张硕

副教授,博士生导师
通信地址:清华大学水利水电工程系泥沙馆005
邮编:100084
电话号码:010-62785566
E-mail:zhangs2019@tsinghua.edu.cn

教育背景

• 2010-2014:美国加利福尼亚大学伯克利分校地球与行星科学系,获博士学位;

• 2006-2010:清华大学水利水电工程系水利水电工程专业,获工学学士学位;

工作履历

• 2021至今

副教授,学生组组长

清华大学水利水电工程系

• 2019-2021

助理教授

清华大学水利水电工程系

• 2014-2019

地质研究员

沙特阿美石油公司驻美国休斯敦研究中心

开设课程

1.环境水文地质,研究生课程

2.化学海洋学,本科生课程

3.全球水发展,本科生课程

研究领域

与气候变化和碳源碳汇相关的水文地球化学过程,包括岩石风化,海洋碳循环,以及二氧化碳地质封存等

科研项目

国家级青年人才项目,多孔介质中溶质的迁移与转化, 2019-2022,结题,主持,项目经费:300万元

国家重点研发计划“政府间国际科技创新合作”重点专项—中国和南非政府间联合研究“全球海洋碳酸钙溶解速率及其碳汇效应:现状反演与未来气候变化条件下的预测研究”,2025-2027, 在研,主持,项目经费:200万元

青海省重大科技专项“三江源水源涵养功能评估与能力提升关键技术研究 ”,课题“气候变化下三江源河湖系统演变及其影响 ”,2024-2027,在研,主持,项目经费:300万元

面上项目,二氧化碳水岩反应与多孔介质渗透特性耦合关系的试验研究与模型开发, 2025-2028,在研,主持,项目经费:47万元

面上项目,指流对包气带污染物快速下渗的影响机理与模型研究:以氮污染为例, 2021-2024,结题,主持,项目经费:52万元

重点研发计划“长江黄河等重点流域水资源与水环境综合治理”专题“宁蒙灌区河湖灌排土壤地下水连续系统水热盐污养迁移转化与多要素调控”,2022-2026,结题,主持,项目经费:80万元

重点研发计划“冰冻圈要素演变及其对长江和黄河水资源的影响与应对”,专题“黄河源区水平衡变化及对水资源承载力的影响与应对策略”,2023-2026,在研,主持,项目经费:60万元

山水林田湖草专项:新疆乌伦古湖氟化物污染成因研究,2019-2021,结题,主持,项目经费:105万元

学术兼职

2022至今: Associate Editor, Journal of Hydrology

2025至今: Associate Editor, Scientific Data

学术成果

1. Zhou K, Yang M, Zhang S, Gao R, Zhang P, Shao L, et al. Volcanism-driven synchronous terrestrial and marine anoxia during the Kungurian (early Permian). Gondwana Research. 2025.

2. Wu Y, Huang Y, DeVries T, Liang H, Wang G, Zhang S. The dominant sink of oceanic calcium carbonate occurs in undersaturated seawater. Proceedings of the National Academy of Sciences. 2025;122(43):e2507771122.

3. Watkins JM, Jia Q, Zhang S, Devriendt LS, Chen S. A coral biomineralization model for dual clumped isotopes. Geochemistry, Geophysics, Geosystems. 2025;26(9):e2025GC012263.

4. Liu Y, Zhang S, Liu H-H, Huang Y, Zhan H, Wang G. An evaluation of the relationship between fingering flow fraction and water flux in natural field soil. Journal of Hydrology. 2025:133783.

5. Chen Z, Huang Y, Chen X, Nie C, Wan J, Zhang S. Global patterns and trends of vegetation water use efficiency inferred from solar-induced chlorophyll fluorescence from 2001 to 2020. Agricultural and Forest Meteorology. 2025;375:110865.

6. Chen X, Huang Y, Zhang S, Yang Y, Tan S, Nie C, et al. Projected strengthening of water constraint on seasonal peak photosynthesis under climatic warming in northern ecosystems. Geophysical Research Letters. 2025;52(15):e2024GL114461.

7. Zhou K, Zhang S, Yang M, Lu J, Gao R, Tong L, et al. Palaeoclimatic influence on lake palaeoenvironment and organic matter accumulation in the Middle Jurassic Shimengou formation (Qaidam basin, NW China). Geoenergy Science and Engineering. 2024;233:212581.

