代表性科研项目: 1. 青岛理工大学高层次人才引进项目,2023/08 -2026/08,20万元,在研,主持。 2. 吉林大学研究生创新研究计划项目,101832020CX233,基于深度学习的三维地质模型反演研究,2020/09-2021/09,0.8万,结题,主持。 3. 吉林大学研究生创新研究计划项目,2022084,耦合随机模型和深度学习技术的地下结构智能识别算法研究,2022/09-2023/09,0.6万,结题,主持。 4. 国家重点研发计划项目,2018YFC1800900,场地污染实时响应监测预测预警技术与装备研究,2018/12-2023/12,1678万,结题,参加。 5. 国家自然科学基金核技术创新联合基金,U2267217,核素在多尺度裂隙系统中运移的尺度效应研究,280万,2023/01-2026/12,在研,参加。 6. 国家自然科学基金面上基金,41772253,地下水溶质运移模型的尺度效应和不确定性分析,67万,2020/01-2022/12,结题,参加。 代表性论文: 1. Zhan C., Dai Z.*, Soltanian M.R., Zhang X.* Stage-Wise Stochastic Deep Learning Inversion Framework for Subsurface Sedimentary Structure Identification[J]. Geophysical Research Letters, 2022, 49(1): e2021GL095823. (中科院1区 Top, Nature Index期刊,IF = 5.2,入选地球科学领域ESI高被引及热点论文) 2. Zhan C., Dai Z.*, Yang Z., Zhang X.*, Ma Z., Thanh H.V., Soltanian M.R. Subsurface sedimentary structure identification using deep learning: A review[J]. Earth-Science Reviews, 2023, 239: 104370.(中科院1区 Top,IF = 12.1,入选地球科学领域ESI高被引及热点论文) 3. Zhan C., Dai Z.*, Soltanian M.R., de Barros F.P.J. Data-Worth Analysis for Heterogeneous Subsurface Structure Identification With a Stochastic Deep Learning Framework[J]. Water Resources Research, 2022, 58(11): e2022WR033241. (中科院1区 Top, IF =5.4,入选环境领域ESI高被引及热点论文) 4. Zhan C., Dai Z.*, Samper J., Yin S., Ershadnia R., Zhang X., Wang Y., Yang Z., Luan X., Soltanian M.R. An Integrated Inversion Framework for Heterogeneous Aquifer Structure Identification with Single-Sample Generative Adversarial Network[J]. Journal of Hydrology, 2022, 610: 127844. (中科院1区 Top, IF = 6.4,入选工程领域ESI高被引论文) 5. Du, Z., Dai, Z. *, Yang, Z., Zhan, C. *, Chen, W., Cao, M., ... & Soltanian, M. R.. Exploring hydrogen geologic storage in China for future energy: Opportunities and challenges. Renewable and Sustainable Energy Reviews, 2024, 196, 114366. (中科院1区 Top, IF = 15.9) 6. Ma Z., Dai Z., Zhang X.*, Zhan C.*, Gong H., Zhu L., Wallace C.D., Soltanian M.R. Dispersivity variations of solute transport in heterogeneous sediments: numerical and experimental study[J]. Stochastic Environmental Research and Risk Assessment, 2022, 36(2): 661-677. (中科院3区, IF = 4.2) 7. Dai, Z., Zhan, C., Dong, S., Yin, S., Zhang, X.*, & Soltanian, M. R. How does resolution of sedimentary architecture data affect plume dispersion in multiscale and hierarchical systems? Journal of Hydrology, 2020, 582: 124516. (中科院1区 Top, IF = 6.4) 8. Dai, Z., Zhan, C., Soltanian, M. R., Ritzi, R. W., & Zhang, X.* Identifying spatial correlation structure of multimodal permeability in hierarchical media with Markov chain approach. Journal of Hydrology, 2019, 568: 703-715. (中科院1区 Top, IF = 6.4) 授权专利: 1. Zhenxue Dai, Chuanjun Zhan. Inverse identification method of aquifer structure based on octave convolution residual network, 2021.6.9,澳大利亚革新专利,2021102281 2. Zhenxue Dai, Chuanjun Zhan, Zhijie Yang. Stage-wise stochastic inversion identification method of aquifer structure based on deep learning, 2021.9.15,澳大利亚革新专利,2021104794. 3. 戴振学,湛传俊. 一种基于离散卷积残差网络的含水层结构反演识别方法, 2022.11.15, 国家发明专利,ZL202110354004.X 4. 戴振学,湛传俊,杨志杰. 一种基于深度学习的含水层结构阶段式随机反演识别方法,2022.07.12,国家发明专利,ZL202110811519.8. 5. 戴振学,湛传俊.基于离散卷积残差网络的含水层结构反演识别软件DOCRN-IAS V1.0,2021.06.03,软件著作权,2021SR0824024. 6. 戴振学,湛传俊,杨志杰. 基于深度学习的含水层结构阶段式随机反演识别软件AI-GEOST V1.0,2021.08.05,软件著作权,2021SR1158215. 7. 戴振学,夏宇洲,湛传俊. 基于距离反比插值的土壤结构识别软件 P-IDW V1.0,2023.01.19,软件著作权,2023SR0123523. |