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Analysis of the Stability of Ancient City Wall under Different Depths of Sapping by Numerical Calculation

机译:数值计算分析古城墙下古城墙体稳定性

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The width of the top of the wall LIANGZHU ancient city, which is called the first city in China reaches 40-60m. The sapping depth made by around environment such as wind and sand is increasing years by years. Under different sapping depths in ancient city wall, using finite difference soft FLAC~(3D), We can build calculation model to study the failure laws and mechanism of the ancient city wall under different sapping depths. The research shows that when the sapping depth is not enough large, the whole city wall is stable and local plastic failure occurs around the sapping place. With the depth of sopping increasing, the plastic failure area is becoming bigger and bigger and reaches much deeper into the wall, even reaches the top of the wall, and the soil displacement becomes larger and larger until the whole wall sliding. The sapping contributes to the damage of the wall, the potential slide opening appears in the sapping area, and in the wall through plastic area appears, leading to the whole wall sliding.
机译:梁珠古城顶部的宽度被称为中国第一城市达到40-60米。围绕风和沙子的环境制作的凹陷深度越来越多。在古城墙壁中的不同凹陷深度下,使用有限差异软脓液〜(3D),我们可以建立计算模型,研究古城墙在不同的吸入深度下的故障定律和机制。研究表明,当凹陷深度不够大时,整个城墙都是稳定的,围绕凹陷的地方发生局部塑料失效。随着SOPPing的深度增加,塑料失效区域变得更大,更大,达到墙壁深处更深,甚至到达墙壁的顶部,土壤位移变大,直到整个壁滑动直到整个壁滑动。 Sapping有助于墙壁的损坏,潜在的滑动开口出现在搁置区域中,并且在壁上通过塑料区域出现,导致整个壁滑动。

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