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Modified Cyclic Shear Test for Evaluating Disturbance Function and Numerical Formulation of Geosynthetic-Soil Interface Considering Chemical Effect

机译:考虑化学效应的土工合成土界面扰动函数评估及数值公式的修正循环剪力试验

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Geosynthetics have been broadly used in waste landfill sites for filtration, drainage, and separation. Geosynthetics contact soil directly, creating a geosynthetic-soil interface corresponding to the external forces and conditions. The differences in the intrinsic material characteristics at the interface induce complicated stress-strain behaviors and strain-softening processes. Recent studies have presented the behaviors of geosynthetic-soil systems as depending on the interface shear strength degradation, which is affected by ambient factors such as the water content, chemical condition, etc. In this study, the disturbed state concept (DSC) and a disturbance function are introduced to explain the cyclic shear stress behavior of the interface. The degree of interface damage can be expressed by the disturbance function, and the shape of the disturbance function curve represents the intrinsic characteristics of the material. Massive sets of cyclic shear tests have been performed to investigate the effects of the pH values of leachates on the shear behavior of the geosynthetic-soil interface. Both geosynthetics and Jumunjin sand have been submerged in acid, neutral, and basic solutions for 200 days. A multi-purpose interface apparatus that can simulate the cyclic shear conditions of a geosynthetic-soil interface has been newly manufactured and modified for better performance. Test results display remarkable distinction in chemical degradation trends according to thepH values. New disturbance function parameters that determine the characteristics of the shear strength of the interface were estimated according to the chemical conditions as well. Furthermore, it was discovered via focused ion beam electronic microscopy that the different patterns of damage on the surface of soil particles with different pH values induce variation in the disturbance phase at the geosyntheticsoil interface. For the numerical formulation of the disturbance function, the constitutive equations of the DSC were modified using the MohrCoulomb model. Based on the modified DSC equations, verification and numerical implementation shall be performed for further study.
机译:土工合成材料已广泛用于垃圾填埋场的过滤,排水和分离。土工合成材料直接接触土壤,产生对应于外力和条件的土工合成材料-土壤界面。界面处固有材料特性的差异会导致复杂的应力应变行为和应变软化过程。最近的研究已经提出了土工合成土壤体系的行为,取决于界面抗剪强度的下降,该变化受诸如水分,化学条件等环境因素的影响。在这项研究中,扰动状态概念引入扰动函数来解释界面的循环剪切应力行为。界面损伤的程度可以用干扰函数表示,干扰函数曲线的形状代表了材料的固有特性。已经进行了大规模的循环剪切试验,以研究渗滤液的pH值对土工合成材料-土壤界面的剪切行为的影响。土工合成材料和菊门津沙都已浸入酸,中性和碱性溶液中200天。可以模拟土工合成材料-土壤界面的循环剪切条件的多功能界面设备已经过新制造和改进,以实现更好的性能。测试结果显示,根据pH值,化学降解趋势存在显着差异。还根据化学条件估算了确定界面抗剪强度特性的新干扰函数参数。此外,通过聚焦离子束电子显微镜发现,具有不同pH值的土壤颗粒表面的不同破坏模式会导致土工合成油界面处扰动相的变化。对于扰动函数的数值表示,使用MohrCoulomb模型修改了DSC的本构方程。基于修改后的DSC方程,应进行验证和数值实现以供进一步研究。

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