Page 115 - 2024年第55卷第2期
P. 115

报,2020,22(10):2098 - 2107.
                [16] YUETX,DUZP,SONGDJ,etal.AnewmethodofsurfacemodelinganditsapplicationtoDEM construction
                       [J].Geomorphology,2007,91(1?2):161 - 172.
                [17] ZHAON,JIAOY.AnewHASM- Baseddownscalingmethodforhigh - resolutionprecipitationestimates[J].Re
                       moteSensing ,2021,13(14):2693.
                [18] 蒋云钟,冶运涛,赵红莉,等.智慧水利解析[J].水利学报,2021,52(11):1355 - 1368.
                [19] 冶运涛,蒋云钟,曹引,等.以数字孪生水利为核心的智慧水利标准体系研究[J].华北水利水电大学学
                       报(自然科学版),2023,44(4):1 - 16.
                [20] 张璇,许杨,郝芳华,等.滦河流域气象干旱向水文干旱传播特征及风险分析[J].水利学报,2022,53
                       (2):165 - 175.
                [21] 门宝辉,牛晓#,刘灿均,等.滦河承德段水环境容量计算及初始分配[J].水资源保护,2022,38(2):
                      168 - 175,189.
                [22] 董甲平,冶运涛,顾晶晶,等.影响滦河流域降水空间分布的多元环境因子作用机制[J].河海大学学报
                       (自然科学版),2023,51(3):38 - 47.
                [23] 董甲平,冶运涛,顾晶晶,等.滦河流域遥感降水降尺度多时间特性分析[J].水力发电学报,2022,41
                       (8):77 - 91.
                [24] GARNETTR.BayesianOptimization[M].Cambridge:CambridgeUniversityPress,2023.
                [25] ZHENGY,HANF.MarkovChainMonteCarlo(MCMC)uncertaintyanalysisforwatershedwaterqualitymodeling
                       andmanagement [J].StochasticEnvironmentalResearchandRiskAssessment,2016,30(1):293 - 308.
                [26] 沈艳,冯明农,张洪政,等.我国逐日降水量格点化方法[J].应用气象学报,2010,21(3):279 - 286.
                [27] 王兆礼,钟睿达,陈家超,等.TMPA卫星遥感降水数据产品在中国大陆的干旱效用评估 [J].农业工程
                       学报,2017,33(19):163 - 170.
                [28] 黎扬兵,张洪波,杨天增,等.基于 MGWR的渭河流域 TRMM降水产品空间降尺度分析[J].农业工程学
                       报,2022,38(23):141 - 151.
                [29] TANGG,WEN Y, GAO J, etal.Similaritiesanddifferencesbetweenthreecoexistingspaceborneradarsin
                       globalrainfallandsnowfallestimation[J].WaterResourcesResearch,2017,53(5):3835 - 3853.
                [30] WANGH,LIZ, ZHANG T, etal.DownscalingofGPM satelliteprecipitation productsbased on machine
                       learningmethodincomplexterrainandlimitedobservationarea[J].AdvancesinSpaceResearch,2023,72(6):
                      2226 - 2244.
                [31] 顾晶晶,冶运涛,董甲平,等.滦河流域遥感反演降水产品高精度空间降尺度方法[J].南水北调与水利
                       科技(中英文),2021,19(5):862 - 873.
                [32] SHAY,GAGNEIID J,WESTG,etal.Deep - learning - basedgriddeddownscalingofsurfacemeteorological
                       variablesincomplexterrain.PartII :Dailyprecipitation[J].JournalofAppliedMeteorologyandClimatology,
                      2020,59(12):2075 - 2092.
                [33] SHARIFIE,SAGHAFIANB,STEINACKERR.Downscalingsatelliteprecipitationestimateswithmultiplelinear
                       regression ,artificialneuralnetworks,andsplineinterpolationtechniques[J].JournalofGeophysicalResearch:
                       Atmospheres,2019,124(2):789 - 805.
                [34] 曾岁康,雍斌.全球降水计划 IMERG和 GSMaP反演降水在四川地区的精度评估[J].地理学报,2019,74
                       (7):1305 - 1318.
                [35] CHENF,GAOY,WANGY,etal.Adownscaling - mergingmethodforhigh - resolutiondailyprecipitationesti
                       mation[J].JournalofHydrology,2020,581:124414.
                [36] SHENZ,YONGB.DownscalingtheGPM- basedsatelliteprecipitationretrievalsusinggradientboostingdecision
                       treeapproachoverMainlandChina[J].JournalofHydrology,2021,602:126803.
                                                                                              (下转第 252页)








                                                                                                —  2 3 7 —
   110   111   112   113   114   115   116   117   118   119   120