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Rheological properties of dome lavas: Case study of Unzen volcano

机译:穹顶熔岩的流变特性:云仙火山案例研究

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摘要

Transitions between effusive and explosive styles of lava dome eruptions are likely accompanied by changes in lava rheology. The common presence of crystals in dome lavas produces a complex non-Newtonian rheology. Thus models of such complex rheology are essential for volcanic eruption models. Here, we have measured the rheology of natural Unzen lavas with a compressive uniaxial press operating at stresses between 1 and 70 MPa and temperatures between 940 and 1010 °C. Crystal-rich Unzen lavas are char_acterised by two essential rheological features which produce non-Newtonian effects. The first is an instantaneous response of the apparent viscosity to applied stress which requires that the magma be described as a visco-elastic fluid that exhibits shear-thinning. The second effect takes the form of a time-dependence of the viscosity at moderate to high stress (__ 10 MPa). In this regime, the apparent viscosity slowly decreases as increasing fracturing of the phenocrysts and the groundmass occurs. Fragmentation of crystals and alignment of crystal fragments are observed to produce flow banding-effects which in turn lower the apparent viscosity of natural dome lavas. Ultimately, deformation may lead to complete rupture of the lava if the stress is sufficient. Cracking thus stands as an important process in natural dome lava rheology. The ubiquitous non-Newtonian rheology of dome lavas, observed experimentally here, needs to be adequately treated in order to generate appropriate eruption models.
机译:熔岩穹顶喷出方式在爆发性和爆炸性之间的过渡可能伴随着熔岩流变学的变化。圆顶熔岩中晶体的普遍存在会产生复杂的非牛顿流变学。因此,这种复杂的流变学模型对于火山喷发模型至关重要。在这里,我们用压缩的单轴压力机测量了天然Unzen熔岩的流变特性,压力在1到70 MPa之间,温度在940到1010°C之间。富含晶体的云仙熔岩的特征是具有两个基本的流变特性,可产生非牛顿效应。首先是表观粘度对施加应力的瞬时响应,这要求岩浆被描述为具有剪切稀化作用的粘弹性流体。第二种效果是在中等到高应力(__ 10 MPa)下粘度随时间的变化。在这种情况下,表观粘度随着表晶和基体破裂的增加而缓慢降低。观察到晶体破碎和晶体碎片排列会产生流带效应,从而降低天然圆顶熔岩的表观粘度。最终,如果压力足够大,变形可能导致熔岩完全破裂。因此,破裂是自然圆顶熔岩流变学中的重要过程。通过实验观察到,这里普遍存在的圆顶熔岩的非牛顿流变学需要进行适当处理,以生成适当的喷发模型。

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