1. 代表性论文:发表学术论文142篇,其中SCI检索50篇,第一/通讯作者25篇,TOP期刊论文9篇。 |
[1] Ren F, Yang G*, Li W, He X*, Gao Y, Tian L, Li F, Wang Z, Liu S (2021) Yield-compatible salinity level for growing cotton (Gossypium hirsutum L.) under mulched drip irrigation using saline water, Agricultural Water Management, 2021(SCI, IF: 4.021, TOP期刊) |
[2] Yang G, Li F, Chen D, He X, Xue L, Long A (2019) Assessment of changes in oasis scale and water management in the arid Manas River Basin, north western China. Science of the Total Environment 691: 506-515 (SCI, IF: 6.551,TOP期刊) |
[3] Yang G, Li F, Tian L, He X, Gao Y, Wang Z, Ren F (2020) Soil physicochemical properties and cotton (Gossypium hirsutum L.) yield under brackish water mulched drip irrigation. Soil & Tillage Research 199 (SCI, IF: 4.601, TOP期刊) |
[4] Yang G, Tian L, Li X, He X, Gao Y, Li F, Xue L, Li P (2020) Numerical assessment of the effect of water-saving irrigation on the water cycle at the Manas River Basin oasis, China. Science of the Total Environment 707 (SCI, IF: 6.551, TOP期刊) |
[5] Zhang, Q. , Ren, F. , Li, F. , Chen, G. Yang, G, & Li, Z. . (2020). Ammonia nitrogen sources and pollution along soil profiles in an in-situ leaching rare earth ore. Environmental Pollution, 267, 115449. (SCI, IF: 6.792, TOP期刊) |
[6] Liu S, Zhao C, Wang Z, Ding H, Deng H, Yang G, Li J, Zheng H (2020) Urea-assisted one-step fabrication of a novel nitrogen-doped carbon fiber aerogel from cotton as metal-free catalyst in peroxymonosulfate activation for efficient degradation of carbamazepine. Chemical Engineering Journal 386 (SCI, IF: 10.652, TOP期刊) |
[7] Liu S, Wang Z, Li J, Zhao C, He X, Yang G (2018) Fabrication of slag particle three-dimensional electrode system for methylene blue degradation: Characterization, performance and mechanism study. Chemosphere 213: 377-383 (SCI, IF: 5.778, TOP期刊) |
[8] Du, K., Li, F., Qiao, Y., Leng, P., Li, Z., Ge, J., & Yang, G. (2021). Influence of no-tillage and precipitation pulse on continuous soil respiration of summer maize affected by soil water in the North China Plain. Science Of the Total Environment, 766. doi:10.1016/j.scitotenv.2020.144384 (SCI, IF: 6.551, TOP期刊) |
[9] Khasanov, S., Li, F., Kulmatov, R., Zhang, Q., Qiao, Y., Odilov, S., Yu, P., Leng, P., Hirwa, H., Tian, C., Yang, G., Liu, H. and Akhmatov, D. (2022) Evaluation of the perennial spatio-temporal changes in the groundwater level and mineralization, and soil salinity in irrigated lands of arid zone: as an example of Syrdarya Province, Uzbekistan. Agricultural Water Management Volume 263, 1 April 2022, 107444. (SCI, IF: 4.021, TOP期刊) [10] Yang G, Chen D, He X, Long A, Yang M, Li X (2017) Land use change characteristics affected by water saving practices in Manas River Basin, China using Landsat satellite images. International Journal of Agricultural and Biological Engineering 10: 123-133 (SCI, 第一作者) |
