National Repository of Grey Literature 4 records found  Search took 0.00 seconds. 
Brittle Body Simulation
Chlubna, Tomáš ; Lysek, Tomáš (referee) ; Milet, Tomáš (advisor)
Brittle bodies differ from the rigid ones in the possibility of shattering into small pieces according to the laws of physics. The brittle body simulation therefore uses principles of a general rigid body simulation and requires solutions to the other problems related to object decomposition into fragments and involving these fragments of the original object in the simulation. Description and evaluation of the possible solutions to this problem and a proposal with a reference implementation of such simulation are the goals of this thesis.
Physics Simulation on GPU
Janošík, Ondřej ; Zemčík, Pavel (referee) ; Polok, Lukáš (advisor)
This thesis addresses the issue of rigid body simulation and possibilities of paralellization using GPU. It describes the basics necessary for implementation of basic physics engine for blocks and technologies which can be used for acceleration. In my thesis, I describe approach which allowed me to gradually accellerate physics simulation using OpenCL. Each significant change is described in its own section and includes measurement results with short summary.
Brittle Body Simulation
Chlubna, Tomáš ; Lysek, Tomáš (referee) ; Milet, Tomáš (advisor)
Brittle bodies differ from the rigid ones in the possibility of shattering into small pieces according to the laws of physics. The brittle body simulation therefore uses principles of a general rigid body simulation and requires solutions to the other problems related to object decomposition into fragments and involving these fragments of the original object in the simulation. Description and evaluation of the possible solutions to this problem and a proposal with a reference implementation of such simulation are the goals of this thesis.
Physics Simulation on GPU
Janošík, Ondřej ; Zemčík, Pavel (referee) ; Polok, Lukáš (advisor)
This thesis addresses the issue of rigid body simulation and possibilities of paralellization using GPU. It describes the basics necessary for implementation of basic physics engine for blocks and technologies which can be used for acceleration. In my thesis, I describe approach which allowed me to gradually accellerate physics simulation using OpenCL. Each significant change is described in its own section and includes measurement results with short summary.

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