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Effects of these regularization methods are numerically discussed.
Level set methods are numerically efficient and robust procedures for the tracking of interfaces.
The efficiency and accuracy of the proposed methods are numerically verified by a simple planner truss and two shear building models.
These methods are numerically stable and accurate even for relatively large time steps and require less computation time than the existing methods.
The convergence of these transfer trajectory design methods are numerically verified by generating varying numbers of nodes and comparing their design results.
The yarn geometries from the different methods are numerically analysed using voxel finite element analysis to determine the global volume fraction and the elastic properties.
Similar(53)
The effectiveness of the presented methods is numerically investigated by stabilizing the unstable first-order periodic orbit of the AFM system.
The feasibility and effectiveness of the proposed method are numerically demonstrated through a shear building structure with three damage scenarios.
Taking into account the performance and cost/complexity of the whole system, different alternatives for each vibration control method are numerically and experimentally studied.
The validations of the presented method and comparisons with the Fourier spectrum based method are numerically and experimentally demonstrated for composite structures.
The validity and the effectiveness of the proposed method are numerically demonstrated in the 10-machine 39-bus New England system and Mexican 46-machine 190-bus system.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com