许健
教授
- xujian@xauat.edu.cn
教授
1.教育背景 2005-09至2010-07,中国科学院寒区旱区环境与工程研究所,岩土工程,硕博连读,博士2001-09至2005-07, 州大学,地质工程,学士 2.工作履历 2010-09至今,西安建筑科技大学,土木工程学院,教师 2019-09至2020-10,加拿大渥太华大学,土木工程系,访问学者 3.主讲课程 特殊土地基及处理、岩土工程案例教学、土力学、工程地质学、湿陷性黄土地基
特殊土力学与工程、环境岩土工程、路基路面工程
1.学术兼职 (1)SCI检索期刊《Buildings》编委 (2)SCI检索期刊《Advances in Civil Engineering》编委 (3)EI检索期刊《工程科学与技术》青年编委 (4)《中外公路》青年编委 (5)《长沙理工大学学报(自然科学版)》青年编委 (6)《市政技术》编委 (7)《宁夏工程技术》编委 (8)《Advances in Civil Engineering》特殊土与非饱和土力学专刊主编 (9)陕西省岩土力学与工程学会常务理事 (10)陕西省岩土力学与工程学会环境岩土工程专业委员会主任委员 (11)世界交通运输大会(WTC)路基工程防灾减灾技术委员会委员 (12)中国工程建设标准化协会湿陷性黄土专业委员会委员 (13)土力学及岩土工程分会非饱和土与特殊土专业委员会委员 (14)土力学及岩土工程分会地基处理专业委员会委员 (15)土力学及岩土工程分会交通岩土工程学术委员会委员 (16)陕西省公路学会工程地质和岩土分会委员 (17)陕西省土木建筑学会土力学与地基基础专业委员会委员 (18)中国岩石力学与工程学会环境岩土工程分会青年工作委员会委员 (19)国际土力学与岩土工程学会(ISSMGE)会员 (20)中国公路学会高级会员 (21)中国岩石力学与工程学会会员 2.承担项目与课题 (1)主持国家自然科学基金面上项目“渗流作用下节理发育黄土窑洞灾变机理及防治技术研究”(52378366),2024.01-2027.12. (2)主持国家自然科学基金面上项目“受地震荷载扰动裂隙性黄土崩塌灾害发生机理及评估方法研究”(51878551),2019.01-2022.12. (3)主持国家自然科学基金面上项目“黄土地区盐蚀型崩塌灾害发生机理及预测判据研究”(51478385),2015.01-2018.12. (4)主持国家自然科学基金青年项目“黄土地区边坡冻融灾害发生机理及防治对策研究”(51208409),2013.01-2015.12. (5)主持陕西省自然科学基础研究计划重点项目—前沿探索项目需求牵引类“多元固废基胶凝材料改良湿陷性黄土制备充填材料的基础理论与关键技术研究”(2025JC-QYXQ-022),2025.01-2027.12. (6)主持陕西省技术创新引导计划—秦创原“科学家+工程师”队伍建设项目“镁渣基流态固化土关键技术研发与工程应用”(2025QCY-KXJ-085),2025.01-2027.12. (7)主持青海省自然科学基金面上项目“多年冻土区高等级公路沥青路面光热效应及其反射降温方法研究” (2024-ZJ-916),2024.01-2026.12. (8)主持新疆生产建设兵团十二师重点领域科技攻关计划项目“工业固废固沙提高路用性能关键技术研究与应用”(SRS2023004),2023.09-2025.08. (9)主持陕西高校青年创新团队 “西北特殊土工程与防灾创新团队”,2023.01-2026.12. (10)主持陕西省教育厅专项科研计划项目“黄土地区边坡冻融稳定性研究”(12JK0914),2012.07-2014.07. (11)主持西安建筑科技大学人才基金项目“季节冻土区路基翻浆过程数值预测研究”,2010.09-2013.09. (12)主持陕西建材科技集团股份有限公司委托科研项目“钢渣基固废高性能注浆材料研究与应用”,2022.11-2024.12. (13)主持中国电建集团青海省电力设计院有限公司委托科研项目“盐湖地区铁塔基础全固废低碳防腐高性能混凝土关键技术研究”,2023.04-2024.12. (14)主持西北电力设计院委托科研项目“冻土地区输电线路基础抗拔作用机理及承载力数值分析”, 2014.04-2015.04. (15)主持西北电力设计院委托科研项目“粗颗粒盐渍土地质条件下输电线路基础抗拔设计关键技术研究”, 2015.10-2016.11. (16)主持西北电力设计院委托科研项目“粗颗粒盐渍土数字仿真及室内试验研究”, 2016.11-2017.04. (17)主持“一带一路”沿线国家重大工程技术服务项目“多震山区公路典型地质灾害处理及高边坡防治”,2016.05-2017.05. (18)主持陕西省地方电力设计研究院委托科研项目“土方量计算方法探讨及软件应用研究”, 2016.06-2016.12. (19)国家自然科学基金面上项目“裂隙扩展作用下黄土高填方地基服役性能劣化机理研究”(52178302), 2022.01-2025.12,主要参加人,本人排名第二。 (20)国家自然科学基金面上项目“黄土高原地震次生滑坡灾害发生机理及评估方法研究”(51278397), 2013.01-2016.12,主要参加人,本人排名第三。 (21)国家自然基金青年项目“污染黄土边坡浅层致灾机理及失效判据研究 ”(51608436),2017.01-2019.12,主要参加人,本人排名第二。 (22)陕西省自然科学基础研究计划项目“西部山区斜坡地带输电线路桩基础通风调控地温机理研究”(2018JQ5003),2018.01-2019.12,主要参加人,本人排名第二。 (23)陕西省自然科学基础研究计划项目“西部高海拔地区岩质边坡变形破坏机理研究”(2019JQ756),2019.01-2020.12,主要参加人,本人排名第三。 (24)陕西省教育厅专项科研计划项目“坡顶张拉裂隙形态演变过程及其对黄土边坡崩滑机制影响研究”(18JK0478),2018.01-2019.12,主要参加人,本人排名第二。
