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Experimental study on mechanical behavior, permeability, and damage characteristics of Jurassic sandstone under varying stress paths

机译:不同应力路径下侏罗纪砂岩机械行为,渗透性和损伤特征的实验研究

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Repeated mining of upper and lower coal seams causes roof sandstone to be repeatedly disturbed and results in the continuous deterioration of its permeability and damage properties, causing water leakage in the overlying aquifer, which significantly affects the surface environment and mine safety. This paper employed monotonous triaxial compression (MTC) tests and axial stress cycle loading and unloading (ACLU) tests to investigate the mechanical behavior of Jurassic sandstones. The acoustic emission (AE) data and permeability coefficient of the sandstones were simultaneously measured during mechanical testing. Results indicate that increased confining pressure enhances mechanical strength of the sandstones and reduces sandstone permeability, while increased permeation pressure reduces mechanical strength of the sandstones and enhances sandstone permeability under the MTC and the ACLU. The peak volumetric strain of the sandstones decreases and the volume expansion advances with decreasing confining pressure or increasing permeation pressure. The overall variation of permeability coefficient is closely related to the volumetric strain of the sandstones under the MTC and the ACLU. The AE characteristics exhibit a certain correspondence with different deformation stages and permeability variations of the sandstones under the MTC and the ACLU. In addition, the confining pressure and stress loading path can effectively change the damage evolution characteristic of the sandstones.
机译:重复开采的上部和下部煤层导致屋顶砂岩重复受到干扰,导致其渗透性和损伤性能的持续恶化,导致覆盖含水层的漏水,这显着影响了表面环境和矿井安全性。本文采用单调的三轴压缩(MTC)测试和轴向应力循环负载和卸载(ACLU)测试,以研究侏罗纪砂岩的机械行为。在机械测试期间同时测量砂岩的声学发射(AE)数据和渗透系数。结果表明,增加的限制压力提高了砂岩的机械强度,降低了砂岩渗透性,而渗透压的增加降低了砂岩的机械强度,并提高了MTC和ACLU下的砂岩渗透性。砂岩的峰容量应变降低,并且体积膨胀性膨胀随着狭窄的压力降低或增加渗透压力。渗透系数的整体变化与MTC和ACLU下的砂岩的体积菌株密切相关。 AE特性表现出与MTC和ACLU下的不同变形阶段和砂岩的渗透性变化表现出一定的对应关系。此外,狭窄的压力和应力负载路径可以有效地改变砂岩的损伤演化特性。

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