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Laumonite cemented glutenite reservoir logging identification method and device

A technology of cemented gravel and zeolite, which is applied in the field of logging identification of zeolite cemented glutenite reservoirs, can solve the problems of failure to comprehensively consider the difference in electrical properties, physical properties and electrical properties, and the inability to carry out large-scale popularization and application, so as to overcome the adaptability poor sex effect

Active Publication Date: 2021-10-26
CHINA UNIV OF GEOSCIENCES (BEIJING)
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  • Claims
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Problems solved by technology

However, this method only considers the difference in physical properties between the zeolite-cemented glutenite reservoir and the cemented glutenite reservoir without zeolite, and does not comprehensively consider the difference in electrical properties between the two and the relationship between physical and electrical properties. It is only a regional statistical result, which leads to limitations in the use of the above identification methods and cannot be promoted and applied on a large scale

Method used

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  • Laumonite cemented glutenite reservoir logging identification method and device
  • Laumonite cemented glutenite reservoir logging identification method and device
  • Laumonite cemented glutenite reservoir logging identification method and device

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Embodiment 1

[0176] This embodiment provides a logging identification method for laurelite-cemented glutenite reservoirs. This embodiment takes a Permian glutenite reservoir in a well in the northwest margin of the Junggar Basin in my country as an example to illustrate the technical solution provided by the present invention.

[0177] The method includes:

[0178] Step 1, obtaining the density logging curve, neutron logging curve, acoustic time difference logging curve, deep resistivity logging curve and shallow resistivity logging curve of the target reservoir;

[0179] The result is as image 3 shown.

[0180] Step 2: Normalize the acquired density logging curve, neutron logging curve and acoustic time difference logging curve of the target reservoir to obtain the normalized density logging curve and normalized neutron logging curve of the target reservoir. Well curve, normalized acoustic time difference logging curve; wherein, the normalization process is carried out by the following...

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Abstract

The invention provides a laumontite cemented glutenite reservoir logging identification method and device. The method comprises the following steps that density logging data, neutron logging data, interval transit time logging data, deep resistivity logging data and shallow resistivity logging data of a target reservoir are acquired; normalization processing is performed on the obtained density logging data, neutron logging data and interval transit time logging data of the target reservoir to obtain normalized density logging data, normalized neutron logging data and normalized interval transit time logging data of the target reservoir; based on the obtained deep resistivity logging data and shallow resistivity logging data of the target reservoir, the ratio of the deep resistivity to the shallow resistivity of the target reservoir is determined; and based on the normalized density logging data, the normalized neutron logging data, the normalized interval transit time logging data and the ratio of the deep resistivity to the shallow resistivity of the target reservoir, whether the target reservoir is a laumonite cemented glutenite reservoir or a laumonite-free cemented glutenite reservoir is judged.

Description

technical field [0001] The invention belongs to the field of reservoir evaluation, and in particular relates to a logging identification method and device for a zeolite cemented glutenite reservoir. Background technique [0002] Due to the small porosity and complex pore structure of glutenite reservoirs, the contribution of pore fluid to logging results is small, while the contribution of rock skeleton is relatively large. As a result, the difference in logging response between effective reservoirs and non-reservoirs is small. Using conventional logging interpretation methods to evaluate reservoirs, the results obtained are inconsistent with the real situation of the formation. [0003] In the Permian tight glutenite strata in the Junggar Basin, a large number of laurelite-cemented glutenite reservoirs are locally developed. Due to the low skeletal density and poor electrical conductivity of zeolite, the measured bulk densities of zeolite-cemented sandy conglomerate reserv...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E21B49/00E21B47/00
CPCE21B49/00E21B47/00Y02A90/30
Inventor 肖亮朱明梁则亮董雪梅胡婷婷李静贾春明潘拓
Owner CHINA UNIV OF GEOSCIENCES (BEIJING)
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