[1] 潘晓东, 应添添, 范立盛, 彭卫兵, 张勇. 桥侧大面积堆土致斜交梁桥倒塌事故分析[J]. 中国公路学报, 2019, 32(8): 114-124.
[2] 潘晓东, 周廉默, 孙宏磊, 蔡袁强, 史吏, 袁宗浩. 基于粒子图像测速的高含水率软土真空预压试验[J]. 浙江大学学报(工学版), 2020, 54(6): 1078-1085.
[3] Pan X, Zhu H, Zheng H, et al. Analysis of Consolidation by Vertical Drain with Vacuum Preloading Based on Axisymmetric Biot’s Consolidation Theory[J]. Symmetry, 2023, 15(6): 1245.
[4] Pan, X., Tong, J., Guo, L., Wu, T., Yuan, Z., Sun, H., 2022. Effects of principal stress rotation on deformation behaviour of clay under partially drained and undrained conditions[J]. Soil Dynamics and Earthquake Engineering 154, 107159.
[5] Pan X D, Chen J Q, Pan K, et al. Cyclic flow behavior of anisotropically consolidated sand with a small amount of fines[J]. Soil Dynamics and Earthquake Engineering, 2021, 146: 106778.
[6] Pan X, He B, Yuan Z, et al. Effect of Reinforced Bucket on Bearing Capacity and Natural Frequency of Offshore Wind Turbines Using Pile–Bucket Foundation[J]. Advances in Civil Engineering, 2022, 2022(1): 9569102.
[7] Pan X, Fang Y, Lai Y, et al. Three-dimensional numerical modeling of water distribution tunnels in karst area[J]. Arabian Journal of Geosciences, 2020, 13(23): 1-7.
[8] Sun H, Lan H, He Z, Pan X(通讯作者), Zhang R, Zhang P, Tong J. Dynamic resilience assessment and multi-objective optimization decision-making for urban roadway tunnel system in the face of fire disaster[J]. Tunnelling and Underground Space Technology, 2025, 155: 106120.
[9] S Chen, S Zeng, X Pan (通讯作者). Interpretable probabilistic prediction for the compression modulus and undrained shear strength of marine soil[J]. Marine Georesources & Geotechnology, 2025: 1-13.
[10] W Liu, S Zeng, K Chen, X Pan (通讯作者). Spatiotemporal Prediction and Proactive Control Method for Excavation-Induced Wall Deflection[J]. Applied Sciences, 2024, 14(24): 11917.
[11] Yuan Z, Zhong K, Wang X, Pan X(通讯作者), He B, Wu J, Zhang J, Xu S. A Numerical Analysis on Lateral Resistance of Pile–Bucket Foundation for Offshore Wind Turbines[J]. Applied Sciences. 2022, 12(9):4734
[12] Sun, H. L., Weng, Z. Q., Liu, S. J., Geng, X. Y., Pan, X. D. (通讯作者), Cai, Y. Q., Shi, L.. Compression and consolidation behaviors of lime-treated dredging slurry under vacuum pressure[J]. Engineering Geology, 2020, 270: 105573.
[13] Sun HL, Xu SL, Pan XD(通讯作者), Shi L, Geng XY, Cai YQ. Investigating the jamming of particles in a three-dimensional fluid-driven flow via coupled CFD-DEM simulations[J]. International Journal of Multiphase Flow, 2019, 114:140-153.
[14] Shi L, Wang QQ, Xu SL, Pan XD(通讯作者), Sun HL, Cai YQ. Numerical study on clogging of prefabricated vertical drain in slurry under vacuum loading[J]. Granular Matter, 2018, 20: 1-14.
[15] Yuan ZH, Bostrom A, Cai YQ, Pan XD(通讯作者), Cao ZG, Shi L. The wave function method for calculation of vibrations from a twin tunnel in a multi-layered half-space[J]. Soil Dynamics and Earthquake Engineering, 2019, 125: 105716.
[16] Xu C J, Fan X Z, Pan X(通讯作者), et al. Aseismic Assessment of the Qiantang River Levee[J]. Journal of Earthquake Engineering, 2018, 22(9): 1626-1638.
[17] Xu C J, Yin M, Pan X D(通讯作者). Field test and numerical simulation of tidal bore pressures on sheet-pile groin in Qiantang River[J]. Marine Georesources & Geotechnology, 2016, 34(4): 303-312.
