論文專著:
在《水利學(xué)報》、《中國科學(xué)》、《農(nóng)業(yè)工程學(xué)報》、《灌溉排水學(xué)報》、《中國農(nóng)村水利水電》等國內(nèi)核心學(xué)術(shù)刊物和《Journal of Experimental Botany》、《Journal of Environmental Management》、《Science of the Total Environment》國際著名學(xué)術(shù)刊物以及2004-ICAE、2005-ICID、2008-CIGR、2008-CCTA、美國2010 ASCE、ASABE等國際學(xué)術(shù)會議和中國農(nóng)業(yè)工程學(xué)會國內(nèi)學(xué)術(shù)會議論等發(fā)表論文共120余篇, 其中被SCI、EI收錄25篇。出版《土壤水鹽信息空間變異的預(yù)測理論與條件模擬》《大型灌區(qū)節(jié)水工程改造后農(nóng)田水環(huán)境變化預(yù)測研究》《河套灌區(qū)水平衡機制及耗水量研究》《生物炭節(jié)水保肥與固碳減排機理和關(guān)鍵應(yīng)用技術(shù)研究》等專著5部。
出版專著:
[1].《土壤水鹽空間變異的預(yù)測理論與條件模擬》,科學(xué)出版社 2005
[2].《大型灌區(qū)節(jié)水工程改造后農(nóng)田水環(huán)境變化預(yù)測研究》,科學(xué)技術(shù)出版社 2007
[3].屈忠義等..,《內(nèi)蒙古引黃灌區(qū)不同尺度灌溉水效率測試分析與節(jié)水潛力評估》,科學(xué)出版社,2019.
[4].屈忠義、王麗萍等.《生物炭節(jié)水保肥與固碳減排機理和關(guān)鍵應(yīng)用技術(shù)研究》,科學(xué)出版社,2019.
[5].屈忠義、黃永江等.《節(jié)水技術(shù)與交易潛力》,中國水利水電出版社,2020.
[6].屈忠義、高曉瑜等.《引黃灌區(qū)滴灌農(nóng)田水鹽調(diào)控技術(shù)與模式》,科學(xué)出版社,2021.
發(fā)表英文論文: (通訊作者*):
[1]Yang, W., Jia, Y., Feng, G., Ma, C., Qu, Z*. (2022). Residual effect of single biochar application on soil nutrients availability and fertilizer productivity in a mulched drip-irrigated corn field. Archives of Agronomy and Soil Science, 1-15.
[2]Zhang, R.; Qu, Z*.; Liu, L.;Yang, W.; Wang, L.; Li, J.; Zhang, D.Soil Respiration and Organic CarbonResponse to Biochar and Their Influencing Factors. Atmosphere 2022,13, 2038.
[3]Wang Huiqiang,Zhou Yushan,Fu Haiqiang,Zhu Jianjun,Yu Yanan,Li Ruiping,Zhang Shengwei,Qu Zhongyi*,Hu Shouzhong. Parameterized Modeling and Calibration for Orbital Error in TanDEM-X Bistatic SAR Interferometry over Complex Terrain Areas[J]. Remote Sensing,2021,13(24).
[4]Cen Rui,Feng Weiying,Yang Fang,Wu Wenyong,Liao Haiqing,Qu Zhongyi*. Effect mechanism of biochar application on soil structure and organic matter in semi-arid areas[J]. Journal of Environmental Management,2021,286.
[5]Xu Xu,Li Huawei,Sun Chen,Ramos Tiago B.,Darouich Hanaa,Xiong Yunwu,Qu Zhongyi*,Huang Guanhua. Pedotransfer functions for estimating soil water retention properties of northern China agricultural soils: Development and needs[J]. Irrigation and Drainage,2021,70(4).
[6]Yang, W., Feng, G., Miles, D., Gao, L., Jia, Y., Li, C., & Qu, Z*. (2020). Impact of biochar on greenhouse gas emissions and soil carbon sequestration in corn grown under drip irrigation with mulching. Science of the Total Environment, 729, 138752.
[7]Yang, Wei; Feng, Gary; Adeli, Ardeshir; Tewolde, Haile; Qu, Zhongyi*.Simulated long-term effect of wheat cover crop on soil nitrogen losses from no-till corn-soybean rotation under different rainfall patterns.Journal of Cleaner Production, 2021, 280: 124255.
[8]Feng, W., Yang, F., Cen, R., Liu, J., Qu, Z., Miao, Q., & Chen, H. (2020). Effects of straw biochar application on soil temperature, available nitrogen and growth of corn. Journal of Environmental Management, 277, 111331.)
[9]Yang Fang,Cen Rui,Feng Weiying,Liu Jing,Qu Zhongyi*,Miao Qingfeng. Effects of Super-Absorbent Polymer on Soil Remediation and Crop Growth in Arid and Semi-Arid Areas[J]. Sustainability, 2020, 12(18): 7825.
[10]Anqi Liu,Zhongyi Qu*,Uri Nachshon. On the potential impact of root system size and density on salt distribution in the root zone[J]. Agricultural Water Management, 2020, 234: 106118.
[11]Gao Xiaoyu,Qu Zhongyi*,Huo Zailin,Tang Pengcheng,Qiao Shuaishuai. Understanding the Role of Shallow Groundwater in Improving Field Water Productivity in Arid Areas[J]. Water (Switzerland), 2020, 12(12): 3519.
[12]Qiao Shuaishuai,Qu Zhongyi*,Gao Xiaoyu,Yang Xiujuan,Feng Xinwei. Spatial and Temporal Distribution Characteristics of Water Requirements for Maize in Inner Mongolia from 1959 to 2018[J]. Water (Switzerland), 2020, 12(11): 3080.
[13]Su, Tengfei; Liu, Tingxi*; Zhang, Shengwei; Qu, Zhongyi; Li, Ruiping.Machine learning-assisted region merging for remote sensing image segmentation.ISPRS Journal of Photogrammetry and Remote Sensing, 2020, 168: 89-123.
[14]Yang, Wei; Feng, Gary; Miles, Dana; Gao, Lihua; Jia, Yonglin; Li, Changjian; Qu, Zhongyi*.Impact of biochar on greenhouse gas emissions and soil carbon sequestration in corn grown under drip irrigation with mulching.Science of the Total Environment, 2020, 729: 138752.
[15]Ding, Yanhong; Gao, Xiaoyu; Qu, Zhongyi*; Jia, Yonglin; Hu, Min; Li, Changjian..Effects of Biochar Application and Irrigation Methods on Soil Temperature in Farmland[J]. Water, 2019, 11(3) : 499.
[16]Li, Jingang; Chen, Jing*; Qu, Zhongyi*; Wang, Shaoli; He, Pingru; Zhang, Na.Effects of Alternating Irrigation with Fresh and Saline Water on the Soil Salt, Soil Nutrients, and Yield of Tomatoes.Water, 2019, 11(8): 1693.
[17]Li, Jingang; Qu, Zhongyi*; Chen, Jin*; Yang, Bo; Huang, Yongping. Effect of Planting Density on the Growth and Yield of Sunflower under Mulched Drip Irrigation[J]. Water, 2019, 11(4): 752.
