Code: 02835146
When simulating granular material using nonsmooth time stepping methods, a large complementarity problem must be solved per time step. State-of-the-art numerical solvers fail to deliver the required accuracy for the prediction of ... more
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When simulating granular material using nonsmooth time stepping methods, a large complementarity problem must be solved per time step. State-of-the-art numerical solvers fail to deliver the required accuracy for the prediction of digging forces. This doctoral thesis presents a specialized Interior Point Method that is able to solve the complementarity problems to a much higher accuracy while maintaining a reasonable calculation time.
320.86 zł
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