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Micro-mechanics based numerical simulation of NaCl brine induced mechanical strength deterioration of sedimentary host-rock formations

机译:基于微型力学的NaCl盐水诱导机械强度损坏沉积宿主岩层的数值模拟

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Artificial fracture stimulation in low-grade sedimentary ore deposits is one method to improve mineral extraction efficiency of In-Situ Leaching (ISL) process. Low to moderate saline environments are found in most sedimentary ore deposits that deteriorate intact rock strength over time. It is important to recognize the host rock strength properties prior to artificial fracture stimulation. Therefore, to identify the effect of salinity on the mechanical properties of brine-saturated sandstone, a series of uniaxial compressive strength (UCS) tests and Brazilian tensile strength tests were performed on specimens saturated with water, and with varying NaCI brine concentrations (5.0%, 7.5%,10% and 12.5%). Scanning electron microscopy and inductively coupled plasma mass spectrometry (ICP-MS) tests reveal that increasing salinity deteriorate the mechanical integrity of sand-stone by accelerated clay mineral dissolution. Consequently, 12.5% saturation fluid salinity resulted in a 40% reduction in UCS, 22% reduction in Young's modulus and 33% reduction in tensile strength. The strength deterioration observed in the experimental study was then successfully simulated using Particle Flow Code 3D (PFC3D) in consideration of the bond strength deterioration mechanism for sandstone. The calibrated model was used to accurately replicate the damage mechanism of sandstone under the influence of brine saturation. The model forms an accurate intact rock assembly for numerical modelling of saline sedimentary host-rock formations.
机译:低级沉积矿床中的人工断裂刺激是提高原位浸出(ISL)工艺的矿物提取效率的一种方法。在大多数沉积矿床上发现低至适度的盐水环境,随着时间的推移而恶化完整的岩石强度。重要的是在人工骨折刺激之前识别宿主岩石强度特性。因此,为了鉴定盐度对盐水饱和砂岩的力学性能的影响,在用水饱和的试样上进行一系列单轴抗压强度(UCS)测试和巴西拉伸强度试验,并具有不同的NaCi盐水浓度(5.0%) ,7.5%,10%和12.5%)。扫描电子显微镜和电感耦合等离子体质谱(ICP-MS)试验显示,通过加速粘土矿物溶解,盐度的增加劣化了砂岩的机械完整性。因此,12.5%的饱和液盐度导致UC的40%降低,杨氏模量减少22%,拉伸强度降低33%。然后考虑到砂岩粘合强度劣化机构,成功模拟了实验研究中观察到的实验研究中的强度劣化。校准的模型用于在盐水饱和度下准确地复制砂岩的损伤机制。该模型形成了一种精确的完整岩石组件,用于盐水沉积宿主岩层的数值建模。

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