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Coupled Flow Modelling in Geotechnical and Ground Engineering: An Overview

机译:岩土工程耦合流量建模:概述

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摘要

Particulate flows of combined granular media and fluids are relevant to several natural phenomena as well as industrial applications. In geotechnical engineering, the existing modelling approaches mainly adopt a macroscopic-based continuum analysis which does not provide access to important information on the fluid flow interaction with granular media at the particle scale. Alternatively, particulate modelling can be a powerful tool in understanding the complex micro-mechanics of different phenomena such as landslide, debris flow and internal erosion. However, it is challenging to employ the existing particulate flow models on a scale that practically serves the design and risk assessment for earth structures. With rapid advances in computational power, particulate flow modelling can provide valuable insights on both the micro as well as the macro-scale levels. This paper reviews the different approaches of particulate flow modelling from a multidisciplinary perspective with emphasis on geotechnical applications. In addition, this study presents a summary of the available techniques for reducing the computational cost and highlights the outstanding challenges of particulate flow modelling in geotechnical engineering. This work should provide guidance to geotechnical engineers and researches to determine the appropriate modelling tool to approach particulate flow modelling and identify the major challenges associated with each approach.
机译:组合粒状介质和流体的颗粒状与几种天然现象以及工业应用有关。在岩土工程中,现有的建模方法主要采用基于宏观的连续性分析,其不提供对粒子介质的颗粒介质的流体流动相互作用的重要信息。或者,微粒建模可以是理解不同现象的复杂微型机制的强大工具,如滑坡,碎片流动和内部侵蚀。然而,在实际上为地球结构的设计和风险评估提供了现有的颗粒流模型,挑战使用现有的微粒流模型。随着计算能力的快速进步,微粒流量建模可以在微观和宏观级别水平上提供有价值的见解。本文综述了从多学科视角下重点介绍了岩土应用的不同方法。此外,本研究表明,用于降低计算成本的可用技术概述,并突出了岩石工程中微粒流模型的出色挑战。这项工作应为岩土工程师提供指导,并研究确定适当的建模工具,以接近微粒流模型,并确定与每种方法相关的主要挑战。

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