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Quantification and assessment of fault uncertainty and risk using stochastic conditional simulations 被引量:2

Quantification and assessment of fault uncertainty and risk using stochastic conditional simulations
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摘要 The effect of geological uncertainty on the development and mining of underground coal deposits is a key issue for longwall mining, as the presence of faults generates substantial monetary losses. This paper develops a method for the conditional simulation of fault systems and uses the method to quantify and assess fault uncertainty. The method is based on the statistical modelling of fault attributes and the simulation of the locations of the centres of the fault traces. Fault locations are generated from the thinning of a Poisson process using a spatially correlated probability field. The proposed algorithm for simulating fault traces takes into account soft data such as geological interpretations and geomechanical data. The simulations generate realisations of fault populations that reproduce observed faults, honour the statistics of the fault attributes, and respect the constraints of soft data, providing the means to thereby model and assess the related fault uncertainty. The effect of geological uncertainty on the development and mining of underground coal deposits is a key issue for longwall mining, as the presence of faults generates substantial monetary losses. This paper develops a method for the conditional simulation of fault systems and uses the method to quantify and assess fault uncertainty. The method is based on the statistical modelling of fault attributes and the simulation of the locations of the centres of the fault traces. Fault locations are generated from the thinning of a Poisson process using a spatially correlated probability field. The proposed algorithm for simulating fault traces takes into account soft data such as geological interpretations and geomechanical data. The simulations generate realisations of fault populations that reproduce observed faults, honour the statistics of the fault attributes, and respect the constraints of soft data, providing the means to thereby model and assess the related fault uncertainty.
出处 《Journal of Coal Science & Engineering(China)》 2002年第2期1-11,共11页 煤炭学报(英文版)
基金 SupportedbytheAustralianCoalResearchAssociationforselectingandfundingthisresearchproject (ACARPC70 2 5 ) AngloCoalAustralia NewlandsCoalMineforadditionalfundingandcollaboration andBHPCoal CSIRO NorthGoonyellaMineandMIMHoldingsforcollaboration .
关键词 fault systems longwall mining quantification of fault uncertainty and risk SIMULATION fractal model 长壁开采法 煤炭开采 地下开采方法 断层 地质条件
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参考文献1

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同被引文献33

  • 1何登发,杨庚,管树巍,石昕,张朝军,王桂宏,王晓波.前陆盆地构造建模的原理与基本方法[J].石油勘探与开发,2005,32(3):7-14. 被引量:37
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