个人简介
刘春伟,南京信息工程大学副教授,硕士生导师。主要从事蒸散发理论与水碳循环模拟研究工作,研究方向还包括气候变化与农业,土壤水碳热循环等,研究揭示了作物不同生育期采用不同参数估算蒸发蒸腾量,可以提升整个生育期耗水模拟精度,构筑了不同生态系统蒸散量的简洁估算模型,还建立了大面积农田蒸发蒸腾量的机理模型。主持国家自然科学青年基金和江苏省青年基金各1项,参与国家、省部级课题6项,发表论文60余篇。教学上承担本科生的多元统计分析、研究生高级应用气象统计、试验设计与统计等课程的讲授,熟悉SPSS、R、SAS等统计软件;建设虚拟仿真实验项目一项,获得软件著作权2项。是应用气象学一流本科专业建设的主要参与成员。共发表教改论文3篇。
主要社会兼职和获奖:
担任江苏省农业工程学会理事;江苏省第三次全国土壤普查省级技术指导专家;中国作物协会、农业工程学会、中国农业水土工程学会会员;Agricultural Water Management, Agricultural and Forest Meteorology, 农业工程学报等国内外期刊审稿人;2024年获江苏省农业工程学会自然科学二等奖。
主要科研项目:
(1) 农业水资源高效利用全国重点实验室, 一般项目, SKLAWR-2024-06, 基于直射和散射辐射传输差异的冠层导度和玉米蒸发蒸腾量模拟, 2024-01 至 2026-12, 10万元, 在研, 主持
(2) 新疆维吾尔自治区阿克苏地区自然资源局, 横向科研, AKSSSXM2022620, 新疆塔里木河重要源流区(阿克苏河流域)山水林田湖草沙一体化保护和修复工程关键问题和关键技术研究, 2022-06 至 2024-12, 60万元, 在研, 参与
(3) 中国水利水电科学研究院 内蒙古阴山北麓草原生态水文国家野外科学观测研究站, 重点实验室开放研究基金, YSS2022008, 气候变化下草地耗水过程与生态需水计算评估, 2022-09 至 2023-09, 6万元, 结题, 主持
(4) 科技部, 国家重点研发计划, 2019YFC0507403, 祁连山自然保护区生态环境变化预测预警, 2020-01至 2022-12, 90万元, 结题, 参与
(5) 石家庄市气象局, 横向科研, SJZQXJHT2019-137, 石家庄生态气象环境评估, 2020-01 至 2021-12,50万元, 结题, 参与
(6) 贵州省气象局, 横向科研, XZR202008, 贵州省气象灾害风险评估, 2020-04 至 2021-10, 25万元, 结题, 参与
研究论文:
[1]Chen F, Cui N, Jiang S, Zhang W, Li H, Li X, Lv M, Liu C, Qiu R, Wang Z. Effects of deficit drip irrigation at different growth stages on citrus leaf physiology, fruit growth, yield, and water productivity in south China[J]. Agricultural Water Management, 2025, 307: 109206.
[2] 闵家森, 王让会, 刘春伟. 阿克苏地区“三生空间”时空演变规律[J]. 农业资源与环境学报, 2025, 42(1): 108–119.
[3] 郭燕, 王晶, 张嘉男, 赵冰钰, 张烜宇, 刘春伟. 不同气候分区的青海省水面蒸发影响因子分析[J]. 节水灌溉, 2025(2): 43–52.
[4] Xing L, Cui N, Liu C, Guo L, Zhao L, Wu Z, Jiang X, Wen S, Zhao L, Gong D. Estimating daily kiwifruit evapotranspiration under regulated deficit irrigation strategy using optimized surface resistance based model[J]. Agricultural Water Management, 2024, 295: 108745.
[5] Wu Z, Cui N, Zhang W, Gong D, Liu C, Liu Q, Zheng S, Wang Z, Zhao L, Yang Y. Inversion of large-scale citrus soil moisture using multi-temporal sentinel-1 and landsat-8 data[J]. Agricultural Water Management, 2024, 294: 108718.
[6] Wu Z, Cui N, Zhang W, Liu C, Jin X, Gong D, Xing L, Zhao L, Wen S, Yang Y. Estimating soil moisture content in citrus orchards using multi-temporal sentinel-1A data-based LSTM and PSO-LSTM models[J]. Journal of Hydrology, 2024, 637: 131336.
[7] Cui N, Zheng S, Jiang S, Wang M, Zhao L, He Z, Feng Y, Wang Y, Gong D, Liu C, Qiu R. Evapotranspiration partitioning based on underlying conductance in a complex tree-grass orchard ecosystem in the humid area of southern China[J]. Agricultural and Forest Meteorology, 2024, 344.
