Today we can have huge datasets resulting from computer simulations (CFD, physics, chemistry, etc) and sensor measurements (medical, seismic and satellite). There is an exponential growth in computational requirements in scientific research. Modern parallel computers are providing the required computational power for th
We use two large simulations, the chemical reaction dynamics of H + H2 and the collision of two gala...
We use two large simulations, the chemical reaction dynamics of H + H2 and the collision of two gala...
New large-scale problems with growing computational demands continuously arise in many scientific a...
Supercomputers ’ massive processing power drives scientific discovery in many areas, and their compu...
For more than a decade single compute core performance is no longer doubling every 18-24months. Phys...
To seek a low-cost, extensible solution for the large-scale data visualization problem, a visual com...
We develop scalable algorithms and object-oriented code frameworks for terascale scientific simulati...
Supercomputers ’ massive processing power drives scientific discovery in many areas, and their compu...
Although visualization in scientific computing has been a field of intensive progress during the las...
Although visualization in scientific computing has been a field of intensive progress during the las...
Application scientists face a challenge -- the need to analyze and understand ever larger and comple...
This viewgraph presentation gives an overview of the visual environments for computational fluid dyn...
There is a need to visualize multi-billion voxel data sets. Hardware accelerated rendering currently...
The rapid advance in computer power of the last 20-30 years and wide accessibility to computers led ...
There is a need to visualize multi-billion voxel data sets. Hardware accelerated rendering currently...
We use two large simulations, the chemical reaction dynamics of H + H2 and the collision of two gala...
We use two large simulations, the chemical reaction dynamics of H + H2 and the collision of two gala...
New large-scale problems with growing computational demands continuously arise in many scientific a...
Supercomputers ’ massive processing power drives scientific discovery in many areas, and their compu...
For more than a decade single compute core performance is no longer doubling every 18-24months. Phys...
To seek a low-cost, extensible solution for the large-scale data visualization problem, a visual com...
We develop scalable algorithms and object-oriented code frameworks for terascale scientific simulati...
Supercomputers ’ massive processing power drives scientific discovery in many areas, and their compu...
Although visualization in scientific computing has been a field of intensive progress during the las...
Although visualization in scientific computing has been a field of intensive progress during the las...
Application scientists face a challenge -- the need to analyze and understand ever larger and comple...
This viewgraph presentation gives an overview of the visual environments for computational fluid dyn...
There is a need to visualize multi-billion voxel data sets. Hardware accelerated rendering currently...
The rapid advance in computer power of the last 20-30 years and wide accessibility to computers led ...
There is a need to visualize multi-billion voxel data sets. Hardware accelerated rendering currently...
We use two large simulations, the chemical reaction dynamics of H + H2 and the collision of two gala...
We use two large simulations, the chemical reaction dynamics of H + H2 and the collision of two gala...
New large-scale problems with growing computational demands continuously arise in many scientific a...