An efficient optimization method for structures with local non-linearity
During the operation of turbines, one of the common accidents is due to the structure failure of blades. The contact model with strong non-linearity and time variation makes it difficult to be analyzed. In this paper, firstly, the contact model is described by using fractal theory. Secondly, the new...
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Veröffentlicht in: | Thermal science 2016, Vol.20 (suppl. 3), p.879-886 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | During the operation of turbines, one of the common accidents is due to the
structure failure of blades. The contact model with strong non-linearity and
time variation makes it difficult to be analyzed. In this paper, firstly, the
contact model is described by using fractal theory. Secondly, the new method
for the optimization of turbine blade is proposed, which is a kind of
structure with local nonlinearity and multi degree of freedom. The method
reduces the number of degrees of freedom by forming a new super element,
which makes the linear part of turbine blade without repeated calculation in
the non-linear iteration process. Therefore, it can shorten the calculation
time and reduce the demand for computing resources. Finally, an optimization
of the turbine blade is carried out, and the maximum equivalent stress
reduces by 13.19%, which proves the effectiveness of the new optimization
method.
nema |
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ISSN: | 0354-9836 2334-7163 |
DOI: | 10.2298/TSCI16S3879Z |