1.论文 (1)许健,栾桂涛。黄土地区边坡冻融灾害发生机理研究[M]。北京:科学出版社,2018。 (2)许健,王松鹤。冻融作用下黄土盐蚀型崩塌灾害发生机理研究[M]。北京:科学出版社,2023。 (3)许健,武智鹏。玄武岩纤维加筋黄土力学行为研究[M]。北京:中国建筑工业出版社,2023。 (4)Jian Xu*, Yanfeng Li, Chang Ren, SongheWang, Sai K. Vanapalli, Guoxin Chen. Influence of freeze-thaw cycles on microstructure and hydraulic conductivity of saline intact loess [J]. Cold Regions Science and Technology, 2021, 181: 103183. DOI: 10.1016/j.coldregions.2020.103183. (ESI热点与高被引论文) (5)Jian Xu*, Zhipeng Wu, Hui Chen, Longtan Shao, Xiangang Zhou, Songhe Wang. Triaxial Shear Behavior of Basalt Fiber-Reinforced Loess Based on Digital Image Technology [J]. KSCE Journal of Civil Engineering, 2021, 25(10): 3714-3726. DOI: 10.1007/s12205-021-2034-1. (ESI热点与高被引论文) (6)ian Xu*, Zhipeng Wu, Hui Chen, Longtan Shao, Xiangang Zhou, Songhe Wang. Influence of dry-wet cycles on the strength behavior of basalt-fiber reinforced loess [J].Engineering Geology, 2022, 302: 106645. DOI: 10.1016/j.enggeo.2022.106645. (ESI高被引论文) (7)ian Xu*, Liyang Zhou, Yanfeng Li, Jiulong Ding, SongheWang, Wen-Chieh Cheng. Experimental Study on Uniaxial Compression Behavior of Fissured Loess Before and After Vibration [J]. ASCE International Journal of Geomechanics, 2022, 22(2): 04021277. DOI: 10.1061/(ASCE)GM.1943-5622.0002259. (ESI高被引论文) (8)Jian Xu*, Liyang Zhou, Ke Hu, Yanfeng Li, Xiangang Zhou, SongheWang. Influence of Wet-Dry cycles on Uniaxial Compression Behavior of Fissured Loess Disturbed by Vibratory Loads [J]. KSCE Journal of Civil Engineering, 2022, 26(5):2139-2152. DOI: 10.1007/s12205-022-1593-0. (ESI高被引论文) (9)ian Xu*, Wei Lan, Chang Ren, Xiangang Zhou, Songhe Wang, Jun Yuan. Modeling of coupled transfer of water, heat and solute in saline loess considering sodium sulfate crystallization [J]. Cold Regions Science and Technology, 2021, 189: 103335. DOI: 10.1016/j.coldregions.2021.103335. (ESI高被引论文) (10)Jian Xu*, Zhipeng Wu, Hui Chen, Longtan Shao, Xiangang Zhou, Songhe Wang. Study on Strength Behavior of Basalt Fiber‑Reinforced Loess by Digital Image Technology (DIT) and Scanning Electron Microscope (SEM) [J]. Arabian Journal for Science and Engineering,2021,46(11):11319-11338.DOI: 10.1007/s13369-021-05787-1. (ESI高被引论文) (11)Zhipeng Wu, Jian Xu*, Yanfeng Li, Songhe Wang. Disturbed State Concept-Based Model for the Uniaxial Strain-Softening Behavior of Fiber-Reinforced Soil [J]. ASCE International Journal of Geomechanics, 2022, 22(7):04022092. DOI: 10.1061/(ASCE)GM.1943-5622.0002415. (ASCE editor choice paper, ESI高被引论文, corresponding author) (12)Zhipeng Wu, Jian Xu*, Hui Chen, Longtan Shao, Xiangang Zhou, Songhe Wang. Shear strength and mesoscopic characteristics of basalt fiber reinforced loess after dry-wet cycles [J]. ASCE Journal of Materials in Civil Engineering, 2022, 34(6):04022083. DOI: 10.1061/(ASCE)MT.1943-5533.0004225. (ESI高被引论文, corresponding author) (13)Wen-Chieh Cheng, Ge Li, Nina Liu, Jian Xu*, et al. Recent massive incidents for subway construction in soft alluvial deposits of Taiwan: A review [J]. Tunneling and Underground Space Technology, 2020, 96:103178. DOI: 10.1016/j.tust.2019.103178. (ESI高被引论文) (14)Mengqi Wang, Jian Xu*, Tao Li, Hui Liu, Lei Qu. Comprehensive Performance Evaluation of Steel Slag–Slag–Desulfurization Gypsum Ternary Solid Waste Cementitious Material Based on Principal Component Analysis [J]. buildings, 2025, 15:645. DOI: https://doi.org/10.3390/buildings15040645. (SCI, corresponding author) (15)Zhipeng Wu, Jian Xu*, Henghui Fan, Liang Li, Guochen Wang, Songhe Wang. Investigation of tensile strength and deformation behaviors of basalt fiber-reinforced loess subjected to dry-wet cycles [J]. Bulletin of Engineering Geology and the Environment, 2025, 84:2. DOI: 10.1007/s10064-024-04028-7. (SCI, corresponding author) (16)Jian Xu*, Xihu Li, Yonghao Liu, Zihan Li, Songhe Wang. Evaluation of wind erosion resistance of EICP solidified desert sand based on response surface methodology [J]. Construction and Building Materials, 2024, 447:138119. DOI: 10.1016/j.conbuildmat.2024.138119. (SCI) (17)Mengqi Wang, Jian Xu*, Xuejing Zhang, Longzhen Tan, Yuan Mei. Mechanical Performance Optimization and Microstructural Mechanism Study of Alkali-Activated Steel Slag-Slag Cementitious Materials [J]. buildings, 2024, 14:1204. DOI: 10.3390/buildings14051204. (SCI, corresponding author) (18)Jian Xu*, Lili Zhang, Yunfan Li, Zihan Li, Yujie Zhao. Mechanical, mineralogical, and