Tutorial introduction to Virtual Reality: What possibility are offered to our field?
Akira Kageyama, Nobuaki Ohno
Abstract
The virtual reality (VR) provides us a three-dimensional, immersive, and fully interactive visualization environment. To make the best use of the VR's potential in scientific visualization, a VR visualization software named VFIVE has been developed for the CAVE-type VR system. VFIVE enables simulation researchers to analyze three-dimensional scalar and vector fields by various visualization methods including real time volume rendering in the CAVE's room sized booth. Some basic visualization tools of VTK have been integrated to VFIVE, too.
Create a lesson
Related papers
Quantifying the effects of nickel on Earth's inner-core nucleation
Jiahui Zhai, Liangrui Wei, Chen Gao et al.
Global Prevalence of Anti-similar Earthquakes at Intermediate Depth
Albert Leonardo Aguilar Suarez, Gregory Beroza, William Ellsworth et al.
Lab earthquakes confirm the theory of frictional slip pulses
Alina Shafir, Tom Gabrieli, Yuval Tal et al.
Continually learning neural-operator surrogate for three-dimensional airborne electromagnetic Bayesian inversion
Jaehong Chung, Andrew Lockwood, Jef Caers
GeoFormer: Geometry-Aware Transformer and its application to 5D First-Arrival Picking
Tianxiang Gao, Jianwei Ma
A 3D VTI factored eikonal solver using six-tetrahedron pyramidal stencil
Yuhang Wang, Yongming Lu, Jianming Zhang et al.