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Prediction of the Height of Overburden Fractured Zone in Deep Coal Mining: Case Study

机译:深部煤矿开采覆岩破碎带高度预测:案例研究

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In the process of coal extraction, a fractured zone is developed in the overburden above the goaf. If the fractured zone is connected with an aquifer, then water inrush may occur. Hence, research and analysis of the height of overburden fractured zone (HOFZ) are of considerable significance. This study focuses on the HOFZ determination in deep coal mining. First, general deformation failure characteristics of overburden were discussed. Second, a new method, numerical simulation by orthogonal design(NSOD), have been proposed to determinate the HOFZ in deep coal mining. Third, the validity of NSOD is verified in the practical application, compared with empiric al formula in Chinese Regulations and in-situ test. These three methods were applied to determine the HOFZ of working face No. 111303 in No. 5 coal mine. The pre dicted HOFZ of NSOD is found to be similar to the result of the in-situ test (8.9% relative error), whereas the HOFZ calculated by the empirical formula has extremely large error (25.7% relative error). Results show that the NSOD can reliably predict the HOFZ in deep coal mining and reduce time and expenses required for in-situ test.
机译:在采煤过程中,在采空区上方的覆盖层中形成了一个断裂带。如果裂缝区域与含水层相连,则可能会发生涌水现象。因此,研究覆盖层裂缝带高度(HOFZ)具有重要意义。本研究着重于深部煤矿开采中的HOFZ确定。首先,讨论了覆盖层的一般变形破坏特征。其次,提出了一种通过正交设计(NSOD)数值模拟的新方法来确定深部煤矿开采的HOFZ。第三,与中国法规中的经验公式和现场试验相比较,在实际应用中验证了NSOD的有效性。运用这三种方法确定了5号煤矿工作面111303的HOFZ。发现NSOD的预测HOFZ与原位测试结果相似(相对误差为8.9%),而根据经验公式计算出的HOFZ具有极大的误差(相对误差为25.7%)。结果表明,NSOD能够可靠地预测深部煤矿开采的HOFZ,并减少了现场测试所需的时间和费用。

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