淫荡尼姑 向友珍 西北农林科技大学水利与拓荒工程学院


发布日期:2024-11-02 13:21    点击次数:137

淫荡尼姑 向友珍 西北农林科技大学水利与拓荒工程学院

     

7b06e39cbbfc4728873a3e08d7acecb6.png淫荡尼姑

基本信息

向友珍,女,汉族,博士,教诲,博士生导师,湖南怀化东说念主。

教育阅历:

2013年9月—2017年6月,西北农林科技大学,农业水土工程专科,博士

2003年9月—2007年12月,西北农林科技大学,农业水土工程专科,硕士

1996年9月—2000年6月,西北农林科技大学,水文与水资源欺骗专科,学士

使命阅历:

2024年1月—于今  西北农林科技大学  教诲

2018年1月—2023年12月 西北农林科技大学  副教诲

2005年5月—2017年12月 西北农林科技大学  讲师

2000年6月—2005年4月 西北农林科技大学   助教

盘考所在:

[1] 贤达灌溉条款下作物水肥高效欺骗表面与调控时候

[2] 基于多源遥感数据(卫星遥感、无东说念主机航空遥感和大地遥感)的水、肥、盐等信息的定量会诊模子及系统研发,作物受水、肥、盐等挟制和长势信息的监测模子及系统研发

[3] 基于卫星和无东说念主机遥感的区域模范干旱监测与蒸散漫估算

[4] 防洪影响分析与区域水资源量度与评价

[5] 区域水资源优化设置和欺骗

讲讲课程:

《工程水文体》、《水文体旨趣》、《运筹学》、《水利水电量度》、《工程水文与水利谈论》、《水利水能量度》;《水利水能量度课程瞎想》、《工程水文与水利谈论课程瞎想》、《水文信息聚积课程的实习》、《地下水详细实习》、《水文地质实习》、《果断实习》等。

科研技俩

主执国度当然科学基金面上技俩1项,主执国度要点研发谈论技俩子课题2项,主执鄂尔多斯达拉特旗引黄灌区泥土水盐监测、宜黄县2023-2025年曹水生态清洁小流域详细处治、九江市德安县等7县水资源详细量度、宁东镇防汛、抗旱救急预案和决策、杨陵区2020年农村饮水工程维教诲护中央水利发展资金技俩等横向技俩5项;此外算作盘考主干参与国度当然科学基金技俩6项,省当然科学基金面上技俩等省级技俩8项。

代表性科研技俩:

[1] 主执国度当然科学基金面上技俩“基于无东说念主机光谱遥感的冬油菜水氮经管决策盘考”(编号:52179045),2022/1-2025/12;

[2] 主执“十三五”国度要点研发计小船课题(2017YFC0403303),盐分挟制条款下泥土水分营养的迁徙规定,2017/7-2020/12;

[3] 主执“十四五”国度要点研发计小船课题(2022YFD1900400),新疆微灌泥土水肥气热盐互作机制与作物高产优质调控时候,2022/11-2025/12;

[4] 主执横向技俩“鄂尔多斯达拉特旗引黄灌区泥土水盐监测”,2023-2025

[5] 主执横向技俩“宜黄县2023-2025年曹水生态清洁小流域”,2023;

[6] 主执横向技俩“九江市德安县等7县水资源详细量度”,2023;

[7] 主执横向技俩“宁东镇防汛、抗旱救急预案和决策”,2021;

[8] 主执横向技俩“杨陵区2020年农村饮水工程维教诲护中央水利发展资金技俩”,2021;

[9] 主要参与国度当然科学基金面上技俩,51579211,滴灌施肥条款下马铃薯水肥耦合效应及给水供肥风光,2016/01-2019/12;

[10] 主要参与陕西省当然科学基金面上技俩“模范效应和遮蔽度对无东说念主机遥感会诊冬小麦水分挟制的影响”(编号:2019JM-066),2019.1-2020.12;

[11] 主要参与国度当然科学基金后生科学基金技俩,51509208 ,黄土旱塬不同汲引风光夏玉米对降雨幽囚再分派及欺骗历程与模拟,2016/01-2019/12;

[12] 主要参与国度当然科学基金后生科学基金技俩,51409219,基于阅兵多主义遗传算法的灌区地表水地下水皆集欺骗模拟优化模子,2015/01-2017/12;

[13] 主要参与国度当然科学基金后生科学基金技俩,51409222,基于系统仿真模拟的生态型灌区量化评价盘考,2015/01-2017/12;

[14] 主要参与国度当然科学基金后生科学基金技俩,51209176,基于CERES-Wheat模子的冬小麦动态水分分娩函数盘考,2013/01-2015/12。