[18]Xue, Jingyuan; Huo, Zailin*; Huang, Quanzhong; Wang, Fengxin; Boll, Jan; Huang, Guanhua; Qu, Zhongyi.Assessing sustainability of agricultural water saving in an arid area with shallow groundwater.Irrigation and Drainage, 2019, 68(2): 205-217.
[19]Sun, Guanfang; Zhu, Yan*; Ye, Ming; Yang, Jinzhong; Qu, Zhongyi; Mao, Wei; Wu, Jingwei.Development and application of long-term root zone salt balance model for predicting soil salinity in arid shallow water table area.Agricultural Water Management, 2019, 213: 486-498.
[20]Zhai, Yongguang; Qu, Zhongyi*; Hao, Lei. Land Cover Classification Using Integrated Spectral, Temporal, and Spatial Features Derived from Remotely Sensed Images[J]. Remote Sensing,2018,10(3):383
[21]Gao, Xiaoyu; Huo, Zailin*; Xu, Xu; Qu, Zhongyi*; Huang, Guanhua; Tang, Pengcheng; Bai, Yining. Shallow groundwater plays an important role in enhancing irrigation water roductivity in an arid area: The perspective from a regional agricultural hydrology simulation[J].Agricultural Water Management ,2018,.208(30):43-58.
[22]Changjian Li, Yunwu Xiong, Zhongyi Qu*, Xu Xu, Quanzhong Huang, Guanhua Huang.Impact of biochar addition on soil properties and water-fertilizer productivity of tomato in semi-arid region of Inner Mongolia, China[J]. Geoderma,2018,331(1):100-108.
[23]Li Jingang,Qu Zhongyi*,Chen Jin,Wang Fan,Jin Qiu. Effect of Different Thresholds of Drip Irrigation Using Saline Water on Soil Salt Transportation and Maize Yield[J]. Water, 2018, 10(12): 1855. doi:10.3390/w10121855
[24]Xingwang Wang ,Zailin Huo ,Huade Guan ,Ping Guo ,Zhongyi Qu*. Drip irrigation enhances shallow groundwater contribution to crop water consumption in an arid area[J]. hydrological Processes,2018,32(6)pp:747-758.
[25]Gao Xiaoyu; Huo Zailin; Qu Zhongyi; Xu Xu; Huang Guanhua; Steenhuis Tammo S.Modeling contribution of shallow groundwater to evapotranspiration and yield of maize in an arid area.Scientific Reports, 2017, 7(1): 1-13.
[26]Ren, Xiaodong; Martins, Diogo S.; Qu, Zhongyi*; Paredes, Paula; Pereira, Luis S.*.Daily Reference Evapotranspiration for Hyper-Arid to Moist Sub-Humid Climates in Inner Mongolia, China: II. Trends of ETo and Weather Variables and Related Spatial Patterns.Water Resources Management, 2016, 30(11): 3793-3814.DOI: 10.1007/s11269-016-1385-8.
[27]Ren, Xiaodong; Qu, Zhongyi*; Martins, Diogo S.; Paredes, Paula; Pereira, Luis S.*.Daily Reference Evapotranspiration for Hyper-Arid to Moist Sub-Humid Climates in Inner Mongolia, China: I. Assessing Temperature Methods and Spatial Variability.Water Resources Management, 2016, 30(11): 3769-3791. DOI 10.1007/s11269-016-1384-9.
[28]Ren, Xiaodong; Martins, Diogo S.; Qu, Zhongyi*; Paredes, Paula; Pereira, Luis S.*.Daily Reference Evapotranspiration for Hyper-Arid to Moist Sub-Humid Climates in Inner Mongolia, China: II. Trends of ETo and Weather Variables and Related Spatial Patterns.Water Resources Management, 2016, 30(11): 3793-3814..DOI: 10.1007/s11269-016-1385-8.(SCI IF=2.6)
[29]Chen, Hang; Liu, Zhongyi; Huo, Zailin*; Qu, Zhongyi; Xia, Yuhong; Fernald, Alexander.Impacts of agricultural water saving practice on regional groundwater and water consumption in an arid region with shallow groundwater.Environmental Earth Sciences, 2016, 75(16): 1204.
[30]Xu, Xu; Sun, Chen; Qu, Zhongyi; Huang, Quanzhong; Ramos, Tiago B.; Huang, Guanhua*.GROUNDWATER RECHARGE AND CAPILLARY RISE IN IRRIGATED AREAS OF THE UPPER YELLOW RIVER BASIN ASSESSED BY AN AGRO-HYDROLOGICAL MODEL.Irrigation and Drainage, 2015, 64(5): 587-599.
[31]Gao, Xiaoyu; Huo, Zailin*; Bai, Yining; Feng, Shaoyuan; Huang, Guanhua; Shi, Haibin; Qu, Zhongyi.Soil salt and groundwater change in flood irrigation field and uncultivated land: a case study based on 4-year field observations.Environmental Earth Sciences, 2015, 73(5): 2127-2139.
[32]Tian Dan, Qu Zhong-Yi*, Gou Mang-Mang, Li Bo, Lv Yi-Jia. The experimental study of influence of Biochar on different texture soils hydraulic characteristic parameters and moisture holding property. Polish Journal of Environmental Studies,2015,24(3),1435-1442.
[33]Xu, Xu; Huang, Guanhua*; Zhan, Hongbin; Qu, Zhongyi; Huang, Quanzhong.Integration of SWAP and MODFLOW-2000 for modeling groundwater dynamics in shallow water table areas.Journal of Hydrology, 2012, 412: 170-181.
[34]Xu, Xu1, 2; Qu, Zhong-Yi3*; Huang, Guan-Hua1, .Optimization of soil hydraulic and solute transport parameters using genetic algorithms at field scale.Journal of Hydraulic Engineering, 2012, 43(7): 808-815.
[35]Qu, Z., Li, X., Tian, D., Jana, R. B., & Monhanty, B. P. (2011). Development of regional-scale pedotransfer functions based on Bayesian Neural Networks in the Hetao Irrigation District of China. 2011 Seventh International Conference on Natural Computation, IEEE, 2, 756-761.
[36]Xu, Xu; Huang, Guanhua*; Qu, Zhongyi; Pereira, Luis S.Using MODFLOW and GIS to Assess Changes in Groundwater Dynamics in Response to Water Saving Measures in Irrigation Districts of the Upper Yellow River Basin.Water Resources Management, 2011, 25(8): 2035-2059.
[37]Wang, Xixi1*; Liu, Tingxi2; Yang, Dawen2; Qu, Zhongyi3; Clary, Calvin R.1; Wunneburger, Carin1.Simulating hydrologic effects of raised roads within a low-relief watershed.Journal of Hydrologic Engineering, 2011, 16(7): 585-597.
[38]Xu, Xu1, 2; Huang, Guanhua1, 2*; Qu, Zhongyi3; Huang, Quanzhong1, 2.Regional scale model for simulating soil water flow and solute transport processes-GSWAP.Transactions of the Chinese Society of Agricultural Engineering, 2011, 27(7): 58-63.
[39]Xu, Xu; Huang, Guanhua*; Qu, Zhongyi; Pereira, Luis S.Assessing the groundwater dynamics and impacts of water saving in the Hetao Irrigation District, Yellow River basin.Agricultural Water Management, 2010, 98(2): 301-313.