[18] R Xiao, D Ni, Z Weng, X Pan. Static Properties of Kaolinite Samples from Different Structures and the Influence of Strain Rate[J]. Applied Sciences, 2024, 14(24): 11531.
[19] Hong-lei Sun, Zi-li He, Kun Pan, Jing-ling Lu, Xiao-dong Pan, Li Shi, and Xue-yu Geng. Consolidation mechanism of high-water-content slurry during vacuum preloading with prefabricated vertical drains[J]. Canadian Geotechnical Journal, 2022, 59(8): 1373-1385.
[20] Tao Y, Zeng S, Sun H, Cai Y, Zhang J, Pan X. A spatiotemporal deep learning method for excavation-induced wall deflections[J]. Journal of Rock Mechanics and Geotechnical Engineering, 2024, 16(8): 3327-3338.
[21] Li P, Zhu C, Pan X, Lv B, Pan K. Undrained shear behavior of silty sand with a constant state parameter considering initial stress anisotropy effect[J]. Scientific Reports, 2024, 14(1): 2213.
[22] Shi L, Jiang J, Wang Q, Sun H, Yuan Z, Pan X. Numerical study on movements of soil particles forming clogging layer during vacuum preloading of dredged slurry[J]. Granular Matter, 2021, 23: 1-17.
[23] Shi L, Yin X, Sun H, Pan X, Yuan Z, Cai Y. A new approach for determining compressibility and permeability characteristics of dredged slurries with high water content[J]. Canadian Geotechnical Journal, 2022, 59(6): 965-977.
[24] Liu S, Cai Y, Sun H, Geng X, Shi L, Pan X. Consolidation considering clogging effect under uneven strain assumption[J]. International Journal of Geomechanics, 2021, 21(1): 04020239.
[25] Zhang H, Liu S, Sun H, Cai Y, Geng X, Pan X, Deng Y. Large-strain self-weight consolidation of dredged sludge[J]. International Journal of Geomechanics, 2022, 22(1): 04021247.
[26] Yuan Z, Boström A, Cai Y, Pan X, Cao Z, Shi L. The wave function method for calculation of vibrations from a twin tunnel in a multi-layered half-space[J]. Soil Dynamics and Earthquake Engineering, 2019, 125: 105716.
[27] Yuan Z, Cai Y, Sun H, Shi L, Pan X. The influence of a neighboring tunnel on the critical velocity of a three-dimensional tunnel-soil system[J]. International Journal of Solids and Structures, 2021, 212: 23-45.
[28] Yuan Z, Xu D, Shi L, Pan X, He B, Hu M, Cai Y. Hybrid analytical-numerical modelling of ground vibrations from moving loads in a tunnel embedded in the saturated soil[J]. European Journal of Environmental and Civil Engineering, 2022, 26(12): 6047-6075.
[29]陈晓波, 潘晓东.不均匀波浪荷载作用下海积软黏土的动力特性[J].海洋工程,2024,42(02):105-114.
[30] 周泽灵,沈坚,戴显荣,段冰,潘晓东.基于稀疏字典学习的路堤长期沉降预测研究[J].工业建筑,2025,55(09):218-225.
[31] 陈军,孙枫,庄兴岳,李佩佩,潘晓东,吴大志.基于HSS模型的台州软土地区基坑开挖位移分析[J].岩土工程学报,2025,47(S1):212-217.
[32] 许莹莹,朱晨,孙枫,潘坤,潘晓东.海相软土弹性剪切模量及静动力刚度弱化特性[J].浙江工业大学学报,2025,53(02):131-137+144.
[33] 黄文红,徐松,徐长节,何建国,朱碧堂,童立红,潘晓东,赵俊宇.波纹钢板套衬加固大断面隧道衬砌力学性能[J].铁道建筑,2024,64(09):108-113.
[34] 陈志军,朱晨,潘晓东,潘坤.台州湾新区软土小应变硬化模型参数试验研究[J].工业建筑,2024,54(12):186-193.
[35] 袁宗浩,姚云龙,何奔,李娜,许丹婷,潘晓东.海上风机桩-筒复合基础基频特性分析[J].浙江工业大学学报,2024,52(02):142-148.
