1.参与的科研项目 [1]江苏省交通厅科研项目“劲性复合桩在铁路桥梁桩基中关键技术研究与应用”,2022年3月~2024年1月,162万元(结题,主要完成人) [2]广西自治区科研项目“变直径钢筋笼扩大头锚杆在公路护坡中受力特性及应用研究”,2022年1月~2025年1月,96万元(结题,主要完成人) [3]甘肃省陇原青年创新创业人才资助项目“环境振动规律及其控制研究”,2017年1月~2018年12月(结题,主要完成人) [4]国家自然科学基金面上项目“基于整机一体化分析的海上风电桩桶复合基础长期循环承载特性”,2024年1月~2027年12月,50万元(在研,参与) [5]国家自然科学基金面上项目“近海风机单桩冲刷流态土防护机理及其水平承载特性研究”,2021年1月~2024年12月,58万元(结题,参与) [6]国家自然科学基金面上项目“基于空沟-波阻板联合隔振体系的地基振动控制研究”,2020年1月~2023年12月,60万元(结题,参与) [7]国家自然科学基金地区科学基金项目“基于储液多孔隔振屏障的地基振动控制研究”,2014年1月~2017年12月,50万元(结题,参与) 2.发表的期刊论文 以第一作者和通讯作者身份发表期刊论文24篇,其中SCI论文17篇、EI论文7篇。以其他作者身份发表SCI和EI期刊论文17篇。具体如下(*代表通讯作者): [1]Liu Hongbo, Dai GL*, Zhou FX, et al. Analytical approach for lateral dynamic behaviours of pipe piles enhanced by cement-improved soil in unsaturated ground[J]. Acta Geotechnica, 2024, 19(10): 6747–6772. (SCI, JCR Q1,中科院一区、Top期刊) [2]Liu Hongbo, Dai GL*, Chen XS, et al. Analytical approach for lateral dynamic responses of offshore wind turbines supported by cement-soil composite steel pipe pile embedded in gassy marine sediment layer[J]. Applied Mathematical Modelling, 2024, 136: 115641. (SCI, JCR Q1,中科院二区) [3]Liu Hongbo, Zhu WB, Dai GL*, et al. Analytical approach for vertical dynamic responses of stiffened deep cement mixing pile in unsaturated ground[J]. Soil Dynamics and Earthquake Engineering, 2024, 187: 108969. (SCI, JCR Q1,中科院二区、Top期刊) [4]Liu Hongbo, Dai GL*, Zhou FX, et al. Longitudinal seismic response of a pipe pile embedded in saturated thermoelastic ground subjected to Rayleigh waves[J]. International Journal of Structural Stability and Dynamics, 2024, 24(6): 2450063. (SCI, JCR Q2,中科院三区) [5]Liu Hongbo,Dai GL*,Zhou FX, et al. Kinematic response of pipe pile embedded in fractional-order viscoelastic unsaturated soil subjected to vertically propagating seismic SH-waves[J]. Acta Geotechnica, 2023, 18(12): 6803–6830. (SCI, JCR Q1,中科院一区、Top期刊) [6]Liu Hongbo,Dai GL*,Zhou FX, et al. Vertical kinematic response of an end-bearing pipe pile in fractional viscoelastic unsaturated soil under vertically-incident P-waves[J]. Applied Mathematical Modelling, 2023, 120: 686–710. (SCI, JCR Q1,中科院二区) [7]Liu Hongbo, Dai GL*, Zhou FX, et al. Vertical dynamic response of pipe pile embedded in unsaturated soil based on fractional-order standard linear solid model and Rayleigh-Love rod model[J]. International Journal for Numerical and Analytical Methods in Geomechanics, 2023, 47(3): 325–348. (SCI, JCR Q1,中科院二区) [8]Liu Hongbo, Dai GL*, Zhou FX, et al. Effect of flow-independent viscosity on the propagation behavior of Rayleigh wave in partially saturated soil based on the fractional standard linear solid model[J]. Computers and Geotechnics, 2022, 147: 104763. (SCI, JCR Q1,中科院一区、Top期刊) [9]Liu Hongbo, Dai GL*, Zhou FX, et al. A mixture theory analysis for amplitude reflectivity of plane-P1-wave at the boundary of unsaturated porothermoelastic media[J]. Geophysical Journal International, 2022, 228(2): 1237–1259. (SCI, JCR Q2,中科院二区) [10]Liu Hongbo, Dai GL*, Zhou FX, et al. Propagation behavior of homogeneous plane-P1-wave at the interface between a thermoelastic solid medium and an unsaturated porothermoelastic medium[J]. European Physical Journal Plus, 2021, 136(11): 1163. (SCI, JCR Q2,中科院三区) [11]Liu Hongbo, Zhou