[11] Yang G, He X-l, Zheng T (2012) Natural and Artificially Water Flux Ratio Research in Arid Inland River Basin, China. Fresenius Environmental Bulletin 21: 1764-1768(SCI, 第一作者) |
[12] Yang G, Liu S, Yan K, Tian L, Li P, Li X, He X (2020) Effect of drip irrigation with brackish water on the soil chemical properties for a typical desert plant (Haloxylon ammodendron) in the Manas River Basin. Irrigation and Drainage 69: 460-471 (SCI, 第一作者) |
[13] Yang F, Xue L, Wei G, Chi Y, Yang G (2018) Study on the dominant causes of streamflow alteration and effects of the current water diversion in the Tarim River Basin, China. Hydrological Processes 32: 3391-3401 |
[14] Tian, L. , Gao, Y. , Yang, G. , Schwartz, B. , & Wu, H.. Isotopic tracers of sources of water for springs from the edwards aquifer, central texas, usa. Hydrology Research, 2021. |
[15] Yuejian WANG, Xinchen GU, Guang YANG* , et al. Impact of climate change and human activity on water resources in arid lands: a case study of the Ebinur Lake Basin in Northwest China. Journal of Arid Land, 2021, (SCI, 通讯作者) |
[16] Wang Y, Yang G*, Gu X, He X, Liao N (2020) Application of SWAT model with CMADS data for hydrological simulation in western China. Journal of Water and Climate Change, 2020(SCI, 通讯作者) |
[17] Yang G, He X, Li X, Long A, Xue L (2017) Transformation of surface water and groundwater and water balance in the agricultural irrigation area of the Manas River Basin, China. International Journal of Agricultural and Biological Engineering 10: 107-118 (SCI, 第一作者) |
[18] Yang G, He X, Zhao C, Xue L, Chen J (2016) A saline water irrigation experimental investigation into salt-tolerant and suitable salt concentration of Haloxylon ammodendron from the Gurbantünggüt Desert, Northwestern China. Fresenius Environmental Bulletin 25: 3408-3416 |
[19] Yang G, He Xin L, Chen Jiang C, Xu S, Chen S, Yang W (2013) Ecological Plant Haloxylon ammodendron’s response to Drought stress and the model to predict the water environment. Journal of Environmental |
[20] Yang G, He XL, Zheng TG, Maina JN, Li JF, Liu HL (2012) Integrated agricultural irrigation management technique in the arid inland area, China. Journal of Food Agriculture & Environment 10: 736-741(SCI, 第一作者) |
