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The structure and formation of mud volcano summit calderas

机译:泥火山顶火山口的构造与形成

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Circular depressions bounded by inward-dipping faults found at the upper terminations of large mud volcano systems (>500 m diameter) are termed 'mud volcano summit calderas'. From new mapping and comparison with previously identified examples we describe a series of common structural and morphological features found at a number of calderas and propose a mechanism for caldera formation. A typical example consists of concentric deformational and volcanic zones including an outermost topographic rim, inward-dipping circular fault system, 'moat' and raised central 'pedestal' of freshly extruded mud volcanic sediment. This distinctive 'moat and pedestal' morphology can be explained in terms of the quantity and theology of extruded mud, and appears characteristic of calderas from the South Caspian Basin and elsewhere. The association of fresh mud volcanic deposits with the calderas in combination with extensive literature on caldera modelling leads us to conclude that the most likely causal mechanism is subsidence as a result of evacuation of fluids and sediment from shallow structural levels during eruptions. Summit calderas mapped in this study characterize dormant periods of mud volcanism in subaerial and submarine settings, and appear to be a common structural element in the extrusive domain of mud volcano systems.
机译:在大型泥火山系统(直径大于500 m)的上端发现了由向内倾断层界定的圆形凹陷,被称为“泥火山顶峰火山口”。通过新的映射以及与先前确定的示例的比较,我们描述了在许多火山口中发现的一系列常见结构和形态特征,并提出了火山口形成的机制。一个典型的例子包括同心的变形和火山带,包括最外层的地形边缘,向内浸入的圆形断层系统,“护城河”和新挤出的泥浆火山沉积物的凸起中央“基座”。这种独特的“护城河和基座”形态可以用挤压泥浆的数量和形态来解释,并且表现出南里海盆地和其他地方的火山口的特征。新鲜火山泥沉积物与破火山口的结合,结合有关破火山口建模的大量文献,使我们得出结论,最可能的原因机制是在喷发过程中从浅层结构层中抽出流体和沉积物而导致的沉降。在这项研究中绘制的顶峰火山口表征了地下和海底环境中泥火山的休眠期,并且似乎是泥火山系统挤压域中的常见结构要素。

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