An efficient strategy for reliability-based multidisciplinary design optimization of twin-web disk with non-probabilistic model
•Multidisciplinary design optimization of turbine twin-web disk using hybrid uncertain model.•Non-probabilistic reliability assessment by modified evidence theory based fuzzy set model.•Suitable for both general and Bayesian data structure in evidence theory.•Reducing computational cost by multi-ada...
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Veröffentlicht in: | Applied Mathematical Modelling 2020-06, Vol.82, p.546-572 |
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Sprache: | eng |
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Zusammenfassung: | •Multidisciplinary design optimization of turbine twin-web disk using hybrid uncertain model.•Non-probabilistic reliability assessment by modified evidence theory based fuzzy set model.•Suitable for both general and Bayesian data structure in evidence theory.•Reducing computational cost by multi-adaptive active learning kriging.
The twin-web disk holds big promise for increasing efficiency of the aircraft engine. Its reliability-based multidisciplinary design optimization involves several disciplines including fluid mechanics, heat transfer, structural strength, and vibration. The solution to this optimization problem requires three-loop calculations including loops for optimization, reliability, and interdisciplinary consistence often making its computational cost unacceptably high. The lack of sufficient amount of probabilistic data, especially for this brand-new turbine disk, makes matters worse. In this paper, the non-probabilistic uncertain variables are described by an evidence theory-based fuzzy set method, which we extend to general structure of uncertain data. We also propose two modifications of the active learning kriging model: one of them for the purpose of optimization with respect to the distance from the optimum point and another one for the purpose of assessing reliability by introducing the importance concept. Applications of these two modifications are demonstrated in this paper. Finally, a multi-adaptive learning kriging strategy for non-probabilistic reliability-based multidisciplinary design optimization of twin-web disk is proposed to improve its power efficiency and reliability in a computationally effective way. |
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ISSN: | 0307-904X 1088-8691 1872-8480 0307-904X |
DOI: | 10.1016/j.apm.2020.01.066 |