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Explosion and temperature resistance of underground structures by free hexagons

机译:自由六边形对地下结构的抗爆和耐高温性能

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摘要

It appears that sudden change of loading such as shock wave impinging on underground structures, which is mostly linked up with an extreme increase of temperature, causes immense disasters, which involve loss of human lives, heavy machine damage, long-lasting traffic troubles, decreasing of bearing capacity of the structural system, etc. A combination of shock wave due to both the elevated temperature accompanying explosion leads to cracking of the bearing system of underground openings, for example to cracking of concrete lining, i.e. to reduction of thickness of the bearing structures, etc. It has been previously proved that the free hexagon method serves for identifying the damage in the bearing system of underground structures very well. The dynamical influences have to be also emerged if extreme raise of temperature and explosion are involved in this problem; formulation is briefly mentioned and the results from numerical simulations are presented. It will be shown that the superheated vapor interacting with shock and temperature waves caused by the point charge inside of the underground open space may cause extensive occurrence of fissures on the surface exposed to the external loading envisaged.
机译:似乎冲击的冲击突然发生,例如冲击波撞击地下结构,这主要与温度的极端升高有关,从而造成了巨大的灾难,包括人员伤亡,重型机器损坏,长期的交通事故,减少爆炸引起的高温导致的冲击波组合会导致地下开口的轴承系统开裂,例如导致混凝土衬砌开裂,即减小轴承的厚度先前已经证明,自由六边形法可以很好地识别地下结构的承载系统中的损伤。如果这个问题涉及温度和爆炸的极端升高,则还必须产生动力影响。简要提及配方,并给出数值模拟的结果。将会显示,过热蒸汽与地下开放空间内部的点电荷所引起的冲击波和温度波相互作用,会在暴露于设想的外部载荷的表面上引起裂缝的广泛发生。

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