5 percent by weight of the hydrating liquid.
38 . The well-treating fluid of claim 36 , wherein the well-treating fluid further comprises a propping agent.
39 . The well-treating fluid of claim 24 , wherein the well-treating fluid further comprises a propping agent.
40 . A well-treating fluid for use in treating subterranean formations, the treatment comprising a fracture stimulation, the well-treating fluid comprising:
a hydrating liquid; a gelling agent, the gelling agent comprising a fast-hydrating high-viscosity guar powder; a cross-linker; and a propping agent.
41 . The well-treating fluid of claim 40 , wherein the guar powder comprises from about 0.05 to about 1.0 percent by weight of the hydrating liquid.
42 . The well-treating fluid of claim 40 , wherein the guar powder comprises from about 0.15 to about 0.3 percent by weight of the hydrating liquid.
43 . The well-treating fluid of claim 40 , wherein the guar powder is selected from the group consisting of:
( 1 ) a de-polymerized fast-hydrating high-viscosity guar powder; and ( 2 ) a derivative of the fast-hydrating high-viscosity guar powder.
44 . The well-treating fluid of claim 43 , wherein the derivative of the fast-hydrating high-viscosity guar powder is selected from the group consisting of:
( 1 ) hydroxy propyl guar powder; ( 2 ) carboxy methyl guar powder; and ( 3 ) carboxy methyl hydroxy propyl guar powder.
45 . The well-treating fluid of claim 40 , wherein the cross-linker comprises a cross-linking agent.
46 . The well-treating fluid of claim 45 , wherein the well-treating fluid further comprises a delaying agent.
47 . The well-treating fluid of claim 40 , wherein the cross-linker comprises a cross-linking agent and a delaying agent.
48 . The well-treating fluid of claim 47 , wherein the cross-linking agent comprises from about 10.0 to about 40.0 percent by weight of the guar powder.
49 . The well-treating fluid of claim 47 , wherein the cross-linking agent comprises from about 20.0 to about 35.0 percent by weight of the guar powder.
50 . The well-treating fluid of claim 47 , wherein the delaying agent comprises from about 0.5 to about 25.0 percent by weight of the guar powder.
51 . The well-treating fluid of claim 47 , wherein the delaying agent comprises from about 2.0 to about 10.0 percent by weight of the guar powder.
52 . The well-treating fluid of claim 40 , wherein the well-treating fluid further comprises a delayed breaking agent.
53 . The well-treating fluid of claim 52 , wherein the delayed breaking agent comprises from about 0.01 to about 2.5 percent by weight of the hydrating liquid.
54 . A well-treating fluid for use in treating subterranean formations, the treatment comprising a fracture stimulation, the well-treating fluid comprising:
a hydrating liquid; a gelling agent, the gelling agent comprising a fast-hydrating high-viscosity guar powder; a cross-linker, the cross-linker comprising a cross-linking agent and a delaying agent; a delayed breaking agent; and a propping agent.
55 . The well-treating fluid of claim 54 , wherein the guar powder further comprises from about 0.05 to about 1.0 percent by weight of the hydrating liquid.
56 . The well-treating fluid of claim 54 , wherein the guar powder further comprises from about 0.15 to about 0.3 percent by weight of the hydrating liquid.
57 . The well-treating fluid of claim 54 , wherein the guar powder is selected from the group consisting of:
( 1 ) a de-polymerized fast-hydrating high-viscosity guar powder; and ( 2 ) a derivative of the fast-hydrating high-viscosity guar powder.
58 . The well-treating fluid of claim 57 , wherein the derivative of the fast-hydrating high-viscosity guar powder is selected from the group consisting of:
( 1 ) hydroxy propyl guar powder; ( 2 ) carboxy methyl guar powder; and ( 3 ) carboxy methyl hydroxy propyl guar powder.
59 . The well-treating fluid of claim 54 , wherein the cross-linking agent comprises from about 10.0 to about 40.0 percent by weight of the guar powder.
60 . The well-treating fluid of claim 54 , wherein the cross-linking agent comprises from about 20.0 to about 35.0 percent by weight of the guar powder.
61 . The well-treating fluid of claim 54 , wherein the delaying agent comprises from about 0.5 to about 25.0 percent by weight of the guar powder.
