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马鞍山2~#矿体无底柱分段崩落法结构参数优化研究 被引量:8
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作者 杨宫印 陈玉明 王小勇 《矿冶工程》 CSCD 北大核心 2017年第2期24-27,共4页
根据无底柱分段崩落法大间距采场结构参数理论,进行了三维单体放矿实验。根据数理统计方法,绘制了矿石放出体形态;利用Matlab拟合了放出体各轴向偏心率回归方程,得出了放出体主要形态参数。以马鞍山2~#铁矿为例,在分段高度为12.5 m的情... 根据无底柱分段崩落法大间距采场结构参数理论,进行了三维单体放矿实验。根据数理统计方法,绘制了矿石放出体形态;利用Matlab拟合了放出体各轴向偏心率回归方程,得出了放出体主要形态参数。以马鞍山2~#铁矿为例,在分段高度为12.5 m的情况下,确定最佳进路间距为14.5 m、最佳崩矿步距为4.5 m。 展开更多
关键词 无底柱分段崩落法 大间距 结构参数 达孔量法 放矿
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Numerical simulation and validation of ocean waves measured by an Along-Track Interferometric Synthetic Aperture Radar
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作者 张彪 何宜军 Paris W.VACHON 《Chinese Journal of Oceanology and Limnology》 SCIE CAS CSCD 2008年第1期1-8,共8页
A new nonlinear integral transform of ocean wave spectra into Along-Track Interferometric Synthetic Aperture Radar (ATI-SAR) image spectra is described. ATI-SAR phase image spectra are calculated for various sea sta... A new nonlinear integral transform of ocean wave spectra into Along-Track Interferometric Synthetic Aperture Radar (ATI-SAR) image spectra is described. ATI-SAR phase image spectra are calculated for various sea states and radar configurations based on the nonlinear integral transform. The numerical simulations show that the slant range to velocity ratio (R/V), significant wave height to ocean wavelength ratio (Hi2), the baseline (2B) and incident angle (0) affect ATI-SAR imaging. The ATI-SAR imaging theory is validated by means of Two X-band, HH-polarized ATI-SAR phase images of ocean waves and eight C-band, HH-polarized ATI-SAR phase image spectra of ocean waves. It is shown that ATI-SAR phase image spectra are in agreement with those calculated by forward mapping in situ directional wave spectra collected simultaneously with available ATI-SAR observations. ATI-SAR spectral correlation coefficients between observed and simulated are greater than 0.6 and are not sensitive to the degree of nonlinearity. However, the ATI-SARoPhase image spectral turns towards the range direction, even if the real ocean wave direction is 30. It is also shown that the ATI-SAR imaging mechanism is significantly affected by the degree of velocity bunching nonlinearity, especially for high values of R/V and H/2. 展开更多
关键词 ATI-SAR nonlinear integral transform numerical simulation VALIDATION
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