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首页> 外文期刊>Geosciences >Pressure Controlled Permeability in a Conduit Filled with Fractured Hydrothermal Breccia Reconstructed from Ballistics from Whakaari (White Island), New Zealand
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Pressure Controlled Permeability in a Conduit Filled with Fractured Hydrothermal Breccia Reconstructed from Ballistics from Whakaari (White Island), New Zealand

机译:压力控制在填充有来自新西兰Whakaari(白岛)的弹道仪中重建的断裂热水Beccia的导管中的压力控制渗透性

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Breccia-filled eruption conduits are dynamic systems where pressures frequently exceed critical thresholds, generating earthquakes and transmitting fluids. To assess the dynamics of breccia-filled conduits, we examine lava, ash tuff, and hydrothermal breccia ballistics with varying alteration, veining, fractures, and brecciation ejected during the 27 April 2016 phreatic eruption of Whakaari/White Island. We measure connected porosity, strength, and permeability with and without tensile fractures at a range of confining pressures. Many samples are progressively altered with anhydrite, alunite, and silica polymorphs. The measurements show a large range of connected porosity, permeability, and strength. In contrast, the cracked samples show a consistently high permeability. The cracked altered samples have a permeability more sensitive to confining pressure than the unaltered samples. The permeability of our altered ballistics is lower than surface rocks of equivalent porosity, illustrating that mineral precipitation locally blocked pores and cracks. We surmise that alteration within the conduit breccia allows cracks to form, open and close, in response to pore pressure and confining pressure, providing a mechanism for frequent and variable fluid advection pulses to the surface. This produces temporally and spatially variable geophysical and geochemical observations and has implications for volcano monitoring for any volcano system with significant hydrothermal activity.
机译:Breccia填充的喷发导管是动态系统,其中压力经常超过临界阈值,产生地震和传输流体。为了评估Breccia填充的导管的动态,我们在2016年4月27日潜水喷发的Whakaari / White Island的潜水喷出时,检查熔岩,灰质凝灰膜和水热带Bleccia弹道学。在一系列限制压力下,我们测量连接的孔隙率,强度和渗透率,而无需拉伸骨折。用Anhydry,Alunite和二氧化硅多晶型物逐渐改变许多样品。测量显示出大量的连接孔隙率,渗透性和强度。相反,裂纹样品显示出始终如一的高渗透性。裂化的改变的样品对限制压力比未嵌入样品更敏感的渗透性。我们改变的弹性液的渗透率低于等效孔隙率的表面岩,说明矿物沉淀局部封闭的孔隙和裂缝。我们推动了导管Breccia内的改变,响应孔隙压力和限制压力,提供裂缝以形成,打开和关闭,从而提供频繁和可变流体的平流脉冲到表面的机制。这在时间上和空间可变的地球物理和地球化学观察产生,并对任何具有显着水热活动的火山系统的火山监测有影响。

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