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Short-Timescale Chemo-Mechanical Effects and their Influence on the Transport Properties of Fractured Rock

机译:短时化学力学效应及其对裂隙岩输运性质的影响

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Anomalous changes in permeability are reported in fractures circulated by fluids undersaturated with respect to the mineral host. Under net dissolution and net removal of mineral mass, fractures may alternately gape or seal, depending on the prevailing mechanical and chemical conditions. The influence on transport properties is observed to be large, rapid, and irreversible: Permeabilities may change by two orders of magnitude in a month, and the direction of permeability change may switch spontaneously, for no apparent change in environmental forcing. These behaviors are apparent in continuous circulation experiments conducted on fractures in novaculite and limestone, intermittently imaged by X-ray CT. In novaculite, permeability reduces by two orders of magnitude as silica is net removed from the sample. Surprisingly, these changes can occur at modest temperatures (~80°C) and stresses (~3.5 MPa), where compaction progresses as temperatures are incremented. Isothermal (~20°C) circulation tests in limestone show similar compaction driven by pressure solution. Where circulation remains undersaturated in Ca, the change in permeability spontaneously switches from net reduction to net increase as a wormhole forms. The surprising magnitude and rapidity of these changes are investigated in the context of the competition between stress- and chemistry-mediated effects.
机译:据报道,相对于矿物基质而言,渗透率异常变化是由于流体饱和度低而引起的。在净溶解和净清除矿物质的情况下,裂缝可能交替渗漏或封闭,这取决于当时的机械和化学条件。观察到对运输性能的影响很大,迅速且不可逆:渗透率可能会在一个月内变化两个数量级,渗透率变化的方向可能会自发切换,而环境压力没有明显变化。这些行为在X射线CT断断续续成像的,对新云母和石灰岩裂缝进行的连续循环实验中很明显。在新云母中,由于从样品中净去除了二氧化硅,因此渗透率降低了两个数量级。出乎意料的是,这些变化可能会在适度的温度(〜80°C)和应力(〜3.5 MPa)下发生,随着温度的升高,压实进行。在石灰石中进行的等温(〜20°C)循环试验表明,在压力溶液的作用下,压实度相似。当Ca的循环仍处于不饱和状态时,渗透率的变化会随着虫洞的形成而从净减少量自动变为净增加量。在应力和化学介导的作用之间的竞争中研究了这些变化的惊人程度和迅速性。

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