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  • 第一作者通讯作者论文:

    [1] Zhang D, Zhang M, Wang Z, et al. An efficient optimization design framework for low-resistance shape of bionic amphibious robot[J]. China Ocean Engineering, 2024, 38(1):117-128.

    [2] Zhang D, Bao C, Cao L, et al. A flexible and efficient optimization design framework for the shape of blend-wing-body underwater glider[J]. Ocean Engineering, 2023, 288(2003):116111.

    [3] Zhang D, Zhang B, Wang Z, et al. A distributed decomposition method for general problems in Multidisciplinary Design Optimization[J]. Journal of Ship Mechanics. 2023,27(6):932-946.

    [4] 张贝,张代雨*,王志东,吕海宁,杨建民. 基于自由变形的自主水下航行器壳体的优化设计方法研究. 船舶力学, 2022, 26(9):1315-1325.

    [5] Zhang D, Wang Z, Ling H, et  al. Kriging-based shape optimization framework forblended-wing-body underwater glider[J]. Ocean Engineering, 2021, 219(2021):108212.

    [6] Zhu X, Song B, Zhang D, et al. Analysis of landing strategies and influencing factors of an autonomous underwater vehicle[J]. Ocean Engineering, 2021, 237 (2021):109448.

    [7] Zhang D, Zhang B, Wang Z, et al. An Efficient Surrogate-Based Optimization Method for BWBUG Based on Multifidelity Model and Geometric Constraint Gradients[J]. Mathematical Problems in Engineering, 2021, 2021:1-13.

    [8] Zhang D, Song B, Wang P, et al. Multidisciplinary optimization design of a new underwater vehicle with highly efficient gradient calculation[J]. Structural and Multidisciplinary Optimization, 2017,55(4):1483-1502.

    [9] Zhang D, Song B, Wang P. A parallel bi-level multidisciplinary design optimization architecture with convergence proof for general problem[J]. Engineering Optimization, 2017,49(4):654-674.

    [10] Zhang D, Song B, Wang P, et al. Performance evaluation of MDO Architectures within a variable complexity problem[J]. Mathematical Problems in Engineering, 2017, 2017:1-9.

    [11] 张代雨,王志东,凌宏杰,朱信尧. 基于FFD和轴变形方法的翼身融合水下滑翔机外形参数化建模[J]. 舰船科学技术,2021,43(03):89-92+125.

    [12] 张代雨,张贝,王志东,凌宏杰,张伶俐. 翼身融合水下滑翔机水动力及外形优化设计[J]. 船舶工程,2021,43(03):117-123.

    [13] 张代雨,王志东,凌宏杰,朱信尧. 外形参数对翼身融合水下滑翔机的高升阻比特性影响研究[J]. 江苏科技大学学报(自然科学版),2021,35(02):19-23+51.

    [14] 陈旭,张代雨,王鹏,王志东. 翼身融合水下滑翔机外形的精细参数化建模[J]. 舰船科学技术,2020,42(03):103-107.

    [15] 张代雨, 宋保维, 王鹏,等. 基于响应面的BLISS改进方法[J]. 航空动力学报, 2013, 28(8):1797-1802.

    [16] 张代雨, 宋保维, 王鹏,等. 两级系统多学科可靠性设计合成优化方法[J]. 西北工业大学学报, 2012, 30(6):808-813.

    [17] Zhang D Y, Song B W, Zhu Z Q. The Accuracy Assessment of Weapon System Using Grey Linear Regression Method[J]. Applied Mechanics & Materials, 2012, 268-270:1809-1813.