代表性论著 (1) Chen Y*, Xu C, Liu H等. Physical modeling of lateral spreading induced by inclined sandy foundation in the state of zero effective stress[J]. Soil Dynamics and Earthquake Engineering, 2015, 76: 80-85.(SCI,EI) (2) Chen Y*, Liu H, Wu H. Laboratory study on flow characteristics of liquefied and post-liquefied sand[J]. European Journal of Environmental and Civil Engineering, 2013, 17(S1): 23-32. (SCI,EI) (3) Chen Y, ZHANG Zhi-chao, LIU Han-long*. Study of the seismic performance of Hybrid A-Frame Micropile/MSE (ilized Earth) Wall[J]. Earthquake Engineering and Engineering Vibration. 2017(SCI,EI) (4) Zhang, Xinlei, Yumin Chen*, Hanlong Liu, Zhe Zhang, and Xuanchen Ding. 2020. Performance Evaluation of a MICP-Treated Calcareous Sandy Foundation Using Shake Table Tests. Soil Dynamics and Earthquake Engineering 129: 105959. (SCI,EI) (5) Zhe Zhang, Yumin Chen*, Hanlong Liu, Yunfeng Zhou, and Xiaozhi Zhou. 2020. Resistivity Characteristics during Horizontal-Layered Electrolysis Desaturation of Calcareous Sand. Engineering Geology 279 (October): 105899. (SCI,EI) (6) Zhou, X., A.W. Stuedlein, Y. Chen*, Z. Zhang, and H. Liu. 2020. Cyclic Response of Loose Anisotropically Consolidated Calcareous Sand under Progressive Wave-Induced Elliptical Stress Paths. Journal of Geotechnical and Geoenvironmental Engineering 146 (12).(SCI,EI) (7) Xiaozhi Zhou, Yumin Chen*, Hanlong Liu, and Xinlei Zhang. 2020. Experimental Study on the Cyclic Behavior of Loose Calcareous Sand under Linear Stress Paths. Marine Georesources and Geotechnology 38 (3): 277–90. (SCI,EI) (8) Li, Wenwen, Armin W. Stuedlein, Y. Chen*, Hanlong Liu, and Zhao Cheng. 2019. Response of Pile Groups with X and Circular Cross-Sections Subject to Lateral Spreading: 3D Numerical Simulations. Soil Dynamics and Earthquake Engineering 126 (July): 105774. (9) Wang W, Chen Y*, Liu H等. Experimental investigation of dynamic porewater pressure response induced by single shallow-buried detonations in saturated sand[J]. Geotechnique Letters, 2015, 5: 142-146. (SCI,EI) (10) Zhi-chao Zhang*, Yu-min Chen, Han-long Liu. Numerical investigation on the impact resistance of road barriers of Micropile-MSE Wall for subgrade[J]. Computers Geotechnics. 2017, 82: 249-265. (SCI,EI) (11) Xiao Y, Liu H, Chen Y* 等. Influence of Intermediate Principal Stress on the Strength and Dilatancy Behavior of Rockfill Material[J]. Journal of Geotechnical and Geoenvironmental Engineering, 2014, 140(11): 4014064. (SCI,EI) (12) Xiao Y, Liu H, Chen Y* 等. Bounding Surface Plasticity Model Incorporating the State Pressure Index for Rockfill Materials[J]. Journal of Engineering Mechanics, Elsevier Ltd, 2014, 140(11): 