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首页> 外文期刊>International journal of human-computer studies >Dynamic picking system for 3D seismic data: Design and evaluation
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Dynamic picking system for 3D seismic data: Design and evaluation

机译:3D地震数据动态采集系统:设计和评估

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In the framework of data interpretation for petroleum exploration, this paper contributes two contributions for visual exploration aiming to manually segment surfaces embedded in volumetric data. Resulting from a user-centered design approach, the first contribution, dynamic picking, is a new method of viewing slices dedicated to surface tracking, i.e. fault-picking, from 3D large seismic data sets. The proposed method establishes a new paradigm of interaction breaking with the conventional 2D slices method usually used by geoscientists. Based on the 2D+time visualization method, dynamic picking facilitates localizing of faults by taking advantage of the intrinsic ability of the human visual system to detect dynamic changes in textured data. The second, projective slice, is a focus+context visualization technique that offers the advantage of facilitating the anticipation of upcoming slices over the sloping 3D surface. From the reported experimental results, dynamic picking leads to a good compromise between fitting precision and completeness of picking while the projective slice significantly reduces the amount of workload for an equivalent level of precision.
机译:在石油勘探的数据解释框架中,本文为视觉勘探做出了两点贡献,目的是手动分割嵌入体积数据中的表面。以用户为中心的设计方法的结果是,第一点是动态拾取,这是一种从3D大型地震数据集中查看专用于表面跟踪(即挑剔)的切片的新方法。与地球科学家通常使用的常规2D切片方法相比,所提出的方法建立了一种打破相互作用的新范例。基于2D +时间可视化方法,动态拾取通过利用人类视觉系统检测纹理数据动态变化的内在能力来促进故障的定位。第二个是投影切片,是一种焦点+上下文可视化技术,它的优点是有助于在倾斜的3D表面上预测即将出现的切片。从报告的实验结果来看,动态拾取在拟合精度和拾取完整性之间取得了很好的折衷,而射影切片则以相当的精度水平显着减少了工作量。

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