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An Integrated Multidisciplinary Re-Evaluation of the Geothermal System at Valles Caldera, New Mexico,Using an Immersive Three-Dimensional (3D) Visualization Environment

机译:使用沉浸式三维(3D)可视化环境,对新墨西哥州Valles Caldera的地热系统进行综合的多学科重新评估

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We describe an approach to explore the spatial relationships of a geothermal resource by examining diverse geological, geophysical, and geochemical data sets using the immersive 3-dimensional (3D) visualization capabilities of the University of California -Davis (UCD) Keck Center for Active Visualization in the Earth Sciences (KeckCAVES). The KeckCAVES is a state-of-the-art facility where stereoscopic images are projected onto four, 8-foot by 10-foot surfaces (three walls and a floor). The user perceives a seamless 3D image of the data, which they can manipulate and interact with, allowing a more intuitive interpretation of data set relationships than is possible with traditional 2-dimensional (2D) techniques. Here we incorporate diverse geothermal data sets relating to the geothermal system at Valles Caldera, New Mexico including: topography, lithology, geologic structures, temperature, alteration mineralogy, and magnetotelluric information. With the ability to rapidly and intuitively observe data inter-relationships, we are able to efficiently and rapidly draw conclusions about the structure of the Valles Caldera geothermal system. The application of immersive 3D modeling to geothermal systems can provide industry with a method to make more informed assessments and cost-effective approaches for developing a key low carbon emission resource.
机译:我们描述了一种方法,该方法通过使用加利福尼亚大学戴维斯分校(UCD)凯克中心主动可视化研究中心的沉浸式3维(3D)可视化功能检查各种地质,地球物理和地球化学数据集来探索地热资源的空间关系地球科学(KeckCAVES)。 KeckCAVES是最先进的设备,可将立体图像投影到四个8英尺x 10英尺的表面(三堵墙和一堵地板)上。用户可以感知到数据的无缝3D图像,他们可以进行操作和交互,与传统的二维(2D)技术相比,可以更直观地解释数据集的关系。在这里,我们结合了与新墨西哥州Valles Caldera地热系统有关的各种地热数据集,包括:地形,岩性,地质结构,温度,蚀变矿物学和大地电磁信息。通过快速,直观地观察数据相互关系的能力,我们能够高效,快速地得出关于Valles Caldera地热系统结构的结论。沉浸式3D建模在地热系统中的应用可以为工业界提供一种方法,以进行更明智的评估,并开发具有成本效益的方法来开发关键的低碳排放资源。

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