4014087. (SCI,EI) (13) Xiao Y, Liu H, Chen Y* 等. Strength and Dilatancy of Silty Sand[J]. Journal of Geotechnical and Geoenvironmental Engineering, 2014, 140(7): 6014007. (SCI,EI) (14) Xiao Y, Liu H, Chen Y* 等. Strength and Deformation of Rockfill Material Based on Large-Scale Triaxial Compression Tests. I: Influences of Density and Pressure[J]. Journal of Geotechnical and Geoenvironmental Engineering, 2014, 140(12): 4014070. (SCI,EI) (15) Xiao Y, Liu H, Chen Y* 等. Strength and Deformation of Rock fill Material Based on Large-Scale Triaxial Compression Tests . II: Influence of Particle Breakage[J]. Journal of Geotechnical and Geoenvironmental Engineering, 2014, 140(12): 4014071. (SCI,EI) (16) 陈育民,陈润泽,霍正格.饱和悬浮塑料砂流动变形可视环剪试验研究[J].岩土力学,2019,40(10):3709-3716.(EI) (17) 陈育民,何森凯,方志,江强.电解减饱和法处理可液化地基的现场试验研究[J].岩土工程学报,2017,39(05):832-838.(EI) (18) 陈育民,周晓智,徐君.土工格栅控制液化土体流动变形的试验研究[J].岩土工程学报,2017,39(10):1922-1929.(EI) (19) 陈育民,王睿,张艳萍.饱和悬浮塑料砂流动特性的试验研究[J].岩土力学,2017,38(01):67-74.(EI) (20) 陈育民,张意江,王维国,陈晨伟.爆炸液化场地中浅埋钢筋混凝土结构动力响应的现场试验研究[J].岩土力学,2016,37(12):3506-3512+3519.(EI) (21) 陈育民,刘汉龙,陈晨伟,杨贵,王维国.爆炸液化场地上堤坝变形的模型试验研究[J].岩土工程学报,2017,39(11):2009-2016.(EI) (22) 陈育民,何森凯,吴海清,徐君.电解减饱和法处理可液化地基的振动台试验研究[J].岩土工程学报,2016,38(04):726-733.(EI) (23) 陈育民,高星,刘汉龙.砂土液化流动变形的简化方法[J].岩土力学,2013,34(06): 1567-1573.(EI) (24) 陈育民,仉文岗,刘汉龙.堤防地震液化数值模拟及动力反应分析[J].解放军理工大学学报(自然科学版),2011,12(03):239-244.(EI) (25) 陈育民,刘汉龙,赵楠.抗液化刚性排水桩振动台试验的数值模拟研究[J].土木工程学报,2010,43(12):114-119.(EI) (26) 陈育民,刘汉龙,邵国建,赵楠.砂土液化及液化后流动特性试验研究[J].岩土工程学报,2009,31(09):1408-1413.(EI) (27) 陈育民,刘汉龙.邓肯-张本构模型在FLAC~(3D)中的开发与实现[J].岩土力学,2007(10):2123-2126.(EI) (28) 陈育民,刘汉龙,周云东.液化及液化后砂土的流动特性分析[J].岩土工程学报,2006(09):1139-1143.(EI)
发明专利 (1) 陈育民, 李文闻, 江强 等. 一种现浇定向钢纤维混凝土大直径管桩桩模及其施工方法. 专利号:ZL 201510022254.8. (2) 陈育民, 李平, 李闻文 等. 一种地基饱和度现场测试装置和方法. 专利号:ZL 201510191058.3. (3) 陈育民, 周葛, 丁选明 等. 一种测试液化砂土流动特性的试验装置和测试方法. 专利号:ZL 201110441097.6. (4) 陈育民, 丁选明 等. 一种液化砂土表观粘度测量装置和方法.专利号:ZL 2010 10017936.7. (5) 陈育民, 卢懿, 刘汉龙 等. 可控流速的自动排水抗液化刚性桩. 专利号:ZL2019 11299915.6. (6) 陈润泽, 陈育民, 等. 一种定向钢纤维混凝土方形井盖模具及制作方法. 专利号:ZL 2018 11099098.5. (7) 李文闻, 陈育民, 丁选明等. 一种现浇X形大直径空心定向钢纤维混凝土桩的桩模及施工方法. 专利号:ZL 201510226120.8. (8) 周葛, 陈育民, 等. 一种模拟液化后颗粒运动特性的试验装置和方法. 专利号:ZL 201210191476.9. 软件著作权 (1) 基于FLAC3D程序的PL-Finn模型软件V1.0: 中国, 2012SR053791[P]. (2) 基于FLAC3D程序的Duncan-Chang本构模型软件V1.0: 中国, 2012SR053811[P]. (3) 基于FLAC3D程序的Liquefy本构模型软件V1.0: 中国, 2012SR053809[P]. (4) 基于FLAC3D程序的沈珠江双屈服面模型软件V1.0: 中国, 2012SR053890[P]. (5) 基于FLAC3D程序的堆石料三维边界面模型软件V1.0: 中国, 2013SR132856[P]. 参编标准规程 (1) 国家标准:吹填土地基处理技术规范(GB/T 51064-2015)。 (2) 国家行业标准:现浇X形桩复合地基技术规程(JGJ/T 402-2017)。 (3) 国家行业标准:现浇混凝土大直径管桩复合地基技术规程(JGJ/T213- 2010)。 (4) 国家军用标准:吹填珊瑚礁砂地基处理技术规范。
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