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3D characterization of microbially induced carbonate precipitation in rock fracture and the resulted permeability reduction

机译:微生物诱导碳酸盐沉淀在岩体骨折中的3D表征及导致渗透性降低

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A new seepage control method for fractured rock is biogrouting through a microbially induced calcite precipitation (MICP) process. A study on the spatial distribution of biogrout in a rock fracture and its effect on permeability reduction is presented in this paper. A series of experiments together with 3D scanning and 3D flow simulation were performed on rock fractures with various initial apertures treated by bio-grouting. A lognormal distribution of MICP precipitates along the flow direction in a fracture was observed. The 3D flow simulation of biogrouted fracture has revealed that the routinely adopted parallel plate model (cubic law) for estimating permeability of channel flow is no longer applicable when the fracture aperture is less than the critical value of 0.7 mm based on this study. This is because partially clogging will occur when the fracture aperture is less than the critical value, resulting in a transition of the flow type from surface flow to channel flow. A semi-empirical equation which can account for the effect of flow type has been proposed for estimating the permeability reduction due to bio-grouting for rock fractures.
机译:通过微生物诱导的方解石沉淀(MICP)工艺进行裂缝岩石的新渗流控制方法是生物学。本文介绍了岩石骨折中生物检测空间分布的研究及其对渗透性降低的影响。在具有通过生物灌浆处理的各种初始孔的岩体骨折上进行了一系列与3D扫描和3D流模拟的实验。观察到沿着裂缝中的流动方向沿着流动方向析出的麦克风分布。生物学裂缝的3D流动模拟表明,当基于该研究的临界孔径小于0.7mm的临界值时,常规采用的平行板模型(立方法)不再适用。这是因为当断裂孔径小于临界值时会发生部分堵塞,导致流动类型从表面流向通道流动的转变。已经提出了一种可以解释流动类型效果的半经验方程,用于估计由于生物灌浆而岩石骨折引起的渗透性降低。

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