[1]获得甘肃省科技进步二等奖,环境振动传播机理及波障隔振关键技术,2025 [2]中国国际大学生创新大赛(2025)甘肃省分赛优秀创新创业导师 [3]获得第五届甘肃省大学生区块链技术创新与应用竞赛优秀指导老师,2025; [4]指导学生参加第五届甘肃省大学生区块链技术创新与应用竞赛获得特等奖,2025年; [5]指导学生参加第六届全国大学生岩土工程竞赛获得三等奖,2025年; [6]甘肃省高等教育教学改革研究项目,思政铸魂,科教赋能:西部高校土木工程专业人才培养模式创新与实践,2025 [7]指导学生获第九届四川省大学生结构设计竞赛三等奖,2024年; [8]指导学生大学生创新创业训练项目立项,国家级,2024年; [9]指导学生获第八届四川省大学生结构设计竞赛三等奖,2023年; [10]指导学生大学生创新创业训练项目立项,国家级,2023年; [11]指导学生参加第五届全国大学生岩土工程竞赛获得优胜奖,2023; [12]获得兰州理工大学2022-2023学年“十佳”优秀班主任; 甘肃省土力学课程教学团队成员; 科研项目及学术成果 [1]国家自然科学基金:竖向-水平荷载联合作用下桩基在非饱和土中的水平振动特性及设计方法研究(52408368),2025/01-2027/12,主持,在研. [2]国家自然科学基金:渗透吸力对盐渍黏土水力-力学特性的影响及其作用机理研究(12362032),2024/01-2027/12,在研,参与. [3]2024年高校教师创新基金项目:考虑竖向荷载影响的桩基在非饱和土中的水平振动特性研究(2024A-019),2024/07-2026/6,主持,在研. [4]江苏省研究生科研与实践创新计划:水平循环荷载下FRPC组合桩桩土相互作用动力响应研究(KYCX18-0127), 2018/12-2021/06,结题,主持. 学术成果: [1]Xiaolin Cao,Yongpeng Zhai,Fengxi Zhou, et al.Horizontal vibration characteristics of end bearing pile under SH wave in saturated frozen soil considering the influence of superstructure[J].Soil Dynamics and Earthquake Engineering, 2026, 202:110046. [2]Xiaolin Cao,Yongpeng Zhai,Fengxi Zhou,et al. Analysis of horizontal dynamic response of end-bearing piles in saturated frozen soil under hydro-thermo-mechanical-seismic coupling effects[J]. Cold Regions Science and Technology, 2026: 104880. [3]Xiaolin Cao,Yongpeng Zhai,Fengxi Zhou,et al. Study of the Vertical Bearing Capacity of a Single Pile in Saline Soil Considering Variations in the Shear Stiffness Coefficient[J]. Journal of Testing and Evaluation, 2025, 53(6): 1654-1670. [4]Xiaolin Cao,Zhou Fengxi,et al. Experimental study and numerical analysis for vibration isolation performance on open trench and wave impeding block combined vibration isolation barrier[J]. Soil Dynamicsand Earthquake Engineering,2024, 177:108418. [5]]Xiaolin Cao, Guoliang Dai, Weiming Gong,et al. Resistance of saturated soil to a laterally vibrating pile. Soil Dynamics andEarthquake Engineering, 2021, 141: 106496. [6]Xiaolin Cao, Shun Wang, Weiming Gong,et al. Experimental and theoretical study on dynamic stiffness of single pile and pile groups in multi-layered soil. Soil Dynamics and EarthquakeEngineering, 2022, 157: 107282 [7]Xiaolin Cao, Fengxi Zhou, Hongbo Liu. Dynamic Responses of Embedded Rock Pile Groups due to Rock Burst considering CoupledPile-to-Pile Interaction[J]. Lithosphere, 2022: 5715992. [8]Xiaolin Cao, Guoliang Dai, Weiming Gong, et al. Experimental study on the seismic behavior of new PHC piles[J]. Arabian Journal of Geosciences, 2020, 13(16):1-8. [9]Xiaolin Cao, Weiming Gong, Fengxi Zhou, et al. Stress analytical solution for shallow buried lined circular tunnel under the deformation of surrounding rock inner edge[J]. Geotechnical and Geological Engineering, 2019, 37(5): 3771-3780. [10]曹小林,周凤玺,戴国亮等.