[8] 张莹, 王让会, 刘春伟, 周丽敏. 祁连山自然保护区生境质量模拟及预测[J]. 南京林业大学学报(自然科学版), 2024, 48(3): 135–144.
[9] 田欣雨, 王让会, 刘春伟, 周丽敏. 未来气候情景下生态系统服务价值空间异质性分析——以柯柯牙为例[J]. 环境生态学, 2024, 6(8): 53–63.
[10] 霍艳玲, 王让会, 刘春伟, 周丽敏. 多情景模拟下柯柯牙绿化工程区碳储量变化特征[J]. 测绘通报, 2024(9): 50–54, 73.
[11] 贺洁, 王让会, 刘春伟. 基于SPAC系统的阿克苏地区农业干旱灾害风险评估与区划[J]. 干旱地区农业研究, 2024, 42(5): 255–262.
[12] 龚琳鑫, 杨晓亚, 刘春伟, 何亮. 1961—2019年湖北省一季稻气候生产潜力时空变化规律[J]. 中国农学通报, 2024, 40(11): 84–91.
[13] Xing L, Zhao L, Cui N, Liu C, Guo L, Du T, Wu Z, Gong D, Jiang S. Apple tree transpiration estimated using the Penman-Monteith model integrated with optimized jarvis model[J]. Agricultural Water Management, 2023, 276: 108061.
[14] Wen S, Cui N, Gong D, Liu C, Xing L, Wu Z, Wang Z, Wang J. A global meta-analysis of yield and water productivity of woody, herbaceous and vine fruits under deficit irrigation[J]. Agricultural Water Management, 2023, 287.
[15] Sun S, Bi Z, Xiao J, Liu Y, Sun G, Ju W, Liu C, Mu M, Li J, Zhou Y, Li X, Liu Y, Chen H. A global 5 km monthly potential evapotranspiration dataset (1982-2015) estimated by the shuttleworth-wallace model[J]. Earth System Science Data, 2023, 15(11): 4849–4876.
[16] Liu C, Qiu R, Cui N, Zhang B, Wang R, Wang Z, Guo W. Comparison of surface resistance-based models for estimating maize evapotranspiration in a humid region of China[J]. JAWRA Journal of the American Water Resources Association, 2023, n/a(n/a).
[17] He Z, Lu X, Cui N, Jiang S, Zheng S, Chen F, Qiu R, Liu C, Fan J, Wang Y. Effect of soil water content threshold on kiwifruit quality at different growth stages with drip irrigation in the humid area of Southern China[J]. Scientia Horticulturae, 2023, 307: 111477.
[18] 王婷, 刘春伟, 张佩, 王让会, 邱让建, 周丽敏, 王蒙. 江苏地区不同参考作物蒸发蒸腾量估算模型[J]. 排灌机械工程学报, 2023, 41(1): 70–79.
[19] 田畅, 王让会, 彭擎, 刘春伟, 周丽敏. 基于不同干旱指数的祁连山国家公园水热特征分析[J]. 遥感技术与应用, 2023, 38(1): 200–213.
[20] 刘志和, 邱让建, 刘春伟. 基于日照时数的太阳辐射通用模型提升参考作物蒸散估算精度研究[J]. 节水灌溉, 2023(02): 80-88+95.
[21] 关琳, 王让会, 刘春伟, 周丽敏. 祁连山自然保护区生态环境大数据管理模式的探讨[J]. 测绘通报, 2023(7): 97–106.
[22] Zhang P, Chen Z, Wang F, Wang R, Bao T, Xie X, An Z, Jian X, Liu C. Response of Population Canopy Color Gradation Skewed Distribution Parameters of the RGB Model to Micrometeorology Environment in Begonia Fimbristipula Hance[J]. atmosphere, 2022, 13(6): 890.
[23] Xing L, Cui N, Liu C, Zhao L, Guo L, Du T, Zhan C, Wu Z, Wen S, Jiang S. Estimation of daily apple tree transpiration in the Loess Plateau region of China using deep learning models[J]. Agricultural Water Management, 2022, 273: 107889.
[24] Wang R, Peng Q, Zhang W, Zhao W, Liu C, Zhou L. Ecohydrological Service Characteristics of Qilian Mountain Ecosystem in the Next 30 Years Based on Scenario Simulation[J]. SUSTAINABILITY, 2022, 14(3).
