Araştırma Makalesi

Pressure Stress Coupled Deterministic Modeling of Multiphase Flow in Fractured Reservoirs

Cilt: 11 Sayı: 1 9 Haziran 2026
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Pressure Stress Coupled Deterministic Modeling of Multiphase Flow in Fractured Reservoirs

Öz

Fractured reservoirs exhibit complex flow behavior due to strong coupling between fracture matrix interaction, multiphase transport, and pressure induced geo mechanical effects. This study develops a deterministic dual porosity multiphase model that explicitly incorporates poroelastic stress coupling and stress dependent permeability. Analytical results establish the positivity and boundedness of solutions, ensuring physical admissibility of saturations, pressures, stress, and porosity. Equilibrium states are derived and their local stability is examined through linearization and eigenvalue analysis. The results show that system Dynamics are governed by real eigenvalues and that stress induced permeability degradation leads to steady state bifurcations associated with loss or exchange of fracture matrix connectivity, while oscillatory instabilities are excluded. Numerical simulations using representative literature-based parameters are compared with published coupled reservoir geo mechanical studies. The predicted fracture and matrix pressure ranges (20–27 MPa and 18–24 MPa, respectively) and effective stress evolution (15–22 MPa) agree well with reported values. Permeability reductions of one to two orders of magnitude are reproduced, and saturation dynamics demonstrate rapid fracture response and delayed matrix behavior. These results confirm that the proposed reduced order model reliably captures key features of stress coupled fractured reservoir systems.

Anahtar Kelimeler

Kaynakça

  1. [1] Bear, J. (1972). Dynamics of Fluids in Porous Media, American Elsevier Publishing Co., New York, pp. 687-701.
  2. [2] Nelson, R.A. (2001). Geologic Analysis of Naturally Fractured Reservoirs, Gulf Professional Publishing, Houston, Book 2nd edition.
  3. [3] Barenblatt, G.I. Zheltov, I.P. Kochina, I.N. (1960). Basic concepts in the theory of seepage of homogeneous liquids in fissured rocks, Journal of Applied Mathematics and Mechanics 24(5), 852–864.
  4. [4] Warren, J.E. Root, P.J. (1963). The behavior of naturally fractured reservoirs, SPE Journal 3 245–255.
  5. [5] Kazemi, H. Merrill, L.S. Porterfield, K.L. Zeman, P.R. (1976). Numerical simulation of water oil flow in naturally fractured reservoirs, SPE Journal 16 (06), 317–326.
  6. [6] Kazemi, H. Gilman, J.R. Elsharkawy, A.M. (1992). Analytical and numerical solution of oil recovery from fractured reservoirs With Empirical Transfer Functions, SPE Journal, 7 (02), 176–184.
  7. [7] Gilman, M.R. Kazemi, H. (1983). Improvements in simulation of naturally fractured reservoirs, SPE Reservoir Engineering 23 (04), 695–707.
  8. [8] Arbogast, T. Douglas, J. Hornung, U. (1990). Derivation of the double porosity model of single-phase flow via homogenization theory, SIAM Journal on Mathematical Analysis 21(04) 823–836.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Akışkan Akışı, Isı ve Kütle Transferinde Hesaplamalı Yöntemler (Hesaplamalı Akışkanlar Dinamiği Dahil)

Bölüm

Araştırma Makalesi

Erken Görünüm Tarihi

1 Haziran 2026

Yayımlanma Tarihi

9 Haziran 2026

Gönderilme Tarihi

13 Ocak 2026

Kabul Tarihi

25 Mayıs 2026

Yayımlandığı Sayı

Yıl 2026 Cilt: 11 Sayı: 1

Kaynak Göster

APA
Otamere, B., & Oyovwevotu, S. O. (2026). Pressure Stress Coupled Deterministic Modeling of Multiphase Flow in Fractured Reservoirs. International Journal of Engineering Technologies IJET, 11(1), 17-26. https://doi.org/10.19072/ijet.1862525
AMA
1.Otamere B, Oyovwevotu SO. Pressure Stress Coupled Deterministic Modeling of Multiphase Flow in Fractured Reservoirs. IJET. 2026;11(1):17-26. doi:10.19072/ijet.1862525
Chicago
Otamere, Blessing, ve Stephen Onome Oyovwevotu. 2026. “Pressure Stress Coupled Deterministic Modeling of Multiphase Flow in Fractured Reservoirs”. International Journal of Engineering Technologies IJET 11 (1): 17-26. https://doi.org/10.19072/ijet.1862525.
EndNote
Otamere B, Oyovwevotu SO (01 Haziran 2026) Pressure Stress Coupled Deterministic Modeling of Multiphase Flow in Fractured Reservoirs. International Journal of Engineering Technologies IJET 11 1 17–26.
IEEE
[1]B. Otamere ve S. O. Oyovwevotu, “Pressure Stress Coupled Deterministic Modeling of Multiphase Flow in Fractured Reservoirs”, IJET, c. 11, sy 1, ss. 17–26, Haz. 2026, doi: 10.19072/ijet.1862525.
ISNAD
Otamere, Blessing - Oyovwevotu, Stephen Onome. “Pressure Stress Coupled Deterministic Modeling of Multiphase Flow in Fractured Reservoirs”. International Journal of Engineering Technologies IJET 11/1 (01 Haziran 2026): 17-26. https://doi.org/10.19072/ijet.1862525.
JAMA
1.Otamere B, Oyovwevotu SO. Pressure Stress Coupled Deterministic Modeling of Multiphase Flow in Fractured Reservoirs. IJET. 2026;11:17–26.
MLA
Otamere, Blessing, ve Stephen Onome Oyovwevotu. “Pressure Stress Coupled Deterministic Modeling of Multiphase Flow in Fractured Reservoirs”. International Journal of Engineering Technologies IJET, c. 11, sy 1, Haziran 2026, ss. 17-26, doi:10.19072/ijet.1862525.
Vancouver
1.Blessing Otamere, Stephen Onome Oyovwevotu. Pressure Stress Coupled Deterministic Modeling of Multiphase Flow in Fractured Reservoirs. IJET. 01 Haziran 2026;11(1):17-26. doi:10.19072/ijet.1862525

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