[21] Yang G, Xue L, He X, Wang C, Long A (2017) Change in Land Use and Evapotranspiration in the Manas River Basin, China with Long-term Water-saving Measures. Scientific Reports 7 (SCI, 第一作者) |
[22] Li W, Zhao L, Yang G*, Yan K, He X, Gao Y, Xue L, Li F, Wu Y (2021) Water source and transmission in Haloxylon ammodendron in the desert margin of the Manas River Basin, China. Israel Journal of Ecology and Evolution: 1-12 (SCI, 通讯作者) |
[23] Wang C, Yang G*, Li J, He X, Xue L, Long A (2017) Effects of timing and duration under brackish water mulch drip irrigation on cotton yield in northern Xinjiang, China. International Journal of Agricultural and Biological Engineering 10: 115-122 (SCI, 通讯作者) |
[24] Yang M-j, Yang G, Xue L-q, He X-l, Gao Y-l, Li P-f, Chen D (2019) Multidimensional critical regulation model for sustainable water resources regulation in a typical arid area of the Manas River watershed. Desalination and Water Treatment 164: 121-133 (SCI, 通讯作者) |
[25] Zhao L, Li W, Yang G, Yan K, He X, Li F, Gao Y, Tian L (2021) Moisture, Temperature, and Salinity of a Typical Desert Plant (Haloxylon ammodendron) in an Arid Oasis of Northwest China. Sustainability 13: 1908(SCI, 通讯作者) |
[26] Yage Wu, Guang Yang*, Lijun Tian, Xinchen Gu, Xiaolong Li, Xinlin He, Lianqing Xue, Pengfei Li, and Senyuan Xiao. Spatiotemporal variation in groundwater level within the Manas River Basin, Northwest China:Relative impacts of natural and human factors. Open Geosciences 2021 13: 626–638 |
[27] Tian, L., Gao, Y., Yang, G., Schwartz, B., Cai, B., Lei, G., Shi, G., Ray, C., Sok, S., Martinez, E., Li, Y. and Wu, H. (2021) The evolution of hydrochemical and isotopic signatures from precipitation, surface water to groundwater in a typical karst watershed, Central Texas, USA. Isotopes in Environmental and Health Studies, - 24. |
[28] Li X, He X, Yang G, Zhao L, Chen S, Wang C, Chen J, Yang M (2016) Study of groundwater using visual MODFLOW in the Manas River Basin, China. Water Policy 18: 1139-1154 DOI 10.2166/wp.2016.180 |
[29] Li X, He X, Yang G, Zhao L, Chen S, Wang C, Chen J, Yang M (2016) Study of groundwater using visual MODFLOW in the Manas River Basin, China. Water Policy 18: 1139-1154 DOI 10.2166/wp.2016.180 |
[30] Xue L, Bao R, Meixner T, Yang G, Zhang J (2014) Influences of topographic index distribution on hydrologically sensitive areas in agricultural watershed. Stochastic Environmental Research and Risk Assessment 28: 2235-2242 DOI 10.1007/s00477-014-0925-0 |
