Volumetric fracturing method of temporarily plugging and diverting through functional slick water with oil displacement agent injected simultaneously

US11408264B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11408264-B2
Application numberUS-202016952704-A
CountryUS
Kind codeB2
Filing dateNov 19, 2020
Priority dateOct 23, 2020
Publication dateAug 9, 2022
Grant dateAug 9, 2022

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  1. Title

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  2. Abstract

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  5. First independent claim

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Abstract

Official abstract text for this publication.

Disclosed is a method for determining three-dimensional in-situ stress based on displacement measurement of borehole wall, including the following steps: pumping the prefluid and the sand-carrying fluid into the target interval, and injecting the biological oil displacement agent into the target interval in sequence; pumping temporary plugging agent into the target layer to implement crack plugging diverting; pumping the sand-carrying liquid into the target interval, and injecting the biological oil displacement agent into the target interval. The beneficial effect of the technical scheme proposed in this disclosure is: by injecting oil displacement agent to fracturing fluid, the temporary plugging diverting fracturing is integrated constructed with enhanced oil recovery, at the same time, it can overcome the incomplete removal of temporary plugging agent and the water lock effect of fracturing fluid caused by diverting fracturing.

First claim

Opening claim text (preview).

What is claimed is: 1. A volumetric fracturing method of temporarily plugging and diverting through functional slick water with oil displacement agent injected simultaneously includes the following steps: S1 obtaining a plurality of reservoir parameters of Ma a target interval of an implementation well to determine the target interval for temporary plugging and steering fracturing, fracturing parameters, and pumping and injection construction procedures, wherein the fracturing parameters include at least flow rate, and the flow rate is not less than 6 m 3 /min; S2 in accordance with the pumping and injection construction procedures, pumping prefluid and sand-carrying fluid into the target interval, and at the same time, injecting biological oil displacement agent into the target interval in sequence; S3 pumping temporary plugging agent into the target interval according to the pumping and injection construction procedures to implement crack plugging diverting; S4 pumping the sand-carrying liquid into the target interval in accordance with the pumping and injection construction procedures, and at the same time injecting the biological oil displacement agent into the target interval, wherein the sand ratio of the sand-carrying liquid is not more than 15%; S5 pumping displacement fluid into the target interval in accordance with the pumping and injection construction procedures to complete the fracturing construction. 2. The volumetric fracturing method of temporarily plugging and diverting through functional slick water with oil displacement agent injected simultaneously according to claim 1 , wherein the prefluid is slick water fracturing fluid, and the slick water fracturing fluid is used to create fractures and slug the reservoir in the initial stage of fracturing, the sand carrying fluid is slick water fracturing fluid containing proppants, the displacement fluid is slick water fracturing fluid that does not contain proppants. 3. The volumetric fracturing method of temporarily plugging and diverting through functional slick water with oil displacement agent injected simultaneously according to claim 2 , wherein the viscosity of the slick water fracturing fluid is 1.0-3.0 mPa·s. 4. The volumetric fracturing method of temporarily plugging and diverting through functional slick water with oil displacement agent injected simultaneously according to claim 1 , wherein the temporary plugging agent is MP-1 type water-soluble temporary plugging agent for fracturing. 5. The volumetric fracturing method of temporarily plugging and diverting through functional slick water with oil displacement agent injected simultaneously according to claim 1 , wherein after the step 5, it also includes the following steps: S6 closing the implementation well. 6. The volumetric fracturing method of temporarily plugging and diverting through functional slick water with oil displacement agent injected simultaneously according to claim 5 , wherein a boreholes closing time lasts for 15-20 days. 7. The volumetric fracturing method of temporarily plugging and diverting through functional slick water with oil displacement agent injected simultaneously according to claim 1 , in the step S2, the injection volume of the prefluid accounts for 30% to 50% of the total injection volume of the fracturing fluid. 8. The volumetric fracturing method of temporarily plugging and diverting through functional slick water with oil displacement agent injected simultaneously according to claim 1 , wherein the step S2 includes the following steps: injecting the prefluid into the target interval, after injecting 150-180 m 3 prefluid, beginning to alternately add 40/70 mesh quartz sand to slug, the sand ratio starts from 2% and increases by 1% sequentially to 7%; alternately injecting the sand-carrying liquid into the target interval, the sand ratio of the sand-carrying liquid is increased in three steps in multiple injections, among which the quartz sand is 40/70 mesh; alternately injecting the sand-carrying liquid into the target interval, the sand ratio of the sand-carrying liquid is increased in four steps in multiple injections, among which the quartz sand is 20/40 mesh. 9. The volumetric fracturing method of temporarily plugging and diverting through functional slick water with oil displacement agent injected simultaneously according to claim 8 , wherein the 40/70 mesh quartz sand is injected into the sand-carrying liquid for three times, in which the sand ratio of the sand-carrying liquid injected for the first time is increased in three steps of 6%-7%-8%; the sand ratio of the sand-carrying liquid increases in three steps of 7%-8%-9%; the sand ratio of the sand-carrying liquid injected for the third time increases in three steps of 8%-9%-10%. 10. The volumetric fracturing method of temporarily plugging and diverting through functional slick water with oil displacement agent injected simultaneously according to claim 8 , wherein the 20/40 mesh quartz sand is injected into the sand-carrying liquid for three times, wherein the sand ratio of the sand-carrying liquid injected for the first time is increased in four steps of 6%-7%-8%-9%; the sand ratio of the sand-carrying liquid injected for the second time is increased in four steps of 7%-8%-9%-10%; the sand ratio of the sand-carrying liquid injected for the third time is increased in four steps of 8%-9%-10%-11%.

Assignees

Inventors

Classifications

  • E21B43/267Primary

    reinforcing fractures by propping · CPC title

  • Testing the nature of borehole walls; Formation testing; Methods or apparatus for obtaining samples of soil or well fluids, specially adapted to earth drilling or wells · CPC title

  • Plastering the borehole wall; Injecting into the formation · CPC title

  • Enhanced recovery methods for obtaining hydrocarbons · CPC title

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What does patent US11408264B2 cover?
Disclosed is a method for determining three-dimensional in-situ stress based on displacement measurement of borehole wall, including the following steps: pumping the prefluid and the sand-carrying fluid into the target interval, and injecting the biological oil displacement agent into the target interval in sequence; pumping temporary plugging agent into the target layer to implement crack plug…
Who is the assignee on this patent?
Univ Yangtze, Jingzhou Modern Petroleum Tech Development Co Ltd
What technology area does this patent fall under?
Primary CPC classification E21B43/267. Mapped technology areas include Fixed Constructions.
When was this patent published?
Publication date Tue Aug 09 2022 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 6 related publications on this page (citations in our corpus or others sharing the same primary CPC).