Gelling time testing method of repeated fracturing plugging agent

A technology of repeated fracturing and gelling time, applied in the direction of measuring devices, flow characteristics, instruments, etc., can solve problems such as low primary recovery rate, decreased fluid production index, improper material selection, etc., and achieve simple test steps and high test results Accurate, low-cost-to-test effects

Inactive Publication Date: 2013-04-17
马军
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  • Abstract
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  • Application Information

AI Technical Summary

Problems solved by technology

[0004] (1) The natural production capacity of the oil well is low, and it has industrial exploitation value only after fracturing;
[0005] (2) The law of seepage does not follow Darcy's law and has a starting pressure gradient;
[0006] (3) The natural energy is small, the pressure and output drop rapidly, and the primary recovery rate is low;
[0007] (4) The water absorption capacity of the water injection well is low, and the starting pressure and water injection pressure rise rapidly;
[0008] (5) The liquid production index of the oil well drops sharply after water breakthrough, making it very difficult to stabilize production
[0010] Oil, gas, and water wells after hydraulic fracturing, due to the limitations of fracturing technology, materials, equipment and tools at that time, were small in scale, improperly selected materials, and limited equipment power, etc., would lead to a significant reduction in the conductivity of hydraulic fractures and gradually Some of them are not effective due to improper well layer selection or operational reasons. At the same time, after long-term development, major oil and gas fields have entered the development stage of medium and high water cut periods, and it is becoming more and more difficult to achieve high and stable production. For this type of oil and gas Wells that require refracturing for high production and economic recovery

Method used

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Embodiment

[0034] The gelling time testing method of a kind of repetitive fracturing plugging agent that the present invention relates to, its specific steps are as follows:

[0035] (a) Put the rotor in the thermostatic cup;

[0036] (b) put the repeated fracturing plugging agent into the constant temperature cup;

[0037] (c) drive the rotor to rotate with an electromagnetic stirrer;

[0038] (d) Measure the time required for the blocking agent to move in groups around the rotor from the beginning of the rotation of the rotor, and this time is the gelation time.

[0039] In the step (a), the thermostatic cup has a capacity of 100ml.

[0040] In the step (a), the rotor is a magnetic rotor with a length of 3.5 cm and a diameter of 0.7 cm.

[0041] In the step (b), the amount of repeated fracturing plugging agent is 15ml.

[0042] In the step (c), the rotating speed of the electromagnetic stirrer is 2 gears.

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Abstract

The invention discloses a gelling time testing method of a repeated fracturing plugging agent. The gelling time testing method comprises the following steps: (a) putting a rotor into a constant-temperature cup; (b) putting the repeated fracturing plugging agent into the constant-temperature cup; (c) utilizing an electromagnetic stirrer to drive the rotor to rotate; and (d) determining the time used from rotation of the rotor to clustering movement of the plugging agent on the periphery of the rotor, wherein the time is the gelling time. According to the gelling time testing method disclosed by the invention, the gelling time of the repeated fracturing plugging agent can be rapidly determined; and the tested result is accurate, the testing step is simple and the testing cost is low.

Description

technical field [0001] The invention relates to a method for testing the gelation time of a repetitive fracturing plugging agent. Background technique [0002] Low-permeability reservoirs in my country generally refer to reservoirs composed of oil layers with a permeability between 10-50×10-3μm2. With the continuous deepening of exploration and development, my country's low-permeability oil reservoirs account for an increasing proportion of the total proven reserves and produced reserves, and play an increasingly important role in maintaining and promoting the development of the petroleum industry. big. Take China National Petroleum Corporation as an example. By the end of 2001, the proven oil reserves in place were 145×108t, of which low-permeability reserves were 44×108t, accounting for 30%; the produced oil reserves were 110×108t, of which low-permeability reserves were 21×108t , accounting for 19%; the remaining proven undeveloped petroleum geological reserves are 35×10...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01N11/14
Inventor 马军
Owner 马军
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