Longitudinally superposed developing three-strata oil reservoir well pattern and deployment method thereof

A vertical, well pattern technology, applied in wellbore/well components, earthwork drilling, production of fluids, etc., can solve the problems of low oil production rate, single production layer, affecting development effect, etc. The uniformity of well layout and the effect of improving the utilization rate of well pattern

Active Publication Date: 2012-12-26
PETROCHINA CO LTD
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Problems solved by technology

For vertically superimposed multiple layers, a set of well pattern is commonly used to recover layer by layer, and all wells are drilled to the lowest layer of the reservoir. The disadvantage is that the production layer is single, and multiple oil layers in the vertical direction cannot be used at the same time. , the oil recovery rate is low, and the development efficiency is low; another commonly used method is multi-layer commingled production, the disadvantage is that it does not consider the difference between vertical layers, which leads to interlayer channeling and interference, which affects the development effect; Multiple wells are drilled in the well site, and each set of layers has a separate well pattern, such as figure 2 As shown, it is a schematic diagram of a set of well pattern intensification and adjustment method deployed in the same well site for each set of vertically stacked multi-layer reservoirs in the prior art, where (a) is the reverse nine-point basic well pattern; (b) is Inverse nine-point infill well pattern; (c) five-point infill well pattern
The development wells of each set of strata are only drilled to the corresponding development target layer, the disadvantage is that the number of wells drilled is twice that of the previous two well layout methods, the investment cost is high, and it is not economical
[0004] It can be seen that in the process of developing vertically superimposed multi-layered reservoirs with the above three well layout methods, the vertical layers cannot be taken into account at the same time. Well pattern development has many limitations such as too many wells drilled, large investment, low utilization rate of well pattern, poor economic benefits, etc.

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  • Longitudinally superposed developing three-strata oil reservoir well pattern and deployment method thereof
  • Longitudinally superposed developing three-strata oil reservoir well pattern and deployment method thereof
  • Longitudinally superposed developing three-strata oil reservoir well pattern and deployment method thereof

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[0036] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only some, not all, embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by persons of ordinary skill in the art without making creative efforts belong to the protection scope of the present invention.

[0037] The purpose of the embodiments of the present invention is to simultaneously develop vertical multi-layer reservoirs, avoid interlayer channeling and interference, increase oil production rate, increase water drive sweep coefficient, slow down water cut rise rate, and increase well pattern utilization efficiency. In this case, the three-dimensional and efficient development of vertical multi-layer reservoirs can be realized.

[0038] Such as image 3 A...

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Abstract

The embodiment of the invention discloses a longitudinally superposed developing three-strata oil reservoir well pattern and a deployment method of the longitudinally superposed developing three-strata oil reservoir well pattern. To the longitudinally superposed developing three-strata oil reservoir, the well spacing of a basic well pattern is 2*(square root of 2)*L; after being encrypted once, the well spacing of a middle transitional well pattern is 2L; after being encrypted twice, two superposed inverted nine-spot well patterns with well spacing of 2L are formed; after being encrypted for three times, two superposed inverted nine-spot well patterns with well spacing of 2L and one superposed inverted nine-spot well pattern with well spacing of (square root of 2)*L are formed; and after pairwise alternatively development, the well spacing of the plane well pattern of each strata has a rational well spacing of L; the evolution process of the well spacing is as follows: 2*(square root of 2)* L to 2L to (square root of 2)*L to L; the middle process of well patterns conversion with a well spacing of 2L and (square root of 2)*L is added; at the same drilling speed, well placement uniformity coefficient and reserve control speed are increased; the well spacing is encrypted in the alternation of well patterns; each well pattern can realize order development to each longitudinal strata; the utilization ratio of the well patterns is improved; meanwhile, the oil reservoir is uniformly used, so that the method is in favor of increasing accumulated oil production of an oil field and improving the recovery ratio; and interlayer interference generated by commingled extracting oil in multiple oil layers of longitudinal series of strata is avoided.

Description

technical field [0001] The invention relates to the design of oilfield development deployment and adjustment schemes, in particular to a vertically stacked and developed three-layer oil reservoir well pattern and a deployment method thereof. Background technique [0002] At present, three well pattern deployment methods are usually adopted for the water flooding development of vertically superimposed multi-layer reservoirs with a single oil layer thickness of more than 4m and crude oil viscosity lower than 10000mPa.s: one is to deploy a well pattern for each set of layers A set of well patterns (wells with different formations at the same location and the same well site) are independently developed. The second is to use a set of well patterns to develop layer by layer. The third is to use a set of well patterns to jointly mine all vertical formations. [0003] Most of the well pattern deployment and adjustment methods used in oilfield development are reverse nine-point metho...

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E21B43/30
Inventor 赵伦许安著范子菲何伶王成刚王淑琴赵文琪
Owner PETROCHINA CO LTD
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