[36] 吕斌,潘坤,潘晓东.考虑静偏应力影响的含粉粒砂土循环与循环后特性研究[J].珠江水运,2023,(08):40-44.
[37] 摇铖,李保忠,胡达敏,程骏,王昕,方巽科,潘晓东.温州鹿城广场超高层塔楼不同持力层长短桩基础实测与分析[J].建筑结构,2022,52(19):66-73+40.
[38] 袁宗浩,邓智宝,谢强,吕江,赵晖,潘晓东.根系种类和含根量对土体强度及边坡稳定性影响[J].浙江工业大学学报,2022,50(05):498-505.
[39] 孙宏磊,陆逸,潘晓东,史吏,蔡袁强.真空预压作用下初始含水率对疏浚淤泥固结影响研究[J].岩土力学,2021,42(11):3029-3040.
[40] 何奔,姜贞强,王晓强,潘晓东,袁宗浩,史吏.桩-筒组合基础水平受荷性能数值模拟研究[J].浙江工业大学学报,2021,49(03):274-281.
[41] 吕江,赵晖,袁宗浩,潘晓东,孙宏磊,蔡袁强.高速公路边坡植被修复对土壤微生物群落的影响[J].福建农林大学学报(自然科学版),2021,50(03):420-426.
[42] 陆素洁,童俊豪,潘坤,袁宗浩,潘晓东,史吏,何奔.静动荷载作用下海洋软黏土刚度弱化特性研究[J].岩土工程学报,2020,42(S1):116-120.
[43] 袁宗浩,戴凯鑫,潘晓东,蔡袁强,史吏.黏弹性边界对圆形衬砌隧道动力响应的影响[J].浙江工业大学学报,2020,48(05):532-540.
[44] 潘晓东,蔡袁强,胡敏云.土层非线性非平稳有效应力动力响应可靠度分析[J].岩石力学与工程学报,2005,(22):4172-4179.
[45] 冯斌,孙宏磊,蔡袁强,潘晓东,史吏.海底滑坡对海洋单桩冲击力试验研究[J].海洋工程,2019,37(06):114-121.
[46] 史吏,胡东东,蔡袁强,潘晓东,孙宏磊.增压式真空预压吹填淤泥孔压实时响应及加固机制初探[J].岩土力学,2020,41(01):185-193.
[47] 史吏,王慧萍,孙宏磊,潘晓东.群桩基础引发饱和地基振动的近似解析解[J].岩土力学,2019,40(05):1750-1760.
[48] 丁伯阳,徐庭,潘晓东,李通坤.格林函数表象积分对打桩排水的计算[J].岩土力学,2014,35(07):1935-1942.
[49] 史吏,蔡袁强,潘晓东.列车加减速引起轨道结构和饱和地基振动[J].浙江大学学报(工学版),2013,47(11):1932-1938+1944.
[50] 潘晓东,叶剑,邹胜勇,王勇.疏港公路抛石路堤软土地基沉降分析研究[J].浙江工业大学学报,2013,41(04):464-467+472.
[51] 石吉森,丁翠红,潘晓东.对水平荷载作用下的排桩效率的研究[J].中国水运(下半月),2013,13(12):292-294+296.
[52] 彭卫兵,熊志洪,潘晓东,赵麒麟.基于OpenSEES的圬工拱桥内力分析及倒塌过程模拟[J].工程力学,2013,30(04):162-168.
[53] 童建波,潘晓东,庄迎春.某土—岩组合深基坑案例分析与治理[J].工程勘察,2013,41(04):19-24.
[54] 彭卫兵,史贤豪,刘萌成,潘晓东,熊志洪.钢管混凝土叠合柱施工偏差对极限承载力的影响[J].浙江工业大学学报,2013,41(01):80-83.
[55] 李杰,潘晓东.某小区住宅楼倾斜及其地基加固治理案例分析[J].工程勘察,2012,40(12):27-31.
[56] 彭卫兵,熊志洪,潘晓东,钱波.钢管混凝土叠合柱高墩极限承载力影响因素分析[J].科技通报,2012,28(09):24-27+30.
[57] 彭卫兵,赵麒麟,潘晓东,熊志洪.基于实体单元的桥梁截面内力计算研究[J].土木工程学报,2012,45(09):91-99.
[58] 党改红,丁伯阳,袁金华,潘晓东.饱和土中伴有排水问题爆炸场动力反应Green函数计算[J].振动与冲击,2012,31(09):102-106+159.