学术后果:淫荡尼姑

在《Field Crops Research》《European Journal of Agronomy》《Journal of Cleaner Production》《Agricultural Water Management》《Geoderma》《Computers and Electronics in Agriculture》等期刊发表论50余篇;其中,第一作家/通信作家SCI论文30余篇(中科院1区5篇、Top期刊10余篇;ESI前1%高被引论文4篇)、EI论文10余篇;共同通信作家SCI论文10余篇(中科院1区10余篇、Top期刊10篇;ESI前1%高被引论文3篇);授权专利2项,软件著述权2项。

年度代表论文:

2024

[1] Shuting Zhao, Lifeng Wu*, Youzhen Xiang*, et al. Forecasting short-term methane based on corrected numerical weather prediction outputs[J]. Journal of Cleaner Production, 460(2024)142500. https://doi.org/10.1016/j.jclepro.2024.142500. (SCI,中科院一区,IF=9.7,2024)

[2] Zijun Tang, Xin Wang, Youzhen Xiang*, et al. Application of hyperspectral technology for leaf function monitoring and nitrogen nutrient diagnosis in soybean (Glycine max L.) production systems on the Loess Plateau of China[J]. European Journal of Agronomy, 154(2024)127098, https://doi.org/10.1016/j.eja. 2024.127098. (SCI,中科院一区,IF=5.2,2024)

[3] Ruiqi Du, Youzhen Xiang*, Junying Chen , et al. Potential of solar-induced chlorophyll fluorescence (SIF) to access long-term dynamics of soil salinity using OCO-2 satellite data and machine learning method[J]. Geoderma, 444(2024)116855. https://doi.org/10.1016/j.geoderma. 2024.116855. (SCI,中科院一区,IF=6.1,2024)

[4] Ruiqi Du,Youzhen Xiang*, Fucang Zhang, et al. Combing transfer learning with the OPtical TRApezoid Model (OPTRAM) to diagnosis small-scale field soil moisture from hyperspectral data[J]. Agricultural Water Management, 298(2024)108856. https://doi.org/10.1016/j.agwat. 2024.108856. (SCI,中科院一区,IF=6.7,2024)

[5] Ruiqi Du, Junsheng Lu, Youzhen Xiang, et al. . Estimation of winter canola growth parameter from UAV multi-angular spectral-texture information using stacking-based ensemble learning model[J]. Computers and Electronics in Agriculture, Volume 222(2024)109074, https://doi.org/10.1016/j.compag .2024.109074. (SCI,中科院一区,IF=8.7,2024)

[6] Han Wang, Youzhen Xiang, Zhenqi Liao, et al. Integrated assessment of water-nitrogen management for winter oilseed rape production in Northwest China[J].Agricultural Water Management, 298(2024)108863. https://doi.org/10.1016/j.agwat. 2024.108863. (SCI,中科院一区,IF=6.7,2024)

[7] Zijun Tang, Junsheng Lu, Youzhen Xiang, et al. Farmland mulching and optimized irrigation increase water productivity and seed yield by regulating functional parameters of soybean (Glycine max L.) leaves[J]. Agricultural Water Management,298(2024)108875. https://doi.org/10.1016/j.agwat. 2024.108875. (SCI,中科院一区,IF=6.7,2024)

[8] Hanmi Zhou, ..., Youzhen Xiang, et al. A novel hybrid model combined with ensemble embedded feature selection method for estimating reference evapotranspiration in the North China Plain[J]. Agricultural Water Management, 296(2024)108807. https://doi.org/10.1016/j.agwat. 2024.108807. (SCI,古典武侠校园春色中科院一区,IF=6.7,2024)

[9] Xianghao Hou, ..., Youzhen Xiang. Optimization of water and nitrogen management to improve seed cotton yield, water productivity and economic benefit of mulched drip-irrigated cotton in southern Xinjiang, China[J]. Field Crops Research, 308 (2024) 109301.  https://doi.org/10.1016/j.fcr. 2024.109301. (SCI,中科院一区,IF=5.6,2024)

[10] Ruiqi Du, Youzhen Xiang*, et al. . The daily soil water content monitoring of cropland in irrigation area using Sentinel-2/3 spatio-temporal fusion and machine learning[J]. International Journal of Applied Earth Observation and Geoinformation,2024.(SCI,中科院一区,IF=7.5,2024)  

2023

[1] Wang Xin, Xiang Youzhen*, Guo Jinjin, et al. Coupling effect analysis of drip irrigation and mixed slow-release nitrogen fertilizer on yield and physiological characteristics of winter wheat in Guanzhong area. Field Crops Research, 2023, 302, 109103.(SCI,中科院一区,IF=5.6,2023)

