Abstract

A comprehensive reservoir simulation study was performed on an oil field that had a wide fracture network and could be considered a typical example of highly fractured reservoirs in Iran. This field is located in southwest of Iran in Zagros sedimentary basin among several neighborhood fields with relatively considerable fractured networks. In this reservoir, the pressure drops below the saturation pressure and causes the formation of a secondary gas cap. This can help to better assess the gravity drainage phenomenon. We decided to investigate and track the effect of gravity drainage mechanism on the recovery factor of oil production in this field. In this study, after/before the implementation of gas injection scenarios with different discharges, the contribution of gravity drainage mechanism to the recovery factor was found more than 50%. Considering that a relatively large number of studies have been conducted on this field simultaneously with the growth of information from different aspects and this study is the last and most comprehensive study and also the results are extracted from real field data using existing reservoir simulators, it is of special importance and can be used by researchers.

Highlights

  • Gravity drainage as one of the mechanisms of natural fractured reservoirs is a process in which the gravity acts as the main driving mechanism in which the non-wetting phase pushes the oil out of the rock

  • It is considered that the difference in oil production in these two cases is due to gravity drainage mechanism

  • The results showed that the recovery factor of gravity drainage might reach as high as 40% in the gas-invaded zone of a real fractured reservoir under gas injection

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Summary

Introduction

Gravity drainage as one of the mechanisms of natural fractured reservoirs is a process in which the gravity acts as the main driving mechanism in which the non-wetting phase (i.e., gas phase) pushes the oil out of the rock. Keywords Naturally fractured reservoir · Gravity drainage · Oil production mechanisms · Flow simulation · Matrix block height · Gas injection

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