首页> 外文期刊>Journal Of The South African Institute Of Mining & Metallurgy >Stochastic simulation of the Fox kimberlitic diamond pipe, Ekati mine Northwest Territories, Canada
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Stochastic simulation of the Fox kimberlitic diamond pipe, Ekati mine Northwest Territories, Canada

机译:加拿大西北地区福克斯金伯利蒂金刚石管的随机仿真

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Multiple-point simulation (MPS) methods have been developed over the last decade as a means of reproducing complex geological patterns while generating stochastic simulations. Some geological spatial configurations are complex, such as the spatial geometries and patterns of diamond-bearing kimberlite pipes and their internal facies controlling diamond quality and distribution.Two MPS methods were tested for modelling the geology of a diamond pipe located at the Ekati mine, NT, Canada. These are the single normal equation simulation algorithm SNESIM, which captures different patterns from a training image (TI), and the filter simulation algorithm FILTERSIM, which classifies the patterns founded on the TI. Both methods were tested in the stochastic simulation of a four-category geology model: crater, diatreme, xenoliths, and host rock. Soft information about the location of host rock was also used. The validation of the simulation results shows a reasonable reproduction of the geometry and data proportions for all geological units considered; the validation of spatial statistics, however, shows that although simulated realizations from both methods reasonably reproduce the fourth-order spatial statistics of the TI, they do not reproduce well the same spatial statistics of the available data (when this differs from the TI). An interesting observation is that SNESIM better imitated the shape of the pipe, while FILTERSIM yielded a better reproduction of the xenolith bodies.
机译:在过去的十年中已经开发了多点模拟(MPS)方法作为再现复杂地质模式的手段,同时产生随机模拟。一些地质空间配置是复杂的,例如空间几何形状和菱形金伯利条管的图案及其内部面部控制菱形质量和分布。测试了WO MPS方法,以建模位于Ekati Mine的钻石管的地质,NT , 加拿大。这些是单个正常方程模拟算法Snesim,其捕获来自训练图像(Ti)的不同模式,以及滤波器仿真算法Filtersim,其分类在Ti上创立的模式。在四类地质模型的随机模拟中测试了两种方法:火山口,呕吐,Xenoliths和主岩。还使用了关于主体岩石位置的软信息。仿真结果的验证显示了所考虑的所有地质单位的几何形状和数据比例的合理再现;然而,空间统计数据的验证表明,尽管来自两种方法的模拟的实现合理地再现TI的四阶空间统计,但它们不会良好地再现可用数据的相同空间统计(当这与TI不同时)。一个有趣的观察是,嗅觉更好地模仿管道的形状,而Filtersim则产生更好的卵泡体繁殖。

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