FX*, Wang LY. Propagation of Rayleigh waves in unsaturated porothermoelastic media[J]. International Journal for Numerical and Analytical Methods in Geomechanics, 2020, 44(12): 1656–1675. (SCI, JCR Q1,中科院二区) [12]Liu Hongbo, Zhou FX*, Zhang RL, et al. The effect of the tortuosity of fluid phases on the phase velocity of Rayleigh wave in unsaturated porothermoelastic media[J]. Journal of Thermal Stresses, 2020, 43(8): 929–939. (SCI, JCR Q2,中科院三区) [13]Dai GL,Liu Hongbo*, Chen XS, et al. Analytical solution for the horizontal dynamic response of strength composite piles in fractional viscoelastic unsaturated ground[J]. Computers and Geotechnics, 2023, 162: 105634. (SCI, JCR Q1,中科院一区、Top期刊) [14]Xiang YF,Liu Hongbo*, Dai GL*, et al. Analytical approach to influencing mechanism of cement-soil reinforcement on horizontal dynamic response of single piles[J]. Soil Dynamics and Earthquake Engineering, 2025, 194: 109337. (SCI, JCR Q1,中科院二区、Top期刊) [15]Zhang RL,Liu Hongbo*, Dai GL*. Study on the horizontal dynamic characteristics of cement-soil composite pipe piles: Field test and finite element analysis[J]. Soil Dynamics and Earthquake Engineering, 2026, 201: 109989. (SCI, JCR Q1,中科院二区、Top期刊) [16]Zhou FX,Liu Hongbo*, Li SR. Propagation of thermoelastic waves in unsaturated porothermoelastic media[J]. Journal of Thermal Stresses, 2019, 42(10): 1256–1271. (SCI, JCR Q2,中科院三区) [17]Zhou FX, Zhang RL,Liu Hongbo*, et al. Reflection characteristics of plane-S-wave at the free boundary of unsaturated porothermoelastic media[J]. Journal of Thermal Stresses, 2020, 43(5): 579–593. (SCI, JCR Q2,中科院三区) [18]柳鸿博,戴国亮*,周凤玺,等.黏弹性非饱和土中劲性复合桩纵向动力响应分析[J].岩土力学, 2024, 45(5): 1365–1377. (EI) [19]柳鸿博,戴国亮*,张瑞玲.水泥土加固对单桩侧向动力响应的影响机制分析[J].岩土工程学报, 2023, 45(S2): 177–182. (EI) [20]柳鸿博,周凤玺*,岳国栋,等.非饱和土中热弹性波的传播特性分析[J].岩土力学, 2020, 41(5): 1613–1624. (EI) [21]柳鸿博,周凤玺*,张瑞玲,等.饱和多孔介质中热弹耦合对体波传播特性的影响分析[J].岩石力学与工程学报, 2020, 39(S1): 2693–2702. (EI) [22]周凤玺,柳鸿博*.非饱和土中Rayleigh波的传播特性分析[J].岩土力学, 2019, 40(8): 3218–3226. (EI) [23]周凤玺,柳鸿博*,蔡袁强.饱和多孔热弹性介质中Rayleigh波的传播特性分析[J].岩土力学, 2020, 41(1): 315–324. (EI) [24]周凤玺,周志雄,柳鸿博*.非均匀地基与均匀地基解答之间的相似关系:弹性波速[J].岩土力学, 2021, 42(4): 892–898. (EI) [25] Sun LP, Zhou FX*,Liu Hongbo, et al.Analysis of Vertical Dynamic Coupled Response for Cement‐Modified Soil Composite Pipe Piles in Fractional Order Viscoelastic Saturated Soils[J].International Journal for Numerical and Analytical Methods in Geomechanics, 2025,50(2):717–728. (SCI, JCR Q1,中科院二区) [26]Gong ZY, Dai GL*,Liu Hongbo, et al. Theoretical Analysis and Field Investigation on Bearing Characteristics of the Long-Core SDCM Pile Under Vertical Load in Multilayered Soil[J]. International Journal for Numerical and Analytical Methods in Geomechanics, 2024, 48(18): 4327–4345. (SCI, JCR Q1,中科院二区) [27]Chen XS, Dai GL*,Liu Hongbo, et al. A microstructural investigation on hydraulic conductivity of calcareous clay[J]. Applied Ocean Research, 2024, 150: 104133. (SCI, JCR Q1,中科院二区) [28]Zhou FX, Wang LY*,Liu Hongbo. A fractional elasto-viscoplastic model for describing creep behavior of soft soil[J]. Acta Geotechnica, 2021, 16(1): 67–76. (SCI, JCR Q1,中科院一区、Top期刊) [29]Shao YP, Zhou FX*,Liu Hongbo, et al. Energy characteristics of reflection and transmission for SV-waves at the interface of layered unsaturated soils[J]. Journal of Vibration Engineering & Technologies, 2024, 12(3): 4541–4559. (SCI, JCR Q2,中科院三区) [30] Zhang RL, Chou YL, Zhang ML,Liu Hongbo.Environmental Temperature and Filling-Type Influence on the Subgrade Pot Cover Effect in Seasonal Frozen Soil Regions[J].International Journal of Geomechanics, 2026, 26(5): 04026057.