首页> 外文期刊>Journal of Volcanology and Geothermal Research >The role of pre-existing tectonic structures and magma chamber shape on the geometry of resurgent blocks: Analogue models
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The role of pre-existing tectonic structures and magma chamber shape on the geometry of resurgent blocks: Analogue models

机译:既有的构造构造和岩浆室的形状对新生块几何的作用:模拟模型

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A set or analogue moaeis nas Deen carried out to understand the role or an asymmetric magma cnamrber on the resurgence-related deformation of a previously deformed crustal sector. The results are then compared with those of similar experiments, previously performed using a symmetric magma chamber. Two lines of experiments were performed to simulate resurgence in an area with a simple graben-like structure and resurgence in a caldera that collapsed within the previously generated graben-like structure. On the basis of commonly accepted scaling laws, we used dry-quartz sand to simulate the brittle behaviour of the crust and Newtonian silicone to simulate the ductile behaviour of the intruding magma. An asymmetric shape of the magma chamber was simulated by moulding the upper surface of the silicone. The resulting empty space was then filled with sand. The results of the asymmetric-resurgence experiments are similar to those obtained with symmetrically shaped silicone. In the sample with a simple graben-like structure, resurgence occurs through the formation of a discrete number of differentially displaced blocks. The most uplifted portion of the deformed depression floor is affected by newly formed, high-angle, inward-dipping reverse ring-faults. The least uplifted portion of the caldera is affected by normal faults with similar orientation, either newly formed or resulting from reactivation of the preexisting graben faults. This asymmetric block resurgence is also observed in experiments performed with a previous caldera collapse. In this case, the caldera-collapse-related reverse ring-fault is completely erased along the shortened side, and enhances the effect of the extensional faults on the opposite side, so facilitating the intrusion of the silicone. The most uplifted sector, due to an asymmetrically shaped intrusion, is always in correspondence of the thickest overburden. These results suggest that the stress field induced by resurgence is likely dictated by the geometry of the intruding magma body, and the related deformation is partially controlled by pre-existing tectonic and/or volcano-tectonic structures.
机译:进行了一组或类似的Moaeis nas Deen的研究,以了解先前变形的地壳扇形与回潮相关的变形对不对称岩浆的作用或作用。然后将结果与先前使用对称岩浆室进行的类似实验的结果进行比较。进行了两行实验,以模拟具有简单grab骨状结构的区域中的回潮和塌陷在先前生成的grab骨状结构内的破火山口中的回潮。根据公认的水垢定律,我们使用干石英砂来模拟地壳的脆性行为,并使用牛顿硅树脂来模拟侵入岩浆的延性行为。通过模制硅酮的上表面模拟了岩浆室的不对称形状。然后将产生的空白空间装满沙子。不对称回潮实验的结果与使用对称形状的有机硅获得的结果相似。在具有简单grab子状结构的样品中,通过形成离散数量的差动位移块而出现了回潮。变形后的凹陷底板的最隆起的部分受到新形成的向内倾倒的大角度反向环断层的影响。破火山口最不隆起的部分受到具有相似方向的正常断层的影响,这些断层是新形成的或是由于先前已存在的en陷断层的重新活化而引起的。在先前的破火山口塌陷进行的实验中也观察到了这种不对称的块回潮。在这种情况下,与火山口塌陷有关的反向环断裂沿缩短的一侧被完全消除,并且增强了相对侧上的伸展断裂的作用,从而促进了硅酮的侵入。由于形状不对称的侵入,抬升最多的部分总是对应最厚的覆盖层。这些结果表明,由回潮引起的应力场很可能由侵入岩浆体的几何形状所决定,而相关的变形部分是由预先存在的构造和/或火山构造结构控制的。

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