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首页> 外文期刊>Tunnelling and underground space technology >Towards microstructure-based analysis and design for seepage water in underground engineering: Effect of image characteristics
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Towards microstructure-based analysis and design for seepage water in underground engineering: Effect of image characteristics

机译:走向基于微观结构的地下工程渗水分析与设计:图像特征的影响

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摘要

Numerical modelling has been one of the most effective approaches for predicting seepage in tunnelling and underground projects. However, the applicability of such numerical simulation heavily relies on the information available for the properties of earth materials on site. Therefore, earth material property predictions based on imaging their microstructure has become a widely interested field. Despite the board use of various advanced imaging techniques to obtain information about the microstructure, there is still a lack of knowledge on the effect of image characteristics. By using high-resolution 2D Lattice Boltzmann method flow simulations, this paper quantified the impact of different image characteristics on the seepage-related property of silty clay. In order to guide future numerical simulations of seepage in tunnelling and underground construction, recommendations were given for proper image requisition in the microstructure-based analysis.
机译:数值模拟已成为预测隧道和地下工程渗流的最有效方法之一。但是,这种数值模拟的适用性在很大程度上取决于可用于现场土壤材料特性的信息。因此,基于对土壤材料的微观结构成像的预测已成为人们广泛关注的领域。尽管董事会使用了各种先进的成像技术来获取有关微结构的信息,但是仍然缺乏关于图像特性影响的知识。通过使用高分辨率2D格子Boltzmann方法进行流模拟,本文定量了不同图像特征对粉质黏土渗透性的影响。为了指导隧道和地下建筑中渗流的未来数值模拟,在基于微结构的分析中建议适当的图像需求。

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