[2] Ruiqi Du, Junying Chen, Youzhen Xiang, et al. Incremental learning for crop growth parameters estimation and nitrogen diagnosis from hyperspectral data[J]. Computers and Electronics in Agriculture, 215(2023)108356. https://doi.org/10.1016/j.compag. 2023.108356.(SCI,中科院一区,IF=8.7,2023)

[3] Ruiqi Du, Junying Chen, Youzhen Xiang, et al. Timely monitoring of soil water-salt dynamics within cropland by hybrid spectral unmixing and machine learning models[J]. International Soil and Water Conservation Research, 2023/09.https://doi.org/10.1016/j.iswcr. 2023.09.007.(SCI,中科院一区,IF=6.4,2023)

[4] Shi Hongzhao, Guo Jinjin, Xiang Youzhen*, et al. . Estimation of Chlorophyll Content in Soybean Crop at Different Growth Stages Based on Optimal Spectral Index. Agronomy, 13(3):663. (SCI, 中科院二区, IF=3.9).

[5] Wang Xin, Li Wangyang, Xiang Youzhen*, et al. Effects of Nitrogen Supply on Dry Matter Accumulation, Water-Nitrogen Use Efficiency and Grain Yield of Soybean (Glycine max L.) under Different Mulching Methods. Agronomy, 2023, 13(2):606.(SCI,中科院二区,IF=3.9).

[6] 唐子竣,向友珍*,王辛等.欺骗干系矩阵法优化光谱指数的冬油菜氮素营养会诊[J]. 农业工程学报,2023,39(17):97-106. (EI).

[7] 向友珍,安嘉琪,赵笑等.基于无东说念主机多光谱遥感的大豆助长参数和产量估算[J]. 农业机械学报,2023,54(08):230-239. (EI).

[8] 向友珍,李汪洋,台翔等.基于无东说念主机遥感图像纹理与植被指数的泥土含盐量反演[J]. 农业机械学报,2023,54(08):201-210. (EI).

[9] 向友珍,王辛,安嘉琪等.基于分数阶微分和最优光谱指数的大豆叶面积指数估算[J]. 农业机械学报,2023,54(09):329-342. (EI).

[10] 王晗,向友珍*,李汪洋等.基于无东说念主机多光谱遥感的冬油菜地上部生物量估算[J]. 农业机械学报,2023,54(08):218-229. (EI).

2022

[1] Zhao Shuting, Wu Lifeng*, Xiang Youzhen*, et al. Coupling meteorological stations data and satellite data for prediction of global solar radiation with machine learning models[J]. Renewable Energy, 2022, 198:1049-1064. https://doi.org/10.1016/J.RENENE. 2022.08.111.(SCI,中科院一区,IF=8.6,2022)

[2] Wang Han, Xiang Youzhen*, Zhang Fucang*, et al. Responses of yield, quality and water-nitrogen use efficiency of greenhouse sweet pepper to different drip fertigation regimes in Northwest China[J]. Agricultural Water Management, 260(2022)107279.  https://doi.10.1016/j.agwat.  2021.107279. (SCI,中科院一区,IF=6.6,2022)

[3] Yan Fulai, ... , Xiang Youzhen*, et al. Multi-objective optimization of water and nitrogen regimes for drip-fertigated sugar beet in a desert climate[J]. Field Crops Research, 288(2022)108703. https:.//doi.org/10.1016/j.fcr. 2022.108703. (SCI,中科院一区,IF=6.1,2022)

[4] Hou Xianghao, Xiang Youzhen*, Fan Junliang*, et al. Spatial distribution and variability of soil salinity in film-mulched cotton fields under various drip irrigation regimes in southern Xinjiang of China[J]. Soil and Tillage Research, 223(2022)105470. https://doi.org/10.1016/j.still.

2022. 105470. (SCI,中科院一区,IF=7.4,2022)

[5] Cheng Minghui, ..., Xiang Youzhen*, et al. Establishing critical nitrogen dilution curves based on leaf area index and aboveground biomass for greenhouse cherry tomato:  A Bayesian analysis [J]. European Journal of Agronomy, 2022(141)126615.  https://doi.org/10.1016/J.EJA.   2022.126615. (SCI,中科院一区,IF=5.7,2022)

[6] Hou Xianghao, Xiang Youzhen*, Fan Junliang*, et al. Evaluation of cotton N nutrition status based on critical N dilution curve, N uptake and residual under different drip fertigation regimes in Southern Xinjiang of China [J]. Agricultural Water Management, 256 (2021) 107134. https://doi.org/10.1016/j.agwat.2021.107134. (SCI,中科院一区,IF=6.6,2022)