[59] 刘斐,潘晓东.圬工拱桥极限荷载理论分析研究[J].安徽水利水电职业技术学院学报,2012,12(01):4-6.
[60] 杨伟,丁伯阳,潘晓东,朱益军,陶海冰.基于GIS的边坡三维稳定性计算[J].浙江工业大学学报,2012,40(01):92-95.
[61] 丁伯阳,陈军,潘晓东.饱和多孔介质中Lamb问题的Green函数解答[J].力学学报,2011,43(03):533-541.
[62] 丁伯阳,梁师俊,楼可城,潘晓东.高层结构地震反应计算中实际地震记录的选取[J].土木工程学报,2010,43(S1):16-21.
[63] 王军,蔡袁强,丁光亚,潘晓东.双向激振下饱和软黏土动模量与阻尼变化规律试验研究[J].岩石力学与工程学报,2010,29(02):423-432.
[64] 王军,丁光亚,潘晓东.各向异性固结软粘土的循环软化-孔压模型[J].哈尔滨工业大学学报,2009,41(12):166-170.
[65] 丁伯阳,袁金华,潘晓东.饱和土动力学问题Green函数计算的抽象集成与OOP实现[J].中国科学(G辑:物理学 力学 天文学),2009,39(02):284-292.
[66] 胡敏云,彭孔曙,潘晓东.复合土钉墙工作性状的有限元模拟与分析[J].岩土力学,2008,(08):2131-2136+2162.
[67] 石坚韧,潘晓东,王竹.基于GIS技术城市虚拟场地设计的教学系统[J].高等工程教育研究,2008,(04):143-145.
[68] 王继成,丁翠红,潘晓东.承台大小、埋深对桩水平承载力影响的有限元分析[J].公路交通科技(应用技术版),2007,(12):122-124.
[69] 王继成,潘晓东,丁翠红.翼板、承台埋深对桩水平承载力的影响研究[J].人民长江,2007,(08):162-164.
[70] 蔡袁强,刘飞禹,徐长节,潘晓东.交通荷载下加筋道路弹黏塑性有限元分析[J].浙江大学学报(工学版),2006,(10):1743-1748.
[71] 宋洋,宣伟丽,徐长节,蔡袁强,赵晖,潘晓东.涌潮作用下桩式丁坝横向动力特性现场试验及数值分析[J].海洋工程,2006,(03):41-48.
[72] 潘晓东,董天乐,蔡袁强,徐长节.非线性成层地基下基岩平稳地震动输入[J].振动工程学报,2006,(02):246-251.
[73] 潘晓东,蔡袁强,徐长节,张云峰.循环荷载下黏弹性饱和土层的一维固结[J].岩土力学,2006,(02):272-276.
[74] 潘晓东,蔡袁强,徐长节.非线性成层地基非平稳动力响应可靠度分析[J].浙江大学学报(工学版),2005,(11):1658-1662+1674.
[75] 潘晓东,秦从律,钱磊.与建筑抗震设计规范相对应的地面地震动随机模型参数研究[J].地震研究,2005,(01):82-85.
[76] 吴琦琪,潘晓东.围护结构对上部结构抗震影响分析[J].低温建筑技术,2004,(03):35-37.
[77] 潘晓东,徐长节,蔡袁强.水泥搅拌桩加固坝基动力响应分析[J].振动工程学报,2001,(03):115-119.
授权专利
[1] 潘晓东;谢强;袁宗浩;蔡袁强;孙宏磊;赵晖;吕江. 一种基于反滤层的消落带边坡生态治理方法. ZL202111550405.9
[2] 潘晓东;周廉默;何自立;蔡袁强;孙宏磊;史吏;袁宗浩;沈梦芬;王康宇;潘坤. 真空预压过程中观测土颗粒运动的试验系统及试验方法. ZL202010185736.6
[3] 陈建绮;潘晓东;潘坤. 一种基于单调三轴的洁净砂和粉砂单调剪切行为检测方法. ZL202011623593.9
[4] 潘晓东;赵蕾;徐长节. 厂房结构变形实时监测及安全预警系统. ZL201510233243.4
[5] 潘晓东;姜维;夏云;姜妙;陈楚楚. 一种泡沫封堵防火材料. ZL201210591553.X