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Shape of plutons in crustal shear zones: A tectono-magmatic guide based on analogue models

机译:地壳剪力区塑造的形状:基于模拟模型的构造岩岩导

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Plutons in crustal shear zones may exploit inherited structures, interfere with strain localizing or be deformed passively. To constrain the relative timing of such tectono-magmatic relationships in natural settings is not always straight-forward. We here present sandbox-type analogue model experiments simulating magma emplacement into simple and transtensional crustal shear zones to test the diagnostic potential of pluton shape with respect to timing and setting. Observations based on surface deformation and intrusion shape exemplify the interplay between evolving and inherited tectonic structures and magma uprising. We observe markedly asymmetric intrusions in association with dikes reflecting the regional stresses, fault pattern and finite strain field. At the same time, the presence of an intrusion modifies the tectonic evolution, but only transiently, resulting in short-lived faults, reactivation and inversion. Diagnostic attributes include the pluton's aspect ratio, its orientation and amplitude as well as dike association. Accordingly, syn-tectonic intrusions show the highest pluton amplitudes, but only intermediate elongation compared to other scenarios. They are oriented parallel to Riedel shears in simple shear, respectively to the compression direction in transtension. Post-tectonic intrusions are least elongated, have medium amplitudes and exploit Riedel shears. Pre-tectonic intrusions are characterized by lowest amplitudes but the highest aspect ratios and are parallel to the finite elongation direction. Intrusions in transtensional shear zones are generally of less elongate than those in simple shear zones. Experimental results are tested against observations from natural examples validating the diagnostic potential of pluton shape for the timing and the tectonic setting of the emplacement.
机译:地壳剪切区的钚可以利用遗传结构,干扰应变定位或被动变形。为了约束自然设置中这种构成岩石关系的相对定时并不总是直接的。我们在此目前的沙箱式模拟模型实验模拟岩浆施加成简单和横断静的地壳剪切区,以测试芦苇形状的诊断电位相对于定时和设置。基于表面变形和入侵形状的观测举例说明了演化和继承构造结构与岩浆起义之间的相互作用。我们观察到与反映区域应力,故障模式和有限应变场的堤坝相关的显着不对称的入侵。同时,侵入的存在改变了构造演化,但仅瞬时,导致短寿命的故障,再激活和反转。诊断属性包括富弦纵横比,其取向和幅度以及堤防协会。因此,与其他场景相比,Syn-Tectonic Intrings显示出最高的富弦幅度,而是仅相比的中间伸长。它们与在平静的压缩方向上平行于简单剪切的Riedel剪切。构造后侵入是最少的伸长的,具有中等振荡和利用RIEDEL剪切。预构造侵入的特征在于最低幅度,但最高的纵横比并且平行于有限伸长率。在静音剪切区域中的入侵通常比简单剪切区更少于细长。测试实验结果对来自自然实例的观察结果,验证钚形状的诊断潜力,用于施加的正时和构造设置。

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