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Proposed point bearing load transfer function in jointed rock-socketed drilled shafts

机译:拟议的嵌在岩石上的钻孔轴中的点轴承载荷传递函数

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摘要

The point bearing behavior of rock-socketed drilled shafts under axial loading is investigated by numerical analysis and a load transfer approach (q-w). A numerical analysis using the distinct element method (DEM) is carried out to investigate the effects of pile diameter and the elastic modulus, discontinuity spacing and the inclination of rock mass on the point bearing behavior. The emphasis is quantifying the point bearing mechanism by taking rock discontinuity into consideration based on field loading tests performed on 39 instrumented piles. A new hyperbolic q-w function is proposed considering the point bearing resistance influence factors, including rock mass discontinuity. Through comparisons with other field data, the proposed q-w function represents a significant improvement in the prediction of the point bearing load transfer characteristics of jointed rock-socketed drilled shafts.
机译:通过数值分析和载荷传递方法(q-w)研究了嵌岩钻轴在轴向载荷下的点轴承性能。进行了使用离散元方法(DEM)的数值分析,以研究桩直径,弹性模量,间断间距和岩体倾角对点承载行为的影响。重点是根据在39个仪器桩上进行的现场载荷试验,通过考虑岩石的不连续性来量化点支承机制。提出了一种新的双曲q-w函数,该函数考虑了点承载阻力影响因素,包括岩体不连续性。通过与其他现场数据的比较,所提出的q-w函数在预测节理的嵌岩式钻探井筒的点轴承载荷传递特性方面取得了显着改进。

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