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首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >Experimental study of mechanical properties of gypsum soaked in brine
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Experimental study of mechanical properties of gypsum soaked in brine

机译:盐水浸泡石膏力学性能的实验研究

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Gypsum, glauberite and mudstone are common interlayers in bedded salt deposits. During subterranean cavern development by leaching methods, they will be exposed to saline brines of different concentrations and temperatures over periods of time of at least 18-36 months. To investigate the relevant mechanical properties of gypsum under these conditions, a series of laboratory tests including uniaxial compression, tensile and shear strength was carried out. The soak time for gypsum in different brines was as long as 80 days, and its UCS strength is reduced to different extents with increases in brine concentration and temperature. The strength-weakening coefficient of wet gypsum can be as low as 0.1 after being soaked in saturated brine for 60 days. With increase of temperature and concentration of the soaking brine, the elastic modulus of the gypsum and the tensile strength decrease. The time-dependent mechanical weakening of wet gypsum is also documented. A damage parameter based on rigidity is defined to quantify gypsum deterioration; it drops from 704.4 GPa for dry gypsum to 19.5 GPa for wet gypsum soaked in saturated brine at 70 °C, and the failure style also changes from brittle to ductile. The mechanical properties of gypsum can be severely degraded by exposure to warm brine for long times, and consequently the study has significance for evaluation of interlayer stability and leakage security of storage caverns in bedded salt deposits,
机译:石膏,钙芒硝和泥岩是层状盐矿床中常见的夹层。在通过浸出方法开发地下洞穴的过程中,它们将在至少18-36个月的时间内暴露于不同浓度和温度的盐水中。为了研究在这些条件下石膏的相关机械性能,进行了一系列的实验室测试,包括单轴压缩,拉伸和剪切强度。石膏在不同盐水中的浸泡时间长达80天,并且随着盐水浓度和温度的升高,其UCS强度在不同程度上降低。在饱和盐水中浸泡60天后,湿石膏的强度弱化系数可低至0.1。随着温度和浸泡盐水浓度的升高,石膏的弹性模量和拉伸强度降低。还记录了湿石膏随时间变化的机械强度。定义了基于刚度的损伤参数以量化石膏的劣化。它从干石膏的704.4 GPa下降到在70°C的饱和盐水中浸泡的湿石膏的19.5 GPa,破坏方式也从脆性变为延性。长期暴露于温盐水中会严重破坏石膏的机械性能,因此,该研究对于评估层状盐沉积层中储层洞穴的层间稳定性和渗漏安全性具有重要意义,

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