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[1]Song,S.,Zeng,L.,Wang,Y.,Li,G.,&Deng,X.(2019).Theresponseofrivernetworkstructuretourbanization:amultifractalperspective.JournalofCleanerProduction,(online).(SCI,IF5.79)
[2]Song,S.,Xu,Y.P.,Wu,Z.F.,Deng,X.,&Wang,Q.(2019).Therelativeimpactofurbanizationandprecipitationonlong-termwaterlevelvariationinYangtzeRiverDelta.Scienceofthetotalenvironment,648,460-471.(SCI,IF4.98)
[3]Song,S.,Schmalz,B.,&Fohrer,N.(2015).Simulation,quantificationandcomparisonofin-channelandfloodplainsedimentprocessesinalowlandarea–AcasestudyoftheUpperStörcatchmentinnorthernGermany.EcologicalIndicators,57,118-127.(SCI,IF3.19)
[4]Song,S.,Xu,Y.P.,Zhang,J.X.,Li,G.,&Wang,Y.F.(2016).Thelong-termwaterleveldynamicsduringurbanizationinplaincatchmentinYangtzeRiverDelta,AgriculturalWaterManagement,174,93-102.(SCI,IF2.603)
[5]Song,S.,Schmalz,B.,Hörmann,G.,&Fohrer,N.(2012).Accuracy,reproducibilityandsensitivityofacousticDopplertechnologyforvelocityanddischargemeasurementsinmedium-sizedrivers.HydrologicalSciencesJournal,57(8),1626-1641.(SCI,IF2.182)
[6]Song,S.,Schmalz,B.,&Fohrer,N.(2014).Simulationandcomparisonofstreampowerin-channelandonthefloodplaininaGermanlowlandarea.JournalofHydrologyandHydromechanics,62(2),133-144.(SCI,IF1.469)
[7]Song,S.,Schmalz,B.,Xu,Y.P.&Fohrer,N.(2017).Seasonalityofroughness-theindicatorofannualriverflowresistanceconditioninlowlandcatchment.Waterresourcemanagement,31(11),3299-3312.(SCI,IF2.437)
[8]Song,S.,Schmalz,B.,Zhang,J.X.,Li,G.,&Fohrer,N.(2017).ApplicationofmodifiedManningformulainthedeterminationofverticalprofilevelocityinnaturalrivers.HydrologyResearch,48(1):133-146.(SCI,IF1.779)
[9]Song,S.,Schmalz,B.,&Fohrer,N.(2018).ImprovedStructureofVerticalFlowVelocityDistributioninNaturalRiversbasedonMeanVerticalProfileVelocityandRelativeWaterDepth.HydrologyResearch,49(3):878-892.(online)(SCI,IF1.779)
[10]Deng,X.,Xu,Y.,Han,L.,Song,S.,Xu,G.,&Xiang,J.(2018).Spatial-temporalchangesinthelongitudinalfunctionalconnectivityofriversystemsintheTaihuPlain,China.JournalofHydrology,566,846-859.(SCI,IF3.73)
[11]Pan,G.,Xu,Y.,Yu,Z.,Song,S.,&Zhang,Y.(2015).Analysisofriverhealthvariationunderthebackgroundofurbanizationbasedonentropyweightandmatter-elementmodel:AcasestudyinHuzhouCityintheYangtzeRiverDelta,China.Environmentalresearch,139,31-35.(SCI,IF4.37)
[12]Yang,L.,Xu,Y.,Han,L.,Song,S.,Deng,X.,&Wang,Y.(2016).Rivernetworkssystemchangesanditsimpactonstorageandfloodcontrolcapacityunderrapidurbanization.HydrologicalProcesses,30(13),2401-2412.(SCI,IF2.67)
[13]Wang,Y.,Xu,Y.,Lei,C.,Li,G.,Han,L.,Song,S.,Yang,L.&Deng,X.(2016).Spatio-temporalcharacteristicsofprecipitationanddryness/wetnessinYangtzeRiverDelta,EasternChina,during1960–2012.AtmosphericResearch,172,196-205.(SCI,IF2.84)
[14]Schmalz,B.,Kuemmerlen,M.,Strehmel,A.,Song,S.,Cai,Q.,Jähnig,S.,&Fohrer,N.(2012).IntegrierteModellierungvonaquatischenÖkosystemeninChina:ÖkohydrologieundHydraulik.HydrologieundWasserbewirtschaftung,56(4),169-184.(SCI,IF0.49)
[15]Deng,X.,Xu,Y.,Han,L.,Yang,M.,Yang,L.,Song,S.,Li,G.,&Wang,Y.(2015).Spatial–temporalevolutionofthedistributionpatternofriversystemsintheplainrivernetworkregionoftheTaihuBasin,China.QuaternaryInternational,392,178-186.(SCI,IF2.06)
[16]Wen,J.,Chuai,X.,Li,S.,Song,S.,Li,J.,Guo,X.,&Yang,L.(2018).Spatial-TemporalChangesofSoilRespirationacrossChinaandtheResponsetoLandCoverandClimateChange.Sustainability,10(12),4604.
[17]Xu,Y.,Xu,Y.,Wang,Y.,Wu,L.,Li,G.,&Song,S.(2016).SpatialandTemporalTrendsofReferenceCropEvapotranspirationanditsInfluentialVariablesinYangtzeRiverDelta,astern
China.TheoreticalandAppliedClimatology,103(3-4),1-14.(Accepted,SCI,IF2.43)
[18]Deng,X.,Xu,Y.,Han,L.,Song,S.,Yang,L.,Li,G.,&Wang,Y.(2015).ImpactsofUrbanizationonRiverSystemsintheTaihuRegion,China.Water,7(4),1340-1358.(SCI,IF1.43)
[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.