基本信息:
英姿,女,博士,教授,博士生导师,交通学院地下工程系教师
办公地点:东南大学九龙湖校区交通学院614室
电子邮箱:yingzi19520@seu.edu.cn
人物详情:
英姿,山东临沂人,东南大学青年首席教授,博士生导师,国家级青年人才项目(海外)入选人。研究方向为岩土材料基本性质与多场多尺度分析理论、可持续交通岩土工程材料与长效服役。土质文物遗产保护与文物岩土。现为中国岩石力学与工程学会会员、中国公路学会会员、中国土木工程学会土力学及岩土工程分会青年工作委员会委员、南京土木建筑学会会员;受邀担任earth science和journal of computer methods in civil engineering期刊编委,journal of marine environmental engineering、deep underground science and engineering、《防灾减灾工程学报》和《中外公路》青年编委;同时担任canadian geotechnical journal、journal of rock mechanics and geotechnical engineering、acta geotechnica、journal of cleaner production等多个国际权威期刊审稿人。
教育背景:
(1)2017.11-2021.09,法国国立路桥大学,岩土工程,博士
(2)2015.09-2017.09,东南大学,交通运输工程,硕士
(3)2011.09-2015.06,中国海洋大学,环境工程,学士
工作经历:
(1)2023.12-至今,东南大学,教授,博士生导师
(1)2022.06-2023.12,东南大学,上岗副研究员,硕士生导师
(2)2021.10-2022.03,艾克斯马赛大学-inrae地质力学实验室,博士后
主要研究方向:
岩土材料基本性质与多场多尺度分析理论
可持续交通岩土工程材料与长效服役
土质文物遗产保护与文物岩土
部分承担课题:
(1)国家海外高层次青年人才项目:岩土材料多场耦合特性及服役性能,在研,主持,2024.01-2026.12,在研,主持;
(2)国家自然科学基金-青年科学基金项目:电石渣激发炉底渣改良过湿土机制与长期服役性能,2024.01-2026.12,在研,主持;
(3)中央高校基本科研业务费专项资金资助:考虑气候影响的石灰改良土水-力学耦合模型研究,2022.06-2022.12,在研,主持;
(4)江苏省交通运输重点科技项目:连云港海相软土地区路基长期服役性能与碳固提升技术,2022.07-2025.07,在研,主持;;
(5)法国国家环境研究院(inrae)基金项目:干湿循环和海水入侵对石灰改良土堤坝剪切强度影响的研究,2021.10-2022.03,已结题,研究骨干;
(6)法国国家基金项目:极端环境作用下法国海岸线堤坝建设及耐久性研究,2017.10-2021.09,已结题,研究骨干。
代表性学术论文(*通讯作者):
(1) ying zi*, benahmed nadia, cui yu jun, duc myriam. (2022). wetting-drying cycle effect on the compressibility of lime-treated soil accounting for wetting fluid nature and aggregate size. engineering geology, doi.org/10.1016/j.enggeo.2022.106778. (jcr q1)
(2) ying zi*, benahmed nadia, cui yu jun, duc myriam. (2022). determining osmotic suction through electrical conductivity for unsaturated low-plasticity soils. journal of rock mechanics and geotechnical engineering, doi.org/10.1016/j.jrmge.2021.12.020. (jcr q1).
(3) ying zi*, cui yu jun, duc myriam, benahmed nadia. (2022). effect of salt solution on the optimum lime contents of bentonite and silt. acta geotechnica. doi.org/10.1007/s11440-022-01488-7. (jcr q1)
(4) ying zi, cui yu jun*, benahmed nadia, duc myriam. (2021). drying effect on the microstructure of compacted salted silt. géotechnique, doi.org/10.1680/jgeot.20.p.319. (jcr q1)
(5) ying zi, cui yu jun*, duc myriam, benahmed nadia, bessaies-bey hela, chen bo. (2021). salinity effect on the liquid limit of soils. acta geotechnica, 16(4), 1101-1111. doi: 10.1007/s11440-020-01092-7. (jcr q1)
(6) ying zi*, cui yu jun, benahmed nadia, duc myriam. (2021). changes in microstructure and water retention property of a lime treated saline soil during curing. acta geotechnica, doi: org/10.1007/s11440-021-01218-5. (jcr q1)
(7) ying zi, cui yu jun*, benahmed nadia, duc myriam. (2021). salinity effect on the compaction behaviour, matric suction, stiffness and microstructure of a silty soil. journal of rock mechanics and geotechnical engineering, 13(4), 855-863. doi: org/10. 1016/j. jrmge.2021.01.002. (jcr q1)
(8) ying zi, cui yu jun*, benahmed nadia, duc myriam. (2021). changes of small strain shear modulus and microstructure for a lime-treated silt subjected to wetting-drying cycles. engineering geology, 293: 106334. doi.org/10.1016/j.enggeo.2021.106334. (jcr q1)
(9) ying zi*, cui yu jun, benahmed nadia, duc myriam. (2021). investigating the salinity effect on water retention property and microstructure changes along water retention curves for lime-treated soil. construction and building materials, 303: 124564. doi.org/10.1016/j.conbuildmat. 2021.124564. (jcr q1)
(10)ying zi, duc myraim*, cui yu jun, benahmed nadia. (2021). salinity assessment for salted soil considering both dissolved and precipitated salts. geotechnical testing journal, 44(1):130-147. doi: org/10.1520/gtj20190301. (jcr q2)