个人资料
个人简介王海曼,男,河南周口人。 博士毕业于长安大学,导师为倪万魁教授。 现为长安大学地测学院讲师,博士后,合作导师为彭建兵院士。 以第一作者/通讯作者在国内外高水平期刊发表SCI/EI发表学术论文20余篇 欢迎各位老师同学开展交流合作(邮箱:haiman_wang@chd.edu.cn) —————————————————————————————————— 期待与非饱和黄土力学、黄土改良、古气候重建、生态地质、本构模型、数值方法分析及相关方向的同学和老师交流! 社会职务SCI期刊《Bulletin of Engineering Geology and the Environment》审稿人 SCI期刊《Soil and Tillage Research》审稿人 SCI期刊《Catena》审稿人 SCI期刊《PLOS ONE》审稿人 CSCD期刊《工程地质学报》审稿人 核心期刊《科技通报》青年编委 研究领域1. 非饱和黄土力学 2. 黄土改良 3. 黄土高原古气候重建 4. 生态地质 开授课程科研项目【主持】 中央高校基本科研业务费专项资金基础研究培育项目,2025-2026,5万 【参与】 国家自然科学基金重点项目,黄土重大工程的水文循环响应与孕灾效应研究,2020-2024,305万 论文以第一作者或通讯作者发表论文如下: [2]Wang Haiman, Liao Dong, Ni Wankui, Yuan Kangze, Ren Siyuan, Guo Yexia (2024) New insights and modeling of the evolution of loess infiltration characteristics under multiple rainfalls induced by climate on the Loess Plateau of China. Engineering Geology:107858. (中科院一区) [3]Wang Haiman, Liao D, Ni W, Yuan K, Guo Y (2025) Shear behavior of intact loess and spatio-temporal evolution of mesoscopic damage: Dynamic identification using CT technology. Journal of Rock Mechanics and Geotechnical Engineering. (中科院一区) [4]Wang Haiman, Ni W, Liu H, Yuan K, Guo Y (2025) Collapsibility of loess-paleosol sequence as a novel climatic indicator: Insights from Luochuan profile. Catena 249:108659. (中科院一区) [6]Wang Haiman, Ni W, Liu H, Yuan K (2023) The impact of paleoclimatic on the structural strength of loess paleosol sequences and its implications for tillage on the Loess Plateau: A case study from Luochuan profile. Soil and Tillage Research 236:105939. (中科院一区) [7]Wang Haiman, Ni W, Yuan K, Ren S (2024) An experimental study on the behavior of loess-clay mixtures upon wetting and its implications for tillage on the Loess Plateau. Soil and Tillage Research 240:106071.(中科院一区) [8]Ren S, Wang Haiman*, Ni W, Wu B (2024) A New One-dimensional Consolidation Creep Model for Clays. Computers and Geotechnics 169:106214. (中科院一区) [9]Liao D, Wang Haiman*, Wang S, Pan K (2024) A hypoplastic model for sand-fines mixtures. Computers and Geotechnics 172:106421. (中科院一区) [10]Yuan K, Wang Haiman*, Ni W, Ren S, Guo Y (2025) New insights into the dynamic changes of loess collapsibility under climate-induced wetting–drying cycles: A case study of the loess Plateau of China. Catena 250:108782. (中科院一区) [11]Ren S, Wang Haiman*, Ni W, Shen A (2025) Deformation characteristics and influencing factors of loess fill foundation based on InSAR technique. Engineering Geology 353:108098. (中科院一区) [12]Wang Haiman, Ni W (2023) Soil-water retention behavior of a loess-paleosol sequence and its significance for hydrology and paleoclimate: A case study from the Luochuan profile of the Loess Plateau, China. Canadian Geotechnical Journal 61:700-716. (中科院二区) [13]Wang Haiman, Ni W (2023) Response and prediction of unsaturated permeability of loess to microstructure. Geomechanics and Geophysics for Geo-Energy and Geo-Resources 9:12. (中科院二区) [14]Wang Haiman, Ni W, Yuan K, Nie Y, Li L (2023) Study on SWCC and PSD evolution of compacted loess before and after drying-wetting cycles. Bulletin of Engineering Geology and the Environment 82:180. (中科院二区) [15]Wang Haiman, Ni W, Liu H, Huang M, Yuan K, Li L, Li X (2021) Study of the repeated collapsibility of undisturbed loess in Guyuan, China. Bulletin of Engineering Geology and the Environment 80:6321-6330. (中科院二区) [16]Wang Haiman, Ni W, Yuan K, Li L, Nie Y, Guo Y (2021) Microstructure evolution of loess under multiple collapsibility based on nuclear magnetic resonance and scanning electron microscopy. Journal of Mountain Science 18:2612-2625. [17]Wang Haiman, Ni W, Li X, Li L, Yuan K, Nie Y (2021) Predicting the pore size distribution curve based on the evolution mechanism of soil–water characteristic curve. Environmental Earth Sciences 81:23. [18]Wang Haiman, Ni W, Yuan K (2023) A novel modeling method for soil water retention curve considering soil deformation and its application. Environmental Earth Sciences 82:324. [19]Wang Haiman, Ni W, Yuan K (2023) Prediction method of soil–water characteristic curve and suction stress characteristic curve based on void ratio: a case study of Yanan compacted loess. Environmental Earth Sciences 82:272. [20]Wang Haiman, Ni W, Yuan K (2023) Improvement of strength and impermeability of fiber-reinforced loess by bentonite and polypropylene fibers: a response surface analysis. Environmental Earth Sciences 82:252. [21]王海曼, 倪万魁 (2022) 不同干密度压实黄土的饱和/非饱和渗透系数预测模型. 岩土力学 43:729-736. [22]王海曼, 倪万魁, 刘魁 (2022) 延安压实黄土土-水特征曲线的快速预测方法. 岩土力学 43:1845-1853. [23]Wang Haiman, Ni W., Yuan K. (2024). Effect of Different Factors on Dynamic Shear Modulus of Compacted Loess. In: Wu, W., Wang, Y. (eds) Recent Geotechnical Research at BOKU. Springer Series in Geomechanics and Geoengineering. Springer, Cham. 科技成果荣誉奖励Ø 2018-2019学年 国家奖学金 Ø 2019-2020学年 长安大学博士研究生一等奖学金 Ø 2019-2020学年 长安大学优秀研究生 Ø 2019-2020学年 长安大学优秀研究生干部 Ø 2019-2020学年 长安大学优秀团员 Ø 2019-2020学年 长安大学暑期社会实践先进个人 Ø 2020-2021学年 长安大学博士研究生一等奖学金 Ø 2020-2021学年 长安大学优秀班干部 Ø 2021-2022学年 国家奖学金 Ø 2021-2022学年 获得“国家建设高水平大学公派研究生项目”联合培养博士生资格 工作经历2024.09-至今 长安大学 讲师 2024.09-至今 长安大学 博士后 |