[40]Qu, Z., Wang, X., Feng, Z., & Guo, S. (2010). Changes of Temporal Trends and Spatial Patterns of Nitrate-Nitrogen in the Farmland Groundwater Resulting from Water-Saving Irrigation in the Hetao Irrigation District of China. 2010 World Environmental and Water Resources Congress: Challenges of Change, 808-821.
[41]Yu, Ruihong; Liu, Tingxi*; Xu, Youpeng; Zhu, Chao; Zhang, Qing; Qu, Zhongyi; Liu, Xiaomin; Li, Changyou.Analysis of salinization dynamics by remote sensing in Hetao Irrigation District of North China.Agricultural Water Management, 2010, 97(12): 1952-1960.
[42]Qu, Z., Mohanty, B., Wang, X., Huang, G. Development of Regional-Scale Relationship between Fractal Dimension and Soil Physical Properties in the Hetao Irrigation District of China, 2010 ASABE Annual International Meeting in Pittsburgh,Pennsylvania in June 20-23, 2010.
[43]Wang, X., Qu, Z., Liu, T., et al. Incorporating Affects Of Raised Roads Into Hydrology Model To Improve Simulation Of Low-Relief Watershed, World Environmental and Water Resources Congress 2010: Challenges of Change. © 2010 ASCE, 4485-4499.
[44]Wang, Xixi; Shang, Shiyou; Qu, Zhongyi; Liu, Tingxi; Melesse, Assefa M.; Yang, Wanhong.Simulated wetland conservation-restoration effects on water quantity and quality at watershed scale.Journal of Environmental Management, 2010, 91(7): 1511-1525.
[45]Xu Xu; Huang GuanHua; Qu ZhongYi.Integrating MODFLOW and GIS technologies for assessing impacts of irrigation management and groundwater use in the Hetao Irrigation District, Yellow River basin.Science in China - Series E: Technological Sciences , 2009, 52(11): 3257-3263.
[46]Chen, Yaxin1; Qu, Zhongyi1; Gao, Zhanyi2.Prediction of farmland water environment after reconstruction of water-saving in the large-scale irrigation district based on the ANN technology.Transactions of the Chinese Society of Agricultural Engineering, 2009, 25(1): 1-5.
[47]Qu, Z., Huang, G., and Yang, J. Evaluation Of Regional Pedotransfer Functions Based On The Bp Neural Networks, Computer and Computing Technologies in Agriculture II, Volume 2, Springer Boston, The Second IFIP International Conference on Computer and Computing Technologies in Agriculture (CCTA2008), October 18-20, 2008, Beijing, China, 2009, 1189-1199
[48]Qu, Z. An applied research of artificial neural Co-kriging on spatial variability in the frozen earth, Effective utilization of agricultural soil & water resources and protection of environment,2007,09,140-146.
[49]Qu, Zhongyi*; Chen, Yaxin; Yang, Jingyu.Application and comparison research of artificial neural network on conditional simulation and space variability of water-salt for frozen earth.Transactions of the Chinese Society of Agricultural Engineering, 2007, 23(7): 48-53.
[50]Liu, Quanming*; Chen, Yaxin; Wei, Zhanmin; Qu, Zhongyi; Zhao, Peiqing.Dynamic monitoring of zonal soil water-salt environment based on artificial intelligent technique.Transactions of the Chinese Society of Agricultural Engineering, 2006, 22(10): 1-6.
[51]Qu, Z., Chen, Y., Shi, H., Wei, Z., et al. The Study on Prediction of Regional Farmland Water Environment Change After The Water Saving Reconstruction Project Practice—Case Study A Large-Scale Irrigation District Of China, Land and Water Management Decision Tools and Practices Vol.Ⅱ-Proceedings of The 7th Inter Regional Conference on Environment And Water, 2004, Beijing.
[52]Qu, Z., Chen, Y., Xu, Y., Shi, H., Wei, Z. Application of artificial Neural Kriging to conditional simulation and spatial estimation of frozen earth,water-saving agriculture and sustainable use of water and land resources, Shaanxi, 2003,10.
[53]Qu, Z., Chen, Y., Shi, H. The application and prospects of booming subjects in the regional water environment research. The international conference on the optimum allocation of water resource the ecological environment construction and the sustainable development in arid zone. 2001.10, Huhhot, Inner Mongolia, P.R.China.
[54]Chen, Y., Wei, Z., Shi, H., Qu, Z., et al. Simulative Study On Models of Crop Response To Water For High-Efficient Water-Saving Irrigation. International conference on agricultural science and technology, session 2,346~350.2001, 11.
發(fā)表中文期刊論文: (通訊作者*):
[1]孫貫芳, 朱焱, 楊金忠, 屈忠義, 李永紅, 高照良. 干旱灌區(qū)土壤水分和鹽分時間穩(wěn)定性特征及其改進分組預(yù)測[J]. 生態(tài)學(xué)報, 2024, (20): 1-15.
[2]張云松, 龐赟佶, 許嘉, 陳義勝, 王麗, 屈忠義. 微波熱解技術(shù)在制備生物炭中的應(yīng)用及研究進展[J]. 材料導(dǎo)報, 1-14.
[3]趙一波, 楊威, 屈忠義, 王麗萍, 高曉瑜, 張如鑫, 任恩良. 春匯/夏澆灌溉制度對鹽堿土壤水鹽運移及向日葵水分利用的影響[J]. 灌溉排水學(xué)報, 2024, 43 (06): 10-17.
[4]王宇璇, 屈忠義, 白燕英, 劉霞, 劉全明, 劉琦. 基于Sentinel-2影像的黃河南岸典型改良示范區(qū)土壤含鹽量反演模型[J]. 農(nóng)業(yè)機械學(xué)報, 2024, 55 (04): 290-299+439.
[5]楊旖璇, 屈忠義, 楊威, 劉琦, 任恩良, 季文濤. 氮肥和有機肥配施對鹽堿地釀酒高粱生長、氮素利用效率及土壤N2O排放的影響[J]. 干旱地區(qū)農(nóng)業(yè)研究, 2023, 41 (06): 116-127.
[6]王志超, 李哲, 李嘉辰, 屈忠義, 楊文煥, 李衛(wèi)平. 聚乙烯微塑料對鹽漬化土壤微生物群落的影響[J]. 環(huán)境科學(xué), 2024, 45 (05): 3088-3097.
[7]孫貫芳, 高照良, 朱焱, 楊金忠, 屈忠義. 時空克里金評估河套灌區(qū)土壤鹽分時空格局[J]. 干旱區(qū)研究, 2023, 40 (02): 182-193.
[8]李俊杰, 屈忠義, 楊威, 王麗萍, 張如鑫. 咸水結(jié)冰灌溉下鹽堿地土壤水熱鹽動態(tài)遷移特征分析[J]. 水土保持學(xué)報, 2023, 37 (02): 377-384.
[9]高宏遠, 劉霞, 高曉瑜, 屈忠義. 不同灌排模式下鹽漬化土壤鹽分及離子遷移規(guī)律及均衡分析[J]. 水土保持學(xué)報, 2023, 37 (02): 361-370.
[10]聶會東, 屈忠義*, 楊威, 王麗萍, 張如鑫, 楊旖璇. 秸稈生物炭對河套灌區(qū)膜下滴灌玉米農(nóng)田生態(tài)系統(tǒng)碳足跡的影響[J]. 環(huán)境科學(xué), 2023, 44 (10): 5832-5841.