microstructural characterization of collapsible loess cured by NaOH solution [J]. Construction and Building Materials, 2024, 421:135678. DOI: 10.1016/j.conbuildmat.2024.135678. (SCI) (19)Zhipeng Wu, Jian Xu*, Henghui Fan, Liang Li, Yuyang Ji, Songhe Wang. Experimental study on dry-wet durability and water stability properties of fiber-reinforced and geopolymer-stabilized loess [J]. Construction and Building Materials, 2024, 418:135379. DOI: 10.1016/j.conbuildmat.2024.135379. (SCI, corresponding author) (20)Jian Xu*, Zhipeng Wu, Minghui Zhang, Weihang Ye, Songhe Wang. Unconfined compression behavior of basalt fiber reinforced loess based on digital image correlation and scanning electron microscope [J]. Bulletin of Engineering Geology and the Environment, 2023, 82: 396. DOI: 10.1007/s10064-023-03424-9. (SCI) (21)Yanfeng Li, Jian Xu*, Zefeng Wang, Bao Wang. Experimental Study on Microstructure and Hydraulic Performance of Bentonite Modified Loess [J]. KSCE Journal of Civil Engineering, 2023, 27(7):2778-2791. DOI: 10.1007/s12205-023-0868-4. (SCI, corresponding author) (22)Jian Xu*, Zhipeng Wu, Lili Zhang, Caihui Zhu. Influence of Dry-Wet Cycles on Uniaxial Compression Behavior of Basalt Fiber-Reinforced Loess Facilitated by 3D-DIC Technique [J].International Journal of Civil Engineering, 2023, 21: 1553-1566. DOI: 10.1007/s40999-023-00831-7. (SCI) (23)Jian Xu*, Zhilang You, Fei Sun, Yanfeng Li, Jianjun Cheng, Lei Qu. Experimental study on the deterioration characteristics of the remolded loess with Na2SO4 under freezing-thawing cycles [J]. Cold Regions Science and Technology, 2023, 210: 103818. DOI: 10.1016/j.coldregions.2023.103818. (SCI) (24)Lili Zhang, Jian Xu*, Zhipeng Wu, Yujie Zhao, Tiehang Wang. Cylindrical diffusion model and parameter optimization for NaOH solution reinforcement of collapsible loess [J].Computers and Geotechnics, 2023, 158: 105376. DOI: 10.1016/j.compgeo.2023.105376. (SCI, corresponding author) (25)Jian Xu*, Yanfeng Li, Bao Wang, Zefeng Wang, Songhe Wang. Microstructure and Permeability of Bentonite-Modified Loess after Wetting–Drying Cycles [J]. ASCE International Journal of Geomechanics, 2023, 23(5): 04023052. DOI: 10.1061/IJGNAI.GMENG-7726. (SCI) (26)Jian Xu*, Ke Hu, Liyang Zhou, Yanfeng Li, Weihang Ye, Songhe Wang. Influence of wet–dry