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Evaluation of Procedures for Prediction of Unconventional Gas in the Presence of Geologic Trends

机译:地质趋势下非常规天然气预测程序的评价

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摘要

This study extends the application of local spatial nonparametric prediction models to the estimation of recoverable gas volumes in continuous-type gas plays to regimes where there is a single geologic trend. A transformation is presented, originally proposed by Tomczak, that offsets the distortions caused by the trend. This article reports on numerical experiments that compare predictive and classification performance of the local nonparametric prediction models based on the transformation with models based on Euclidean distance. The transformation offers improvement in average root mean square error when the trend is not severely misspecified. Because of the local nature of the models, even those based on Euclidean distance in the presence of trends are reasonably robust. The tests based on other model performance metrics such as prediction error associated with the high-grade tracts and the ability of the models to identify sites with the largest gas volumes also demonstrate the robustness of both local modeling approaches.
机译:这项研究将局部空间非参数预测模型的应用扩展到对连续地质气藏中可采气量的估计,该连续气藏具有单一地质趋势。 Tomczak最初提出了一种转换,该转换可以抵消趋势导致的失真。本文报告了数值实验,这些实验将基于变换的局部非参数预测模型的预测和分类性能与基于欧几里德距离的模型进行了比较。当没有严重错误指定趋势时,该变换可改善平均均方根误差。由于模型的局部性质,即使在存在趋势的情况下基于欧氏距离的模型也相当可靠。基于其他模型性能指标(例如与高等级管道相关的预测误差)以及模型识别最大气体量站点的能力的测试也证明了这两种局部建模方法的鲁棒性。

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