[11]楊威, 屈忠義, 張如鑫, 楊旖璇, 賈詠霖, 高曉瑜, 高利華. 膜下滴灌制度與生物炭用量對玉米生長及水氮利用效率的影響[J]. 水土保持學(xué)報, 2023, 37 (01): 313-322.
[12]喬帥帥, 高曉瑜, 屈忠義*, 楊繡娟, 暢笑, 楊鋒, 馮鑫煒. 1959-2018年氣候變化對內(nèi)蒙古春玉米需水量和產(chǎn)量的影響[J]. 農(nóng)業(yè)工程學(xué)報, 2022, 38 (S1): 87-97.
[13]高曉瑜, 湯鵬程, 張莎, 屈忠義, 楊威. 內(nèi)蒙古各氣候區(qū)主要作物生長季干旱特征及其與響應(yīng)因子回歸模型[J]. 干旱區(qū)研究, 2022, 39 (05): 1410-1427.
[14]張如鑫, 屈忠義, 王麗萍, 楊威, 劉祖汀. 生物炭對凍融期鹽漬化土壤水熱肥效應(yīng)的影響[J]. 水土保持學(xué)報, 2022, 36 (05): 296-303.
[15]劉鴻濤, 屈忠義, 李怡陽, 陳澤. 基于貝葉斯網(wǎng)絡(luò)理論與仿生技術(shù)的翼形量水槽優(yōu)化[J]. 工程科學(xué)與技術(shù), 2022, 54 (06): 105-115.
[16]張如鑫, 屈忠義, 楊威, 劉祖汀, 王麒源, 王麗萍. 生物炭對鹽漬化土壤周年溫室氣體排放及凍融效應(yīng)的影響[J]. 中國生態(tài)農(nóng)業(yè)學(xué)報(中英文), 2022, 30 (10): 1565-1576.
[17]劉鴻濤, 屈忠義, 向丹丹. 矩形渠道翼形量水槽仿生優(yōu)化試驗研究[J]. 灌溉排水學(xué)報, 2022, 41 (09): 140-146.
[18]馬貴仁, 屈忠義, 王麗萍, 賈詠霖, 劉祖汀. 河套灌區(qū)典型示范區(qū)土壤鹽分和有機質(zhì)空間變異特征[J]. 中國土壤與肥料, 2022, (04): 17-28.
[19]高曉瑜, 張莎, 屈忠義, 湯鵬程, 霍再林. 內(nèi)蒙古不同氣候區(qū)域參考作物騰發(fā)量估算模型適用性分析[J]. 干旱地區(qū)農(nóng)業(yè)研究, 2022, 40 (02): 222-231.
[20]劉祖汀, 王麗萍, 屈忠義, 張如鑫, 何婧, 馬貴仁, 李二珍. 引黃春灌對鹽堿土區(qū)地下水動態(tài)及理化性質(zhì)的影響[J]. 灌溉排水學(xué)報, 2022, 41 (02): 101-108.
[21]黃永江, 屈忠義*. 基于SPA-VFS耦合模型的河套灌區(qū)灌溉用水效率分級[J]. 農(nóng)業(yè)工程學(xué)報, 2021, 37 (11): 85-92.
[22]李爭爭, 屈忠義*, 楊威, 何婧. 不同礦化度咸水結(jié)冰灌溉對重度鹽堿地土壤水分入滲和鹽分運移的影響[J]. 水土保持學(xué)報, 2021, 35 (03): 304-311.
[23]黃永江, 屈忠義*. 基于PCA和GRA-TOPSIS相耦合的灌區(qū)用水效率評價模型構(gòu)建與應(yīng)用[J]. 灌溉排水學(xué)報, 2021, 40 (05): 119-124.
[24]何婧, 屈忠義*, 劉霞, 劉祖汀, 孫宇樂. 杭錦后旗不同鹽漬土沙穴種植番茄對土壤水熱鹽的響應(yīng)[J]. 干旱區(qū)研究, 2021, 38 (03): 682-694.
[25]孫宇樂, 屈忠義*, 王麗萍, 楊少東, 王凡. 絮凝泥沙對中度鹽漬化土壤氮素淋失及水分利用效率的影響研究[J]. 節(jié)水灌溉, 2021, (02): 1-5.
[26]屈忠義, 孫慧慧, 楊博, 高曉瑜, 王利明, 王麗萍. 不同改良劑對鹽堿地土壤微生物與加工番茄產(chǎn)量的影響[J]. 農(nóng)業(yè)機械學(xué)報, 2021, 52 (04): 311-318+350.
[27]李爭爭; 屈忠義*; 楊威; 王麗萍; 高曉瑜; **.暗管排水對鄂爾多斯地區(qū)重度鹽堿地鹽分遷移規(guī)律的影響.灌溉排水學(xué)報, 2021, 40(07): 122-129.
[28]馬貴仁; 屈忠義*; 王麗萍; 賈詠霖; 劉祖汀.基于ArcGIS空間插值的河套灌區(qū)土壤水鹽運移規(guī)律與地下水動態(tài)研究.水土保持學(xué)報, 2021, 35(04): 208-216.
[29]孫宇樂, 屈忠義, 劉全明, 王麗萍. 基于多源遙感協(xié)同反演的區(qū)域性土壤含水率動態(tài)研究[J]. 西南大學(xué)學(xué)報(自然科學(xué)版), 2020, 42 (12): 46-53.
[30]孫宇樂, 屈忠義, 劉全明. 基于地面光譜聯(lián)合SAR多源數(shù)據(jù)的農(nóng)田表土氮磷監(jiān)測[J]. 灌溉排水學(xué)報, 2020, 39 (12): 120-127.
[31]高惠敏, 王相平, 屈忠義, 楊勁松, 姚榮江. 不同改良劑對河套灌區(qū)土壤鹽堿指標(biāo)及作物產(chǎn)量的影響研究[J]. 土壤通報, 2020, 51 (05): 1172-1179.
[32]楊博, 屈忠義, 孫慧慧, 楊威, 王麗萍, 劉霞, 張如鑫, 王麒源. 粉壟耕作對河套灌區(qū)鹽堿地土壤性質(zhì)的影響[J]. 灌溉排水學(xué)報, 2020, 39 (08): 52-59.
[33]馬貴仁, 王麗萍, 屈忠義, 賈詠霖, 王鈺涵. 構(gòu)建河套灌區(qū)大規(guī)模鹽堿地改良效果評估指標(biāo)體系[J]. 灌溉排水學(xué)報, 2020, 39 (08): 72-84.
[34]高惠敏, 王相平, 屈忠義, 楊勁松, 姚榮江. 脫硫石膏與有機物料配施對河套灌區(qū)土壤改良及向日葵生長的影響[J]. 灌溉排水學(xué)報, 2020, 39 (08): 85-92.
[35]賈詠霖, 屈忠義, 丁艷宏, 楊威, 馬貴仁, 李爭爭. 不同灌溉方式下施用生物炭對土壤水鹽運移規(guī)律及玉米水分利用效率的影響[J]. 灌溉排水學(xué)報, 2020, 39 (08): 44-51.