[7] Cheng Minghui, ..., Xiang Youzhen*, et al. Evaluation of AquaCrop model for greenhouse cherry tomato with plastic film mulch under various water and nitrogen supplies[J].  Agricultural Water Management, 274(2022)107949. https://doi.org/10.1016/J.AGWAT. 2022. 107949. (SCI,中科院一区,IF=6.6,2022)

[8] Guo, Jinjin, Fan Junliang*, Xiang Youzhen*, et al. Coupling effects of irrigation amount and nitrogen fertilizer type on grain yield, water productivity and nitrogen use efficiency of drip-irrigated maize[J]. Agricultural Water Management, 261 (2022) 107389. https://doi.org/10.1016/j.agwat. 2021. 107389. (SCI,中科院一区,IF=6.6,2022)

[9] Guo Jinjin , Fan Junliang*, Xiang Youzhen*, et al. Maize leaf functional responses to blending urea and slow-release nitrogen fertilizer under various drip irrigation regimes [J]. Agricultural Water Management, 262(2022)107396. https://doi.org/10.1016/j.agwat. 2021.107396. (SCI,中科院一区,IF=6.6,2022)

[10] Junsheng Lu, Youzhen Xiang, Junliang Fan, et al. Sustainable high grain yield, nitrogen use efficiency and water productivity can be achieved in wheat-maize rotation system by changing irrigation and fertilization strategy. [J]. Agricultural Water Management, 258(2021)107177. https://doi.org/10.1016/j.agwat. 2021 .107177. (SCI,中科院一区,IF=6.6,2022)

软著与专利:

一种金豹优化算法(GJO)可视化软件, 2023SR0248361,2022(软件著述权软)

一种金龟甲虫优化算法(DTBO)可视化软件, 2023SR0248374, 2022(软件著述权软)

一种玉米膜下滴灌水肥药一体化栽培智商,CN201710192088.5,2020(专利)

一种陕北马铃薯水肥一体化栽培智商,CN201611098725.4,2019(专利)

荣誉或获奖:

偷拍

校想政先进个东说念主,西北农林科技大学,2024

校级职业使命先进个东说念主,西北农林科技大学,2023

教育部高校科技跳跃二等奖(朔方旱区主要大田作物水肥一体化要津时候与集成应用,2023,10/14)

学术兼职:

《Plants》—The Application of Spectral Techniques in Agriculture and Forestry section主编,《Agricultural Systems》、《Journal of Hydrology》、《European Journal of Agronomy》、《Field Crops Research》、《Journal of Cleaner Production》、《Applied Energy》、《Computers and Electronics in Agriculture》、《Industrial Crops and Products》、《International Journal of Biological Macromolecules》、《Soil &Tillage Research》、《Agricultural Water Management》、《农业工程学报》、《农业机械学报》等国表里学术期刊审稿东说念主。国度当然科学基金技俩评审巨匠。教育部学位中心盘考生学位论文通信评审巨匠。

国酬酢流:

2011年10月—2012年10月 埃及苏伊士运河大学 科研合营

2015年5月—2016年5月  好意思国有他州立大学  学术交流

招生所在:

学术型博士:(082802)农业水土工程

学术型硕士:(082802)农业水土工程

专科硕士:(085900)土木水利

宽宥对贤达水利、农业水文与水土环境、水文与水资源工程、灌溉水资源经管、遥感科学与时候、谈论机科学与时候感有趣有趣的同学干系!

盘考生培养:

在校

2024级 孙涛(博士)李想皆 刘雨霖 刘志营 金明 钟乃凝

2023级 唐子竣(博士)刘骁驰 黄曙光

2022级 李汪洋 史鸿棹

2021级 杜瑞麒(博士)

达成业

2021级 安嘉琪(中国电建西北院水电与抽水蓄能工程院)王辛(武汉大学,攻博)

赵书婷(武汉大学,攻博)

2020级  唐子竣(西北农林科技大学,攻博) 王晗(中国农业大学,攻博)

学生荣誉

国度奖学金1东说念主、小米奖学金1东说念主、学术会议优秀解释1东说念主、优秀盘考生6东说念主、校级优秀硕士学位毕业论文1东说念主。

本科生培养:

现在,已雷同本科生以第一作家身份在《Plants》《Agronomy》《Sustainability》《Taiwan Water Conservancy》等SCI/EI期刊发表学术论文。

干系神气:

通信地址:陕西杨凌西农路22号 西北农林科技大学水利与拓荒工程学院

邮编:712100

邮箱:youzhenxiang@nwsuaf.edu.cn淫荡尼姑