【摘 要】
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The present study shows that naturally the enormous engineering structure interaction with medium material, geometry or non-linearity hazardous simulation experiment, response analysis and computing theory have been regarded as a high-level question in th
【机 构】
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Dept.of Mining Engineering, Xi’an University of Science & Technology, Xi’an 710054;Beijing Research
论文部分内容阅读
The present study shows that naturally the enormous engineering structure interaction with medium material, geometry or non-linearity hazardous simulation experiment, response analysis and computing theory have been regarded as a high-level question in the architecture, bridge, tunnel, hydraulic, etc engineering fields.Approaches an integrated intelligent methodology to predict stability and supporting decision in underground drift based on neural network modelling on coal-rock mechanical problem is proposed.By the terms of the non-linearity numerical simulation, this paper develops integrated intelligent methodology to research on the structure hazardous response strata soft-rock drifts.
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