获奖:
(1) 工程废弃泥浆绿色高效减量与资源化利用成套技术,浙江省科学技术奖,科技进步奖,一等奖,2024,排名第六
(2) 工程废弃泥浆绿色高效减量与资源化利用成套技术,浙江省岩土力学与工程学会科学技术奖,科技进步奖,一等奖,2024,排名第二
(3) 广州南沙软土地基真空联合堆载预压处理及桩基选型关键技术研究,广东省市政行业协会,技术开发,一等奖,2023,排名第七
专著:
(1) 孙宏磊,徐山琳,胡正.计算流体力学耦合离散元方法及其在岩土工程中的应用,北京理工大学出版社,2023
科研论文:
(1) Xu Shanlin, Wang Jianfeng, Hu Lingkai, et al. Unveiling intensified suffusion during triaxial shearing via coupled CFD-DEM simulation[J]. Journal of Geotechnical and Geoenvironmental Engineering, 2026, ZJUTT0P100,IF=4.4 (accepted)
(2) Xu Shanlin, Ye Chenhao, Sun Honglei, et al. A validated two-phase flow model for characterizing the coupled sedimentation and self-weight consolidation of slurries[J]. Canadian Geotechnical Journal, 2026, 63: 1-16, ZJUTT0P100, IF=3.6
(3) Cao Hongtao, Xu Shanlin*, Xie Ji, et al. Enhancing bentonite slurry with sodium alginate for subsea tunnelling: Rheological behavior, infiltration, and filter cake characteristics[J]. Tunnelling and Underground Space Technology, 2026, 167: 107031. JCR Q1分区,IF=7.4
(4) Zhu Yanzhen, Sun Honglei, Xu Shanlin*, The failure process and stability analysis of earthen dam under the coupling effect of seepage–suffusion–stress[J], Buildings, 2026, 16(2). JCR Q2 分区,IF=3.1
(5) Cao Hongtao, Sun Honglei, Xu Shanlin*, et al. Biopolymer-modified bentonite slurry with gellan gum for high salt resistance in marine geotechnical engineering[J]. Canadian Geotechnical Journal, 2025, 62: 1-15. ZJUTT0P100, IF=3.6
(6) Zhu Yanzhen, Xu Shanlin, Yu Tao, et al. A probabilistic model for predicting suffusion-induced fines loss[J], Computers and Geotechnics, 2025, 188: 107620. JCR Q1分区,IF=6.2
(7) Xu Shanlin, Hu Lingkai, Sun Honglei, et al. Investigating peak strength of gap-graded soils through discrete element method: Mechanisms and prediction[J]. Granular Matter, 2025,
27-42, 2025. JCR Q2分区,IF=2.9
(8) Zhu Yanzhen, Hu, Lingkai, Xu Shanlin*. et al. Investigation on the mechanism of size effect on suffusion via CFD-DEM simulations. Acta Geotechnica, 2024. JCR Q1分区,IF=5.7
(9) Cao Hongtao, Sun Honglei, Xu Shanlin*, et al. Infiltration Model of Rheological Bentonite Slurry Through Sands [J]. Journal of Geotechnical and Geoenvironmental Engineering, 2024, ZJUTT0P100,IF=4.4
(10) Xu Shanlin, Shi Junqiang, Sun Honglei, et al. Effects of a new synthetic Fe-PAM flocculants on filtration and consolidation of bentonite slurry[J]. Construction and Building Materials, 2024, JCR Q1分区,IF=8
(11) Xu Shanlin, Shi Junqiang, Deng Jing. Flocculation and dewatering of the Kaolin slurry treated by single- and dual-polymer flocculants[J]. Chemosphere, 2023, 328, 138445, JCR Q1分区,IF=8
(12) Zhu Yanzhen, Sun Honglei, Xu Shanlin*, et al. Mechanics of the penetration and filtration of cement-based grout in porous media: New insights from CFD–DEM simulations[J]. Tunnelling and Underground Space Technology, 2023, 133: 104928. JCR Q1分区,IF=7.4