62 . The well-treating fluid of claim 54 , wherein the delaying agent comprises from about 2.0 to about 10.0 percent by weight of the guar powder.
63 . The well-treating fluid of claim 54 , wherein the delayed breaking agent comprises from about 0.01 to about 2.5 percent by weight of the hydrating liquid.
64 . A method of treating a subterranean formation using a well-treating fluid, the subterranean formation penetrated by a wellbore, the method comprising:
(A) preparing the well-treating fluid by admixing a fast-hydrating high-viscosity guar powder to a hydrating liquid to prepare the well-treating fluid; (B) hydrating the guar powder; (C) admixing a cross-linker and a delayed breaking agent to the well-treating fluid; and (D) introducing the well-treating fluid to the wellbore at a temperature and a pressure sufficient to treat the subterranean formation.
65 . The method of claim 64 , wherein (A) further comprises admixing the guar powder in an amount comprising from about 0.05 to about 1.0 percent by weight of the hydrating liquid.
66 . The method of claim 64 , wherein (A) further comprises admixing the guar powder in an amount comprising from about 0.15 to about 0.3 percent by weight of the hydrating liquid.
67 . The method of claim 64 , wherein the guar powder of (A) is selected from the group consisting of:
( 1 ) a de-polymerized fast-hydrating high-viscosity guar powder; and ( 2 ) a derivative of the fast-hydrating high-viscosity guar powder.
68 . The method of claim 67 , wherein the derivative of the fast-hydrating high-viscosity guar powder is selected from the group consisting of:
( 1 ) hydroxy propyl guar powder; ( 2 ) carboxy methyl guar powder; and ( 3 ) carboxy methyl hydroxy propyl guar powder.
69 . The method of claim 64 , wherein (C) comprises using a cross-linker comprising a cross-linking agent.
70 . The method of claim 69 , wherein a delaying agent is admixed to the well-treating fluid prior to the admixing of the cross-linker.
71 . The method of claim 64 , wherein (C) comprises using a cross-linker comprising a cross-linking agent and a delaying agent.
72 . The method of claim 71 , wherein the cross-linker is disposed to delay the cross-linking until after the well-treating fluid is introduced into the wellbore.
73 . The method of claim 71 , wherein the cross-linking agent comprises from about 10.0 to about 40.0 percent by weight of the guar powder.
74 . The method of claim 71 , wherein the cross-linking agent comprises from about 20.0 to about 35.0 percent by weight of the guar powder.
75 . The method of claim 71 , wherein the delaying agent comprises from about 0.5 to about 25.0 percent by weight of the guar powder.
76 . The method of claim 71 , wherein the delaying agent comprises from about 2.0 to about 10.0 percent by weight of the guar powder.
77 . The method of claim 64 , wherein (C) further comprises admixing the delayed breaking agent in an amount comprising from about 0.01 to about 2.5 percent by weight of the hydrating liquid.
78 . The method of claim 64 , wherein (C) further comprises admixing a propping agent to the well-treating fluid.
79 . The method of claim 64 , wherein (D) further comprises admixing a propping agent to the well-treating fluid.
80 . A method of performing a fracture treatment in a subterranean formation using a well-treating fluid, the subterranean formation penetrated by a wellbore, the method comprising:
(A) preparing the well-treating fluid by admixing a fast-hydrating high-viscosity guar powder to a hydrating liquid to prepare the well-treating fluid; (B) hydrating the guar powder; (C) admixing a cross-linker and a propping agent to the well-treating fluid; and (D) introducing the well-treating fluid to the wellbore at a temperature and a pressure sufficient to stimulate the fracture treatment of the subterranean formation.
81 . The method of claim 80 , wherein (A) further comprises admixing the guar powder in an amount comprising from about 0.05 to about 1.0 percent by weight of the hydrating liquid.
82 . The method of claim 80 , wherein (A) further comprises admixing the guar powder in an amount comprising from about 0.15 to about 0.3 percent by weight of the hydrating liquid.
83 . The method of claim 80 , wherein the guar powder of (A) is selected from the group consisting of:
( 1 ) a de-polymerized fast-hydrating high-viscosity guar powder; and ( 2 ) a derivative of the fast-hydrating high-viscosity guar powder.
