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Revisión literaria y modelación de la desaturación de un suelo arenoso por medio del método de inyección de aire

机译:空气喷射法通过空气喷射方法进行砂土去饱和的文学综述与建模

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In recent years, the scientific community has discussed the possibility and effectiveness of decreasing the degree of soil saturation as a measure to improve the mechanical resistance of liquefiable saturated sands. For this reason, several methodologies have been proposed and tested to introduce gas bubbles into the soil. Furthermore, it is well known that decreasing the degree of soil saturation by inducing a small amount of air restricts the development of excess pore pressure and significantly increases the cyclic resistance of the soil. Methodology: An overview of air injection technology to induce a degree of partial saturation is provided by selecting high quality articles through a systematic literature review. In addition, a multiphase flow model is developed and a numerical analysis is carried out to describe the evolution, in time and space, of the desaturation of the soil, investigating numerically the length of the air front advance during injection. Results: It is recognized where future research related to air injection as a measure of liquefiable sandy soil improvement is moving. In addition, a parametric transient study is provided evaluating soil permeability, air injectivity, injection pressures, and desaturation rate of the region of interest. Conclusions: The study highlights findings and identifies researcher approaches, making observations, recognizing limitations and knowledge gaps. Finally, the numerical results obtained indicate that the evolution of desaturation is actively controlled by air injection pressure and soil permeability.
机译:近年来,科学界已经讨论了将土壤饱和度降低的可能性和有效性,以提高液化饱和砂的机械抗性。因此,已经提出了几种方法,并测试了将气泡引入土壤中。此外,众所周知,通过诱导少量空气来减小土壤饱和度限制过量孔隙压力的发育,显着提高了土壤的循环抗性。方法论:通过系统文献回顾选择高质量的制品,提供了通过选择高质量的物品来诱导射线饱和度的空气喷射技术的概述。另外,开发了多相流动模型,进行了数值分析,以描述土壤的去饱和的时间和空间,在注射期间的空气前沿的数量的数量上进行研究。结果:认识到与空气注射有关的未来研究,作为液化砂土壤改善的措施。此外,提供了参数瞬变研究,评估了感兴趣区域的土壤渗透性,空气注射,注射压力和去剩率。结论:研究突出了调查结果,并确定了研究人员方法,使观察,识别局限性和知识差距。最后,获得的数值结果表明去饱和的进化通过空气喷射压力和土壤渗透性地主动控制。

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