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蒋 跃

发布日期:2026-09-04浏览次数:
  蒋 跃出生年月1987.11

政治面貌中共党员学  历工学博士
  江苏泰州E-mailjy261715267@126.com
  江苏省镇江市学府路301号,江苏大学农业工程学院
基本信息
教授,博士生导师,江苏大学农业工程学院副院长,兼任江苏省农业工程学会青年工作委员会常务委员。长期从事农业节水灌溉技术与装备、沼液高效安全还田技术与装备研究,主持国家自然科学基金项目、国家重点研发计划项目子课题、农业农村部农业科技重点项目子课题等国家/省部级项目10余项;获江苏省科学技术二等奖1项、神农中华农业科技一等奖1项、农业节水科技三等奖1项;主持制定国家标准1项;授权PCT专利1项,中国发明专利10项;发表论文30余篇,其中SCI检索25篇,出版英文学术专著1部;2021年指导学生获第二届全国大学生农业水利工程及相关专业创新设计大赛特等奖荣获优秀指导教师奖。
工作经历
2016.12-2020.7      江苏大学流体机械工程技术研究中心 助理研究员
2018.10-2020.10     美国加州州立大学弗雷斯诺分校      工业技术部 博士后
2020.07-2026.07     江苏大学流体机械工程技术研究中心 副研究员
2026.07-至今       江苏大学农业工程学院 教授
研究方向
农业高效节水灌溉技术及装备研究
沼液资源化利用技术及装备研发
智能水肥一体化灌溉机器人研发
主持或参加科研项目
纵向项目
国家重点研发计划项目子课题,2023YFD190080401,轻简型喷灌水肥协同地力提升技术与装备研发,2023/12-2027/12,50万元,在研,主持。
国家农业农村部农业科技重大项目子课题,NK2023***,南方季节性***技术与装备集成应用,2023/10-2026/12,280万元,在研,主持。
安徽省农机研发制造推广应用一体化试点项目,ZK20260094,智能水肥一体化设备,2025/12-2028/12,80万元,在研,主持。
国家自然科学青年基金项目,51809119,基于异形喷嘴的低压喷头射流破碎机理及组合均匀喷洒模型研究,2019/01-2021/12,21万元,完成,主持。
江苏省自然科学基金项目,BK20170555,基于异形喷嘴结构的低压喷头射流破碎特性研究,2017/07-2020/06,20万元,完成,主持。
镇江市科技计划项目,CN20222003,基于多源信息感知的畜禽沼液绿色低碳还田利用技术及装备研发,2022/11-2024/10,15万元,完成,主持。
常州市科技支撑计划(农业)项目,CE20222024,基于土壤微生物生态响应的畜禽沼液高效还田利用技术及装备研发,2022/04-2024/04,10万元,完成,主持。
省部共建现代农业装备与技术协同创新中心项目,XTCX2018,畜禽沼液灌溉还田营养成分精准检测及配肥技术研发,2022/07-2024/07,10万元,完成,主持。
江苏省高等学校自然科学研究面上项目,17KJB470001,基于异形喷嘴的低压喷头射流破碎特性及水力模型研究,2017/09-2019/08,3万元,完成,主持。
西华大学开放课题项目,szjj2019-017,基于异形喷嘴的三维射流空间破碎机理研究,2019/06-2021/06,完成,主持。
河南省节水农业重点实验室开放课题项目,FIRI202001-0101,异形喷嘴喷头喷洒运动机理及组合喷灌均匀性研究,2020/02-2021/12,完成,主持。
江苏省普通高校研究生科研创新计划资助项目,KYLX_1041,基于异形喷嘴的低压喷头水流空间破碎机理及模型研究,2014/06-2016/06,0.5万元,完成,主持。
国家自然科学基金面上项目,51679109,低压喷头喷洒运动机理与均匀喷洒控制,2017/01-2020/12,62万元,完成,参与。
横向项目
中海油田服务股份有限公司天津分公司,HX20250654,大排量高效率射流泵设计及测试技术服务,2025/07-2027/07,167万元,在研,主持。
万宝矿产有限公司,HX20260771,矿用喷/滴淋设备的开发及堆面管网优化设计,2026/08-2029/08,62.4万元,在研,主持。
万宝矿产有限公司,HX20250413,大蒸发量低压喷头研发,2025/06-2026/06,45万元,在研,主持。
河北程瑞达灌溉科技有限公司,HX20250157,一种摇臂式喷头及喷灌方法,2025/03-2026/03,10万元,完成,主持。
代表性研究成果和学术奖励情况
论文
[1]Yue Jiang. Sprinkler Irrigation Hydraulic Performance and Jet Characteristics[M]. 北京:中国水利水电出版社,ISBN: 978-7-5170-9428-9,248千字,2021.
