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FEM Simulation of the Effects of Mining on the Strength of a Structure

机译:采矿对结构强度影响的FEM模拟

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Influence on the environment has caused and still causes today the destruction of terrain and buildings. It further analyzes the main forms of land and the effects of surface destruction. The state of tension and deformations of the massif is affected by underground mining. On the 23rd of February of 2008, in Saarland, a vibration of 93.54 mm/s, which corresponds to a value of 4.0 on the Richter scale, was measured. Numerous resistance structures have suffered as a result of strong subsidence damage. Size and expansion of compact according to the characteristics of the mine is studied. Less well known are the effects of mining compaction on the behavior of a resistance structure. This study attempts to answer this question. The research method is the numerical simulation using the finite element method combined with in situ measurements of damage. Framework was charged as the usual load of a building norm. The corner to a 300 mm compacted statically indeterminate structure produces additional stresses and strains. Research results are comparisons between load cases with and without compaction and the calculated mechanical stress with rupture stress. As a result of the rupture is measured experimentally effective crack opening.
机译:对环境的影响导致且仍然导致的地形和建筑物的破坏。它进一步分析了土地的主要形式和表面破坏的影响。受地下采矿的张力状态和变形的状态受到地下采矿的影响。 2008年2月23日,在萨尔兰州,测量了93.54毫米/秒的振动,其对应于Richter秤的值为4.0。由于强烈的沉降损坏,许多阻力结构遭受。研究了根据矿井特点的紧凑型尺寸和扩展。众所周知的是采矿压实对电阻结构行为的影响。这项研究试图回答这个问题。研究方法是使用有限元法结合原位测量损坏的数值模拟。框架被指控作为建筑规范的通常负载。在300毫米压实的静态不确定结构的角落产生额外的应力和菌株。研究结果是用破裂应力的载荷盒之间的载荷盒和计算的机械应力进行比较。由于破裂是测量的实验有效的裂缝开口。

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