职 称:副教授
所属部门:地质工程教研室
研究方向:黄土泥流相变动力学、岩土体流变学、地质灾害成灾机理与防控技术
电子邮箱:dzwang@nwu.edu.cn
一、个人简介
王道正,男,工学博士,地质学系地质工程专业,副教授,国家一级建造师。
教育经历:
2020.09 - 2023.07 西北大学 地质工程 博士;
2014.09 - 2017.07 中国科学院成都山地灾害与环境研究所 建筑与土木工程 硕士;
2010.09 - 2014.07 西安科技大学 地质工程 本科;
工作经历:
2026.05- 西北大学 地质工程专业 副教授;
2023.07 - 2026.05 西北大学 地质工程专业 博士后/讲师;
2017.08 - 2020.08 陕西工程勘察研究院有限公司 地质灾害勘察设计 项目负责人。
二、科研情况
2.1 学术论文
[1] Wang Daozheng, Wang Xingang, Zhan Hongbin, Huang Qiangbing, Wang Jiading, Lian Baoqin, Wang Fei. Experimental study on the failure pattern of loess mudflow and its critical conditions [J]. Bulletin of Engineering Geology and the Environment, 2026.
[2] Wang Daozheng, Wang Xingang, Chen Xiaoqing; Huang Qiangbing,. Continuous solid‐fluidization transition mechanism of loess mudflow: Insights from laboratory experiments and implications for geophysical processes. Journal of Geophysical Research: Earth Surface, 2025, 130, e2024JF008123.
[3] Wang Daozheng, Wang Xingang, Chen Xiaoqing; Huang Qiangbing, Wang Jiading. Solid–fluid phase transition characteristics of loess and its drag reduction mechanism [J]. Landslides,2024.
[4] Wang Daozheng, Wang Xingang, Chen Xiaoqing, Wang Jiading, et al. "Laboratory flume experiments on the characteristics of large wood accumulations from debris flow and the backwater rise at slit-check dams". Landslides 19.9 (2022): 2135-2148.
[5] Wang Daozheng, Wang Xingang, Chen Xiaoqing et al. " Influence of micromorphology and water content on the rheological properties and performance evaluation model of loess mudflow". Physics of Fluids (2024): 2135-2148.
[6] Wang Daozheng, Wang Xingang, Chen Xiaoqing, Wang Jiading, et al. "Analysis of factors influencing the large wood transport and block-outburst in debris flow based on physical model experiment". Geomorphology 398 (2022): 108054.
[7] Wang Daozheng, Baoqin Lian, Wang Xingang, Chen Xiaoqing, et al. "Influence of rheological characteristics on the fluidization catastrophe of tailings flows". Journal of Mountain Science, 2023.
[8] Zhang Nan, Wang Daozheng*, Wang Xingang, et al. "Study on movement characteristics and occurrence mechanism of seismic-induced high-position landslide debris flows". Physics of Fluids (2025).
[9] Lian Baoqin, Wang Daozheng*. "Early Identification and Dynamic Stability Evaluation of High-Locality Landslides in Yezhi Site Area, China by the InSAR Method." Land 13, no. 5 (2024): 569.
[10] Chen Jiangang, Wang Daozheng, et al. "Laboratory study on the characteristics of large wood and debris flow processes at slit-check dams." Landslides 17 (2020): 1703-1711.
[11] Zhao, A., Wang, X., Wang, D., Hu, S., Liu, K., Lian, B., & Cao, Y. (2026). Formation of a typical landslide-debris flow disaster chain induced by rainstorm. Journal of Rock Mechanics and Geotechnical Engineering.
[12] Ai, Z., Wang, X., Wang, D., Liu, K., Yao, Z., Gu, C., & Li, J. (2026). Investigation on the role of waste water-based drilling geopolymer in improving the properties of loess: an experimental insight. Bulletin of Engineering Geology and the Environment, 85(2), 97.
[13] Ai, Z., Wang, X., Wang, D., Qi, Y., Wang, Z., Liu, K., ... & Ye, X. (2025). Improvement of Aeolian Sand Using Guar Gum: Mechanical Behavior, Plant Growth Response, and Microstructural Evaluation. Geotechnical and Geological Engineering, 43(7), 375.
[14] Yang, J., Wang, X., Hu, S., Wang, D., Lian, B., Xue, C., & Liu, K. (2025). Controlling effect of sliding zone soil on rainfall‐triggered colluvial landslide in Qinling‐Bashan Mountains–A typical case study. Earth Surface Processes and Landforms, 50(9), e70134.
[15] Luo, L., Wang, X., Lian, B., Wang, D., Xue, C., & Liu, K. (2026). Shear creep characteristics and constitutive model of loess under dry-wet cycles. Geomorphology, 110344.
[16] Xue, C., Wang, X., Huang, Q., Lian, B., Wang, D., & Liu, K. (2026). Formation mechanism and failure modes of loess-mudstone landslides in fault-active regions of the southern loess plateau of China: Xue et al. Landslides, 23(3), 575-594.
[17] Liu, K., Wang, X., Lian, B., Hu, S., Wang, D., Xue, C., ... & Ye, X. (2025). Triaxial creep characteristics of undisturbed loess under freeze-thaw cycles and its induced landslide mechanism. Acta Geotechnica, 20(11), 5543-5563.
[18] Xu, C., Wang, X., Liu, K., Xin, P., Wang, D., Lian, B., ... & Gu, C. (2025). Study on the development characteristics and mechanisms of typical loess disaster chains in coal resource bases of the Yellow River “Ji-shaped Bend” region, China. Engineering Geology, 108461.