[25] Qiu R, Li L, Liu C, Wang Z, Zhang B, Liu Z. Evapotranspiration estimation using a modified crop coefficient model in a rotated rice-winter wheat system[J]. AGRICULTURAL WATER MANAGEMENT, 2022, 264.
[26] Peng Q, Wang R, Jiang Y, Zhang W, Liu C, Zhou L. Soil erosion in qilian mountain national park: dynamics and driving mechanisms[J]. Journal of Hydrology: Regional Studies, 2022, 42.
[27] Chen X, Yu L, Cui N, Cai H, Jiang X, Liu C, Shu Z, Wu Z. Modeling maize evapotranspiration using three types of canopy resistance models coupled with single-source and dual-source hypotheses—A comparative study in a semi-humid and drought-prone region[J]. Journal of Hydrology, 2022, 614: 128638.
[28] Chen F, Cui N B, Jiang S Z, Li H P, Wang Y S, Gong D Z, Hu X T, Zhao L, Liu C W, Qiu R J. Effects of water deficit at different growth stages under drip irrigation on fruit quality of citrus in the humid areas of South China[J]. AGRICULTURAL WATER MANAGEMENT, 2022, 262.
[29] 王让会, 赵文斐, 彭擎, 刘春伟, 周丽敏, 田畅. 气候变化及景观格局与生态系统碳储存的耦合关系——以祁连山为例[J]. 干旱区研究, 2022, 39(01): 250–257.
[30] 王让会, 张卫东, 周丽敏, 刘春伟, 彭擎, 田畅, 丁立国. 气候变化及景观格局与生态安全的耦合关系[J]. 南京信息工程大学学报(自然科学版), 2022, 14(05): 509–515.
[31] 郭燕, 刘春伟, 雒福佐, 祁英华, 郭小伟, 王让会. 祁连山高寒草甸蒸发蒸腾量估算及其影响因素分析[J]. 节水灌溉, 2022(05): 39–46.
[32] Qiu R, Li L, Kang S, Liu C, Wang Z, Cajucom E P, Zhang B, Agathokleous E. An improved method to estimate actual vapor pressure without relative humidity data[J]. Agricultural and Forest Meteorology, 2021, 298–299: 108306–108306.
[33] Qiu R, Katul G G, Wang J, Xu J, Kang S, Liu C, Zhang B, Li L, Cajucom E P. Differential response of rice evapotranspiration to varying patterns of warming[J]. Agricultural and Forest Meteorology, 2021, 298–299: 108293.
[34] Guo T, Liu C, Xiang Y, Zhang P, Wang R J W. Simulations of the Soil Evaporation and Crop Transpiration Beneath a Maize Crop Canopy in a Humid Area[J]. Water, 2021, 13(14): 1975.
[35] 吴可人, 高祺, 王让会, 杨鹏, 彭擎, 刘春伟. 基于RSEI模型的石家庄生态环境质量评价[J]. 地球物理学进展, 2021, 36(03): 968–976.
[36] 李隆安, 邱让建, 刘春伟. 基于气温估算参考作物蒸散量方法的对比与改进[J]. 农业工程学报, 2021, 37(24): 123–130.
[37] Liu C, Cui N, Gong D, Hu X, Feng Y. Evaluation of seasonal evapotranspiration of winter wheat in humid region of East China using large-weighted lysimeter and three models[J]. Journal of Hydrology, 2020, 590: 125388.
[38] Jiang S, Liang C, Cui N, Zhao L, Liu C, Feng Y, Hu X, Gong D, Zou Q. Water use efficiency and its drivers in four typical agroecosystems based on flux tower measurements[J]. Agricultural and Forest Meteorology, 2020, 295: 108200.
[39] 周丽敏, 王让会, 黄进, 张方敏, 刘春伟. 基于生态文明建设的生态学专业研究生创新培养体系探索——以南京信息工程大学生态学专业研究生培养模式为例[J]. 科技创新导报, 2020, 17(01): 191–193.
[40] 张佩, 陈郑盟, 刘春伟, 王福政, 江海东, 高苹. 冬小麦产量结构要素预报方法[J]. 农业工程学报, 2020, 36(08): 78–87.
[41] 王蒙, 刘春伟, 邱让建, 张佩, 张方敏. 江苏省参考作物蒸散量的时空变化及影响因素分析[J]. 灌溉排水学报, 2020, 39(04): 124–134.
[42] Qiu R J, Liu C W, Cui N B, Wu Y J, Wang Z C, Li G. Evapotranspiration estimation using a modified Priestley-Taylor model in a rice-wheat rotation system[J]. Agricultural Water Management, 2019, 224(105755): 105755.