[36]李爭爭, 屈忠義, 王麗萍, 高曉瑜, 何婧. 絮凝黃河泥沙復(fù)配生物炭對鹽堿土水鹽運移及水力特征參數(shù)影響[J]. 水土保持學(xué)報, 2020, 34 (03): 326-331.
[37]何婧, 屈忠義, 劉霞, 高曉瑜, 胡敏, 李爭爭, 劉祖汀. 微咸水滴灌條件下沙穴種植的土壤水鹽二維空間分布規(guī)律[J]. 水土保持學(xué)報, 2020, 34 (03): 332-341.
[38]孫慧慧, 屈忠義, 王凡, 王麗萍, 楊博. 沙穴種植對鹽堿土壤水鹽運移和番茄生長特性的影響[J]. 水土保持學(xué)報, 2020, 34 (01): 230-235.
[39]屈忠義*, 胡敏, 王麗萍, 丁艷宏, 高曉瑜. 不同改良措施對鹽漬化土壤水熱碳與葵花產(chǎn)量的影響[J]. 農(nóng)業(yè)機械學(xué)報, 2020, 51 (03): 268-275.
[40]楊少東, 屈忠義, 張偉鋒, 李哲, 丁艷宏, 賈詠霖, 樊琴. 無機吸附劑處理黃河水滴灌抗堵塞試驗研究[J]. 排灌機械工程學(xué)報, 2020, 38 (05): 517-522.
[41]張瑤, 屈忠義, 丁艷宏, 王凡. 不同土壤改良劑對鹽漬化農(nóng)田土壤改良及溫室氣體排放的影響[J]. 節(jié)水灌溉, 2019, (12): 36-41+47.
[42]劉鴻濤, 趙瑞娟, 宋一夢, 牛炎, 于明舟, 韓宇, 屈忠義. 翼柱型量水槽應(yīng)用于梯形渠道性能試驗研究[J]. 節(jié)水灌溉, 2019, (11): 6-9.
[43]胡敏, 屈忠義, 王麗萍, 丁艷宏, 張瑤, 李哲, 孫宇樂. 不同改良劑對河套灌區(qū)鹽漬化土壤性狀和葵花生長特性的影響[J]. 水土保持學(xué)報, 2019, 33 (05): 316-322.
[44]楊博, 屈忠義, 劉霞, 孫慧慧, 孫宇樂. 不同品種釀酒高粱在鹽堿地種植的適應(yīng)性研究[J]. 作物研究, 2019, 33 (06): 538-542.
[45]劉鴻濤, 于明舟, 龍昱帆, 趙瑞娟, 屈忠義. 灌區(qū)水量計量的方法與應(yīng)用[J]. 東北水利水電, 2019, 37 (09): 21-24+59+72.
[46]劉鴻濤, 牛炎, 于明舟, 宋一夢, 趙瑞娟, 韓宇, 屈忠義. 翼柱型量水槽在3種常用渠道上的應(yīng)用性能對比試驗研究[J]. 灌溉排水學(xué)報, 2019, 38 (09): 88-94.
[47]劉鴻濤, 于明舟, 牛炎, 宋一夢, 趙瑞娟, 韓宇, 屈忠義. 梯形渠道翼柱型量水槽試驗研究與數(shù)值模擬[J]. 灌溉排水學(xué)報, 2019, 38 (09): 101-107.
[48]哈斯格日樂, 屈忠義, 王凡. 粉壟耕作下施加脫硫石膏和生物炭對鹽漬土壤水熱鹽的影響研究[J]. 節(jié)水灌溉, 2019, (09): 19-22+28.
[49]翟涌光, 屈忠義, 呂萌. 西北部少數(shù)民族地區(qū)城市擴展特征分析——以呼和浩特市為例[J]. 測繪科學(xué), 2020, 45 (04): 97-104+124.
[50]史吉剛, 李瑋, 張瑞喜, 馬鑫, 于健, 屈忠義, 陸圣女. 引黃灌區(qū)黃河水滴灌關(guān)鍵技術(shù)研究與示范[J]. 水利科學(xué)與寒區(qū)工程, 2018, 1 (12): 77-80.
[51]李哲, 屈忠義, 任中生, 楊少東, 續(xù)喆, 哈斯格日樂, 李茂. 河套灌區(qū)滴灌施肥對土壤氨揮發(fā)及玉米氮肥利用率的影響[J]. 灌溉排水學(xué)報, 2018, 37 (11): 37-42+49.
[52]王凡, 屈忠義. 生物炭對鹽漬化農(nóng)田土壤的改良效果研究進展[J]. 北方農(nóng)業(yè)學(xué)報, 2018, 46 (05): 68-75.
[53]翟涌光, 屈忠義*. 基于非線性降維時序遙感影像的作物分類[J]. 農(nóng)業(yè)工程學(xué)報, 2018, 34 (19): 177-183.
[54]李哲, 屈忠義, 任中生, 楊少東, 續(xù)喆, 賈詠林, 胡敏. 河套灌區(qū)膜下滴灌高頻施肥促進玉米生長及產(chǎn)量研究[J]. 節(jié)水灌溉, 2018, (10): 1-4+8.
[55]勾芒芒, 屈忠義*. 生物炭與化肥互作對土壤含水率與番茄產(chǎn)量的影響[J]. 農(nóng)業(yè)機械學(xué)報, 2018, 49 (11): 283-288.
[56]丁艷宏, 屈忠義, 李昌見, 孫貫芳, 張棟良, 馮志弘. 不同灌溉水源及方式對玉米生長特性及水肥利用效率的影響[J]. 灌溉排水學(xué)報, 2018, 37 (08): 1-7.
[57]勾芒芒, 屈忠義*, 王凡, 高曉瑜, 胡敏. 生物炭施用對農(nóng)業(yè)生產(chǎn)與環(huán)境效應(yīng)影響研究進展分析[J]. 農(nóng)業(yè)機械學(xué)報, 2018, 49 (07): 1-12.
[58]張娜, 張紅玲, 張棟良, 屈忠義*. 基于高光譜的區(qū)域土壤顆粒組成及有機質(zhì)預(yù)測模型尺度轉(zhuǎn)換[J]. 排灌機械工程學(xué)報, 2018, 36 (11): 1175-1179.
[59]李興, 勾芒芒, 屈忠義, 徐效清. 生物炭對沙壤土水分特征的影響[J]. 江蘇農(nóng)業(yè)科學(xué), 2018, 46 (12): 280-283.
[60]于健, 楊金忠, 徐冰, 屈忠義, 楊培嶺, 劉永河. 內(nèi)蒙古沿黃灌區(qū)滴灌技術(shù)應(yīng)用需求與發(fā)展措施[J]. 中國水利, 2018, (07): 50-54.
[61]張娜, 金建新, 佟長福, 張紅玲, 屈忠義. 西藏參考作物蒸散量時空變化特征與影響因素[J]. 干旱區(qū)研究, 2017, 34 (05): 1027-1034.
[62]張娜, 張紅玲, 屈忠義, 張棟良. 內(nèi)蒙古河套灌區(qū)不同土層有機質(zhì)空間變異的分形[J]. 干旱地區(qū)農(nóng)業(yè)研究, 2017, 35 (05): 157-163.