[2]李红,蒋跃,汤玲迪,汤攀. Theories and Technologies of Sprinkler Irrigation and Micro-irrigation Equipment[M]. 镇江:江苏大学出版社,ISBN: 978-7-5684-1417-3,395千字,2020.
[3]Yue Jiang(*), Bingyu Li, Xuying Wang, Bin Shi. Determination of optimal biochar application and irrigation rate for tomatoes based on the EWM-TOPSIS evaluation method. Irrigation Science, 2026, 44: 18.  (SCI Index)
[4]Yue Jiang, Luya Wang, Yanfeng Li, Hao Li, Run Xue. Effect of Alternate Sprinkler Irrigation with Saline and Fresh Water on Soil Water-Salt Transport and Corn Growth. Agronomy, 2025, 15: 1854.  (SCI Index)
[5]Zijun Chen, Yue Jiang(*), Hongzhong Lu, Yong Tang, Zhuo Chen. Optimization Design of Liquid-Gas Jet Pump Based on RSM and CFD: A Comprehensive Analysis of the Optimization Mechanism. Water, 2025, 17: 3423.  (SCI Index)
[6]Run Xue, Yue Jiang(*), Hong Li(*), Bin Shi. Review of advancements and challenges in delayed irrigation: Enhancing crop water productivity and sustainable crop production. Agricultural Water Management, 2025, 318: 109739.  (SCI Index)
[7]Zixin Wang, Yue Jiang(*), Hong Li, Lisha Wang. Enhancing hydraulic efficiency in jet impingement sprinklers: Comparative analysis of aperture ratios compared with non-impingement sprinklers. Biosystems Engineering, 2024, 248: 162-176.  (SCI Index)
[8]Yue Jiang(*), Zixin Wang, Hong Li, Lisha Wang. Optimising the hydraulic performance of a jet impingement sprinkler by varying elevation angle: A Comparative study with a non-impingement sprinkler. Biosystems Engineering, 2024, 245: 24-35.  (SCI Index)
[9]Fan Yang, Yue Jiang(*), Hong Li, Xin Hui, Shouchen Xing. Chauhdary. Accurate model development for predicting sprinkler water distribution on undulating and mountainous terrain. Computers and Electronics in Agriculture, 2024, 224: p.109196. (SCI Index)
[10]Yue Jiang(*), Yue Zhang, Hong Li, Hao Li, Haijun Yan, Shouchen Xing. Research on the Control System for the Use of Biogas Slurry as Fertilizer. Agronomy, 2024, 14:1439.  (SCI Index)
[11]Xuwei Pan, Yue Jiang(*), Hong Li, Lucia Bortolini. Chauhdary. Design, Optimization, and Analysis of a New Sprinkler with Intermittent Water-Dispersing Needle: Integration of RF-NSGA II Algorithm and CFD Simulation. Computers and Electronics in Agriculture, 2024, 222: p.109011. (SCI Index)
[12]Xuwei Pan, Yue Jiang(*), Hong Li, Xin Hui, Shouchen Xing, Junaid N. Chauhdary. Numerical simulation and experimental study of jet breakup using a water dispersal needle in irrigation sprinklers. Biosystems Engineering, 2024, 239: 49-67. (SCI Index)
[13]Xuwei Pan, Yue Jiang(*), Hong Li, Xin Hui, Shouchen Xing. Numerical simulation of the effect of varying dispersion tooth insertion depth on the jet breakup and hydraulic performance. Biosystems Engineering, 2024, 239: 98-113. (SCI Index)
[14]王子鑫,蒋 跃(*),潘绪伟,王丽莎. 射流撞击式低压喷头设计与水力性能试验[J]. 农业工程学报,2024,40(6):220-227. (EI Index)
[15]Yue Jiang(*), Yue Zhang, Hong Li. Research Progress and Analysis on Comprehensive Utilization of Livestock and Poultry Biogas Slurry as Agricultural Resources. Agriculture, 2023, 13: 2216.  (SCI Index)
[16]Xuwei Pan, Yue Jiang(*), Hong Li. Effects of the depth of the needle-shaped water dispersion device inserted into the jet on the jet breakup of sprinklers. Irrigation and Drainage, 2023, 72(4): 887-909.  (SCI Index)
[17]Xuwei Pan, Yue Jiang(*), Hong Li, Longtan Qin. Experimental research on the jet-breaking characteristics and hydraulic performance of a novel automatic rotating sprinkler. Water Supply, 2023, 23(5): 1935-1952. (SCI Index)
[18]Xuwei Pan, Yue Jiang(*), Hong Li, Xuan Zhou. Hydraulic performance of the rotational damping sprinkler: Analysis of the force acting on diffuser tooth I. Irrigation and Drainage, 2024, 73(1): 29-49.  (SCI Index)
[19]Yue Jiang(*), You Tang, Hong Li. A review of trends in the use of sewage irrigation technology from the livestock and poultry breeding industries for farmlands. Irrigation Science, 2022, 40: 297-308.  (SCI Index)