cycles on uniaxial compression behavior of fissured loess [J]. Environmental Earth Sciences, 2023, 82:5. DOI: 10.1007/s12665-022-10684-3. (SCI) (27)Songhe Wang, Xiangang Zhou, Sheng Wang, Jian Xu*, Jiulong Ding. Freezing point of sodium sulfate loess in check dams after freeze-thaw [J]. Cold Regions Science and Technology, 2023, 205:103719. (SCI, corresponding author) (28)Ze-Lin Niu, Jian Xu*, Yan-Feng Li, Ze-Feng Wang, Bao Wang. Strength deterioration mechanism of bentonite modified loess after wetting–drying cycles [J]. Scientific Reports, 2022, 12:3130. DOI: 10.1038/s41598-022-06962-6. (SCI, corresponding author) (29)Jian Xu*, Chang Ren, SongheWang, Jingyu Gao, Xiangang Zhou. Permeability and Microstructure of a Saline Intact Loess after Dry-Wet Cycles [J]. Advances in Civil Engineering, Volume 2021, Article ID 6653697, 18 pages. DOI: 10.1155/2021/6653697. (SCI) (30)Jian Xu*, Yanfeng Li, Songhe Wang, et al. Cement-Improved Wetting Resistance of Coarse Saline Soils in Northwest China [J].Journal of Testing and Evaluation, 2021, 49(1): 229-254. DOI: 10.1520/JTE20180533. (SCI) (31)Jian Xu*, Yanfeng Li, Chang Ren, Wei Lan. Damage of saline intact loess after dry-wet and its interpretation based on SEM and NMR [J]. Soils and Foundations, 2020, 60(4): 911-928. DOI: 10.1016/j.sandf.2020.06.006. (SCI) (32)Songhe Wang, Jian Xu*, Qinze Wang, Dongxing Cheng. Modeling of wetting deformation of coarse saline soil with an improved von Wolffersdorff model [J]. Bulletin of Engineering Geology and the Environment, 2020, 79:4783-4804. DOI: 10.1007/s10064-020-01855-2. (SCI, corresponding author) (33)Songhe Wang, Qinze Wang, Jian Xu*, Jiulong Ding. Effect of freeze-thaw on freezing point and thermal conductivity of loess [J]. Arabian Journal of Geosciences, 2020, Article ID 206. DOI: 10.1007/s12517-020-5186-2. (SCI, corresponding author) (34)Jian Xu, Wei Lan, Yanfeng Li, Songhe Wang, Wen-Chieh Cheng, Xiaoliang Yao. Heat, water and solute transfer in saline loess under uniaxial freezing condition [J].Computers and Geotechnics, 2020, 118: 103319. DOI: 10.1016/j.compgeo.2019.103319. (SCI) (35)Jian Xu, Yanfeng Li, Songhe Wang, Qinze Wang, Jiulong Ding. Shear strength and mesoscopic character of undisturbed loess with sodium sulfate after dry-wet cycling [J]. Bulletin of Engineering Geology and the