科研项目
纵向项目
1.浙江省自然科学基金青年基金, LQN26E080018, 考虑胶结损伤机理的水泥土小应变模量演化规律及本构模型研究, 2026/01-2027/12, 主持
2.浙江省“尖兵”“领雁”科技计划项目, 2025C02003, 沉井式大断面竖井掘进新工艺与装备, 2025/01-2026/12, 2025/01-2025/12, 参与
3.国家自然科学基金面上项目, 52178344, 复杂应力路径下土体各向异性小应变特性及其机理研究, 2022/01-2025/12., 参与
4.浙江省教育厅一般项目, Y202558799, 水-力耦合驱动下高铁路基孕灾机制与病害预警, 2025/10-2027/10, 参与
横向项目
1.杭州国威建设工程有限公司, 26050079-J, 基于地基加固的滨海软土地区深大基坑开挖支护关键技术, 2026/01-2027/12, 主持
2.建基建设集团有限公司, 25051027-J, 地铁隧道洞内加固技术及装备研发, 2025/06-20230/06, 参与
中交建筑集团有限公司, 长距离大断面矩形顶管下穿京杭大运河施工关键技术研究, 2023/06-2025/12, 参与.
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发表论文
1.Zhou Z H, Wang H N, Jiang M J. Elastic constants obtained analytically from microscopic features for regularly arranged elliptical particle assembly[J]. Granular Matter, 2021, 23(2): 1-13.
2.Zhou Z H, Wang H N, Jiang M J. Macro-and micro-mechanical relationship of the anisotropic behaviour of a bonded ellipsoidal particle assembly in the elastic stage[J]. Acta Geotechnica, 2021, 16(12): 3899-3921.
3.Zhou Z H, Wang H N, Jiang M J. Strength criteria at anisotropic principal directions expressed in closed form by interparticle parameters for elliptical particle assembly[J]. Granular Matter, 2023, 25(1): 1-25.
4.Zhou Z H, Wang H N, Jiang M J. Micromechanical mechanism-based anisotropic strength criteria for regularly arranged elliptical particle assembly[J]. Acta Geotechnica, 2023, 19(6): 3577-3602.
5.Zhou Z H, Yin Z Y, He G F, Zhang P, Jiang M J. The potential of a multi-fidelity residual neural network based optimizer to calibrate DEM parameters of rock-like bonded granular materials[J]. Computers and Geotechnics, 2024, 168: 106137.
6.Zhou Z H, Wang H N, Jiang M J. From micro to macro: creep behaviour and closed-form expression of viscoelastic parameters for a rheological particle assembly[J]. Computers and Geotechnics, 2024, 173: 106557.
7.Zhou Z H, Yin Z Y, He G F, Jiang M J. A multi-fidelity residual neural network based surrogate model for mechanical behaviour of structured sand[J]. International Journal for Numerical and Analytical Methods in Geomechanics, 2024, 48(12): 3141-3163.
8.Zhou Z H, Wang H N, Jiang M J. Theoretical study on the water-induced weakening of rock based on microstructural mechanics approach[J]. European Journal of Environmental and Civil Engineering. 2024, 29(1), 89-111.
9.Zhou Z H, Wang H N, Jiang M J. Theoretical study on the inherently anisotropic MICP-cemented sand by micromechanics-based model[J]. Granular Matter, 2025, 27(2): 38.
10.Zhou Z H, Wang H N, Jiang M J. Theoretical Analysis of Macroscopic Mechanical Properties of Coexistence Type Methane Hydrate-Bearing Sediments by Micromechanics-Based Model[J]. International Journal for Numerical and Analytical Methods in Geomechanics, 2025, 49(9): 2217-2238.
11.周志豪, 王华宁, 蒋明镜. 岩石化学风化力学特性的宏微观定量关联探究[J]. 同济大学学报(自然科学版), 2024, 52(06): 911-919.
蒋明镜, 陈瑞鑫, 周志豪. 考虑微观力学机制的胶结岩土材料各向异性强度准则[J]. 岩土力学(录用), 2025.
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专利情况
杜晓庆, 周杨, 张盛华, 周志豪, 宗振邦, 卢慧, 张洋. 一种基于多圆柱尾流激振的风致振动能量采集器. 授权号: ZL201611140496.8
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