【论文】
[1] Song, S., Zeng, L., Wang, Y., Li, G., & Deng, X. (2019). The response of river network structure to urbanization: a multifractal perspective. Journal of Cleaner Production, (online). (SCI, IF 5.79)
[2] Song, S., Xu, Y.P., Wu, Z.F., Deng, X., & Wang, Q. (2019). The relative impact of urbanization and precipitation on long-term water level variation in Yangtze River Delta. Science of the total environment, 648, 460-471. (SCI, IF 4.98)
[3] Song, S., Schmalz, B., & Fohrer, N. (2015). Simulation, quantification and comparison of in-channel and floodplain sediment processes in a lowland area–A case study of the Upper Stör catchment in northern Germany. Ecological Indicators, 57, 118-127. (SCI, IF 3.19)
[4] Song, S., Xu, Y.P., Zhang, J.X., Li, G., & Wang, Y.F. (2016). The long-term water level dynamics during urbanization in plain catchment in Yangtze River Delta, Agricultural Water Management, 174, 93-102. (SCI, IF 2.603)
[5] Song, S., Schmalz, B., Hörmann, G., & Fohrer, N. (2012). Accuracy, reproducibility and sensitivity of acoustic Doppler technology for velocity and discharge measurements in medium-sized rivers. Hydrological Sciences Journal, 57(8), 1626-1641. (SCI, IF 2.182)
[6] Song, S., Schmalz, B., & Fohrer, N. (2014). Simulation and comparison of stream power in-channel and on the floodplain in a German lowland area. Journal of Hydrology and Hydromechanics, 62(2), 133-144. (SCI, IF 1.469)
[7] Song, S., Schmalz, B., Xu, Y.P. & Fohrer, N. (2017). Seasonality of roughness - the indicator of annual river flow resistance condition in lowland catchment. Water resource management,31(11), 3299-3312. (SCI, IF 2.437)
[8] Song, S., Schmalz, B., Zhang, J. X., Li, G., & Fohrer, N. (2017). Application of modified Manning formula in the determination of vertical profile velocity in natural rivers. Hydrology Research, 48(1): 133-146. (SCI, IF 1.779)
[9] Song, S., Schmalz, B., & Fohrer, N. (2018). Improved Structure of Vertical Flow Velocity Distribution in Natural Rivers based on Mean Vertical Profile Velocity and Relative Water Depth. Hydrology Research, 49(3):878-892. (online) (SCI, IF 1.779)
[10] Deng, X., Xu, Y., Han, L., Song, S., Xu, G., & Xiang, J. (2018). Spatial-temporal changes in the longitudinal functional connectivity of river systems in the Taihu Plain, China. Journal of Hydrology, 566, 846-859.(SCI, IF 3.73)
[11] Pan, G., Xu, Y., Yu, Z., Song, S., & Zhang, Y. (2015). Analysis of river health variation under the background of urbanization based on entropy weight and matter-element model: A case study in Huzhou City in the Yangtze River Delta, China. Environmental research, 139, 31-35. (SCI, IF 4.37)
[12] Yang, L., Xu, Y., Han, L., Song, S., Deng, X., & Wang, Y. (2016). River networks system changes and its impact on storage and flood control capacity under rapid urbanization. Hydrological Processes, 30(13), 2401-2412. (SCI, IF 2.67)
[13] Wang, Y., Xu, Y., Lei, C., Li, G., Han, L., Song, S., Yang, L. & Deng, X. (2016). Spatio-temporal characteristics of precipitation and dryness/wetness in Yangtze River Delta, Eastern China, during 1960–2012. Atmospheric Research, 172, 196-205. (SCI, IF 2.84)
[14] Schmalz, B., Kuemmerlen, M., Strehmel, A., Song, S., Cai, Q., Jähnig, S., & Fohrer, N. (2012). Integrierte Modellierung von aquatischen Ökosystemen in China: Ökohydrologie und Hydraulik. Hydrologie und Wasserbewirtschaftung, 56(4), 169-184. (SCI, IF 0.49)
[15] Deng, X., Xu, Y., Han, L., Yang, M., Yang, L., Song, S., Li, G., & Wang, Y. (2015). Spatial–temporal evolution of the distribution pattern of river systems in the plain river network region of the Taihu Basin, China. Quaternary International, 392, 178-186. (SCI, IF 2.06)
[16] Wen, J., Chuai, X., Li, S., Song, S., Li, J., Guo, X., & Yang, L. (2018). Spatial-Temporal Changes of Soil Respiration across China and the Response to Land Cover and Climate Change. Sustainability, 10(12), 4604.
[17] Xu, Y., Xu, Y., Wang, Y., Wu, L., Li, G., & Song, S. (2016). Spatial and Temporal Trends of Reference Crop Evapotranspiration and its Influential Variables in Yangtze River Delta, astern
China. Theoretical and Applied Climatology,103(3-4),1-14. (Accepted, SCI, IF 2.43)
[18] Deng, X., Xu, Y., Han, L., Song, S., Yang, L., Li, G., & Wang, Y. (2015). Impacts of Urbanization on River Systems in the Taihu Region, China. Water, 7(4), 1340-1358. (SCI, IF 1.43)
[19] 张璟, 张建新, 刘培学, 宋松.大陆赴台交换生修学旅游风险感知维度识别及差异分析[J]. 山东师范大学学报(自然科学版), 2015(4):120-125.
[20] 李广, 章新平, 宋松, 姚天次, 项捷, & 邓晓军. (2016). 中国不同水体中δd与δ-(18)o研究进展. 气象与环境学报, 32(4), 132-138.
[21] 李广, 章新平, 许有鹏, 宋松, 王跃峰, & 季晓敏等. (2016). 滇南蒙自地区降水稳定同位素特征及其水汽来源. 环境科学, 37(4), 1313-1320.