8. Jia Q, Zhang S, Watkins JM, Devriendt LS, Huang Y, Wang G. Modeled foraminiferal calcification and strontium partitioning in benthic foraminifera helps reconstruct calcifying fluid composition. Communications Earth & Environment. 2024;5(1):36.

9. Gao S, Zhang S, Huang Y, Han J, Zhang T, Wang G. A hydrological process-based neural network model for hourly runoff forecasting. Environmental Modelling & Software. 2024;176:106029.

10. DePaolo DJ, Zhang S. Reaction order of near equilibrium calcite dissolution: Uncertainties and ambiguities of isotopic tracer methods. Geochimica et Cosmochimica Acta. 2024;379:233-43.

11. Ashtiani BA, Simmons CT, Farhadi L, Zhang S. Groundwater sustainability assessment and the research-practice nexus. Elsevier; 2024. p. 132166.

12. Zhou K, Sun J, Yang M, Zhang S, Wang W, Gao R, et al. Geochemical Characteristics of the Middle Jurassic Coal-Bearing Mudstones in the Dameigou Area (Qaidam Basin, NW China): implications for paleoclimate, paleoenvironment, and organic matter accumulation. ACS omega. 2023;8(50):47540-59.

13. Zhang S, DePaolo DJ, Zhou R, Huang Y, Wang G. Origin and significance of ultra-slow calcite dissolution rates in deep sea sediments. Geochimica et Cosmochimica Acta. 2023;351:181-91.

14. Tong L, Liu X, Liu Y, Zhou K, Zhang S, Jia Q, et al. Accumulation of high concentration fluoride in the Ulungur Lake water through weathering of fluoride containing rocks in Xinjiang, China. Environmental Pollution. 2023;323:121300.

15. Qian N, Boyle EA, Zhou L, Tanzil J, Chen Q, Zhang S, et al. Spatial‐temporal Variability and Sources of Lead (Pb) in the Indian Ocean and Asian Marginal Seas. Journal of Geophysical Research: Oceans. 2023:e2022JC019222.

16. Lu P, Zhang S, Zhang G, Zühlke R. Early marine carbonate cementation in a relict shelf-edge coral reef North of Miami, Florida: Pseudo-coupled depositional and diagenetic modeling. Geoenergy Science and Engineering. 2023;231:212345.

17. Liu Y, Zhang S, Liu H-H. The relationship between fingering flow fraction and water flux in unsaturated soil at the laboratory scale. Journal of Hydrology. 2023;622:129695.

18. Zhou K, Lu J, Zhang S, Yang M, Gao R, Shao L, et al. Volcanism driven Pliensbachian (Early Jurassic) terrestrial climate and environment perturbations. Global and Planetary Change. 2022;216:103919.

19. Jia Q, Zhang S, Lammers L, Huang Y, Wang G. A model for pH dependent strontium partitioning during calcite precipitation from aqueous solutions. Chemical Geology. 2022;608:121042.

20. Gao S, Zhang S, Huang Y, Han J, Luo H, Zhang Y, et al. A new seq2seq architecture for hourly runoff prediction using historical rainfall and runoff as input. Journal of Hydrology. 2022;612:128099.

21. Chen X, Huang Y, Nie C, Zhang S, Wang G, Chen S, et al. A long-term reconstructed TROPOMI solar-induced fluorescence dataset using machine learning algorithms. Scientific Data. 2022;9(1):427.

22. Nie C, Huang Y, Zhang S, Yang Y, Zhou S, Lin C, et al. Effects of soil water content on forest ecosystem water use efficiency through changes in transpiration/evapotranspiration ratio. Agricultural and Forest Meteorology. 2021;308:108605.

23. March R, Zhang S, Liu H-H. Direct numerical simulation of density driven fingering flow: Towards a model to predict the spacing between halite fingers in hydrocarbon reservoirs. Journal of Petroleum Science and Engineering. 2021;205:108929.

24. Li A, Zhang S, Xu C, Zhao X, Zhang X. 3D printing of true pore-scale Berea sandstone and digital rock verification. SPE Journal. 2021;26(06):3719-24.

25. DePaolo DJ, Thomas DM, Christensen JN, Zhang S, Orr FM, Maher K, et al. Opportunities for large-scale CO2 disposal in coastal marine volcanic basins based on the geology of northeast Hawaii. International Journal of Greenhouse Gas Control. 2021;110:103396.

26. Zhang S, Zhou R, DePaolo DJ. The seawater Sr/Ca ratio in the past 50 Myr from bulk carbonate sediments corrected for diagenesis. Earth and Planetary Science Letters. 2020;530:115949.

