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Multi-sensory investigation of geoscientific data: Adding touch and sound to three-dimentional visualization and modeling.

机译:地球科学数据的多感官研究:在三维可视化和建模中添加触摸和声音。

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In recent years, the natural resource industry has recognized that 3D visualization and modeling of geoscientific data can increase efficiency in the exploration of natural resources. Several projects have demonstrated the potential of Virtual Environments technology to improve productivity and lower costs in areas such as petroleum exploration and production. Over the last few years, the fields of haptic force-feedback devices and real time sound synthesis have matured sufficiently to allow research into multi-sensory Virtual Environments.; This dissertation describes the development and deployment of a prototype computer system, which integrates haptics (touch) and real-time sonification into 3D, interactive, stereo-graphics to create a multi-sensory Virtual Environment called GDIS (Geoscientific Data Investigation System). GDIS is used to explore and interact with geoscientific data to perceive several overlapping data properties simultaneously via vision, touch and sound. This multi-sensory system has the potential to improve geoscientists' data comprehension while decreasing turn-around time.
机译:近年来,自然资源行业已经认识到地球科学数据的3D可视化和建模可以提高自然资源勘探的效率。一些项目已经证明了虚拟环境技术在提高石油勘探和生产等领域的生产率和降低成本方面的潜力。在过去的几年中,触觉力反馈设备和实时声音合成领域已经足够成熟,可以用于多感官虚拟环境的研究。本文描述了原型计算机系统的开发和部署,该计算机系统将触觉(触摸)和实时声波技术集成到3D,交互式立体图形中,从而创建了一个称为GDIS(地球科学数据调查系统)的多传感器虚拟环境。 GDIS用于探索地球科学数据并与之交互,以通过视觉,触摸和声音同时感知多个重叠的数据属性。这种多传感器系统具有提高地球科学家的数据理解能力,同时减少周转时间的潜力。

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