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Theoretical approach to estimate the probability of strata convergence: implications for mining induced fractures and potential health risk

机译:估算地层收敛可能性的理论方法:对采矿诱发的裂缝和潜在健康风险的影响

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Estimating probability of strata convergence in relation to the distribution of stresses around the excavated wall as well as quantifying the time-dependent displacement are of paramount importance. Convergence is defined as the gradual decrease in the interval between to specified rock units or geological horizons as a result of thinning of intervening strata. The heterogeneous distribution of induced stresses with time resulting into simultaneous strata displacement which is extremely difficult to predict under the robust mining environment. As a result of unpredictable stresses, during the time of subsequent excavation around a specified geologic condition, significant amount of gravitational potential energy decreases due to increasing kinematic energy of overburden. Furthermore, the equilibrium of underground mining conditions is disturbed subsequently with time after the initial uncovering of side wall and rooftop. This paper proposes an approach to construct a functional equation of convergence purely based on idealized geological conditions. There are several implications which are associated with the prediction of convergence such as reducing health risk of mining workers, contributions of fractures over the dynamic convergence mechanism and so on.
机译:估算与开挖墙周围应力分布相关的地层收敛概率以及量化随时间变化的位移至关重要。会聚定义为由于中间地层变薄而导致与指定岩石单位或地质层位之间的间隔逐渐减小。诱导应力随时间的不均匀分布会导致同时发生地层位移,这在稳健的采矿环境下极难预测。由于不可预测的应力,在随后的特定地质条件下的开挖过程中,由于上覆岩层运动能的增加,大量的重力势能降低。此外,在最初发现侧壁和屋顶之后,地下采矿条件的平衡随后会随着时间而受到干扰。本文提出了一种纯粹基于理想化地质条件构造收敛函数方程的方法。与收敛的预测相关的含义有很多,例如降低采矿工人的健康风险,裂缝在动态收敛机制中的作用等。

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