[19] Wang Xingang, Hu Sheng, Lian Baoqin, Wang Jiading, Zhan Hongbin, Wang Daozheng. Formation mechanism of a disaster chain in Loess Plateau: A case study of the Pu cheng County disaster chain on August 10, 2023, in Shaanxi Province, China [J]. Engineering Geology, 2024, 331: 107463
[20] Xue Chen, Wang Xingang, Lian Baoqin, Wang Daozheng. Formation mechanism of loess-mudstone landslides in the Weibei Tableland Fault Active Zone of Baoji, China-Taking Wolongsi landslide as an example. Geomorphology, 2024, 460, 109284.
[21] Liu Kai, Wang Xingang, Zhan Hongbin, Lian Baoqin, Xue Chen, Hu Sheng, Wang Daozheng. An experimental study of creep characteristics of fissured loess based on triaxial tests. CATENA, 2025. 250, 108768.
[22] Luo Li, Wang Xingang, Xue Chen, Wang Daozheng. "Laboratory experiments and numerical simulation study of composite-material-modified loess improving high-speed railway subgrade." Polymers 14.15 (2022): 3215.
[23] Hu Sheng, Wang Xingang Wang Ninglian Yang Dongdong Wang Daozheng. "Dynamic process, influence, and triggering mechanism of slope remodelling by landslide clusters in the South Jingyang Tableland, China." CATENA 217 (2022): 106518.
[24] Ma, S., Qiu, H., Zhu, Y., Yang, D., Tang, B., Wang, D., ... & Cao, M. (2023). Topographic changes, surface deformation and movement process before, during and after a rotational landslide. Remote Sensing, 15(3), 662.
[25] Yu, X., Chen, X., Chen, J., & Wang, D. (2018). Impulsive forces distribution along the sediment storage dam upstream face for different mud–rock flow unit weight. Environmental Earth Sciences, 77(5), 169.
[26] 王新刚, 王道正*, 王家鼎, 黄强兵. 黄土高原泥流灾变机理研究进展与发展趋势[J]. 西北地质, 2025, 58(2): 1-16.
[27] 王道正, 陈晓清, 罗志刚, 等. 不同颗粒级配条件下堰塞坝溃决特征试验研究[J]. 防灾减灾工程学报, 2016, 36(5): 827-833.
[28] 王道正, 陈晓清, 等. 泥石流中漂木的运动和拦截特征[J]. 中国水土保持科学, 2017, 15(6).
2.2 科研项目
[1] 国家自然科学基金青年基金项目,基于流变特性黄土泥流“固-液”相变机制与临界判据研究,2026.1-2028.12, 主持;
[2] 陕西省自然科学基金项目,黄土泥流起动中“固-液”相态转化流变机理研究,2025.1-2026.12, 主持;
[3] 西部矿产资源与地质工程重点实验室基金项目,黄土泥流相态转化的流变特性及其临界判据研究,2025.1-2026.12, 主持;
[4] 国家重点研发计划课题,黄土高原基础设施密集区重大链生灾害时空演化与成灾放大效应,2023.11-2026.10,骨干;
[5] 国家重大科研仪器研制项目,黄土振动促渗测试系统研制,2021.1 -2025.12,参与;
[6] 国家重点研发计划,黄土滑坡失稳机理、防控方法研究与防治示范-地震诱发黄土滑坡灾害效应与风险评估,2018/12-2021/12,参与。
2.3 专利
[1] 王道正, 陈晓清, 赵万玉, 陈建刚, 胡凯, 王飞. 一种用于防治漂木泥石流的单切口坝切口宽度设计方法, CN107133423A.(中国发明专利)
[2] 王新刚, 王道正, 王家鼎, 连宝琴, 薛晨, 刘凯, 罗力. 一种考虑增湿作用的黄土三轴剪切蠕变仪及试验方法, ZL202111030296.8. (中国发明专利)
[3] 王新刚, 王道正, 陈晓清, 王家鼎, 王飞, 屈飞行. 一种漂木泥石流峰值流量的测算方法, ZL202011257651. (中国发明专利)
[4] 王新刚, 王道正, 王家鼎, 闫渊, 李晓莉, 连宝琴, 薛晨. 一种地质灾害识别与演化智能感知预警系统及方法, CN202211460703.3. (中国发明专利)
[5] 王道正, 史进昌, 万通, 王葵颖, 马宁, 一种组装式煤矸石型泥石流拦挡坝, CN213538867U. (中国实用新型专利)
[6] 王道正, 陈晓清, 赵万玉, 陈剑刚, 王飞, 一种环板消能型全衬砌泥石流排导槽. CN205296075U. (中国实用新型专利)
[7] 王新刚, 罗力, 王道正, 连宝琴, 薛晨, 刘凯.一种改良黄土路基填料及其对路堤本体进行施工的方法. CN115417644A(中国发明专利)
[8] 陈剑刚, 游勇, 陈晓清, 赵万玉, 陈华勇, 胡凯, 王道正. 一种冰湖溃决型泥石流的防治方法及其应用, 2016106305229. (中国发明专利)
[9] 陈剑刚, 陈晓清, 赵万玉, 游勇, 胡凯, 王道正. 一种非对称式泥石流排导槽的设计方法和应用, 2016103211785. (中国发明专利)
[10] Chen, J., Chen, X., You, Y., Hu, K., & WANG, D. (2020). U.S. Patent No. 10,738,429. Washington, DC: U.S. Patent and Trademark Office.
三、科研奖励
[1] 陕西省优秀博士论文;
[2] 共青团陕西省委秦岭生态科学考察项目特等奖(R2)
[3] 陕西省岩土力学与工程学会优秀博士学位论文一等奖;
[4] 西北大学优秀博士学位论文;
四、学术兼职
[1] 国家一级建造师;
[2] 陕西省岩土力学与工程学会理事会理事;
[3] 中国灾害防御协会会员;
[4] 《西北地质》青年编委;