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Exact(9)
Each element is evaluated in the tool by recursively dividing a surface until it meets this far-field condition.
The element is evaluated for its accuracy in the analysis of the stability and vibration of anisotropic rectangular plates with different lamination schemes and boudary conditions.
Moreover, the engineering feasibility of the direct use of a stress based fracture criterion in combination with the enhanced element is evaluated by comparison of measured and calculated fracture elongations.
The behavior of the fiber model based on anchored bars is discussed and then the fiber-section finite element is evaluated by comparison with an experimental test of a beam column subassemblage subjected to cyclic loading.
Finally, the variability of the load capacity of the structural element is evaluated as a function of the statistics of the strength related to the size of the defects.
Here the calculations of the gravitational potential is based on the principles described in Kuhn (2000, 2003), where the gravitational effect of a spherical mass element is evaluated by that of a mass equal prism of the same height and centred at the same horizontal location.
Similar(51)
Attaching selected games were evaluated benefits by the introduced new element was evaluated as very beneficial.
The SB element was evaluated with virtual one-element, cantilever beam and in-plane compression tests.
The performances of the element are evaluated from comparisons with harmonic responses of plates obtained by the finite element method.
The results obtained from the finite element were evaluated by comparing the load displacement responses and the potential of failure modes.
Using the ANSYS platform, the performance of the element was evaluated by comparing the predicted results with those obtained using mixed quadratic tetrahedral elements and hexahedral elements with a B-bar formulation.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com