专著:
1. 三峡工程泥沙模拟与调控,中国水利水电出版社,2017.08 (排名2)
2. 高频粒子图像测速系统原理与实践,清华大学出版社,2017.09 (排名4)
3.粒子示踪测速技术原理与应用, 科学出版社,2012.11
4.长江上游来水来沙变化趋势研究 ,科学出版社,2010.07
论文:
英文期刊
1. Yanchong Duan, Peng Zhang, Qiang Zhong, Dejun Zhu, Danxun Li*. Characteristics of wall-attached motions in open channel flows, Physics of Fluids (2020): doi: 10.1063/5.0004323.
2. Yanchong Duan, Qigang Chen, Danxun Li, Qiang Zhong*. Contributions of very large-scale motions to turbulence statistics in open channel flows, Journal of Fluid Mechanics (2020), vol. 892, A3. doi:10.1017/jfm.2020.174.
3. Peng Zhang, Yanchong Duan, Danxun Li, Jiang Hu, Wenjie Li, and Shengfa Yang. Turbulence statistics and very-large-scale motions in decelerating open-channel flow, Physics of Fluids (2019): doi.org/10.1063/1.5129111.
4. Chen Huai, Li Danxun, Bai Ruonan, Wang Xingkui. Comparison of swirling strengths derived from two- and three-dimensional velocity fields in channel flow,AIP ADVANCES (2018), DOI: 10.1063/1.5023533.
5. Cao Lie-kai, Li Dan-xun, Chen Huai, Liu Chun-jing. Spatial relationship between energy dissipation and vortex tubes in channel flow. Journal of Hydrodynamics (2017), 29(4): 575-585, DOI: 10.1016/S1001-6058(16)60770-9
6. ZhONG Qiang, LI Danxun*, CHEN Qigang, WANG Xingkui. Coherent structures and their interactions in smooth open channel flows, Environmental Fluid Mechanics, 2015, Environmental Fluid Mechanics, Vol.15, No.3:653-672.
7. Qigang Chen, Qiang Zhong, Xingkui Wang and Danxun LI*. An improved swirling-strength criterion for identifying spanwise vortices in wall turbulence. Journal of Turbulence, 2014, 15(2): 71-87.
8. LI Danxun*, Q. Zhong, M.Z. Yu, X.K. Wang. Large-scale particle tracking velocimetry with multi-channel CCD cameras. International Journal of Sediment Research, 2013, 28(1): 103-110.
9. LI Danxun*, MUSTE M., ZHONG Qiang, WANG Xing-kui. An analytical study on turbulence with mixed-flow model and two-phase model. International Journal of Sediment Research, 2012, Vol.27, No.2, pp.235-239.
10. LI Danxun*, WANG Xingkui, ZHONG Qiang. Bias errors induced by cross-talk in two-phase flow measurements. Journal of Hydraulic Research, 2010, 48(2): 250-254.
中文期刊
1. 李丹勋.浅析水利工程伦理的核心内容[J].水利发展研究,2020,20(01):26-31+35.
2. 晏自立,朱德军,段炎冲,张鹏,李丹勋.低坝影响下的流场与淤积形态特性试验研究[J/OL].水科学进展:1-10[2020-08-12].http://kns.cnki.net/kcms/detail/32.1309.P.20200519.1411.018.html.
3. 晏自立,徐元,李丹勋.推移质翻越低坝输移特性的试验研究[J].水科学进展,2020,31(03):356-365.
4. 曹列凯,Detert Martin,李丹勋.基于特征点匹配的室内表面流场快速测量系统[J].水力发电学报,2019,38(11):1-8.
5. 徐元,朱德军,孟震,李丹勋.河床粗化过程中推移质输移特征试验研究[J]. 水科学进展, 2018, 29(03):339-347.
6. 曹列凯,白若男,钟强,李丹勋,王兴奎.基于图像测速的薄壁堰流表面流场测量方法[J].水科学进展,2017,28(04):598-604.
7. 白若男,曹列凯,李丹勋.Vectrino Profiler在明渠紊流测量中的适用性研究[J].水力发电学报, 2016, 35(11):35-44.
8. 孟震,李丹勋,曹列凯,王兴奎.基于双目视觉和主动光源的河工模型三维地形测量方法[J].应用基础与工程科学学报,2016,24(05):901-913.
9. 段炎冲,李丹勋,王兴奎.长江上游梯级水库群拦沙效果分析[J].四川大学学报(工程科学版), 2015, 47(06):15-23.
10. 苗蔚,陈启刚,李丹勋,钟强.泥沙起动概率的高速摄影测量方法[J].水科学进展,2015,26(05):698-706.
发明专利
1. 李丹勋,段炎冲,任海涛,钟强,王兴奎. 一种用于TPIV测量的4台相机协同调节的安装平台[P]. CN106895232A,2017-06-27.
2. 杨文俊,李丹勋,陈启刚,李健,王兴奎. 一种原位实时测量悬移质浓度和级配的装置[P]. CN204302152U,2015-04-29.
3. 杨文俊,李丹勋,陈启刚,李健,王兴奎. 一种原位实时测量悬移质浓度和级配的装置及方法[P]. CN104535462A,2015-04-22.
4. 李丹勋,王浩,曹列凯,王兴奎. 一种测量河床淤积物样本压缩比的装置[P]. CN104297428A,2015-01-21.
5. 钟强,李丹勋,杨文俊,陈启刚,王兴奎. 一种天然河流中浮泥流变参数原位实时测量装置及其方法[P]. CN104155211A,2014-11-19.
6. 王兴奎,陈启刚,李丹勋,钟强. 基于旋转透镜的激光片光扫描系统[P]. CN103984092A,2014-08-13.
7. 钟强,杨文俊,李丹勋,陈启刚,王兴奎. 一种天然河流中泥沙浓度级配原位实时测量装置及其方法[P]. CN103969171A,2014-08-06.
8. 曹列凯,李丹勋,任海涛,王兴奎. 一种溃坝示踪器[P]. CN103806405A,2014-05-21.
9. 李丹勋,姜晓明,陈启刚,任海涛,王兴奎. 一种径流试验站的自动观测系统[P]. CN102590894A,2012-07-18.
10. 李丹勋,李健,庞东明,陈启刚,王兴奎. 一种基于人工造流技术的船载水华抑制装置[P]. CN102557161A,2012-07-11.