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巷道掘进工作面影像地质编录绝对定向方法 被引量:3
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作者 毛羽丰 李浩 +1 位作者 杨建华 张广学 《煤炭科学技术》 CAS 北大核心 2014年第3期89-92,共4页
煤矿井下地质编录是煤矿的一项基础性技术工作,而影像地质编录技术是一项实用的新技术。按照现有影像地质编录方法需要在拍摄部位布设足够数量的控制点,但掘进工作面附近环境复杂难以布设控制点,为了能够在掘进工作面使用摄影测量手段... 煤矿井下地质编录是煤矿的一项基础性技术工作,而影像地质编录技术是一项实用的新技术。按照现有影像地质编录方法需要在拍摄部位布设足够数量的控制点,但掘进工作面附近环境复杂难以布设控制点,为了能够在掘进工作面使用摄影测量手段顺利地进行影像地质编录工作,提出了一种新的近景摄影测量控制方法,利用巷道指向激光与铅垂线进行掘进工作面影像的绝对定向。模拟试验和现场试验表明,该方法是一种适合煤矿巷道掘进工作面影像地质编录的绝对定向方法,点位精度可控制在1 cm以内。 展开更多
关键词 巷道掘进工作面 影像地质编录 摄影测量 绝对定向
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Research on the characteristics of noise source on heading face and noise propagation in mine laneway
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作者 PENG You-duo XIE Wei-hua +2 位作者 XIE Zhi-yong PENG Chang-qing YIN Xi 《Journal of Coal Science & Engineering(China)》 2012年第4期418-422,共5页
Based on the complexity and dynamic random analysis of machine noise source in mine heading face, this article established the noise pressure mathematical model of noise propagation in mine laneway of different noise ... Based on the complexity and dynamic random analysis of machine noise source in mine heading face, this article established the noise pressure mathematical model of noise propagation in mine laneway of different noise sources, carried out noise propagation numerical simulation in long space, and revealed noise propagation law of more radiated noise sources in the mine roadway. The results show that, under conditions that the total noise power is always the same, regardless of point source, surface noise source, or body noise source, the corresponding noise attenuation trend along the mine laneway and attenuation curve shape are basically the same. However, the attenuation velocity corresponding to complex stereo noise source is slower than single point source and the noise pressure value is higher than the single point source. The actual noise of measured values is close to the theoretical value or, say, there is little error for complex stereo noise source, whereas the error to single point source and surface noise is higher, respectively. 展开更多
关键词 noise source mine roadway PROPAGATION CHARACTERISTICS heading face noise pressure
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