[20]Zixin Wang, Yue Jiang(*), Jialing Liu, Hong Li, Hao Li. Experimental Study on Water Distribution and Droplet Kinetic Energy Intensity from Non-Circular Nozzles with Different Aspect Ratios. Agriculture, 2022, 12: 2133.  (SCI Index)
[21]Lin Hua, Yue Jiang(*), Hong Li, Longtan Qin. Effects of Different Nozzle Orifice Shapes on Water Droplet Characteristics for Sprinkler Irrigation. Horticulturae, 2022, 8(6): 538.  (SCI Index)
[22]Yue Jiang(*), Jialing Liu, Hong Li, Lin Hua, Yangchun Yong. Droplet distribution characteristics of impact sprinklers with circular and noncircular nozzles: Effect of nozzle aspect ratios and equivalent diameters. Biosystems Engineering, 2021, 212: 200-214.  (SCI Index)
[23]Yue Jiang, Jialing, Liu, Lin Hua, Hong Li(*), Daoxing Ye. Investigation on surface wave morphologies of a low-intermediate pressure jet with non-circular nozzles. AIP Advances, 2020, 10(7): 10075205.  (SCI Index)
[24]Yue Jiang(*), Qingjiang Xiang, Hong Li, Zhengdian Xu. Flow characteristics and hydraulic performance of a gun-type impact sprinkler with and without aeration. Journal of Irrigation and Drainage Engineering, 2020, 146(7): 04020016.  (SCI Index)
[25]Yue Jiang(*), Hong Li, Lin Hua, Daming Zhang. Three-dimensional flow breakup characteristics of a circular jet with different nozzle geometries. Biosystems Engineering, 2020, 193: 216-231.  (SCI Index)
[26]Yue Jiang, Hong Li(*), Chao Chen, Lin Hua, Daming Zhang. Hydraulic performance and jet breakup characteristics of the impact sprinkler with circular and non-circular nozzles. Applied Engineering in Agriculture, 2019, 35(6): 911-924.  (SCI Index)
[27]Yue Jiang(*), Hong Li, Lin Hua, Daming Zhang, Zakaria Issaka. Experimental study on jet breakup morphologies and jet characteristic parameters of non-circular nozzles under low-intermediate pressures. Applied Engineering in Agriculture, 2019, 35(4): 617-632.  (SCI Index)
[28]Yue Jiang, Zakaria Issaka, Hong Li(*), Pan Tang, Chao Chen. Range formula based on angle of dispersion and nozzle configuration from an impact sprinkler. International Journal of Agricultural and Biological Engineering, 2019, 12(5): 97-105. (SCI Index)
[29]Yue Jiang, Hong Li(*), Qingjiang Xiang, Chao Chen. Calculation and Verification of Formula based on Jet Breakup length for the Range of Sprinklers. International Journal of Agricultural and Biological Engineering, 2018, 11(1):49-57.  (SCI Index)
[30]Yue Jiang, Hong Li(*), Qingjiang Xiang, Chao Chen. Comparison of PIV experiment and numerical simulation on the velocity distribution of intermediate pressure jet with different nozzle parameters. Irrigation and Drainage, 2017, 66:510-519.(SCI Index)
[31]Yue Jiang, Hong Li(*), Qingjiang Xiang, Chao Chen. Investigation on spatial breakup characteristics of low-pressure jets with particle image velocimetry experiment and volume of fluid-level set simulation. Advances in Mechanical Engineering, 2016, 8(3): 1-10.  (SCI Index)
[32]Yue Jiang, Chao Chen(*), Qingjiang Xiang, Hong Li. Influences of nozzle parameters and low-pressure on jet breakup and droplet characteristics. International Journal of Agricultural and Biological Engineering, 2016,9(4): 22-32.  (SCI Index)
[33]H. Li(*), Y. Jiang, M. Xu, Y. Li, C. Chen. Effect on Hydraulic Performances of Low Pressure Sprinkler by an Intermittent Water Dispersion Device. Transactions of the ASABE, 2016, 59(2): 521-532. (SCI Index)
[34]Yue Jiang, Hong Li(*), Daming Zhang, Lin Hua. Comparative studies on jet breakup morphologies of noncircular nozzles by using highs-peed photography technique. ASABE Annual International Meeting, July 7, 2019 - July 10, 2019, Boston, MA, United states.(EI Index)
[35]Yue Jiang, Hong Li, Qingjiang Xiang, et al. Experimental and Numerical Investigations on the Breakup Characteristics of Low-pressure Jet with Different Nozzle Parameters. ASABE Annual International Meeting, 2015, 3: 2482-2491(EI Index)
[36]蒋 跃,李 红,向清江,等. 低压射流不同喷嘴参数及压力下破碎过程实验[J]. 农业机械学报,2015,46(3):78-82. (EI Index)
[37]蒋 跃,李 红,向清江,等. 异形喷嘴自由射流破碎长度及射程的实验研究[J]. 灌溉排水学报,2014,33(4/5):149-153.
