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Shear fracture pattern and microstructural evolution in transpressional fault zones from field and laboratory studies
Institution:1. Dipartimento di Fisica e Scienze della Terra, University of Parma, Parco Area delle Scienze, 157/A, 43100 Parma, Italy;2. Alpine Laboratory of Paleomagnetism (ALP), Via Madonna dei Boschi 76, Peveragno, 12016, CN, Italy;3. Laboratoire des Sciences du Climat et de l''Environnement (LSCE), Avenue de la Terrace, 91198 Gif-sur-Yvette, France;4. Dipartimento di Scienze Chimiche e Geologiche, University of Modena and Reggio Emilia, via Campi 103, 41125 Modena, Italy;5. Istituto di Scienze Marine (ISMAR-CNR), Via Gobetti 101, 40100 Bologna, Italy;6. Department of Geology, University of Salamanca, 37008 Salamanca, Spain;7. Biology Department, Woods Hole Oceanographic Institution, 266 Woods Hole Road, Woods Hole, MA 02543, USA;8. Stazione Zoologica Anton Dohrn, Villa Comunale, 80121 Naples, Italy
Abstract:Zones of transpressional shear deformation accommodate strike-slip and oblique-slip displacements. Field work in a transpressive shear zone, and transpressional analogue clay-box modelling, show that a P-oriented foliation and associated P-shears are preferentially developed over the more common R1 Riedel-shears. The Carboneras fault system (CFS) in SE Spain is a left-lateral transpressional shear zone with an internal geometry characterized by first-order Y-oriented faults and widespread P-oriented second-order faults. The mesoscopic to microscopic gouge fabric reflects the regional architecture of the shear zone being dominated by a pervasive Poriented foliation and discrete Y- and P-shears. Friction experiments carried out to investigate the textural evolution of gouge fabrics showed four textural stages of fabric development, from foliation formation to extreme shear localization resulting in cross-gouge failure. Transpression clay-box models favoured the formation of secondary P-oriented shear fractures and P-oriented shear lenses. Further deformation caused differential shear lens rotation and shear lens orientations closer to the mean displacement direction. Our field studies and laboratory analogue experiments indicate that shear zones dominated by P-shears are diagnostic of a transpressional deformation regime.
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