Environment, 2020, 79(3): 1523-1541. DOI: 10.1007/s10064-019-01646-4. (SCI) (36)Jian Xu, Wei Lan, Yanfeng Li, Wen-Chieh Cheng, Jun Yuan, Qinghai Tan. Evaporation induced water and solute coupled transport in saline loess columns in closed and open systems [J]. Geofluids, Volume 2019, Article ID 3781410, 26 pages. DOI: 10.1155/2019/3781410. (SCI) (37)Jian Xu, Yanfeng Li, Wei Lan, Songhe Wang. Shear strength and damage mechanism of saline intact loess after freeze-thaw cycling [J].Cold Regions Science and Technology, 2019, 164:102779. (SCI) (38)Bao Wang, Jian Xu*, Bin Chen, Xingling Dong, Tongtong Dou. Hydraulic conductivity of geosynthetic clay liners to inorganic waste leachate [J]. Applied Clay Science, 2019, 168: 244-248.DOI: 10.1016/j.clay.2018.11.021. (SCI, corresponding author) (39)Songhe Wang, Jiulong Ding, Jian Xu*, Jianwei Ren, Yugui Yang. Shear strength behavior of coarse-grained saline soils after freeze-thaw [J]. KSCE Journal of Civil Engineering, 2019, 23(6):2437-2452.DOI:10.1007/s12205-019-0197-9. (SCI, corresponding author) (40)Jian Xu, Qinze Wang, Jiulong Ding, et al. Frost Heave of irrigation canals in seasonal frozen regions [J].Advances in Civil Engineering, Volume 2019, Article ID 2367635, 14 pages. DOI: 10.1155/2019/2367635. (SCI) (41)Jian Xu, Zhangquan Wang, Jianwei Ren, Jun Yuan. Mechanism of shear strength deterioration of loess during freeze-thaw cycling [J]. Geomechanics and Engineering, 2018,14(4):307-314. DOI: 10.12989/gae.2018.14.4.307. (SCI) (42)Jian Xu, Jianwei Ren, Zhangquan Wang, Songhe Wang, Jun Yuan. Strength behaviors and meso-structural characters of loess after freeze-thaw [J].Cold Regions Science and Technology, 2018, 148: 104-120. DOI: 10.1016/j.coldregions.2018.01.011. (SCI) (43)XU Jian, WANG Zhang-quan, REN Jian-wei, et al. Mechanism of slope failure in loess terrains during spring thawing[J].Journal of Mountain Science, 2018, 15(4):845-858. DOI: 10.1007/s11629-017-4584-8. (SCI) (44)Jian Xu, Songhe Wang, Zhangquan Wang, et al. Heat transfer and water migration in loess slopes during freeze-thaw cycling in Northern Shaanxi, china [J]. International Journal of Civil Engineering, 2018, 16 (11): 1591-1605. DOI: 10.1007/s40999-018-0298-8. (SCI) (45)Jian Xu, Jianwei Ren, Songhe Wang, et al. Axial uplift behaviour of belled piers in coarse-grained