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首页> 外文期刊>Journal of structural geology >Computerized identification of stress tensors determined from heterogeneous fault-slip data by combining the multiple inverse method and k-means clustering
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Computerized identification of stress tensors determined from heterogeneous fault-slip data by combining the multiple inverse method and k-means clustering

机译:结合多元逆方法和k均值聚类,从异质断层滑动数据确定的应力张量的计算机识别

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摘要

The multiple inverse method is a resampling technique that can separate stresses from heterogeneous fault-slip data. Numerous optimal stresses are determined for each extracted subset of data, and the clusters of these stresses are thought to represent significant solutions. Hitherto, the clusters have had to be visually recognized on stereonets. This study computerized the identification of the clusters by using the k-means clustering technique. We tested the technique using artificial datasets with known solutions. As a result, it was found that the present method detected objectively the correct solutions. In addition, the spread of each cluster was evaluated to indicate the confidence levels of the identified stresses that were represented by the cluster centers.
机译:多重逆方法是一种重采样技术,可以将应力与异质断层滑动数据分开。为每个提取的数据子集确定了许多最佳应力,并且这些应力的簇被认为代表了重要的解决方案。迄今为止,必须在视觉上通过视觉识别群集。这项研究通过使用k均值聚类技术将聚类的识别计算机化。我们使用已知解决方案的人工数据集测试了该技术。结果,发现本方法客观地检测出正确的解决方案。此外,评估每个群集的散布以指示由群集中心表示的已识别应力的置信度。

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