高端工程機械與礦山裝備研究所

趙玲瑛

發布時間:2024年03月12日 10:54    作者:    來源:    點擊率:

趙玲瑛

職稱:講師

辦公地址:主校區綜合樓1112

電子郵箱:zhaolingying@tyust.edu.cn

教育背景:2017.09-2022.12,長安大學,碩博連讀

工作經曆:2023.03-至今,澳门新浦新京娱乐,講師

教學工作:

本科生課程:熱工基礎、液壓挖掘機(助教)

科研工作

1)研究方向:公路綠色養護裝備、流固耦合傳熱

2)科研項目

[1] 山西省高等學校科技創新項目,2023L180,主持.

3)代表性論文

[1] Lingying Zhao, Min Ye, Yuchuan Ma, et al.Mixed Heat Transfer in a Double Barrel with Differential Velocity based on CFD-DEM and Experiment[J]. Journal of Thermal Science and Engineering Applications, 2023, 15(09): 091001.(SCI)

[2] Lingying Zhao, Hairong Gu, Min Ye, et al.Mixing uniformity of particles in a double barrel with differential velocity based on the discrete element method[J].Powder Technology, 2021, 393: 639-649. (SCI)

[3] Lingying Zhao, Min Ye, Xinxin Xu. Intelligent optimization of EV comfort based on a cooperative braking system[J]. Proceedings of the Institution of Mechanical Engineers Part D-Journal of Automobile Engneering, 2021, 235(10-11): 2904-2916. (SCI)

[4] Lingying Zhao, HaiRong Gu, Min Ye, et al. Optimization of the coupling parameters and mixing uniformity of multiple organic hydraulic mixtures based on the discrete element method and response surface methodology[J].Advanced Powder Technology, 2020, 31(10): 4365-4375. (SCI)

[5] 趙玲瑛,顧海榮,葉敏,等.差速雙滾筒攪拌均勻性建模及多目标參數優化[J].華中科技大學學報(自然科學版), 2022, 50(02): 26-31. (EI)

[6] Lingying Zhao, Min Ye, Hairong Gu, et al. Analysis of structure and mixing characteristics of a double barrel with differential velocity based on theory and discrete element simulation[A]. International Conference on Mechanical, Electric and Industrial Engineering (ICMEIE) [C]. IOP Publishing Ltd, 2021,1983(1):012038.

[7] Zhiyong Li,Lingying Zhao, Min Ye. Heat Transfer of Aggregate in a Drying Drum Based on the Multi-Scale Model and Fluid-Solid Coupling[J]. International Journal of Computational Fluid Dynamics, 2022, 36(06): 506-517.(SCI)

[8] Hairong Gu,Lingying Zhao, Min Ye, et al. Study on the Deformation of Pavement Structure with Multiplex Organic Hydraulicity Mixture under Driving Load Based on Simulation and Experiment[J]. Advances in Materials Science and Engineering, 2021, 2021: 7073229. (SCI)

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