saline soils [J].Advances in Civil Engineering, Volume 2018, Article ID 4735423, 16 pages. DOI: 10.1155/2018/4735423. (SCI) (46)Jian Xu, Hua liu, Xiangke zhao. Study on the strength and deformation property of frozen silty sand with NaCl under tri-axial compression condition [J]. Cold Regions Science and Technology, 2017, 137: 7-16. DOI: 10.1016/j.coldregions.2017.01.008. (SCI) (47)许健,周立阳,胡科,李彦锋,武智鹏。受振动荷载扰动裂隙性黄土单轴压缩力学行为研究[J]。岩土力学,2023,44(1):171-182。(EI) (48)许健,武智鹏,陈辉。干湿循环效应下玄武岩纤维加筋黄土三轴剪切力学行为研究[J]。岩土力学,2022,43(1):28-36。(EI) (49)许健, 任畅, 高靖寓, 兰伟. 干湿循环效应下Na2SO4盐渍原状黄土渗透特性与细观机制[J]. 中南大学学报(自然科学版),2021, 52(5):1644-1654。(EI) (50)许健,张明辉,李彦锋,武智鹏。Na2SO4 盐渍原状黄土冻融过程劣化特性试验研究[J]。岩土工程学报,2020,42(9):1642-1650。(EI) (51)许健,高靖宇,李彦锋,袁俊,程东幸,谭青海。粗颗粒盐渍土地基掏挖基础抗拔承载模型试验研究[J]。岩土工程学报,2019,41(11):2079-2085。(EI) (52)许健,王掌权,任建威,袁俊。原状黄土冻融过程渗透特性试验研究[J]。水利学报,2016,47(9):1208-1217。(EI) 2.专利 (1)许健、周立阳、谭龙贞、杨少飞、孙菲、李涛、赵玉杰。一种重塑土配制并保持特定含水率的分量装置,发明专利,专利号:ZL 202011626878.8,授权公告日2025.03.11. (2)许健、谭龙贞、王宝。一种可调节温度的液面交换器,发明专利,专利号:ZL 202111302472.9,授权公告日2024.08.23. (3)许健、武智鹏、李彦锋、张丽丽。用于盐渍土治理工程中的集中排水装置,发明专利,专利号:ZL 202210489961.8,授权公告日2023.12.29. (4)许健、李彦锋、武智鹏、张丽丽。盐渍土地基基础加固结构,发明专利,专利号:ZL 202210093099.9,授权公告日2023.11.03. (5)许健、李彦锋、武智鹏、张丽丽。一种盐渍土地基基础加固结构,发明专利,专利号:ZL 202210066518.X,授权公告日2023.11.03. (6)许健、李彦锋、周立阳、梅源。一种冻土地基基础加固装置,发明专利,专利号:ZL 202111352728.7,授权公告日2023.02.28. (7)许健、梅源、周立阳、武智鹏、李彦锋。用于冻土地区的边坡支护锚固施工方法,发明专利,专利号:ZL 202110748948.5,授权公告日2022.06.21. (8)许健、梅源、李彦锋、武智鹏。一种用于盐渍土地基的变形测试装置,发明专利,专利号:ZL 202110511129.9,授权公告日2022.04.01. (9)许健、梅源、武智鹏、李彦锋。一种用于盐渍土水盐迁移的试验监测装置,发明专利,专利号:ZL 202110512555.4,授权公告日2022.02.08. (10)梅源、许健、袁一力、杨彤、龚航、张书敏、张心玥。地基基础加固用压样装置,发明专利,专利号:ZL 202111352298.9,授权公告日2023.08.11. (11)梅源、许健、袁一力、杨彤、龚航、罗郑、燕晓。用于冻土区的隧道排水装置及方法,发明专利,专利号:ZL 202110290434.X,授权公告日2023.02.28. (12)梅源、许健、袁一力、张书敏、王蓉、张心玥、宋奇昱。结构性原状土取样装置及取样方法,发明专利,专利号:ZL 202110499626.1,授权公告日2022.04.15. (13)刘华、许健、刘凤云、余光明、朱庆亮。一种直接测试黄土抗拉强度的制样的装置及其方法,发明专利,专利号:ZL 201510598884.X,授权公告日2017.11.14. (14)许健、闫振超、汪梦琪、屈磊。一种用于公路工程试验细集料筛分的真空抽吸筛分机,实用新型专利,专利号:ZL 202420943474.9,授权公告日2025.03.04. (15)游志浪、许健、李宏伟。一种高寒积雪区冻土路基边坡排水装置,实用新型专利,专利号:ZL 202421104413.X,授权公告日2025.01.07. (16)许健、王志忠、游志浪。一种岩土的研磨与筛分一体机,实用新型专利,专利号:ZL 202321520038.2,授权公告日2024.01.30. (17)许健、孙菲、周立阳、杨少飞、赵向科、谭龙贞、王瑞涛、李涛。一种对重塑土制备特定角度的切土器,实用新型专利,专利号:ZL 202120400810.1,授权公告日2021.10.08. (18)许健、谭龙贞、周立阳、杨少飞。