(13) Xu Shanlin, Zhu Yanzhen, Cai Yuanqiang, et al. Predicting the permeability coefficient of polydispersed sand via coupled CFD–DEM simulations[J]. Computers and Geotechnics, 2022, 144: 104634. JCR Q1分区,IF=6.2
(14) Xu Shanlin, Zhu Yanzhen, Cao Hongtao, et al. Studying the soil column formation in soft soil improved by vacuum preloading via coupled scale‐up CFD‐DEM simulations[J]. International Journal for Numerical and Analytical Methods in Geomechanics, 2022, 46(7): 1272-1291. JCR Q1分区,IF=3.6
(15) Sun Honglei, Lu Jingling, Xu Shanlin*, et al. Effects of lime and polymer flocculants on consolidation behaviours of high-water content sludge[J] Marine Georesources & Geotechnology, 2022, 1-12. JCR Q2分区,IF=2.3
(16) Xu Shanlin, Cao Hongtao, Zhu Yanzhen, et al. Mechanism of Filtration Behaviors of Cement-Based Grout in Saturated Sand under Different Grouting Conditions[J]. Geofluids, 2022. JCR Q2分区,IF=1.2
(17) Xu Shanlin, Sun Honglei, Yuanqiang Cai, et al. Studying the orifice jamming of a polydispersed particle system via coupled CFD-DEM simulations[J]. Powder Technology, 2020, 368: 308-322. JCR Q2分区,IF=5.13
(18) Sun Honglei, Xu Shanlin, Pan Xiaodong, et al. 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. JCR Q1分区,IF=3.8
(19) Sun Honglei, Li D, Xu Shanlin*, et al. Modeling the process of cohesive sediment settling and flocculation based on CFD–DEM approach[J]. Granular Matter, 2019, 21(2): 33. JCR Q2分区,IF=2.9
(20) Xu Shanlin, Sun Rui, Cai Yuanqiang, et al. Study of sedimentation of non-cohesive particles via CFD--DEM simulations[J]. Granular Matter, 2018, 20(1): 4.JCR Q2分区,IF=2.9
(21) Shi Li, Wang Qiuqi, Xu Shanlin*, et al. Numerical study on clogging of prefabricated vertical drain in slurry under vacuum loading[J]. Granular Matter, 2018, 20(4): 74. JCR Q2分区,IF=2.9
专利:
(1) 一种泥浆-絮凝剂管道混合与自搅拌装置,CN114100402A.2022-03-01,排名第一,公开
(2) 一种共混高分子絮凝剂及其制备方法和在泥浆絮凝脱水处理中的应用,CN116789876A. 2023-09-22,排名第一,公开
(3) 一种基于stokes定律的流体粘度测试装置及使用方法,CN202211699437.X,排名第三,公开
(4) 一种基于磁性反馈的注浆监测系统及其使用方法,CN118148134A.2024-06-07,排名第一,公开
(5) 一种测量泥浆渗透系数的减压过滤装置,CN118150422A.2024-06-07,排名第二,公开
(6) 一种盾构管片支撑抗浮装置及其使用方法,CN118008357A.2024-05-10,排名第三,公开
(7) 一种基于离散元法与机器学习耦合的间断级配土应力应变预测方法,CN119249852B.2025-11-14,排名第二,授权
(8) 一种两相流与数据同化耦合的黏土沉降曲线预测方法,CN121388349A.2026-02-10,排名第二,公开
(9) 基于CFD-DEM与动网格耦合的渗流侵蚀模拟方法,CN121072410B.2026-02-17,排名第二,授权
软著:
(1) 岩土工程淤泥沉降计算软件V1.0,2023SR0577160,2023-3-29,排名第一
(2) 不同土体渗透系数计算软件V1.0, 2022SR0561998,2022-3-14,排名第二
(3) 盾构掌子面动态切削注浆预测软件V1.0,2023SR0531965,2023-3-1,排名第三
(4) 高含水率泥浆沉降固结求解软件V1.0,2024SR1358977,2024-9-12,排名第二
规范:
(1) 中国工程建设标准化协会标准(CECS)“疏浚淤泥场地建筑地基基础技术规程”,T/CECS 1182-2022,2023-03-01