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Experimental Study of Damage Variable Law of Bridge and Tunnel with Underlying Goaf During Expressway

机译:高速公路底层桥墩桥墩损伤变量法的试验研究

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This paper takes geological conditions of the Li-Jun expressway by Kang JiaGou and Tong De coal mine goaf as prototype, using the simulation experiment of similar material, simulates the formation process and distribution of the mined rock fracture and the damage variable of the mined rock by using the simulation experiment of similar material, At the same time, It researches the evolvement law of rock's fracture network in caving zone, fractured zone over goaf using fractal geometry theory. It analyses the damage variable law in caving zone, fractured zone using the damage mechanical theory, and found the relationship of damage variable and mined width. The conclusion of the experiment indicates: with the advance of the working surface, the fractal dimension of the mined rock crack goes through small -> large ->small, and stable process of change. In the identical push distance of the working surface, fractal dimension of caving zone is 1.0-1.2 times of fractured zone. With the advance of the working surface, damage variable increases gradually, under the identical mined width, damage variable of caving zone is greater than fracture zone, caving zone is about 1.04-1.11 times of fracture zone. Damage variable of goaf central zone is greater than edge.
机译:本文以通过康夹沟和佟的煤矿采空区作为原型的立军高速公路地质条件,使用类似的材料的模拟实验,模拟的形成过程和所挖掘的岩石破裂的分布和开采岩石的损伤变量通过使用类似材料的模拟实验,同时,它研究岩石的裂隙网络的演化规律冒落区,利用分形几何理论裂隙带过采空区。它分析在放区中的损伤变量法,裂缝区域中使用的损害机械理论,发现损伤变量和开采宽度之间的关系。该实验的结论表明:与所述工作表面的推进,开采的岩石裂缝的分形维数经过小 - >大 - >小,并且稳定的变化过程。在该工作表面的相同距离推,洞穴区的分形维数是断裂区的1.0-1.2倍。与工作表面的推进,损伤变量逐渐增大,相同的采空宽度下,放区的损伤变量大于断裂带更大,洞穴区为约断裂带的1.04-1.11倍。采空区中心区域的损伤变量大于边缘更大。

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