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Identifying patterns of correspondence between modeled flow directions and field evidence: An automated flow direction analysis

机译:识别建模流向和现场证据之间对应关系的模式:自动流向分析

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Comparison of numerical model output that predicts spatial flow patterns against field observations is a necessity within several areas of the geosciences. However in many cases these comparisons are qualitative or relative in nature. Automated flow direction analysis (AFDA) is a new method designed to provide a systematic comparison between modeled flow patterns and field observations, with particular focus on two-dimensional linear features representing flow directions of natural phenomena. By subtracting vector output of time-dependent models from field-observed directions, the resultant mean residual and variance of the offset between these data sets can be used to identify patterns of correspondence and variation between model-predicted directions and field observations. The technique is demonstrated by comparison of modeled basal ice flow directions of the Fennoscandian Ice Sheet with observed lineations mapped in Northern Sweden. In this example, the analysis provides an effective means to quantitatively validate the modeled basal thermal and flow regime with observed glacial lineations. The technique has potential applications in a wide range of flow vector direction comparisons in the geosciences, for example lava flow, landslides, aeolian and fluvial processes.
机译:在地球科学的多个领域中,有必要比较数值模型输出与现场观测值之间的预测关系,以预测空间流模式。但是,在许多情况下,这些比较本质上是定性的或相对的。自动流向分析(AFDA)是一种新方法,旨在提供对已建模流型和现场观测值之间的系统比较,特别关注代表自然现象流向的二维线性特征。通过从实地观察的方向中减去时间相关模型的向量输出,这些数据集之间所得的平均残差和偏移量的方差可用于识别模型预测的方向与实地观测值之间的对应关系和变化模式。通过将芬诺斯堪的亚冰盖的模拟基础冰流方向与在瑞典北部绘制的观测线进行比较,证明了该技术。在此示例中,分析提供了一种有效的手段,可以使用观察到的冰川线对模拟的基础热流模式进行定量验证。该技术在地球科学中广泛的流矢量方向比较中具有潜在的应用,例如熔岩流,滑坡,风沙和河流过程。

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