[31] Yang L, Heng T, Yang G, Gu X, Wang J, He X (2021) Analysis of Factors Influencing Effective Utilization Coefficient of Irrigation Water in the Manas River Basin. Water 13: 189 |
[32] Li P, Yang G*, He X, Li F, Yan K, Wang Z (2019) Effects of drip irrigation on components of water cycle in arid inland areas: A case study of Manas river basin in northwestern China. International Journal of Agricultural and Biological Engineering 12: 132-138 (SCI, 通讯作者) |
[33] 杨广,何新林,李俊峰. 玛纳斯河流域水资源可持续利用评价方法,生态学报,2011,31(9):2407-2414 |
[34] 肖森元,杨广*,何新林,谷新晨,李00小龙. 玛纳斯河流域MIKE SHE水文模型率定研究,山地学报,2021 |
[35] 任富天,张秋英,杨广*,陈国梁. 离子型稀土尾矿深层土壤剖面铵态氮污染特征及影响因素研究,土壤学报,2021 |
[36] 杨广,李万精,任富天,何新林*,王春霞,乔长录,李毅,李小龙,李发东不同咸水矿化度下膜下滴灌土壤盐分累积规律及其数值模拟. 农业工程学报,2021; [37] 胡松可,李文昊,杨广,刘宁宁. 改进直线型沉沙池在农业微灌中的运行效果[J]. 排灌机械工程学报,2020,38(06):626-631. |
[38] 刘赛华,杨广*,张秋英,何新林,薛联青,王泽林,李发东. 典型荒漠植物梭梭在咸水滴灌条件下土壤水盐运移特性[J].灌溉排水学报,2020,39(01):52-60. |
[39] 李小龙,杨广*,何新林,赵纯,乔长录.玛纳斯河流域地下水水位变化及水量平衡研究[J].水文,2016,36(04):85-92. |
[40] 王杰,龙爱华,杨广,邓晓雅,张沛,海洋. 近25 a来新疆农作物水足迹与经济增长的空间关系分析[J].干旱区地理,2019,42(03):526-533. |
[41] 闫珂,杨广*,何新林,李发东,刘赛华,任富天.准噶尔盆地南缘梭梭水分来源与传输规律分析[J].干旱区资源与环境,2020,34(05):201-208. |
[42] 李琦,李发东,张秋英,乔云峰,杨广,李俊峰,何新林. 基于HYDRUS模型的华北平原小麦种植区水盐运移模拟[J].中国生态农业学报(中英文):1-11,2021. |
2. 出版专著: |
[1] 节水条件下玛纳斯河流域水循环过程模拟研究,中国水利水电出版社,ISBN:978-5170-8932-2,第一主编,2020 |
[2] 准噶尔盆地南缘水资源合理配置及高效利用技术研究,中国水利水电出版社,第二主编,2015 |
[3] 新疆严寒地区绿洲型村镇住区节水技术指南,中国水利水电出版社,第一主编,2015 |
[4] 玛纳斯河流域绿洲化盐漠化响应机理研究,中国水利水电出版社,第二主编,2016 |
[5] Nanotechnologies for Environmental Remediation, Springer International Publishing AG,参编,2017 |
[6] 变化条件下流域水循环影响机理及其生态响应过程,东南大学出版社,第四主编,2018 |
[7] 微咸水灌溉荒漠植物研究,中国农业科学技术出版社,第三主编,2014 |
[8] 干旱内陆河流生态水文情势演变及水资源适应性利用,科学出版社,ISBN 978-7-03-055019-4,第四主编,2018 |
[9] 洞庭湖流域干旱评估及水资源保护策略,东南大学出版社,第五主编,2014 |
[10] 塔河流域干旱预警及灾害效应风险评估,东南大学出版社,参编,2013 |
3. 获奖情况: |
[1] 节水条件下流域尺度水循环过程及多维临界调控研究,新疆生产建设兵团自然科学二等奖,2020年,排名第一; |
[2] 新疆荒漠区典型植被生态需水尺度转化及需水量研究,新疆兵团科学技术进步二等奖,2018年,排名第二; |
[3] 内陆河流域山地-绿洲-荒漠系统稳定的水盐调控理论研究,新疆生产建设兵团科技进步一等奖,2018年,排名第六; |
[4] 准噶尔盆地南缘荒漠化生态系统恢复重建技术集成与示范,新疆生产建设兵团科学技术进步一等奖,2013年,排名第十; |
[5] 荒漠区生态用水及节水意识科技创新调研,中华环保基金会优秀团队,2011年,排名第一; |
[6] 干旱内陆区与三江源地区退化生态修复与生态产业研究与应用.中国产学研创新成果一等奖,2019年,排名第九; |
[7] 环境变化条件下干旱区内陆河流域水资源调控技术,中国产学研创新成果二等奖,2022年,排名第二; [8] 干旱内陆区退化生态修复与生态产业,中国产学研合作创新成果二等奖,2018年,排名第九; |
[9] 自然-社会交互作用下干旱内陆河流域需用水调控技术,中国产学研合作创新成果优秀奖,2020年,排名第二; |
[10] 准噶尔盆地南缘水资源合理配置及高效利用技术研究,水利部大禹奖三等奖,2011年,排名第五; |
[11] 准噶尔盆地南缘水资源合理配置及高效利用技术研究,新疆水利行业科学技术进步奖二等奖,2012年,排名第三; |
[12] 荒漠区典型植被生态需水多尺度监测与模拟,永利官网科学技术进步奖二等奖,2015年,排名第二; |
[13] 准噶尔盆地南缘水资源合理配置及高效利用技术研究,新疆水利学会优秀科技论文三等奖,2014年; |
[14] 基于Visual MODFLOW玛纳斯河流域下游地下水位的预测,新疆水利学会优秀科技论文三等奖,2015年; |
