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On the genetic links between epithermal deposits and ash-flow calderas

机译:关于超热矿床与灰流火山口之间的遗传联系

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Although spatial correlation between ash-flow calderas and epithermal ore deposits is well-documented, their temporal relationships are poorly understood. Thus, geochronological data indicate that mineralization can appear several millions years before or/and after the caldera formation. We present thermo-mechanical models of the upper crust before and afte caldera formation in order to add some large-scale overview for the devleopment of thermal and structural traps for epithermal deposits. Petrophysical properties have been incorporated into the models, which account for faulting initiation and caldera collapse mechanisms. The outer sides of the border faults are associated with both anomalous heat transfer and enhanced fracture density. Regional far-field extension favours conditions for porphyry-type deposits to form, at the expense of shallower ore deposits. When a hot silicic magma chamber settles in the shallow crust, the resulting overpressure can lead to pre-eruptive faulting, allowing for mineralization to predate the caldera formation.
机译:虽然灰流破火山口和超热矿石矿床之间的空间相关性已有充分文献记载,但它们的时间关系却知之甚少。因此,地质年代学数据表明矿化作用可能在火山口形成之前或之后几百万年出现。我们提出火山口形成之前和之后的上部地壳的热力学模型,以便为超热沉积物的热圈闭和构造圈闭的发展增加一些大规模的概况。岩石物理性质已被纳入模型,这解释了断层的起始和破火山口塌陷机制。边界断层的外侧与异常传热和增加的裂缝密度有关。区域远场扩展有利于斑岩型矿床的形成条件,但以较浅的矿床为代价。当热的硅质岩浆室沉积在浅层地壳中时,产生的超压会导致喷发前断层,从而使矿化作用早于火山口的形成。

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