[63]李興, 勾芒芒, 屈忠義, 徐效清. 生物炭對沙壤土水分特征的影響[J]. 江蘇農(nóng)業(yè)科學(xué), 2018, 46 (12): 280-283.
[64]于健, 楊金忠, 徐冰, 屈忠義, 楊培嶺, 劉永河. 內(nèi)蒙古沿黃灌區(qū)滴灌技術(shù)應(yīng)用需求與發(fā)展措施[J]. 中國水利, 2018, (07): 50-54.
[65]張娜, 金建新, 佟長福, 張紅玲, 屈忠義. 西藏參考作物蒸散量時空變化特征與影響因素[J]. 干旱區(qū)研究, 2017, 34 (05): 1027-1034.
[66]張娜, 張紅玲, 屈忠義, 張棟良. 內(nèi)蒙古河套灌區(qū)不同土層有機質(zhì)空間變異的分形[J]. 干旱地區(qū)農(nóng)業(yè)研究, 2017, 35 (05): 157-163.
[67]王凡, 屈忠義, 李昌見, 賈斌, 孫貫芳. 生物炭對砂壤土氮素淋失的影響試驗研究[J]. 灌溉排水學(xué)報, 2017, 36 (07): 71-74.
[68]孫貫芳, 屈忠義*, 杜斌, 任中生, 劉安琪. 不同灌溉制度下河套灌區(qū)玉米膜下滴灌水熱鹽運移規(guī)律[J]. 農(nóng)業(yè)工程學(xué)報, 2017, 33 (12): 144-152.
[69]高利華, 屈忠義. 膜下滴灌條件下生物質(zhì)炭對土壤水熱肥效應(yīng)的影響[J]. 土壤, 2017, 49 (03): 614-620.
[70]王學(xué), 劉全明, 屈忠義, 王麗萍, 李相君, 王耀強. 鹽漬化土壤水分微波雷達反演與驗證[J]. 農(nóng)業(yè)工程學(xué)報, 2017, 33 (11): 108-114.
[71]黃永江, 屈忠義, 邵忠繼. 基于分形理論的察爾森灌區(qū)渠系水利用效率分析[J]. 干旱地區(qū)農(nóng)業(yè)研究, 2017, 35 (02): 187-190+212.
[72]李金剛, 屈忠義, 孫貫芳, 高鴻永, 蘇世雄. 微咸水膜下滴灌對土壤鹽分離子分布和番茄產(chǎn)量的影響[J]. 節(jié)水灌溉, 2017, (03): 31-35+39.
[73]李金剛, 屈忠義, 黃永平, 任中生, 王凡. 微咸水膜下滴灌不同灌水下限對鹽堿地土壤水鹽運移及玉米產(chǎn)量的影響[J]. 水土保持學(xué)報, 2017, 31 (01): 217-223.
[74]黃永江, 屈忠義. 不同空間尺度下灌區(qū)灌溉水利用效率研究——以察爾森灌區(qū)為例[J]. 節(jié)水灌溉, 2017, (01): 45-49.
[75]屈忠義*, 高利華, 李昌見, 張娜. 秸稈生物炭對玉米農(nóng)田溫室氣體排放的影響[J]. 農(nóng)業(yè)機械學(xué)報, 2016, 47 (12): 111-118.
[76]張娜, 張棟良, 屈忠義, 呂世杰. 不同土層土壤粒徑及有機質(zhì)含量空間變異的相關(guān)性研究[J]. 節(jié)水灌溉, 2016, (12): 1-7+14.
[77]任中生, 屈忠義*, 李哲, 劉安琪. 水氮互作對河套灌區(qū)膜下滴灌玉米產(chǎn)量與水氮利用的影響[J]. 水土保持學(xué)報, 2016, 30 (05): 149-155.
[78]高利華, 屈忠義*, 丁艷宏, 巴慧敏. 秸稈不同還田方式對土壤理化性質(zhì)及玉米產(chǎn)量的影響研究[J]. 中國農(nóng)村水利水電, 2016, (09): 28-34.
[79]任中生, 屈忠義, 孫貫芳, 李哲, 劉安琪. 河套灌區(qū)膜下滴灌促進玉米生長及氮素吸收[J]. 節(jié)水灌溉, 2016, (09): 26-29+35.
[80]岑睿, 屈忠義, 孫貫芳, 楊芳. 秸稈生物炭對黏壤土入滲規(guī)律的影響[J]. 水土保持研究, 2016, 23 (06): 284-289.
[81]孫貫芳, 杜斌, 屈忠義*, 李昌見, 張智麗, 李錫環(huán). 不同灌溉模式下土壤溫度的變化及對氣溫的響應(yīng)特征[J]. 土壤, 2016, 48 (03): 581-587.
[82]張娜, 屈忠義*, 郭克貞, 鄔佳賓, 徐冰, 姜夢琪. 毛烏素沙地青貯玉米和紫花苜蓿作物系數(shù)研究[J]. 土壤, 2016, 48 (02): 286-290.
[83]岑睿, 屈忠義, 于健, 宋日權(quán). 保水劑對半干旱區(qū)砂壤土水分運動的影響試驗研究[J]. 干旱區(qū)資源與環(huán)境, 2016, 30 (02): 122-127.
[84]孫貫芳, 屈忠義*, 杜斌, 任中生, 李金剛. 內(nèi)蒙古河套灌區(qū)不同灌溉模式對土壤溫度及鹽分的影響[J]. 節(jié)水灌溉, 2016, (02): 28-31.
[85]張娜, 張棟良, 屈忠義*, 呂世杰, 劉全明. 不同尺度下內(nèi)蒙古河套灌區(qū)有機質(zhì)空間變異[J]. 生態(tài)學(xué)雜志, 2016, 35 (03): 630-640.
[86]張娜, 張棟良, 屈忠義*, 王麗榮. 內(nèi)蒙古河套灌區(qū)區(qū)域土壤質(zhì)地空間變異分析——以解放閘灌域為例[J]. 干旱區(qū)資源與環(huán)境, 2015, 29 (12): 155-163.
[87]于健, 楊金忠, 徐冰, 屈忠義, 史吉剛, 李瑋. 內(nèi)蒙古河套灌區(qū)三種水源形式滴灌發(fā)展?jié)摿J]. 中國水利, 2015, (19): 50-53.
[88]孫貫芳, 于健, 杜斌, 屈忠義*, 史吉剛, 張瑞喜. 過濾后黃河水對滴灌系統(tǒng)的影響[J]. 排灌機械工程學(xué)報, 2015, 33 (10): 901-907.
[89]屈忠義, 楊曉, 黃永江, 杜斌, 楊俊林. 基于Horton分形的河套灌區(qū)渠系水利用效率分析[J]. 農(nóng)業(yè)工程學(xué)報, 2015, 31 (13): 120-127.
[90]黃永江, 孫文, 屈忠義. 內(nèi)蒙古河套灌區(qū)田間水利用效率測試與區(qū)域分異規(guī)律[J]. 節(jié)水灌溉, 2015, (07): 99-102.
[91]蘇騰飛, 李洪玉, 屈忠義. 高分辨率遙感圖像道路分割算法[J]. 國土資源遙感, 2015, 27 (03): 1-6.
[92]呂一甲, 屈忠義*. 生物炭肥料對河套灌區(qū)耕層土壤肥力及含水率影響的研究[J]. 節(jié)水灌溉, 2015, (03): 18-21.
