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智能开采工作面三维地质模型构建及误差分析 被引量:11
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作者 王新苗 韩保山 +3 位作者 宋焘 沈凯 岳辉 雷晓宇 《煤田地质与勘探》 CAS CSCD 北大核心 2021年第2期93-101,109,共10页
地质条件的复杂性是影响当前智能开采进一步发展的关键问题之一,亟需构建高精度回采工作面三维地质模型。通过分析智能开采地质模型的构建方法,并以黄陵一号矿某智能工作面为例,结合工作面所有的地质勘探资料,利用TIM-3D建模软件分别构... 地质条件的复杂性是影响当前智能开采进一步发展的关键问题之一,亟需构建高精度回采工作面三维地质模型。通过分析智能开采地质模型的构建方法,并以黄陵一号矿某智能工作面为例,结合工作面所有的地质勘探资料,利用TIM-3D建模软件分别构建了工作面初始静态模型和回采工作面动态模型,搭载透明工作面数字孪生系统对智能开采地质模型进行展示;通过对比回采揭露真实煤厚值与地质模型预测煤厚值,分析静态地质模型与动态地质模型的误差,探讨模型误差产生的原因。分析认为:静态地质模型精度不能达到智能化开采的地质要求;更新后的动态地质模型可显著缩小煤厚预测误差,基本能达到智能化开采的地质需求;模型的误差是测量误差、采样数据量及其分布、插值算法选取共同造成的。综合认为模型的建立要充分融合工作面所有地质信息,模型建立巷道标志点的间隔应该小于10 m,模型动态更新的推采距离应该小于15 m。研究结果对于充分认识当前智能开采地质模型精度水平有重要意义,为下一步智能开采地质保障技术的发展具有借鉴意义。 展开更多
关键词 智能开采 地质模型 误差分析 地质透明化
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Monitoring of coal-mine goaf based on 4D seismic technology 被引量:4
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作者 Zhang Xian-Xu Ma Jin-Feng Li Lin 《Applied Geophysics》 SCIE CSCD 2020年第1期54-66,168,共14页
The range of coal-mine underground goaf has continuously expanded over time.Caving,fracture,and deformation zones have also changed,thereby inducing coal-mine water inrush and other environmental disasters.In this stu... The range of coal-mine underground goaf has continuously expanded over time.Caving,fracture,and deformation zones have also changed,thereby inducing coal-mine water inrush and other environmental disasters.In this study,4 D seismic monitoring technology that is effective in reservoir development was used to monitor abnormal changes in coal-mine underground goaf to explore the feasibility of the method.Taking a coal mine in Hancheng,Shaanxi as an example,we used the aforementioned technology to dynamically monitor the abnormal changes in the goaf.Based on the 4 D seismic data obtained in the experiment and the abnormal change characteristics of the coal-mine goaf,the method of 4 D seismic data processing in reservoir was improved.A set of 4 D data processing flow for the goaf was established,and the anomalies in the surface elevation and overlying strata velocity caused by collapse were corrected.We have made the following improvements to the method of 4 D seismic data processing in the reservoir:(1)the static correction problem caused by the changes of surface elevation and destruction of the low-velocity layer has been solved through fusion static correction to comb the low-frequency components of elevation statics with the high-frequency components of refraction statics;(2)the problem of overlying strata velocity changes in the goaf caused by collapse has been solved through the velocity consistency method;(3)the problem of reflection event pull-down in the disturbance area has been solved through space-varying moveout correction based on cross-correlation;and(4)amplitude anomalies in the coal seam caused by the goaf have been addressed using the correction method of space-varying amplitude.Results show that the 4 D seismic data processing and interpretation method established in this study is reasonable and effective. 展开更多
关键词 4D seismic technology coal mining GOAF difference map cross-equalization processing
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Automatic pickup of arrival time of channel wave based on multi-channel constraints 被引量:2
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作者 Wang Bao-Li 《Applied Geophysics》 SCIE CSCD 2018年第1期118-124,150,共8页
Accurately detecting the arrival time of a channel wave in a coal seam is very important for in-seam seismic data processing. The arrival time greatly affects the accuracy of the channel wave inversion and the compute... Accurately detecting the arrival time of a channel wave in a coal seam is very important for in-seam seismic data processing. The arrival time greatly affects the accuracy of the channel wave inversion and the computed tomography (CT) result. However, because the signal-to-noise ratio of in-seam seismic data is reduced by the long wavelength and strong frequency dispersion, accurately timing the arrival of channel waves is extremely difficult. For this purpose, we propose a method that automatically picks up the arrival time of channel waves based on multi-channel constraints. We first estimate the Jaccard similarity coefficient of two ray paths, then apply it as a weight coefficient for stacking the multi- channel dispersion spectra. The reasonableness and effectiveness of the proposed method is verified in an actual data application. Most importantly, the method increases the degree of automation and the pickup precision of the channel-wave arrival time. 展开更多
关键词 seismic channel wave DISPERSION multi-channel constraint Jaccard similarity coefficient arrival time picking
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