[15] 干旱内陆河灌区农业高效用水关键技术研究,石河子市第十二届自然科学优秀学术论文三等奖,2012年; |
[16] 准噶尔盆地南缘水资源合理配置及高效利用技术体系研究,石河子市第十三届自然科学优秀学术论文三等奖,2015年; |
[17] 玛纳斯河流域生态系统适应性评价,石河子市第十四届自然科学优秀论文三等奖,2016年。 |
[18] 2018年:永利官网“师德标兵”; |
[19] 2017年:永利官网“五四”青年奖章; |
[20] 2013年:永利官网“优秀青年教师”; |
[21] 2017年:永利官网优秀青年教师; |
[22] 2012年:永利官网实践教学先进个人; |
[23] 2013年:永利官网教学研究实践奖; |
[24] 2013年:永利官网“十佳班主任”; |
[25] 2012年:永利官网“3152”青年骨干教师 |
4. 专利授权 |
[1] 一种荒漠植物梭梭灌溉制度的确定方法,发明专利,ZL202010422679.9; [2] 一种用于削减无效蒸发的苯板覆盖结构,发明专利,ZL201510135086.3; |
[3] 河流出山口冲洪积扇岩层结构的古洪水序列重建方法,发明专利,ZL201710991140.3; |
[4] 一种试验用中子管固定架,实用新型专利,ZL201621332052.X; |
[5] 一种地表水表层水取样装置,实用新型专利,ZL201621338780.1; |
[6] 一种螺旋式取土装置,实用新型专利,ZL201720464916.1; |
[7] 一种中子管拔管装置,实用新型专利,ZL201720527495.2; |
[8] 一种用于三脚架沙地固定的脚部组件及一种三脚架,实用新型专利,ZL201621320297.0; |
[9] 一种河道分层地表水取样装置,实用新型专利,ZL201621332030.3; |
[10] 一种数据存储器地下安放装置,实用新型专利,ZL2016213320299.X; |
[11] 一种数据存储器室外固定装置,实用新型专利,ZL2016213320298.5; |
[12] 一种分层土壤蒸散发量测量装置,实用新型专利,ZL201620691053.7; |
[13] 一种雨水收集取样装置,实用新型专利,ZL201620691051.8; |
[14] 一种试验用中子管拔管装置,实用新型专利,ZL201520292715.9; |
[15] 一种水温盐探头收集装置,实用新型专利,ZL 201520291377.7; |
[16] 一种井水采样及测量水位装置,实用新型专利,ZL201520212028.1; |
[17] 一种水样取样装置,实用新型专利,ZL201520212030.9; |
[18] 一种具有融雪功能的太阳能板,实用新型专利,ZL201720834199.7; |
[19] 一种具有照明耐高温严寒的试验设备存放机箱,实用新型专利,ZL201820370329.0; |
[20] 防鼠地下埋线装置,实用新型专利,ZL201820499084.1; |
[21] 一种便携式滴灌带水体盐份测量装置,实用新型专利,ZL201821832336.4; |
[22] 一种农田专用水肥一体化加氧加温灌溉设备, 实用新型专利,ZL201920090615.6; |
[23] 水样采集瓶收集架,实用新型专利,ZL201820370328.6; |
[24] 一种传动式试验用取土装置,实用新型专利,ZL201821792251.8; |
[25] 一种新型沉沙池,实用新型专利,ZL201821672565.6; |
[26] 一种曲线沉沙池. 实用新型专利,CN211435201U; |
[27] 一种沉沙池, 实用新型专利,ZL201821909431.X; |
[28] 一种简易水肥一体化灌溉装置,实用新型专利,ZL201922343870.X; |
[29] 一种自动测流的矩形无喉量水槽,实用新型专利,ZL201822091786.9; |
[30] 一种双重沉沙池, 实用新型专利,ZL201922230945.3; |
[31] 一种降水收集处理装置,实用新型专利,ZL201420544063.9; |
[32] 一体式降水收集处理装置,实用新型专利,ZL201420653152.1; |
[33] 降水收集处理装置,实用新型专利,ZL201220662086.0; |
5. 软件著作权 |
[1] 水资源承载力模糊综合评判软件,2011SR047868; |
[2] 玛纳斯河灌区水资源调度决策系统,2011SR047871; |
[3] 面向生态的玛纳斯河流域水资源优化配置系统,2013SR127576; |
[4] 基于物元模型的水资源承载力评价软件,2015SR109417; |
[5] 基于种植结构优化的水资源优化配置软件,2015SR1085377; |
[6] 基于种植结构优化的水资源优化配置软件,2015SR1085377; |
[7] 玛纳斯河流域分布式水文模型计算智能软件,2019SR0974015; |
[8] 基于编程解决大型灌区农业水价测算问题智能软件,2019SR0967636; |
[9] 玛纳斯河地下水位监测计算智能软件,2019SR0974022; |
[10] 耆灌区农业水价测算智能软件,2019SR0974011; |
[11] 基于标准气象数据格式的计算与格式化智能软件,2019SR0959384; |
[12] 灌区农业供水生产成本核算智能软件V1.0,2019SR0288376; |
[13] 基于VBA编程的集对分析法进行径流丰枯分析智能软件,2019SR0726708; |
[14] 气象站点数据查询提取智能软件,2019SR1420302; |
[15] 天山北坡降雨变化率计算智能软件,2020SR1117092; |
[16] 农田微灌渠首应用的沉沙池含沙量监测系统,2020SR0306152; |
[17] 天山北坡气温直减率计算智能软件,2020SR1122305; |