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首页> 外文期刊>Soils and foundations >BEARING CAPACITY OF SHALLOW FOUNDATIONS IN A LOW GRAVITY ENVIRONMENT
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BEARING CAPACITY OF SHALLOW FOUNDATIONS IN A LOW GRAVITY ENVIRONMENT

机译:低重力环境下浅层地基的承载力

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摘要

As a basic study for future lunar/planetary explorations and the in-situ resource utilization missions, bearing capacity characteristics of shallow footing systems in a low gravity environment were investigated. A series of model loading tests on a simulated lunar soil (lunar soil simulant) and Toyoura sand were conducted on an aircraft that flew in parabolic paths to generate partial gravity fields. As a result of the model tests, it became clear that bearing characteristics, including the coefficient of subgrade reaction and ultimate bearing capacity of the lunar soil simulant in a low gravity environment is hardly influenced by the gravity levels, while Toyoura sand exhibits a high dependence on gravity. From the observation of the failure mechanisms, it was found that the gravity dependence seems to correlate well with soil compressibility. To rationally explain the dependence of ultimate bearing capacity on gravity, theoretical evaluations were attempted in the framework of the upper bound method. The proposed calculation method not only makes it possible to correlate quantitatively the failure mode with dependence on gravity, but also may allow us to predict the ultimate bearing capacity in the lunar surface environment.
机译:作为对未来月球/行星探索和现场资源利用任务的基础研究,研究了低重力环境下浅层立足系统的承载能力特征。在飞机上以抛物线飞行以产生部分重力场的飞机上,对模拟的月球土壤(月球土壤模拟物)和Toyoura沙进行了一系列模型载荷测试。模型试验的结果表明,在低重力环境下,包括路基反应系数和月土壤模拟物的极限承载力在内的承载特性几乎不受重力水平的影响,而丰谷砂表现出较高的依赖性。在重力上。从破坏机理的观察中,发现重力依赖性似乎与土壤可压缩性密切相关。为了合理地解释极限承载力对重力的依赖性,尝试在上限方法的框架内进行理论评估。所提出的计算方法不仅可以使失效模式与重力的关系定量化,而且可以使我们预测月球表面环境的极限承载力。

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