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翟钱,男,2005年本科毕业于东南大学土木工程学院,于2010年和2016年分别获新加坡南洋理工大学工学硕士和哲学博士学位。长期从事非饱和土力学基础研究工作,对非饱和土渗流,强度理论有较为突出的成果。研究成果已发表学术论文30篇,其中一作和通讯SCI国际高水平期刊论文18篇,主持或参与纵向及横向科研项目14项。担任《InternationalJournal of Geotechnical Engineering》编委,《Engineering Geology》、《Géotechnique》、《CanadianGeotechnical Journal》、《Acta Geotechnica》等国际期刊审稿人。
1. Zhai, Q., Ye W., Rahardjo H.,Satyanaga, A., Dai, G., & Zhao, X. (2022). Theoretical method for the estimation of vapour conductivity forunsaturated soil. Engineering Geology. (Accepted). (SCI indexed, Q1, Top)
2. Zhai, Q., Rahardjo, H., Satyanaga, A., Zhu, Y., Dai, G., & Zhao, X. (2021). Estimation of wetting hydraulic conductivity function for unsaturated sandy soil. Engineering Geology, 285, 106034. (SCI indexed, Q1, Top)
3. Zhai, Q., Rahardjo, H., Satyanaga, A., Dai, G., & Du, Y. (2020). Estimation of the wetting scanning curves for sandy soils. Engineering Geology, 272, 105635. (SCI indexed, Q1, Top)
4. Zhai, Q., Rahardjo, H., Satyanaga, A., & Dai, G. (2020). Estimation of the soil-water characteristic curve from the grain size distribution of coarse-grained soils. Engineering Geology, 267, 105502. (SCI indexed, Q1, Top)
5. Zhai, Q., Rahardjo, H., & Satyanaga, A. (2018). A pore-size distribution function based method for estimation of hydraulic properties of sandy soils. Engineering Geology, 246, 288-292. (SCI indexed, Q1, Top)
6. Zhai, Q., Rahardjo, H., & Satyanaga, A. (2017). Effect of bimodal soil-water characteristic curve on the estimation of permeability function. Engineering Geology, 230, 142-151. (SCI indexed, Q1, Top)
7. Zhai, Q., Rahardjo, H., & Satyanaga, A. (2016). Variability in unsaturated hydraulic properties of residual soil in Singapore. Engineering Geology, 209, 21-29. (SCI indexed, Q1, Top)
8. Zhai, Q., & Rahardjo, H. (2015). Estimation of permeability function from the soil–water characteristic curve. Engineering Geology, 199, 148-156. (SCI indexed, Q1, Top)
9. Zhai, Q., & Rahardjo, H. (2013). Quantification of uncertainties in soil–water characteristic curve associated with fitting parameters. Engineering Geology, 163, 144-152. (SCI indexed, Q1, Top)
10. Zhai, Q., Rahardjo, H., & Satyanaga, A. (2017). Effects of residual suction and residual water content on the estimation of permeability function. Geoderma, 303, 165-177. (SCI indexed, Q1, Top)
11. Zhai, Q., &Rahardjo, H. (2012). Determination of soil–water characteristic curvevariables. Computers and Geotechnics, 42, 37-43. (SCIindexed, Q1, Top)
12. Zhai, Q.,Rahardjo, H., Satyanaga, A., & Dai, G. (2020). Estimation of tensilestrength of sandy soil from soil–water characteristic curve. ActaGeotechnica, 15(12), 3371-3381. (SCI indexed, Q1, Top)
13. Zhai, Q.,Rahardjo, H., Satyanaga, A., & Dai, G. (2019). Estimation of unsaturatedshear strength from soil–water characteristic curve. Acta Geotechnica, 14(6),1977-1990. (SCI indexed, Q1, Top)
14. Zhai, Q.,Rahardjo, H., & Satyanaga, A. (2019). Estimation of air permeabilityfunction from soil-water characteristic curve. Canadian GeotechnicalJournal, 56(4), 505-513. (SCI indexed, Q2)
1. 翟钱*,戴国亮,赵学亮.土–水特征曲线对非饱和砂土抗剪强度的影响[J].岩土工程学报,2020,42(07):1341-1349.
2. 周林, 翟钱*.可变形土中孔径分布函数的模拟(英文)[J].Journal of Southeast University(EnglishEdition),2020,36(03):328-333.
3. 朱益瑶,翟钱*.概率统计法测算非饱和土渗透系数的理论研究[J].东南大学学报(自然科学版),2021,51(05):826-832.
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