多层土中摩擦单桩和群桩的竖向振动特性研究[J].岩土工程学报, 2025, 47 (09): 1856-1864. [11]曹小林,曾乐平,周凤玺,戴国亮.纵波作用下摩擦桩在饱和冻土中的动力响应分析[J].力学学报, 2025, 57 (10): 2374-2387. [12]曹小林,曾乐平,周凤玺,高智岗,戴国亮,王智强. Rayleigh波-竖向荷载作用下非饱和土中单桩水平振动特性[J].哈尔滨工业大学学报,2026. [13]曹小林,周凤玺,戴国亮等.激振荷载作用下桩基础动力响应的现场试验分析[J].岩土工程学报, 2023,45:171-175. [14]曹小林,周凤玺,戴国亮.水平荷载作用下饱和土与单桩的相互作用动力响应分析[J].岩土工程学报, 2023, 45: 73-78. [15]曹小林,龚维明,戴国亮.水平往复荷载下FRPC桩与砂土的相互作用宏微观机理[J].东南大学学报(自然科学版), 2020,50(2):274-279. [16]周凤玺,曹小林,马强.颗粒间的毛细作用以及吸应力特征曲线分析[J].岩土力学, 2017, 38(07): 2036-2042(EI/T1) [17]戴国亮,曹小林,龚维明.压缩空气下FRPC能源桩承载特性分析[J].防灾减灾工程学报, 2019, 39 (04): 579-584+591. [18]周凤玺,曹小林.深埋隧洞围岩应力的精确解与近似解的对比分析[J].应用数学和力学, 2017, 38 (10): 1166-1179. [19]周凤玺,曹小林, M·B·贾克萨.极坐标系下非分裂PML及时域有限元实现[J].应用数学和力学, 2015, 36 (09): 956-969. [20]任康乐,曹小林,刘佳,马强.空沟-波阻板联合隔振体系的三维数值分析[J].噪声与振动控制, 2025, 45 (03): 256-261. [21]刘汉青,曹小林,任圆圆.非均匀饱和土中P-SV波的频散特性分析[J].兰州理工大学学报, 2018, 44 (02): 122-127. [22]戴国亮,曹小林,龚维明.一种FRPC桩的沉桩方法:CN109944237 B,授权. [23]周凤玺,曹小林,王根强等.一种用于隧道隔震的材料及其施工方法;CN106220068A,授权. [24]Liang YW, Zhou FX,Cao XL, et al. Time-Domain Analysis for Rayleigh Wave Scattering by Complex Terrain of Alpine Valley[J]. Journal of Earthquake Engineering, 2024, 28(15): 4262-4278. [25]Liang YW, Zhou FX,Cao XL, et al. Scattering of plane SH waves by a circular tunnel in nonlocal fractional-order viscoelastic half-space[J]. Soil Dynamics and Earthquake Engineering, 2023, 170: 107934. [26]Wang LY, Zhou FX,Cao XL, et al. A closed-form equation for effective stress of unsaturated saline clay considering capillary and osmosis effects[J]. International Journal of Geomechanics, 2024, 24(6): 04024086. [27]Wang LY, Zhou FX,Cao XL, et al. Unified fractional rheological mechanical model for rock considering the effects of hydrous conditions and freeze–thaw cycles[J]. Bulletin of Engineering Geology and the Environment, 2022, 81(10): 448. [28]周志雄,周凤玺,曹小林,汪镇, .复合地基极限承载力的变分极限平衡法分析——竖向增强[J].岩土力学, 2024, 45(12): 3748-3754. [29]周凤玺,高智岗,曹小林,戴国亮.瑞利波作用下考虑竖向荷载影响的单桩在饱和软土中的水平动力分析[J].岩土工程学报, 2024, 46 (S2): 166-170. [30]周凤玺,张雅森,曹小林,牟占霖.非饱和土半空间Lamb问题及能量传输特性[J].力学学报, 2021, 53 (07): 2079-2089. [31]周凤玺,李丹,曹小林.含液饱和不可压多孔弹性板的随机振动[J].振动与冲击, 2017, 36 (10): 168-174. 周凤玺,张家齐,曹小林.梯度饱和多孔材料中弹性波的截止频率[J].浙江大学学报(工学版), 2016, 50 (04): 744-749. |