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A pilot study of river design for slope stability and frog ecology

机译:河流设计的边坡稳定性和青蛙生态学初步研究

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摘要

A pilot study was carried out for the slope design of rivers which took into consideration both slope stability and frog ecology. Ecological engineering is defined as the design of sustainable ecosystems for the integration of human society with its natural environment for the benefit of both. In river engineering projects, the retaining banks and the river bottom are usually constructed of concrete. Although strong, there are no river-like crevices in these structures that can provide habitats, thus organisms are more vulnerable to predation by natural enemies. Ecological river engineering follows the laws of nature and takes into consideration river diversity and sustainable development. It also takes into consideration ecological and safety factors to create river ecosystems and habitats that are diverse, with a reduced impact on the natural environment. So far, there have been no related cross-subject studies on both the needs of amphibians and the slope stability of river banks. In this study, we attempt to increase our understanding and offer insights into current practices in ecological river slope engineering. The research purposes of this study were to examine (1) the climbing abilities of frogs on various degrees of slope and materials and (2) the failure mechanism of the selected slopes using the finite element method (FEM); and carry out (3) safety analysis using the FEM for the selected slopes, and (4) correlation analysis between the climbing abilities of frogs and the safety factors of slopes. The results show that the climbing abilities of frogs on cobblestone are much better than on other materials. Therefore, when considering the survival needs of frogs, the use of rocky revetment should be encouraged for use on ecological slopes. Our results should enhance knowledge relevant to ecologists and engineers for the creation of safe river slopes that also meet the ecological needs of amphibians.
机译:对河流的边坡设计进行了一项初步研究,同时考虑了边坡稳定性和青蛙生态学。生态工程被定义为为人类社会与自然环境的融合而造福人类的可持续生态系统的设计。在河流工程项目中,护岸和河床通常是用混凝土建造的。尽管坚固,但在这些结构中没有像河一样的裂缝可以提供栖息地,因此生物更容易受到天敌的捕食。生态河流工程遵循自然规律,并考虑了河流的多样性和可持续发展。它还考虑了生态和安全因素,以创建河流生态系统和栖息地,从而减少对自然环境的影响。到目前为止,还没有关于两栖动物的需求和河岸边坡稳定性的相关跨学科研究。在这项研究中,我们试图加深了解,并为生态河道边坡工程的当前实践提供见识。这项研究的研究目的是检验(1)青蛙在各种程度的斜坡和材料上的爬坡能力,(2)使用有限元方法(FEM)对选定斜坡的破坏机理进行研究;并(3)使用有限元法对选定的斜坡进行安全分析,以及(4)青蛙的爬坡能力与斜坡安全系数之间的相关性分析。结果表明,青蛙在鹅卵石上的爬坡能力比其他材料上的要好得多。因此,在考虑青蛙的生存需求时,应鼓励在生态斜坡上使用岩石护坡。我们的研究结果应增强与生态学家和工程师有关的知识,以创造安全的河道,并满足两栖动物的生态需求。

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