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MECHANICAL BEHAVIOR OF ANISOTROPIC SAND GROUND BENEATH STRUCTURES SUBJECTED TO CYCLIC LOADING SUCH AS WAVE LOADING

机译:波浪荷载作用下循环荷载作用下各向异性砂土结构的力学行为

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References(44) Cited-By(1) An experimental study on the mechanical response of anisotropic seabed to wave force and oscillation of man-made structures such as wave dissipating blocks and breakwaters was performed on a model soil box with two-dimensional plane strain condition. Using model ground comprised of Toyoura sand reconstituted by air-pluviation method, a series of cyclic loading tests on model structures under several foundation conditions was conducted at a loading pattern which is capable of simulating the various stress states induced by both oscillation of structure and wave force. Test results showed that the strength and deformation characteristics of model sand deposits are basically identical to those estimated from the conventional cyclic undrained triaxial test and are different depending strongly on the changes in the depositional condition of the ground. Based on the results of model testing, the applicability of countermeasures constructed by both side wall and sheet pile was investigated to prevent ground failure. Considering the model testing results, it was also found that the installation of side walls beneath structures and sheet piles into the ground are advantageous as countermeasures against progressive failure on sand ground subjected to wave loading.
机译:参考文献(44)(1)在具有二维平面应变的模型土箱上进行了各向异性海底对波浪力和人造结构(如消波块和防波堤)振动的力学响应的实验研究。健康)状况。使用由空气富集法重构的丰谷砂组成的模型地基,在几种基础条件下,在能够模拟结构振动和波浪引起的各种应力状态的载荷模式下,对模型结构进行了一系列循环载荷试验力。试验结果表明,模型砂沉积物的强度和变形特性与常规循环不排水三轴试验所估算的基本相同,并且在很大程度上取决于地面沉积条件的变化。根据模型测试的结果,研究了侧壁和板桩共同构造对策以防止地面破坏的适用性。考虑到模型测试结果,还发现将结构和板桩下方的侧壁安装到地下是有利的,可以防止波浪荷载作用下砂土逐渐破坏。

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