AI Article Synopsis

  • This paper introduces a method to analyze soil shear strength around an anchorage section to determine the anchor’s force and its displacement.
  • It establishes a numerical relationship between internal friction angle, cohesion exertion, and displacement using Mohr stress circle principles under a non-limit active state.
  • The study derives a differential equation for relative displacement along the anchor's length, provides calculation formulas for shear stress, and verifies the accuracy of their method compared to a hyperbolic model.

Article Abstract

This paper proposes a concept of soil shear strength exertion around an anchorage section to analyze and calculate the anchor's force and displacement. First, based on the Mohr stress circle, the numerical relationship between the value of the internal friction angle exertion, the value of the cohesion exertion, and the displacement are established under the non-limit active state. According to the interaction mechanism between the anchorage section and the surrounding soil, this paper obtains the corresponding relationship between the value of the soil's shear strength exertion and displacement under the non-limit active state. Then, according to the load transfer principle of the anchorage section, the basic differential equation is established. The differential equation of the relative displacement distribution along the length of the anchorage section under the non-limit active state is further derived. And the calculation and analysis formula of the shear stress and relative displacement in the anchorage section considering the process of the soil shear strength exertion is also obtained. Finally, this paper compares the calculation method with the hyperbolic model calculation method for the same example. The results verify the accuracy of the calculation method.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8789931PMC
http://dx.doi.org/10.1038/s41598-021-04668-9DOI Listing

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