[93]屈忠義, 楊曉, 黃永江. 內(nèi)蒙古河套灌區(qū)節(jié)水工程改造效果分析與評估[J]. 農(nóng)業(yè)機械學(xué)報, 2015, 46 (04): 70-76+112.
[94]李昌見, 屈忠義, 勾芒芒, 蘇永莉, 霍星. 生物炭對土壤水肥利用效率與番茄生長影響研究[J]. 農(nóng)業(yè)環(huán)境科學(xué)學(xué)報, 2014, 33 (11): 2187-2193.
[95]張棟良, 張娜, 屈忠義*. 基于激光法土壤質(zhì)地測試分析[J]. 內(nèi)蒙古農(nóng)業(yè)大學(xué)學(xué)報(自然科學(xué)版), 2014, 35 (03): 115-118.
[96]李波, 屈忠義, 王昊. 河套灌區(qū)覆膜溝灌對加工番茄生長效應(yīng)與品質(zhì)的影響[J]. 干旱地區(qū)農(nóng)業(yè)研究, 2014, 32 (06): 43-47.
[97]孫貫芳, 屈忠義, 于健, 杜斌, 李昌見, 史吉剛. 干旱鹽漬化灌區(qū)節(jié)水控鹽灌溉新模式探討[J]. 灌溉排水學(xué)報, 2014, 33 (S1): 103-106.
[98]杜斌, 屈忠義, 于健, 孫貫芳, 史吉剛. 內(nèi)蒙古河套灌區(qū)大田作物膜下滴灌作物系數(shù)試驗研究[J]. 灌溉排水學(xué)報, 2014, 33 (Z1): 16-20.
[99]李昌見, 屈忠義*, 勾芒芒, 高文慧, 孫貫芳. 生物炭對土壤水肥熱效應(yīng)的影響試驗研究[J]. 生態(tài)環(huán)境學(xué)報, 2014, 23 (07): 1141-1147.
[100]張娜, 張棟良, 李立新, 屈忠義*. 基于高光譜的區(qū)域土壤質(zhì)地預(yù)測模型建立與評價——以河套灌區(qū)解放閘灌域為例[J]. 干旱區(qū)資源與環(huán)境, 2014, 28 (05): 67-72.
[101]勾芒芒, 屈忠義*, 楊曉, 張棟梁. 生物炭對砂壤土節(jié)水保肥及番茄產(chǎn)量的影響研究[J]. 農(nóng)業(yè)機械學(xué)報, 2014, 45 (01): 137-142.
[102]田丹, 屈忠義*, 勾芒芒, 李波, 呂一甲. 生物炭對不同質(zhì)地土壤水分擴散率的影響及機理分析[J]. 土壤通報, 2013, 44 (06): 1374-1378.
[103]張娜, 屈忠義*, 楊曉, 付小軍. 貝葉斯模型在土壤轉(zhuǎn)換函數(shù)中的應(yīng)用與適應(yīng)性評價[J]. 農(nóng)業(yè)機械學(xué)報, 2014, 45 (02): 149-155.
[104]李昌見; 屈忠義*; 勾芒芒; 蘇永利; 霍星.生物炭對土壤水肥分利用效率與番茄生長影響試驗研究.農(nóng)業(yè)環(huán)境科學(xué)學(xué)報, 2014, 33(11): 2193.
[105]勾芒芒, 屈忠義. 生物炭對改善土壤理化性質(zhì)及作物產(chǎn)量影響的研究進展[J]. 中國土壤與肥料, 2013, (05): 1-5.
[106]勾芒芒, 屈忠義. 土壤中施用生物炭對番茄根系特征及產(chǎn)量的影響[J]. 生態(tài)環(huán)境學(xué)報, 2013, 22 (08): 1348-1352.
[107]田丹, 屈忠義, 李波, 呂一甲. 生物炭對砂土水力特征參數(shù)及持水特性影響試驗研究[J]. 灌溉排水學(xué)報, 2013, 32 (03): 135-137.
[108]高云, 屈忠義*, 張圣微, 周俊. 近40年內(nèi)蒙古自治區(qū)干燥度時空演變規(guī)律分析[J]. 內(nèi)蒙古農(nóng)業(yè)大學(xué)學(xué)報(自然科學(xué)版), 2013, 34 (03): 124-129.
[109]徐旭, 屈忠義, 黃冠華. 基于遺傳算法的田間尺度土壤水力參數(shù)與溶質(zhì)運移參數(shù)優(yōu)化[J]. 水利學(xué)報, 2012, 43 (07): 808-815.
[110]謝岷, 魏占民, 張永平, 屈忠義. 基于Meta-Analysis的氣象與環(huán)境因素對玉米氮素利用的研究[J]. 灌溉排水學(xué)報, 2012, 31 (01): 95-98+126.
[111]徐旭, 黃冠華, 屈忠義, 黃權(quán)中. 區(qū)域尺度農(nóng)田水鹽動態(tài)模擬模型—GSWAP[J]. 農(nóng)業(yè)工程學(xué)報, 2011, 27 (07): 58-63.
[112]李晶, 王耀強, 屈忠義, 馬蘭忠. 內(nèi)蒙古自治區(qū)干旱災(zāi)害時空分布特征及區(qū)劃[J]. 干旱地區(qū)農(nóng)業(yè)研究, 2010, 28 (05): 266-272.
[113]屈忠義, 林雪松, 馮兆忠, 李茂, 王長生, 曹明. 內(nèi)蒙古河套灌區(qū)解放閘灌域地下水水質(zhì)與硝態(tài)氮時空變化研究[J]. 水利水電科技進展, 2010, 30 (02): 40-44.
[114]于泳, 屈忠義, 劉雅君. 套種條件下限水灌溉對小麥生長影響試驗研究[J]. 中國農(nóng)村水利水電, 2010, (03): 11-13+17.
[115]曹明, 屈忠義*, 王耀強. 基于ArcGIS的河套灌區(qū)水土資源數(shù)據(jù)庫的開發(fā)[J]. 人民長江, 2009, 40 (11): 92-94.
[116]孔繁瑞, 屈忠義*, 劉雅君, 馬月霞. 不同地下水埋深對土壤水、鹽及作物生長影響的試驗研究[J]. 中國農(nóng)村水利水電, 2009,44 (05): 44-48.
[117]陳亞新, 屈忠義, 高占義. 基于ANN技術(shù)的大型灌區(qū)節(jié)水改造后農(nóng)田水環(huán)境預(yù)測[J]. 農(nóng)業(yè)工程學(xué)報, 2009, 25 (01): 1-5.
[118]林雪松, 屈忠義, 陳鴻福. PAM對土壤入滲量和抗侵蝕能力的影響[J]. 東北水利水電, 2009, 27 (01): 30-32+71.
[119]楊靖宇, 屈忠義*. 河套灌區(qū)區(qū)域土壤水分特征曲線模型的確定與評價[J]. 干旱區(qū)資源與環(huán)境, 2008, (05): 155-159.
[120]陸圣女, 屈忠義, 張金山. 基于MAPGIS河套灌區(qū)水鹽監(jiān)測圖數(shù)字化編制[J]. 山西建筑, 2007, (34): 359-360.
