Interseismic creep of carbonate-hosted seismogenic normal faults: Insights from central Italy

IF 3.9 1区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY Geological Society of America Bulletin Pub Date : 2023-08-21 DOI:10.1130/b36954.1
L. Del Sole, S. Mazzoli, M. Carafa, Giovanni Toffol, G. Pennacchioni, G. Giuli, C. Invernizzi, E. Tondi
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Abstract

Understanding fault behavior in carbonates is critical because they represent loci of earthquake nucleation. Models of fault-slip mode generally assume: (1) seismic sliding and aseismic sliding occur in different fault patches, (2) creep is restricted to lithology-controlled weak domains, and (3) rate-weakening patches are interseismically locked. We studied three carbonate-hosted seismogenic normal faults in central Italy by combining (micro)structural and geochemical analyses of fault rocks integrated with new seismic coupling estimates. The (upper bound) seismic coupling was estimated to be ∼0.75, which indicates that at least 25% of the long-term deformation in the study area is released aseismically in the upper crust. Microscopy and electron-backscatter diffraction analyses revealed that whereas the localized principal slip zone records seismic slip (as ultracataclastic material, calcite crystallographic preferred orientation (CPO), and truncated clasts), the bulk fault rock below behaves differently. Cataclasites in massive limestones deform by cataclastic flow, pressure solution, and crystal plasticity, along with CPO development. Foliated tectonites in micritic limestones deform by pressure solution and frictional sliding, with CPO development. We suggest these mechanisms accommodate on-fault interseismic creep. This is consistent with experimental results reporting velocity-strengthening behavior at low slip rates. We present multiscale evidence of coexisting seismic and aseismic slip along the same fault in limestones during the seismic cycle. Our results imply that on-fault aseismic motion must be added to seismic slip to reconcile the long-term deformation rates and that creep is not exclusive to phyllosilicate-bearing units. Our work constitutes a step forward in understanding fault behavior and the seismic cycle in carbonates, and it may profoundly impact future studies on seismogenic potential and earthquake hazard assessment.
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碳酸盐岩发震正断层的震间蠕变:来自意大利中部的见解
了解碳酸盐岩中的断层行为至关重要,因为它们代表了地震成核的轨迹。断层滑动模式的模型通常假设:(1)地震滑动和抗震滑动发生在不同的断层片中,(2)蠕变仅限于岩性控制的薄弱区域,(3)速率弱化片是地震间锁定的。我们将断层岩的(微观)结构和地球化学分析与新的地震耦合估计相结合,研究了意大利中部三条碳酸盐岩成因正断层。(上限)地震耦合估计为~0.75,这表明研究区域至少25%的长期变形在上地壳中以地震方式释放。显微镜和电子背散射衍射分析表明,虽然局部主滑动带记录了地震滑动(作为超碎裂材料、方解石结晶择优取向(CPO)和截断碎屑),但下面的大块断层岩石表现不同。块状石灰岩中的碎裂岩在碎裂流、压力溶解和晶体塑性的作用下变形,并伴随着CPO的发展。泥晶灰岩中的叶片状构造岩在压力溶解和摩擦滑动作用下发生变形,CPO发育。我们建议这些机制适应断层间的蠕变。这与报告低滑移率下速度增强行为的实验结果一致。我们提出了在地震周期中石灰岩中沿着同一断层共存的地震和抗震滑动的多尺度证据。我们的结果表明,断层上的抗震运动必须添加到地震滑移中,以协调长期变形率,并且蠕变并非仅限于含层状硅酸盐的单元。我们的工作在理解碳酸盐岩的断层行为和地震循环方面迈出了一步,它可能会对未来的发震潜力和地震危险性评估研究产生深远影响。
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来源期刊
Geological Society of America Bulletin
Geological Society of America Bulletin 地学-地球科学综合
CiteScore
9.30
自引率
8.20%
发文量
159
审稿时长
4-8 weeks
期刊介绍: The GSA Bulletin is the Society''s premier scholarly journal, published continuously since 1890. Its first editor was William John (WJ) McGee, who was responsible for establishing much of its original style and format. Fully refereed, each bimonthly issue includes 16-20 papers focusing on the most definitive, timely, and classic-style research in all earth-science disciplines. The Bulletin welcomes most contributions that are data-rich, mature studies of broad interest (i.e., of interest to more than one sub-discipline of earth science) and of lasting, archival quality. These include (but are not limited to) studies related to tectonics, structural geology, geochemistry, geophysics, hydrogeology, marine geology, paleoclimatology, planetary geology, quaternary geology/geomorphology, sedimentary geology, stratigraphy, and volcanology. The journal is committed to further developing both the scope of its content and its international profile so that it publishes the most current earth science research that will be of wide interest to geoscientists.
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