Evaluation method based on effectiveness of shale reservoir

An evaluation method and shale technology, which are applied to the details of processing steps, the details of image processing hardware, image data processing, etc. Judging whether or not to flow, etc.

Active Publication Date: 2019-09-24
CHINA UNIV OF PETROLEUM (EAST CHINA)
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  • Abstract
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Problems solved by technology

[0006] (2) Mud shale can be deposited in various depositional environments such as semi-deep lake-deep lake, sub-depression, prodelta or gravity flow, but the lithology is similar and lacks practical facies markers, which simplifies the study of depositional environment. It is more difficult to subdivide the sedimentary microenvironment;
[0007] (3) Mud shale has fine grain size, complex composition, and large changes in laminae thickness and continuity, which makes it difficult to classify mud shale lithofacies;
[0009] (5) There are various types of shale reservoir space, with multi-scale features, the naked eye and optical microscope are difficult to meet the observation accuracy, more micro-nano scale fe

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  • Evaluation method based on effectiveness of shale reservoir
  • Evaluation method based on effectiveness of shale reservoir
  • Evaluation method based on effectiveness of shale reservoir

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Embodiment Construction

[0104] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative work shall fall within the protection scope of the present invention.

[0105] An evaluation method based on the effectiveness of shale reservoirs. The method is based on that the effectiveness of shale reservoirs is controlled by the oil generation, storage, preservation, reformability and flowability of the shale reservoirs Establishing the reservoir space model of the shale reservoir of the modeling target formation with the characteristics of nature;

[0106] The method includes the following steps:

[0107...

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Abstract

The invention discloses an evaluation method based on effectiveness of a shale reservoir. The method comprises: determining the lithofacies as a basic evaluation unit according to the characteristics of the shale oil reservoir; selecting the oil production property, the storage property, the modifiability and the flowability as evaluation contents; and further performing influence factor analysis by the system, preferably selecting organic carbon content, hydrocarbon generation potential, crack type and development strength, pore type and surface porosity, diagenetic action, relative brittleness coefficient, brittleness index and critical flow aperture as evaluation parameters, and obtaining the shale reservoir type by adopting a gray fuzzy mathematical method.

Description

Technical field [0001] The invention relates to the research field of shale reservoirs, and more specifically to an evaluation method based on the effectiveness of shale reservoirs. Background technique [0002] At present, research on shale reservoirs at home and abroad is developing rapidly. The research scale is refined, quantitative, and three-dimensional visualization. The research on unconventional oil and gas accumulation tends to be systematic and theoretical, but it focuses on the foundation of shale. Research is relatively weak. [0003] The three properties of shale source, reservoir and cap are integrated. Its oil generation, storage, preservation, reformability, and fluidity all have an impact on shale reservoirs. Only those with good oil generation indicators and storage Only effective shale reservoirs with good performance, good storage conditions, and a certain flow capacity or can flow after artificial fracturing. Rock mechanics parameters are mainly used at home...

Claims

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Application Information

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IPC IPC(8): G06T17/00G06F17/18G06Q10/06G06Q50/02G06T5/00G06T7/136
CPCG06F17/18G06Q10/0639G06Q50/02G06T5/002G06T7/136G06T17/00G06T2200/08G06T2200/28G06T2207/10061
Inventor 马存飞董春梅朱兆群
Owner CHINA UNIV OF PETROLEUM (EAST CHINA)
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