84 . The method of claim 83 , wherein the derivative of the fast-hydrating high-viscosity guar powder is selected from the group consisting of:
( 1 ) hydroxy propyl guar powder; ( 2 ) carboxy methyl guar powder; and ( 3 ) carboxy methyl hydroxy propyl guar powder.
85 . The method of claim 80 , wherein (C) comprises using a cross-linker comprising a cross-linking agent.
86 . The method of claim 85 , wherein a delaying agent is admixed to the well-treating fluid prior to the admixing of the cross-linker.
87 . The method of claim 80 , wherein (C) comprises using a cross-linker comprising a cross-linking agent and a delaying agent.
88 . The method of claim 87 , in which the cross-linker is disposed to delay the cross-linking until after the well-treating fluid is introduced into the wellbore.
89 . The method of claim 87 , wherein the delaying agent comprises from about 0.5 to about 25.0 percent by weight of the guar powder.
90 . The method of claim 87 , wherein the delaying agent comprises from about 2.0 to about 10.0 percent by weight of the guar powder.
91 . The method of claim 87 , wherein the cross-linking agent comprises from about 10.0 to about 40.0 percent by weight of the guar powder.
92 . The method of claim 87 , wherein the cross-linking agent comprises from about 20.0 to about 35.0 percent by weight of the guar powder.
93 . The method of claim 80 , wherein (C) further comprises admixing a delayed breaking agent to the well-treating fluid.
94 . The method of claim 93 , wherein (C) further comprises admixing the delayed breaking agent in an amount comprising from about 0.01 to about 2.5 percent by weight of the hydrating liquid.
95 . The method of 80, further comprising:
(E) introducing a breaking agent to the wellbore.
96 . A method of performing a fracture treatment to a subterranean formation using a well-treating fluid, the subterranean formation penetrated by a wellbore, the method comprising:
(A) preparing the well-treating fluid by admixing a fast-hydrating high-viscosity guar powder to a hydrating liquid to prepare the well-treating fluid; (B) hydrating the guar powder; (C) admixing a cross-linker, a propping agent, and a delayed breaking agent to the well-treating fluid, wherein the cross-linker comprises a delaying agent and a cross-linking agent, and wherein the cross-linker is disposed to delay the cross-linking until after the well-treating fluid is introduced to the wellbore; (D) introducing the well-treating fluid to the wellbore at a temperature and a pressure sufficient to stimulate the fracture treatment of the subterranean formation; and (E) breaking the well-treating fluid with the delayed breaking agent, the delayed breaking agent disposed to delay breaking of the well-treating fluid until after stimulation of the fracture treatment.
97 . The method of claim 96 , wherein (A) further comprises admixing the guar powder in an amount comprising from about 0.05 to about 1.0 percent by weight of the hydrating liquid.
98 . The method of claim 96 , wherein (A) further comprises admixing the guar powder in an amount comprising from about 0.15 to about 0.3 percent by weight of the hydrating liquid.
99 . The method of claim 96 , wherein the guar powder of (A) is selected from the group consisting of:
( 1 ) a de-polymerized fast-hydrating high-viscosity guar powder; and ( 2 ) a derivative of the fast-hydrating high-viscosity guar powder.
100 . The method of claim 99 , wherein the derivative of the fast-hydrating high-viscosity guar powder is selected from the group consisting of:
( 1 ) hydroxy propyl guar powder; ( 2 ) carboxy methyl guar powder; and ( 3 ) carboxy methyl hydroxy propyl guar powder.
101 . The method of claim 96 , wherein the cross-linking agent comprises from about 10.0 to about 40.0 percent by weight of the guar powder.
102 . The method of claim 96 , wherein the cross-linking agent comprises from about 20.0 to about 35.0 percent by weight of the guar powder.
103 . The method of claim 96 , wherein the delaying agent comprises from about 0.5 to about 25.0 percent by weight of the guar powder.
104 . The method of claim 96 , wherein the delaying agent comprises from about 2.0 to about 10.0 percent by weight of the guar powder.
105 . The method of claim 96 , wherein (C) further comprises admixing the delayed breaking agent in an amount comprising from about 0.01 to about 2.5 percent by weight of the guar powder.Join the waitlist — get patent alerts
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