Features of isolation and nature of low-resistivity oil-saturated reservoirs of the Middle Jurassic deposits of the Akshabulak Central field of the South Torgai oil and gas basin

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Abstract

At the current stage of development of the oil and gas industry of our country, additional exploration of existing fields, understudied promising areas, identification of missed horizons, methods of evaluation and development

of non-standard reservoirs are of particular relevance. Reservoirs with low specific electrical resistivity can be referred to non-standard reservoirs, and there are some difficulties in assessing hydrocarbon prospects of these reservoirs. Low resistivity reservoirs can be productive reservoirs with high residual water saturation as well as reservoirs for which generally accepted interpretation techniques are ineffective. Proper analysis of the reasons that lead to underestimation of the resistivity of productive reservoirs allows choosing the most effective interpretation methods.

The article is devoted to the study of the features of reservoirs with low electrical resistivity, their nature and role in the process of fluid accumulation. The basic methods of identification of low resistivity zones in reservoir rocks, their physical and chemical characteristics that cause low resistivity, including mineralogical composition, saturation, porosity, permeability and pore space structure, are considered, and their influence on the filtration-capacitance characteristics is analyzed. Approaches to integrating data from various methods (geophysical and geological-technological studies, laboratory measurements) are described. Special attention is paid to the influence of low resistivity on the interpretation of data from geophysical methods. The results of the study have significant practical potential for optimization of field development.

About the authors

Ainagul K. Dzhumagaliyeva

Atyrau branch of KMG Engineering

Author for correspondence.
Email: a.jumagaliyeva@kmge.kz
ORCID iD: 0009-0004-4703-1469
Kazakhstan, Atyrau

Shynar O. Nyssangaliyeva

Atyrau branch of KMG Engineering

Email: sh.nysangalieva@kmge.kz
ORCID iD: 0009-0004-0455-7161
Kazakhstan, Atyrau

Duman A. Akhmetov

KazGerMunai

Email: dakhmetov@kgm.kz
ORCID iD: 0000-0002-3398-4670

PhD

Kazakhstan, Kyzylorda

Kairat I. Sagindykov

KazGerMunai

Email: ksagyndykov@kgm.kz
ORCID iD: 0009-0001-5645-2626
Kazakhstan, Kyzylorda

Altynbek S. Mardanov

Atyrau branch of KMG Engineering

Email: a.mardanov@kmge.kz
ORCID iD: 0000-0002-8342-3046
Kazakhstan, Atyrau

Talgat S. Jaxylykov

Atyrau branch of KMG Engineering

Email: t.jaxylykov@kmge.kz
ORCID iD: 0000-0002-1530-3974
Kazakhstan, Atyrau

Zhansaya S. Murzagaliyeva

Atyrau branch of KMG Engineering

Email: zh.murzagaliyeva@kmge.kz
ORCID iD: 0000-0002-2657-8324
Kazakhstan, Atyrau

References

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Supplementary files

Supplementary Files
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1. JATS XML
2. Figure 1. Tectonic features of the region

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3. Figure 2. Distribution of lithological variations

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4. Figure 3. Particle size distribution

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5. Figure 4. Change of resistance depending on the nature of saturation of reservoirs

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6. Figure 5. Matching

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7. Figure 6. Geological and geophysical characterisation of low-resistivity reservoirs. U-I horizon. Well No. 479

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8. Figure 7. Structural map of the U-I horizon

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9. Figure 8. Structural map of the U-0-1b horizon

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10. Figure 9. Structural map of the U-0-2 horizon

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11. Figure 10. Geological and geophysical characterisation of low resistivity reservoirs. U-0-2 horizon. Well No. 413

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12. Figure 11. Geological and geophysical characterisation of low-resistivity reservoirs of Upper Jurassic sediments. Horizons U-0 and U-I. Well No. 11

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13. Figure 12. Dependence of residual water saturation on porosity based on special core analyses data

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Copyright (c) 2024 Dzhumagaliyeva A.K., Nyssangaliyeva S.O., Akhmetov D.A., Sagindykov K.I., Mardanov A.S., Jaxylykov T.S., Murzagaliyeva Z.S.

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