(SCI, JCR Q2中科院三区) [31]Wang LY, Zhou FX*, He MY,Liu Hongbo. Contribution of Osmotic Suction to Suction Stress for Unsaturated Saline Clay and Its Suction Stress Characteristic Curve[J]. Journal of Geotechnical and Geoenvironmental Engineering, 2025, 151(1): 04024143. (SCI, JCR Q1,中科院二区) [32] Ji ZY, Dai GL*, Hu YF, Liu Hongbo, et al.Study on mechanical response and mechanism analysis of bored piles under different grouting combinations in coastal regions[J].Soil Dynamics and Earthquake Engineering, 2025, 198: 109621. (SCI, JCR Q1,中科院二区、Top期刊) [33]Zhang RL, Chou YL, Zhang ML*,Liu Hongbo. Study on the formation mechanism and preventive measure of pot cover effect for subgrade in seasonal frozen soil area under freeze–thaw cycles[J]. International Journal for Numerical and Analytical Methods in Geomechanics, 2024, 48(9): 2408–2429. (SCI, JCR Q1,中科院二区) [34]Li ZW, El Naggar MH, Dai GL*,Liu Hongbo. Seismic isolation effect of unconnected piles-caisson foundation: Large-scale shake table tests[J]. Soil Dynamics and Earthquake Engineering, 2024, 176: 108304. (SCI, JCR Q1,中科院二区、Top期刊) [35]Dai GL, OuYang HR*, Gao LC,Liu Hongbo, Guo Q, Gong WM. Monotonic and cyclic lateral behavior of semi-rigid pile in cement-improved clay: centrifuge tests and numerical investigation[J]. Acta Geotechnica, 2023, 18(8): 4157–4181. (SCI, JCR Q1,中科院一区、Top期刊) [36]Liang YW, Zhou FX*, Ma Q, Cao XL,Liu Hongbo. Semi-analytical solution of seismic wave scattering by composite topography of the alpine valley[J]. Engineering Analysis with Boundary Elements, 2023, 157: 522–540. (SCI, JCR Q1,中科院二区) [37]Liang YW, Zhou FX*, Cao XL, Wang LY,Liu Hongbo, Zhu Shun wang. 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. (SCI, JCR Q1,中科院二区、Top期刊) [38]周凤玺,姚桃岐,柳鸿博. P1波在非饱和土自由边界上反射的能量特性研究[J].振动工程学报, 2024, 37(12): 2066–2077. (EI) [39]周凤玺,孙烈璞,柳鸿博,等.分数阶黏弹性饱和地基中大直径管桩竖向动力响应分析[J].岩土力学, 2024, 45(11): 3481–3490. (EI) [40]周凤玺*,姚桃岐,柳鸿博.非饱和土中Rayleigh波传播的能量特性研究[J].岩土力学, 2023, 44(S1): 612–622. (EI) [41]李忠伟,龚维明*,胡尧,刘军,柳鸿博.弱胶结砂岩地基承载力深度修正系数k2试验研究[J].岩土工程学报, 2024, 46(3): 596–604. (EI) 3.申请及授权的发明专利 [1]戴国亮,柳鸿博,赵仲新,等.基于物联网技术的旋挖桩施工过程监测系统[P].授权公布号: CN114320273B, 2022-05-24. [2]柳鸿博,戴国亮,杨才千,等.一种实现非饱和土水气热力耦合作用的试验装置及方法[P].授权公布号: CN113447640B, 2021-12-14. [3]周凤玺,应赛,文桃,马强,柳鸿博,等.一种实现水热力耦合作用的盐冻胀测试仪[P].授权公布号: CN109945928B, 2020-11-17. [4]应赛,周凤玺,文桃,谢国鑫,马强,张家齐,蒲育,王立业,柳鸿博,等.一种边坡加固杆件的使用方法[P].授权公布号: CN109024622B, 2020-10-27. [5]戴国亮,柳鸿博,项宇凡.一种联合高压旋喷和扩体锚杆技术的水下预应力斜拉基础[P].申请(专利)号: CN202411040134.6, 2024-10-15.(公开实审) [6]戴国亮,柳鸿博,赵仲新,等.一种劲性复合扩大头锚固体及其施工方法[P].申请(专利)号: CN202311662998.7, 2024-01-12.(公开实审) 4.登记的软件著作权 [1]柳鸿博,项宇凡,许晨浒. 2024SR1990084.黏弹性非饱和地基中劲性复合桩纵向动力响应分析软件(V1.0)[软件]. 2024(2024.12.5).中华人民共和国国家版权局. [2]柳鸿博,许晨浒,项宇凡. 2024SR1993413.非饱和土中管桩在垂直入射p波作用下竖向运动响应分析软件(V1.0)[软件]. 2024(2024.12.5).中华人民共和国国家版权局. [3]项宇凡,柳鸿博,许晨浒. 2025SR0738395.扩体锚杆极限承载力计算分析软件(V1.0)[软件]. 2024(2025.05.07).中华人民共和国国家版权局. |