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[1] 国家自然科学基金优秀青年科学基金项目(海外)“恶劣环境下低碳混凝土耐久性”,2023-2026(主持)
[2] 江苏省自然科学基金青年项目“基于微结构的非饱和混凝土传输特性与模型”,2022-2024(主持)
[3] 江苏省土木工程材料重点实验室基金“非饱和状态下混凝土氯离子传输表征与多尺度模拟”,2022-2023(主持)
[4] 国家自然科学基金—联合基金“西北恶劣环境下绿色机制骨料高品质化及其混凝土全寿命周期性能演变机理(U21A20150)”,2022-2024(参与)
[5] 国家重点研发计划“大宗铝硅酸盐无机固废物相重构与转化利用科学基础(2019YFC1904904)”,2020-2023(参与)
[6] 国家自然科学基金项目“带裂缝混凝土的非饱和传输特性试验与理论研究(51808189)”,2018-2022(参与)
[7] 英国工程和自然科学基金项目“Development of a Novel Self-healing Composite for Sustainable andResilient Concrete Infrastructure(EP/R041504/1)”,2018-2020(参与)
973计划项目“严酷环境下混凝土材料与结构长寿命的基础研究(2015CB655100)”第二课题, 2015-2019(参与)
[1] C. Liu, M. Zhang*, Microstructure-basedmodelling of chloride diffusivity in non-saturated cement paste accounting forcapillary and gel pores, Cement andConcrete Research 168 (2023): 107153.
[2] C. Liu, Z. Xu, G. Chen, L. Yang, Y. Zhang, J. Gao*,Microscopic modelling of gas diffusivity in unsaturated cementitious materialsconsidering multiple diffusion regimes, International Journal of Heat andMass Transfer 192 (2022): 122916.
[3] C. Liu, Y. Qi, G. Chen, L. Yang,J. Gao*, Y. Zhang*, Multiscale numerical-analyticalmodelling of oxygen diffusivity in partially saturated concrete: Role ofinterfacial transition zone, Journal of Sustainable Cement-BasedMaterials (2022): 1-12.
[4] C. Liu, M. Zhang*,Multiscale modelling of ionic diffusivity in unsaturated concrete accountingfor its hierarchical microstructure, Cementand Concrete Research 156 (2022): 106766.
[5] C. Liu, B. Baudet, M. Zhang*,Lattice Boltzmann modelling of ionic diffusivity in non-saturated limestoneblended cement paste, Construction and Building Materials 316(2022): 126060.
[6] C. Liu, R. Qian, Y. Wang, Z. Liu*, Y. Zhang, Microscopicmodelling of permeability in cementitious materials: effects of mechanicaldamage and moisture conditions, Journal of Advanced Concrete Technology19, 11 (2021): 1120-1132.
[7] C. Liu, R. Qian, G. Liu, M.Zhang, Y. Zhang*, Three-dimensional modeling of transportproperties in hardened cement paste using metal centrifugation-based porenetwork, Journal of Materials in Civil Engineering 33, 12 (2021):04021361.
[8] C. Liu, M. Zhang*,Effect of curing temperature on hydration, microstructure and ionic diffusivityof fly ash blended cement paste: A modelling study, Construction andBuilding Materials 297 (2021): 123834.
[9] C.Liu, F. Wang, M.Zhang*, Modelling of 3D microstructure andeffective diffusivity of fly ash blended cement paste, Cement and ConcreteComposites (2020): 103586.
[10] C.Liu, Z. Liu*, Y. Zhang, Amulti-scale framework for modelling effective gas diffusivity in dry cementpaste: combined effects of surface, Knudsen and molecular diffusion, Cementand Concrete Research, 129(2020): 106035.
[11] C. Liu, R. Qian, Z. Liu*, G. Liu, Y. Zhang, Multi-scale modellingof thermal conductivity of phase change material/recycled cement pasteincorporated cement-based composite material, Materials & Design(2020): 108646.
[12] C. Liu, C. Qian, R. Qian, Z. Liu, Y. Zhang*,Numerical prediction of effective diffusivity in hardened cement paste betweenaggregates using different shapes of cement powder, Construction andBuilding Materials 223 (2019): 806-816.
[13] C. Liu, D. Xie, W. She, Z. Liu, Y. Zhang*,Numerical modelling of elastic modulus and diffusion coefficient of concrete asa three-phase composite material, Construction and Building Materials189 (2018): 1251-1263.
[14] C. Liu, G. Liu, M. Zhang, Y. Zhang*,Numerical simulation of the effect of cement particle shapes on capillary porestructures in hardened cement pastes, Construction and Building Materials173 (2018): 615-628.
[15] C. Liu, R. Huang, Y. Zhang*, M. Zhang, Modelling of irregular-shapedcement particles and microstructural development of Portland cement, Constructionand Building Materials 168 (2018): 362-378.
[16] L.Yang, K. Kang, D. Gao, J. Li, Y. Wang, C. Liu*,Effect of saturation degree on chloride transport in mortars under twoconditions: diffusion and continuous immersion, Materials and Structures55, 7 (2022): 1-13.
[17] R.Qian*, Y. Zhang, C. Liu*, Z. Liu, Y.Zhang, G. Liu, Effects of supplementary cementitious materials on pore-solutionchemistry of blended cements, Journal of Sustainable Cement-BasedMaterials (2021): 1-27.
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