Anisotropy-Based Adaptive Polynomial Chaos Method for Hybrid Uncertainty Quantification and Reliability-Based Design Optimization of Structural-Acoustic System
Abstract
Share and Cite
Yin, S.; Gao, Y.; Zhu, X.; Wang, Z. Anisotropy-Based Adaptive Polynomial Chaos Method for Hybrid Uncertainty Quantification and Reliability-Based Design Optimization of Structural-Acoustic System. Mathematics 2023, 11, 836. https://doi.org/10.3390/math11040836
Yin S, Gao Y, Zhu X, Wang Z. Anisotropy-Based Adaptive Polynomial Chaos Method for Hybrid Uncertainty Quantification and Reliability-Based Design Optimization of Structural-Acoustic System. Mathematics. 2023; 11(4):836. https://doi.org/10.3390/math11040836
Chicago/Turabian StyleYin, Shengwen, Yuan Gao, Xiaohan Zhu, and Zhonggang Wang. 2023. "Anisotropy-Based Adaptive Polynomial Chaos Method for Hybrid Uncertainty Quantification and Reliability-Based Design Optimization of Structural-Acoustic System" Mathematics 11, no. 4: 836. https://doi.org/10.3390/math11040836
APA StyleYin, S., Gao, Y., Zhu, X., & Wang, Z. (2023). Anisotropy-Based Adaptive Polynomial Chaos Method for Hybrid Uncertainty Quantification and Reliability-Based Design Optimization of Structural-Acoustic System. Mathematics, 11(4), 836. https://doi.org/10.3390/math11040836