专利
[1]蒋跃, 唐游, 李红, 华琳, 刘佳玲, Suspended Self-Balancing Self-Cruising Online Water Quality Monitoring
Device, Online Water Quality Monitoring Method, and Online Water Quality Assessment Method, 2024-09-11,
GB2210429.3 (PCT专利,授权)
[2]蒋跃, 张悦, 李红, 左新乐, 一种沼液配肥决策方法、穴灌装置及方法, 2025-07-29, 中国, ZL
202311440786.4(发明专利,授权)
[3]蒋跃, 唐游, 李红, 张悦, 一种基于体积匹配的沼液配肥延时传输方法及系统, 2025-07-29, 中国,ZL 202310370733.3 (发明专利,授权)
[4]蒋跃, 唐游, 李红, 王子鑫, 王丽莎, 沼液水质在线监测装置、沼液精准化配肥还田系统及方法, 2024-05-10, 中国, ZL 202210599220.5(发明专利,授权)
[5]蒋跃,潘绪伟,李红. 一种摇臂式喷头及喷灌方法,2023-05-05,中国,202111470807.8(发明专利,授权)
[6]蒋跃,王子鑫,李红,王莉莎,潘绪伟,唐游,刘佳玲,华琳. 一种旋转撞击式喷灌装置及方法,2023-08-22,中国,202210538804.1(发明专利,授权)
[7]蒋跃,王子鑫,王莉莎. 一种基于滑动变阻器的腐蚀速率测量装置及测量方法,2024-11-01,中国,202111404039.6(发明专利,授权)
[8]蒋跃,王莉莎,王子鑫,李红,唐游,何秋,刘佳玲. 一种防堵塞喷嘴及变量喷头,2024-07-12,中国,ZL 202210425869.5(发明专利,授权)
[9]蒋跃,杨帆,李红. 一种多水源供水方法与系统及喷灌方法与系统,2023-05-12,中国,ZL 202310533005.X(发明专利,授权)
[10]蒋跃,潘绪伟,李红,周轩. 一种适用于低压均匀喷灌的散水结构及喷头,2023-05-18,中国,ZL 202310560557.X(发明专利,授权)
[11]蒋跃,杨帆,李红. 一种单喷头从平面到非均匀坡面的水量分布转化方法,2023-03-20,中国,ZL 202310272424.2(发明专利,授权)
[12]蒋跃,潘绪伟,李红,李浩. 一种高喷灌均匀度的旋转阻尼式喷头,2022-10-14,中国,ZL 202211259989.9(发明专利,授权)
[13]蒋跃,王子鑫,王莉莎,李红,唐游,刘佳玲,华琳. 一种流量计及流量测量方法,2022-04-18,中国,ZL 202210403194.4(发明专利,授权)
获奖、标准
[1]蒋跃(1/10), 国家标准化管理委员会. GB/T 47573.2-2026 农业灌溉设备 承压灌溉系统实施指南 第2部分:滴灌[S]. 北京:中国标准出版社,2026.
[2]蒋跃(1/7), 水肥一体化精准调控与高效施用关键技术及装备, 中国农业节水和农村供水技术协会, 农业节水科技奖, 三等奖, 2025.
[3]蒋跃(9/9), 新一代高性能卷盘式喷灌机关键技术与应用, 江苏省人民政府, 科学技术奖, 二等奖, 2019.
[4]蒋跃(14/19), 高性能智能喷灌机组与装备关键技术及产业化, 中华人民共和国农业农村部, 神农中华农业科技奖, 一等奖, 2021.
[5]蒋跃,低压管灌农业物联网管控系统,中国农业工程学会,华维杯第二届全国大学生农业水利工程及相关专业创新设计大赛优秀指导教师奖,2021.