In this research attempts were made to estimate the in-situ stresses acting on a hydrocarbon reservoir based on routine activities of acid injection in oil reservoir. It was found that the relation between the re-opening pressure of fracture and principal in-situ stresses can be estimated using rock mechanics equations for the circular underground cavities. An appropriate relation between the maximum and minimum horizontal principal in-situ stresses and reservoir parameters such as permeability, reservoir pressure, Young’s modulus, acid viscosity, injection flow rate and etc., was developed by using the well-known Darcy equations for fluid flow in porous media. Accordingly, knowing the flow rate of acid injection during well operations and some other reservoir parameters, in-situ stresses may be estimated. The method was then successfully applied to a large carbonate reservoir as a case study in south-west of Iran. Maximum and minimum effective horizontal stresses were calculated by employing the presented method.
Haghi,A , Asef,M and Kharrat,R . (2026). New Analytical Approach for Reservoir Stress Approximation Based on Acid Fracturing Data. Engineering Geology, 9(2), 2789-2816. doi: 10.18869/acadpub.jeg.9.2.2789
MLA
Haghi,A , , Asef,M , and Kharrat,R . "New Analytical Approach for Reservoir Stress Approximation Based on Acid Fracturing Data", Engineering Geology, 9, 2, 2026, 2789-2816. doi: 10.18869/acadpub.jeg.9.2.2789
HARVARD
Haghi A, Asef M, Kharrat R. (2026). 'New Analytical Approach for Reservoir Stress Approximation Based on Acid Fracturing Data', Engineering Geology, 9(2), pp. 2789-2816. doi: 10.18869/acadpub.jeg.9.2.2789
CHICAGO
A Haghi, M Asef and R Kharrat, "New Analytical Approach for Reservoir Stress Approximation Based on Acid Fracturing Data," Engineering Geology, 9 2 (2026): 2789-2816, doi: 10.18869/acadpub.jeg.9.2.2789
VANCOUVER
Haghi A, Asef M, Kharrat R. New Analytical Approach for Reservoir Stress Approximation Based on Acid Fracturing Data. Engineering Geology. 2026;9(2):2789-2816 (In Persian). doi: 10.18869/acadpub.jeg.9.2.2789