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柳鸿博
2026-04-14 16:13 点击: 作者: 来源:


姓名:柳鸿博

职称:讲师/校聘副教授/硕士生导师

地址:兰州市七里河区兰工坪路287号—综合楼

邮编:730050

E-mail:lhb_0803@163.com;20250051@lut.edu.cn

电话:17693102235

个人简介

柳鸿博,甘肃庄浪人,工学博士,讲师/校聘副教授,入选首批“中国科协青年人才托举工程博士生专项计划”,长期从事桩基础动力学理论、变直径钢筋笼扩大头锚杆理论、土介质弹性波传播理论等方面的研究。作为主研人员参与国家自然科学基金和江苏省交通运输厅科技项目等纵/横向科研项目7项,以第一作者/通讯作者累计发表期刊论文24篇(其中SCI论文17篇、EI论文7篇),以第一/第二发明人申请国家发明专利4项(已授权2项),以第一、第二著作权人登记软件著作权3件。担任Scientific Reports(JCRQ1)期刊编委、担任Acta Geotechnica、Geophysics、European Physical Journal Plus等多个SCI期刊审稿人以及CSCIED科技核心评价数据库青年评审人,目前为中国公路学会、中国振动工程学会和中国岩石力学与工程学会会员。

教育经历

2022.03-2025.07:东南大学,土木工程,博士学位,导师:戴国亮

2017.09-2020.06:兰州理工大学,岩土工程,硕士学位,导师:周凤玺

2013.09-2017.06:兰州理工大学,土木工程,学士学位

工作履历

2025.10-至今:兰州理工大学yd222云顶线路检测,讲师/校聘副教授

教学工作

硕士生课程:高等土力学

本科生实践教学:毕业设计与毕业实习

学术/社会兼职

²陇原青年人才

²Scientific Reports(JCR Q1)期刊编委

²CSCIED科技核心评价数据库青年评审人

²中国公路学会、中国振动工程学会和中国岩石力学与工程学会会员

²Acta Geotechnica、Geophysics、European Physical Journal Plus、Mechanics of Solids、Zeitschrift fürNaturforschung A等多个SCI期刊审稿人

研究领域

²桩基础动力学理论:单(群)桩/复合桩与土体耦合体系振动/地震响应

²变直径钢筋笼扩大头锚杆理论:边坡支护、光伏斜拉基础、抗浮工程

²土介质弹性波传播理论:体波/面波与热黏弹性土体耦合体系动力响应

奖励与荣誉

²2024年入选首批“中国科协青年人才托举工程博士生专项计划”

²2024年获得教育部“博士研究生国家奖学金”

²2024年获得东南大学“博士研究生一等奖学金”

²2023年获得东南大学“博士研究生一等奖学金”

²2023年获得东南大学“三好研究生”荣誉

²2020年获得甘肃省教育厅“优秀硕士学位论文”

²2019年获得教育部“硕士研究生国家奖学金”

²2018年获得教育部“硕士研究生国家奖学金”

科研项目及学术成果

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.


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