一种自动化隧道管棚钻机钻杆方位校正装置,实用新型专利,专利号:ZL 202120171324.7,授权公告日2021.09.21. (19)许健、周立阳、谭龙贞、杨少飞、孙菲、李涛、赵玉杰。一种重塑土配制并保持特定含水率的分量装置,实用新型专利,专利号:ZL 202023337522.0,授权公告日2021.08.31. (20)许健、杨少飞、杨少刚、李攀、姚勇。一种隧道管棚钻机钻杆方位校正装置,实用新型专利,专利号:ZL 201921232273.3,授权公告日2020.04.14. (21)许健、任建威、赵向科、程东幸。一种测量粗颗粒盐渍土变形和渗透的试验装置,实用新型专利,专利号:ZL 201620186674.4,授权公告日2017.09.19. (22)许健、赵向科、袁俊、程东幸,李月萌。一种用于冻土地基的预制锚固基础,实用新型专利,专利号:ZL 201621483497.8,授权公告日2017.08.18. (23)许健、赵向科、袁俊、程东幸。一种用于冻土地基的铁塔基础,实用新型专利,专利号:ZL 201621466435.6,授权公告日2017.07.25. (24)许健、郑翔、程东幸、耿小江。一种蒸发条件下测量土壤性能的试验装置,实用新型专利,专利号:ZL 201621488515.1,授权公告日2017.07.11. (25)许健、刘华、刘凤云、王掌权。一种防冻拔和融沉的装配型通风桩基础结构,实用新型专利,专利号:ZL 201520919384.7,授权公告日2016.04.06. (26)许健、袁一力、谭青海。基于随机场局部平均的边坡可靠性分析软件,软件著作权号:2023SR0310683. (27)许健、陈国新、袁俊。寒区电力工程土方分析软件,软件著作权号:2020SR0780900. (28)许健。电力工程粗颗粒盐渍土地基基础计算分析软件,软件著作权号:2018SR163939. (29)许健、袁俊。电力工程冻土地基基础计算分析软件,软件著作权号:2018SR163137. (30)许健、王铁行。电力工程黄土地基基础计算分析软件,软件著作权号:2018SR162683. (31)刘华、许健、王掌权、王松鹤、关辉。一种直接测量冻结土体抗拉强度的试验装置,实用新型专利,专利号:ZL 201520717289.9, 授权公告日2016.02.10. (32)刘华、许健、邵珠山、袁俊、刘凤云、王新宇。一种“烟囱型”通风管装配式桩基结构,实用新型专利,专利号:ZL 201420254016.0, 授权公告日2014.12.10. (33)刘华、许健、刘凤云、关辉、王松鹤。一种具有反齿铲头的洛阳铲,实用新型专利,专利号:ZL 201620354614.4,授权公告日2016.09.14. 3.获奖 (1)许健,西北特殊土地质条件下电力工程地基基础理论研究与关键技术应用,2018年度青海省科学技术进步二等奖,第一完成人(1/8); (2)许健,非饱和土水热传输机理及其工程设计理论研究,2021年度青海省自然科学二等奖,第二完成人(2/5); (3)许健,寒区输变电基础工程冻融灾变机理与防治关键技术,2021年度新疆维吾尔自治区科学技术进步二等奖,第二完成人(2/9); (4)许健,寒区盐渍土多场耦合机理及盐冻胀防控关键技术,2023年度甘肃省科学技术进步一等奖,第五完成人(5/11); (5)许健,黄土地区傍山隧道建造关键技术研究,2023年度山西省科学技术进步二等奖,第五完成人(5/8); (6)许健,寒区输变电工程地基基础设计关键技术与应用,2022年度陕西高等学校科学技术研究优秀成果一等奖,第一完成人(1/7); (7)许健,黄土及盐渍土地基设计理论与关键技术应用,2021年度陕西省高等学校科学技术进步一等奖,第二完成人(2/7); (8)许健,冻土地区输电线路地基基础设计关键技术研究与应用,2021年度电力建设科学技术进步二等奖,第二完成人(2/10); (9)许健,粗颗粒盐渍土工程性能及其处置措施研究,2020年度电力工程科学技术进步一等奖,第三完成人(3/11); (10)入选全球前2%顶尖科学家年度影响力排行榜; (11)新疆维吾尔自治区“天池英才”特聘教授; (12)青海省“昆仑英才.高端创新创业人才”计划领军人才; (13)陕西省秦创原“科学家+工程师”队伍首席科学家; (14)陕西高校青年创新团队带头人; (15)陕西省土木建筑青年科技奖; (16)西安建筑科技大学土木工程学院“绍藩”青年学者; (17)西安建筑科技大学优秀博士论文指导教师; (18)陕西省岩土力学与工程优秀学术论文特等奖; (19)陕西省岩土力学与工程学会首届研究生优秀博士学位论文二等奖指导教师; (20)2020年度《工业建筑》优秀审稿人; (21)2023年度《土木与环境工程学报》优秀审稿专家。 4.参编或主审规范 (1)陕西省住房和城乡建设厅。挤密桩法处理地基技术规程:DB61/T5062-2023[S]。北京:中国建材工业出版社,2023。 (2)陕西省住房和城乡建设厅。螺杆灌注桩技术规程:DB61/T5063-2023[S]。北京:中国建材工业出版社,2023。 (3)中国工程建设标准化协会。黄土高填方场地与地基技术规程:T/CECS 1430-2023[S]。中国计划出版社,2023。 (4)陕西省住房和城乡建设厅。城镇综合管廊顶管施工技术规程:DB61/T5104-2024[S]。北京:中国建材工业出版社,2024。
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