Abstract

The reactivation of pre-existing faults is a common phenomenon in a basin. This paper discusses the relationship between the pre-existing faults and the newly formed Coulomb shear fractures regarding pore fluid pressures. Based on the Coulomb fracture criterion and Byerlee frictional sliding criterion, an equation relating pore pressure coefficient (λe), minimum dip angle (αe) of the reactive pre-existing fault and the intersection point depth (z) between the pre-existing fault and a newly formed Coulomb shear fault in an extensional basin, is established in this paper. This equation enhanced the understanding on the reactivation of pre-existing faults and can be used to calculate paleo-pore fluid pressures. The bigger the pore fluid pressure in a pre-existing fault is, the less the minimum dip angle for a reactive pre-existing fault will be. The minimum dip angle is less in shallow area than that in deep area. This will be of significance in petroleum exploration and development.

Highlights

  • The reactivation of pre-existing faults is a common phenomenon in a basin [1] (Twiss & Moores, 2007)

  • Based on the Coulomb fracture criterion [11] and the Byerlee frictional criterion [12], this paper is to discuss the controlling factors of the minimum dip angle of a pre-existing fault helping understand the reactivation in pre-existing faults and forecast the paleo fluid pressure in faults

  • Two improvements have been made on the reactivation of pre-existing

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Summary

Introduction

The reactivation of pre-existing faults is a common phenomenon in a basin [1] (Twiss & Moores, 2007). Chen gas has been discussed [8] Both the details on reactivation of pre-existing faults and the pore fluid pressures have seldom addressed [1] [10]. Based on the Coulomb fracture criterion ( called the Navier-Coulomb, Mohr-Coulomb or Coulomb-Mohr fracture criterion) [11] and the Byerlee frictional criterion [12], this paper is to discuss the controlling factors of the minimum dip angle of a pre-existing fault helping understand the reactivation in pre-existing faults and forecast the paleo fluid pressure in faults

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