Fault zone weakening and character of slip along low-angle normal faults: insights from the Zuccale fault, Elba, Italy

被引:162
作者
Collettini, C
Holdsworth, RE
机构
[1] Univ Perugia, Geol Strutturale Geofis, Dipartimento Sci Terra, I-06100 Perugia, Italy
[2] Univ Durham, Dept Geol Sci, Reactivat Res Grp, Durham DH1 3LE, England
关键词
Zuccale fault; Northern Apennines; normal faults; earthquakes; theology;
D O I
10.1144/0016-764903-179
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
A seismically active low-angle normal fault is recognized at depth in the Northern Apennines, Italy, where recent exhumation has also exposed ancient examples at the surface, notably the Zuccale fault on Elba. Field-based and microstructural studies of the Zuccale fault reveal that an initial phase of pervasive cataclasis increased fault zone permeability, promoting influx Of CO2-rich hydrous fluids. This triggered low-grade alteration and the onset of stress-induced dissolution-precipitation processes (e.g. pressure solution) as the dominant grain-scale deformation process in the pre-existing cataclasites leading to shear localization and the formation of a narrow foliated fault core dominated by fine-grained hydrous mineral phases. These rocks exhibit ductile deformation textures very similar to those formed during pressure-solution-accommodated 'frictional-viscous' creep in experimental fault rock analogues. The presence of multiple hydrofracture sets also points to the local attainment of fluid overpressures following development of the foliated fault core, which significantly enhanced the sealing capacity of the fault zone. A slip model for low-angle normal faults in the Apennines is proposed in which aseismic frictional-viscous creep occurs on a weak, slow-moving (slip rate < l mm a(-1)) fault, interspersed with small seismic ruptures caused by cyclic hydrofracturing events. Our findings are potentially applicable to other examples of low-angle normal faults in many tectonic settings.
引用
收藏
页码:1039 / 1051
页数:13
相关论文
共 63 条
[1]  
[Anonymous], 1992, ACTA VULCANOLOGICA
[2]  
[Anonymous], STUDI GEOLOGICI CAME
[3]  
Barchi M., 1998, Memorie della Societa Geologica Italiana, V52, P383
[4]   Architecture and seismotectonics of a regional low-angle normal fault zone in central Italy [J].
Boncio, P ;
Brozzetti, F ;
Lavecchia, G .
TECTONICS, 2000, 19 (06) :1038-1055
[5]  
Bortolotti V, 2001, OFIOLITI, V26, P97
[6]   Experimental investigation into the microstructural and mechanical evolution of phyllosilicate-bearing fault rock under conditions favouring pressure solution [J].
Bos, B ;
Spiers, CJ .
JOURNAL OF STRUCTURAL GEOLOGY, 2001, 23 (08) :1187-1202
[7]   SEISMIC MOMENT SEISMICITY AND RATE OF SLIP ALONG MAJOR FAULT ZONES [J].
BRUNE, JN .
JOURNAL OF GEOPHYSICAL RESEARCH, 1968, 73 (02) :777-+
[8]   CRUSTAL EXTENSION IN THE NORTHERN APENNINES - THE TRANSITION FROM COMPRESSION TO EXTENSION IN THE ALPI APUANE CORE COMPLEX [J].
CARMIGNANI, L ;
KLIGFIELD, R .
TECTONICS, 1990, 9 (06) :1275-1303
[9]   Rate of diffuse carbon dioxide Earth degassing estimated from carbon balance of regional aquifers: The case of central Apennine, Italy [J].
Chiodini, G ;
Frondini, F ;
Cardellini, C ;
Parello, F ;
Peruzzi, L .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 2000, 105 (B4) :8423-8434
[10]   A comparison of structural data and seismic images for low-angle normal faults in the Northern Apennines (Central Italy): constraints on activity [J].
Collettini, C ;
Barchi, MR .
FLOW PROCESSES IN FAULTS AND SHEAR ZONES, 2004, 224 :95-112