Integrated Visualization of Simulation Results and Experimental Devices in Virtual-Reality Space
スポンサーリンク
概要
- 論文の詳細を見る
We succeeded in integrating the visualization of both simulation results and experimental device data in virtual-reality (VR) space using CAVE system. Simulation results are shown using Virtual LHD software, which can show magnetic field line, particle trajectory, and isosurface of plasma pressure of the Large Helical Device (LHD) based on data from the magnetohydrodynamics equilibrium simulation. A three-dimensional mouse, or wand, determines the initial position and pitch angle of a drift particle or the starting point of a magnetic field line, interactively in the VR space. The trajectory of a particle and the stream-line of magnetic field are calculated using the Runge-Kutta-Huta integration method on the basis of the results obtained after pointing the initial condition. The LHD vessel is objectively visualized based on CAD-data. By using these results and data, the simulated LHD plasma can be interactively drawn in the objective description of the LHD experimental vessel. Through this integrated visualization, it is possible to grasp the three-dimensional relationship of the positions between the device and plasma in the VR space, opening a new path in contribution to future research.
著者
-
Ishiguro Seiji
National Cancer Center Hospital
-
OHTANI Hiroaki
National Institute for Fusion Science, Toki 509-5292, Japan
-
TAMURA Yuichi
Konan University, 8-9-1 Okamoto, Higashinada, Kobe 658-8501, Japan
-
KAGEYAMA Akira
Kobe University, Kobe 657-8501, Japan
-
SHOHJI Mamoru
National Institute for Fusion Science, Toki 509-5292, Japan
関連論文
- Effect of Molecular Rigidity on Micelle Formation in Amphiphilic Solution
- Simulation Data Analysis by Virtual Reality System
- TG-1-3 Extended surgery is beneficial in the treatment of low rectal cancer : A comparison between Japan and the Netherlands(G-l tract,Travel Grant)
- Comparison of Hydrogen Adsorption on Diamond and Graphite Surfaces
- FDTD Simulated Observation of a Gold Nanorod by Scanning Near-Field Optical Microscopy
- Design Support System with Haptic Feedback and Real-Time Interference Function
- Visualization of Particle Trajectories in Time-Varying Electromagnetic Fields by CAVE-Type Virtual Reality System
- Molecular Dynamics Simulation of Micellar Shape Change in Amphiphilic Solution
- Dissipative Particle Dynamics Simulation of Phase Behavior in Bolaamphiphilic Solution
- Automated Pose Estimation of Objects Using Multiple ID Devices for Handling and Maintenance Task in Nuclear Fusion Reactor
- Integrated Visualization of Simulation Results and Experimental Devices in Virtual-Reality Space
- Virtual Reality Visualization of Frozen-in Vector Fields
- Scientific Visualization of Magnetic Reconnection Simulation Data by the CAVE Virtual Reality System
- Smoothing Method for Shape Measurement by Using a Low-Cost 3D Scanner
- Haptization of Molecular Dynamics Simulation with Thermal Display
- Primal Macro-Projective Integration Method for Multi-Scale Plasma Simulation