评估洞穴通道形成与应力场的关系:阿斯普罗雷玛洞穴(希腊皮诺沃山)岩溶形成与活动构造的时空相关性

Georgios Lazaridis, E. Katrivanos, Despoina Dora, Lambrini Papadopoulou, Ilias Lazos, A. Chatzipetros
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摘要

洞穴是时间胶囊,保存着构造活动的重要标志,让人们了解地质历史。洞穴中发现的断层几何图形和过去的活动可以与更广泛地区的已知变形事件相关联,从而在时间上对岩浆形成进行划分。更具体地说,洞穴通道的形成受到区域应力场的影响。希腊北部的阿斯普罗雷玛洞穴是断裂引导洞穴的典型例子,洞穴通道的几何形状受到侧壁相对运动的影响,这些不连续性被揭示为断层。这项研究构建了与构造事件、地貌演变和水文区相关的成岩时间框架和概念模型,并验证了其与应力场的关系。对活动构造、矿物学和洞穴地貌进行了研究。研究结果表明,在相生和附生条件下存在合成构造成岩现象。断层滑动面上没有腐蚀现象,这意味着洞穴转移到岩浆区后最近才被激活。结构分析确定了三个主要的新构造阶段:NNW-SSE走向断层(最古老的构造群)、NE-SW走向断层(中新世中期以后)和NE-SW走向正断层(表明伸展应力机制)(Quartenary)。后两个阶段会影响洞穴通道的形状,造成洞壁位移,突出表现为通道沿着垂直于水平最小应力轴的不连续面形成。
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Evaluating the Relation of Cave Passage Formation to Stress-Field: Spatio-Temporal Correlation of Speleogenesis with Active Tectonics in Asprorema Cave (Mt. Pinovo, Greece)
Caves serve as time capsules, preserving significant markers of tectonic activity and offering insights into geological history. Fault geometries and past activations found in caves can be correlated with known deformational events in the broader area, temporally delimiting the speleogenesis. More specifically, cave passage formation is suggested to be affected by the regional stress-field. The Asprorema Cave in Northern Greece is a typical example of a fracture guided cave, with passage geometry influenced by relative sidewall movements, revealing these discontinuities as faults. This study constructs the timeframe and conceptual model of speleogenesis in relation to tectonic events, geomorphological evolution and hydrological zones, and verifies its relation to the stress-field. Active tectonics, mineralogy and cave geomorphology are investigated. Results suggest syntectonic speleogenesis under phreatic and epiphreatic conditions. The absence of corrosion on fault slip surfaces implies recent activations post cave’s shift to the vadose zone. Structural analysis identifies three main neotectonic phases: NNW-SSE striking faults (oldest group of structures), NE-SW striking faults with dextral strike-slip movement (post-middle Miocene), and NE-SW striking normal faults indicating extensional stress-regime (Quartenary). The last two phases affect cave passage shape causing wall displacement, highlighting passage formation along discontinuities perpendicular to the horizontal minimum stress axis.
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