[43] 邱让建, 杨再强, 景元书, 刘春伟, 王振昌. 轮作稻麦田水热通量及影响因素分析[J]. 农业工程学报, 2018, 34(17): 82–88.
[44] 刘春伟, 邱让建, 孙亚卿, 葛鹏程, 孙雨情, 高马丹. 不同材料和尺寸微型蒸渗仪测定土壤蒸发量[J]. 中国农村水利水电, 2018(06): 1–5.
[45] Sun S, Wang G, Huang J, Mu M, Yan G, Liu C, Gao C, Li X, Yin Y, Zhang F, Zhu S, Hua W. Spatial pattern of reference evapotranspiration change and its temporal evolution over Southwest China[J]. THEORETICAL AND APPLIED CLIMATOLOGY, 2017, 130(3–4): 979–992.
[46] Liu C, Sun G, McNulty S G, Noormets A, Fang Y. Environmental controls on seasonal ecosystem evapotranspiration/potential evapotranspiration ratio as determined by the global eddy flux measurements[J]. Hydrol. Earth Syst. Sci., 2017, 21(1): 311–322.
[47] 王振昌, 郭相平, 黄双双, 操信春, 邱让建, 刘春伟. 水稻天然稳定碳、氮同位素组成与产量及品质的关系[J]. 农业机械学报, 2016, 47(12): 160–171.
[48] 邱让建, 刘春伟, 徐金勤, 陈俊, 程珊珊, 柳旭, 陈泓舟, 王振昌. 灌溉水含盐量对辣椒产量品质及水分利用效率的影响[J]. 农业工程学报, 2016, 32(10): 75–80.
[49] 刘春伟, 吴心语, 邱让建. 采用作物系数法和PM模型估算南京地区玉米田蒸发蒸腾量[J]. 节水灌溉, 2016(09): 12–17.
[50] 刘春伟, 郭维华, 邱让建, 王振昌. 基于液流量的苹果树蒸腾量模拟[J]. 农业机械学报, 2016(02): 1–11.
[51] 刘春伟, 曾勰婷, 邱让建. 用分时段修正双源模型估算南京地区冬小麦生育期蒸散量[J]. 农业工程学报, 2016(S1): 80–87.
[52] 刘春伟. 冠层阻力的计算方法综述[C]//第33届中国气象学会年会. , 2016中国陕西西安: : 312–315.
[53] 李永秀, 胡凝, 刘春伟. 高校气象特色专业仪器课程的教学改革与实践[J]. 实验室科学, 2016, 19(06): 83–85.
[54] Liu C, Sun G, McNulty S G, Kang S. AN IMPROVED EVAPOTRANSPIRATION MODEL FOR AN APPLE ORCHARD IN NORTHWESTERN CHINA[J]. Transactions Of the Asabe, 2015, 58(5): 1253–1264.
[55] 邱让建, 杜太生, 刘春伟, 王振昌. 温室作物蒸散发估算模型研究进展[J]. 灌溉排水学报, 2015, 34(S2): 134–139.
[56] 刘春伟, 康绍忠. 基于茎干直径微变化制定苹果灌溉制度的方法及可行性[J]. 生态学报, 2015(14).
[57] 刘春伟. 应用气象专业土壤物理学教学改革的探索[J]. 科技创新导报, 2014(26): 160+162.
[58] Liu C, Kang S, Li F, Li S, Du T. Canopy leaf area index for apple tree using hemispherical photography in arid region[J]. Scientia Horticulturae, 2013, 164: 610–615.
[59] Liu C W, Du T S, Li F S, Kang S Z, Li S E, Tong L. Trunk sap flow characteristics during two growth stages of apple tree and its relationships with affecting factors in an arid region of northwest China[J]. Agricultural Water Management, 2012, 104: 193–202.
[60] 刘春伟. 中国农业大学, M1 - 博士, 2012. 西北旱区苹果园水分传输机理与耗水模拟[D]. , 2012.
[61] Liu C W, Kang S Z, Li F S, Li S E, Du T S, Tong L. Relationship between environmental factor and maximum daily stem shrinkage in apple tree in arid region of northwest China[J]. Scientia Horticulturae, 2011, 130(1): 118–125.
[62] 刘春伟, 关芳, 杜太生, 康敏, Fang Guan, Tai sheng Du, Min Kang. 西北旱区苹果园耗水规律研究[C]//, 2010: 9
.
教育经历
[1] 中国农业大学 | 无 | 工学博士 | 博士研究生毕业
工作经历
暂无内容
社会兼职
- 暂无内容
研究方向
其他联系方式
[6] 邮箱: liucw@nuist.edu.cn
团队成员
暂无内容