水在土壤中的运动:利用物理模型进行教学

Maisa Comar Pinhotti Aguiar
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引用次数: 0

摘要

水坝、堤防、道路和其他结构由于孔隙压力而发生应力变化,这可能导致不稳定甚至破坏。考虑到需要了解作用于这些结构的过程,以及学生在可视化水的作用及其在土壤中的运动时经常遇到的困难,本文旨在介绍巴西米纳斯吉拉斯州国立大学土木工程课程土力学系开展的实践活动,这些活动涉及水在土壤结构中的运动,并讨论了这些结构的设计和稳定性方面。其中一个目标是通过直接参与设计和执行土坝和尾矿坝的物理模型来培养学生的主人主人感。这个主题对于岩土工程至关重要,对于jo o Monlevade所在的地区更是如此,因为有几家铁矿公司使用尾矿坝和土结构。在执行模型之前,学生们对达西定律、水头、土和尾矿的类型和特征、孔隙压力以及对安全系数的影响等方面进行了理论讨论。这些活动分别于2018年、2019年、2022年和2023年开发。结果,由于模型是由学生在小范围内开发的,他们亲自检查实验中材料和水的参数变化,因此获得了学习收益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Movement of Water on The Soil: Teaching by the Use of Physical Models
Dams, embankments, roads, and other structures are subject to stress changes due to pore pressure, which can lead to instability and even failure. Considering the need to understand the processes that act on these structures and the difficulty often encountered by students in visualizing the action of water and its movement in the soil, this paper aims to present the practical activities developed in the Soil Mechanics Department of the Civil Engineering Course of the State University of Minas Gerais - João Monlevade, Brazil, which dealt with the movement of water in soil structures and discussed the design and stability aspects of these. One of objectives was to develop the student's protagonism through direct involvement in the design and execution of the physical  model of earth and tailing dams. This topic is crucial for geotechnical engineering and even more so for the region where João Monlevade is located, as several iron mining companies use tailings dams and earth structures. The execution of the model by the students was preceded by theoretical discussions on aspects such as the Darcy´s law, hydraulic head, the types and characterization of soil and tailings, pore pressure and your influence of the safety factor. These activities were developed in 2018, 2019, 2022 and 2023. As a result, a learning gain was achieved because the models were developed on a small scale by the students, who personally checked the variation of the parameters of the materials and water in the experiments.
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