27. Zhang S, DePaolo DJ. Equilibrium calcite-fluid Sr/Ca partition coefficient from marine sediment and pore fluids. Geochimica et Cosmochimica Acta. 2020;289:33-46.

28. Zhang S. The relationship between organoclastic sulfate reduction and carbonate precipitation/dissolution in marine sediments. Marine Geology. 2020;428:106284.

29. Lu P, Luo P, Zhang G, Zhang S, Zhu C. A mineral-water-gas interaction model of pCO2 as a function of temperature in sedimentary basins. Chemical Geology. 2020;558:119868.

30. Gao S, Huang Y, Zhang S, Han J, Wang G, Zhang M, et al. Short-term runoff prediction with GRU and LSTM networks without requiring time step optimization during sample generation. Journal of Hydrology. 2020;589:125188.

31. Zhang S, Lu P. Effect of micrite content on calcite cementation in an upper jurassic carbonate reservoir, Eastern Saudi Arabia. Journal of Petroleum Geology. 2019;42(1):79-89.

32. Watson F, Maes J, Geiger S, Mackay E, Singleton M, McGravie T, et al. Comparison of flow and transport experiments on 3D printed micromodels with direct numerical simulations. Transport in Porous media. 2019;129(2):449-66.

33. Zhang S, Lu P, Cantrell D, Zaretskiy Y, Jobe D, Agar SM. Improved quantification of the porosity–permeability relationship of limestones using petrographical texture. Petroleum Geoscience. 2018;24(4):440-8.

34. Mitnick EH, Lammers LN, Zhang S, Zaretskiy Y, DePaolo DJ. Authigenic carbonate formation rates in marine sediments and implications for the marine δ13C record. Earth and Planetary Science Letters. 2018;495:135-45.

35. Jobe T, Geiger S, Jiang Z, Zhang S, Agar S. Micropore network modelling from 2D confocal imagery: Impact on reservoir quality and hydrocarbon recovery. Petroleum Geoscience. 2018;24(3):323-34.

36. Ishutov S, Jobe TD, Zhang S, Gonzalez M, Agar SM, Hasiuk FJ, et al. Three-dimensional printing for geoscience: Fundamental research, education, and applications for the petroleum industry. AAPG Bulletin. 2018;102(1):1-26.

37. Zhang S, DePaolo DJ. Rates of CO2 mineralization in geological carbon storage. Accounts of chemical research. 2017;50(9):2075-84.

38. Beckingham LE, Steefel CI, Swift AM, Voltolini M, Yang L, Anovitz LM, et al. Evaluation of accessible mineral surface areas for improved prediction of mineral reaction rates in porous media. Geochimica et Cosmochimica Acta. 2017;205:31-49.

39. Zhang S, Liu H-H, van Dijke MIJ, Geiger S, Agar SM. Constitutive Relations for Reactive Transport Modeling: Effects of Chemical Reactions on Multi-phase Flow Properties. Transport in Porous Media. 2016:1--20.

40. Zhang S, Liu H-H. Porosity–permeability relationships in modeling salt precipitation during CO2 sequestration: Review of conceptual models and implementation in numerical simulations. International Journal of Greenhouse Gas Control. 2016;52:24-31.

41. Beckingham LE, Mitnick EH, Steefel CI, Zhang S, Voltolini M, Swift AM, et al. Evaluation of mineral reactive surface area estimates for prediction of reactivity of a multi-mineral sediment. Geochimica et Cosmochimica Acta. 2016;188:310-29.

42. Zhang S, Yang L, DePaolo DJ, Steefel CI. Chemical affinity and pH effects on chlorite dissolution kinetics under geological CO2 sequestration related conditions. Chemical Geology. 2015;396:208-17.

43. Zhang S, DePaolo DJ, Voltolini M, Kneafsey T. CO2 mineralization in volcanogenic sandstones: geochemical characterization of the Etchegoin formation, San Joaquin Basin. Greenhouse Gases: Science and Technology. 2015;5(5):622-44.

44. Zhang S, DePaolo DJ, Zheng L, Mayer B. Reactive transport modeling of stable carbon isotope fractionation in a multi-phase multi-component system during carbon sequestration. Energy Procedia. 2014;63:3821-32.

45. Zhang S, DePaolo DJ, Xu T, Zheng L. Mineralization of carbon dioxide sequestered in volcanogenic sandstone reservoir rocks. International Journal of Greenhouse Gas Control. 2013;18:315-28.

更新时间:2025-11-06