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A sand-free fracturing fluid with high conductivity, its preparation method, fracturing technology and application

A conductivity and fracturing fluid technology, applied in the field of hydraulic fracturing, can solve the problems of increasing the difficulty of fracturing construction, fracturing failure, and inability to suspend proppant, shortening the fracturing construction period, reducing fracturing costs, The effect of reducing construction risk

Active Publication Date: 2020-05-22
PEKING UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] The above-mentioned existing technologies all need to add sand, and have high requirements on the viscosity of the fracturing fluid. If the viscosity of the fracturing fluid is too low, it will be difficult to carry the proppant, and the proppant cannot be fully suspended in the fracturing fluid, and the cost of fracturing is high. And it is difficult to penetrate deep into the cracks and pores
In traditional fracturing techniques, a large amount of proppant is required, which increases the difficulty of fracturing construction; high-concentration proppant is prone to sand plugging, which can easily lead to fracturing failure; and the use of proppant and high-performance fracturing fluid, Significantly increased the fracturing cost; after the fracturing operation is completed, the fracturing fluid needs to be broken and flowed back to the ground. If the flowback is not complete, the fracturing fluid will cause damage to the reservoir, reduce the permeability of the formation, and cause fracturing Unsatisfactory effect

Method used

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  • A sand-free fracturing fluid with high conductivity, its preparation method, fracturing technology and application
  • A sand-free fracturing fluid with high conductivity, its preparation method, fracturing technology and application
  • A sand-free fracturing fluid with high conductivity, its preparation method, fracturing technology and application

Examples

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Effect test

Embodiment 1

[0049] A kind of sandless fracturing fluid, comprising A group fracturing fluid and B group fracturing fluid, said A group fracturing fluid is made by adding epoxy resin prepolymer to guar gum fracturing fluid, said B group fracturing fluid The fracturing fluid is prepared by adding water-based polyurethane curing agent and modified glass fiber to the guar gum fracturing fluid.

[0050] The above-mentioned preparation method of the sand-free fracturing fluid with high conductivity comprises the following steps:

[0051] (1) Preparation of group A fracturing fluid

[0052] Disperse 80g of epoxy resin prepolymer in 100g of guar gum fracturing fluid to obtain Group A fracturing fluid;

[0053] (2) Preparation of Group B fracturing fluid

[0054] Disperse 24g of water-based polyurethane curing agent, 0.32g of glass fiber with a length of 10mm, and 3g of nano-titanium dioxide in 100g of guar gum fracturing fluid to obtain group B fracturing fluid.

[0055] The mass ratio of the ...

Embodiment 2-6

[0061] As described in Example 1, the difference from Example 1 is:

[0062] The mass ratios of the water-based polyurethane curing agent in the fracturing fluid of Group B to the epoxy resin prepolymer in the fracturing fluid of Group A are 20:100, 35:100, 40:100, 50:100, and 60:100, respectively.

Embodiment 7-10

[0064] As described in Example 1, the difference from Example 1 is:

[0065] Nano titanium dioxide is not added to the fracturing fluid of group B, that is, the glass fiber is unmodified glass fiber, and the length of the glass fiber is 8mm;

[0066] The mass ratios of the unmodified glass fiber to the epoxy resin prepolymer in group A fracturing fluid are 0.2:100, 0.3:100, 0.4:100, and 0.5:100, respectively.

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Abstract

The invention relates to sand-free fracturing fluid with high flow conductivity as well as a preparation method, a fracturing technology and application of the sand-free fracturing fluid. The sand-free fracturing fluid comprises a group-A fracturing fluid containing a curable resin prepolymer and a group-B fracturing fluid containing a curing agent and fibers, wherein the group-A fracturing fluidand the group-B fracturing fluid are used cooperatively. The fracturing fluid prepared by the preparation method disclosed by the invention can enter all levels of fractures to form fiber enhanced porous resin to ensure that a fractured complicated fracture net system is relatively high in flow conductivity and can support the fractures, so that the oil and gas recovery rate is increased. Furthermore, the fracturing technology disclosed by the invention is simple, and the fracturing risk is reduced.

Description

technical field [0001] The invention relates to a sand-free fracturing fluid with high conductivity, a preparation method, a fracturing process and application thereof, and belongs to the technical field of hydraulic fracturing in the process of oil and natural gas exploitation. Background technique [0002] Hydraulic fracturing is an important technical method for oil and gas well stimulation. Whether it is conventional low-permeability or ultra-low-permeability oil and gas reservoirs, or shale and tight sandstone reservoirs in unconventional oil and gas reservoirs, hydraulic fracturing plays a key role in increasing production. , especially unconventional reservoirs, without fracturing technology, it is difficult to extract oil and gas underground. Hydraulic fracturing is the use of high-pressure pumps to pump fracturing fluid into the formation to form one or more fractures with a certain geometric size in the formation. The length of the fractures generally ranges from t...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C09K8/68
CPCC09K8/68C09K8/885C09K8/887C09K8/90C09K2208/08
Inventor 牟绍艳温庆志张东晓
Owner PEKING UNIV
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