[121]屈忠義, 陳亞新, 范澤華, 張藝強. 大型灌區(qū)節(jié)水灌溉工程實施后土壤水鹽動態(tài)規(guī)律預(yù)測及效果評估[J]. 中國農(nóng)村水利水電, 2007, (08): 27-30+33.
[122]屈忠義, 陳亞新, 楊靖宇. 人工神經(jīng)網(wǎng)絡(luò)在凍土水鹽空間變異與條件模擬中的應(yīng)用比較[J]. 農(nóng)業(yè)工程學(xué)報, 2007, (07): 48-53.
[123]劉全明, 陳亞新, 魏占民, 屈忠義, 趙培清. 基于人工智能計算技術(shù)的區(qū)域性土壤水鹽環(huán)境動態(tài)監(jiān)測[J]. 農(nóng)業(yè)工程學(xué)報, 2006, (10): 1-6.
[124]劉全明, 屈忠義, 王耀強. 基于人工智能技術(shù)的數(shù)字地面模型空間插值研究[J]. 內(nèi)蒙古農(nóng)業(yè)大學(xué)學(xué)報(自然科學(xué)版), 2006, (02): 87-89.
[125]陳亞新,屈忠義,史海濱,魏占民,李延林. 大型灌區(qū)節(jié)水改造后地下水動態(tài)的有限元法預(yù)測——以黃河河套平原內(nèi)一個試驗區(qū)為例[J]. 中國農(nóng)村水利水電, 2005, (02): 10-12.
[126]于法穩(wěn),屈忠義,馮兆忠. 灌溉水價對農(nóng)戶行為的影響分析——以內(nèi)蒙古河套灌區(qū)為例[J]. 中國農(nóng)村觀察, 2005, (01): 40-44+79.
[127]霍再林,史海濱,陳亞新,魏占民,屈忠義. 內(nèi)蒙古地區(qū)ET_0時空變化與相關(guān)分析[J]. 農(nóng)業(yè)工程學(xué)報, 2004,20 (06): 60-63.
[128]霍再林,史海濱,陳亞新,魏占民,屈忠義,喬冬梅. ET_0的人工神經(jīng)網(wǎng)絡(luò)模型與評估研究[J]. 水資源與水工程學(xué)報, 2004,15 (02): 5-9.
[129]屈忠義,陳亞新,史海濱,魏占民. 地下水文預(yù)測中BP網(wǎng)絡(luò)的模型結(jié)構(gòu)及算法探討[J]. 水利學(xué)報, 2004, (02): 88-93.
[130]霍再林,史海濱,陳亞新,魏占民,屈忠義,孔東,劉曉志. 參考作物潛在蒸散量的人工神經(jīng)網(wǎng)絡(luò)模型研究[J]. 農(nóng)業(yè)工程學(xué)報, 2004, 20(01): 40-43.
[131]霍再林,史海濱,孔東,張麗輝,陳亞新,魏占民,屈忠義. 基于人工神經(jīng)網(wǎng)絡(luò)的作物水—鹽響應(yīng)初步研究[J]. 內(nèi)蒙古農(nóng)業(yè)大學(xué)學(xué)報(自然科學(xué)版), 2003,24 (03): 66-70.
[132]陳亞新,魏占民,史海濱,屈忠義,孔東,張麗輝,霍再林. 作物-水-鹽的聯(lián)合脅迫與響應(yīng)模型的研究評估[J]. 灌溉排水學(xué)報, 2003, 22(03): 1-6+14.
[133]屈忠義,陳亞新,史海濱,魏占民,李延林,張藝強. 內(nèi)蒙古河套灌區(qū)節(jié)水灌溉工程實施后地下水變化的BP模型預(yù)測[J]. 農(nóng)業(yè)工程學(xué)報, 2003, 19(01): 59-62.
[134]屈忠義,陳亞新,史海濱,魏占民. 區(qū)域土壤水鹽動態(tài)人工神經(jīng)網(wǎng)絡(luò)預(yù)測研究[J]. 灌溉排水, 2002, (04): 40-44.
[135]魏占民,陳亞新,史海濱,屈忠義. BP神經(jīng)網(wǎng)絡(luò)的春小麥作物水模型的初步研究[J]. 灌溉排水, 2002, (02): 12-16.
[136]李世卿,屈忠義. 內(nèi)蒙古河套灌區(qū)節(jié)水灌溉管理及其經(jīng)營的探析[J]. 中國水利, 2001, (04): 89.
[137]宋松柏,李世卿,劉建國,屈忠義,賀培立,張俊茹,李喜梅. 內(nèi)蒙古河套灌區(qū)灌排信息管理決策支持系統(tǒng)[J]. 灌溉排水, 2001, (01): 69-73.
[138]李茂,屈忠義. 對河套灌區(qū)節(jié)水灌溉技術(shù)的思考[J]. 內(nèi)蒙古水利, 2001, (01): 49-50.
[139]宋松柏,王密俠,屈忠義,李世卿,劉建國,李茂,白京燕. 干旱區(qū)灌溉用水模型的研究[J]. 干旱地區(qū)農(nóng)業(yè)研究, 1999, (03): 87-91.
[140]屈忠義. 關(guān)于溝槽式水沖廁所的節(jié)水問題[J]. 節(jié)能, 1983, (05): 27-29.
[141]屈忠義. 定時自動沖水廁所節(jié)水器[J]. 建筑技術(shù)通訊(給水排水), 1983, (05): 36.
發(fā)表中文會議論文:
[1] 張棟良; 張娜; 屈忠義*.土壤質(zhì)地空間變異規(guī)律研究.農(nóng)業(yè)水土工程學(xué)會, 中國,寧夏回族自治區(qū), 2012-07-15至2012-07-20.
[2] Qu, Zhongyi*; Li, Xianyue; Tian, Dan; Jana, Raghavendra B.2; Monhanty, Binayak P.2.Development of regional-scale pedotransfer functions based on Bayesian Neural Networks in the Hetao Irrigation District of China.2011 7th International Conference on Natural Computation, ICNC 2011, China, 2011-07-26 to 2011-07-28.
[3] Zhongyi Qu*; Xixi Wang; Zhaozhong Feng.CHANGES OF TEMPORAL TRENDS AND SPATIAL PATTERNS OF NITRATE-NITROGEN IN THE FARMLAND GROUNDWATER RESULTING FROM WATER-SAVING IRRIGATION IN THE HETAO IRRIGATION DISTRICT OF.2010 World Environmental & Water Resources Congress, United States, 2010-05-16 to 2010-05-20.
[4] Wang, Xixi1*; Qu, Zhongyi2; Liu, Tingxi2; Clary, Calvin R.1; Wunneburger, Carin1.Incorporating affects of raised roads into hydrology model to improve simulation of low-relief watershed.World Environmental and Water Resources Congress 2010: Challenges of Change , 2010-05-16 to 2010-05-20.
[5] Qu, Zhongyi1, 2*; Mohanty, Binayak P.2; Wang, Xixi3; Huang, Guanhua4, 5.Development of regional-scale relationship between fractal dimension and soil physical properties in the hetao irrigation district of China.American Society of Agricultural and Biological Engineers Annual International Meeting 2010, 2010-06-20 to 2010-06-23.
[6] Qu, Zhongyi, 2*; Wang, Xixi3; Feng, Zhaozhong4; Guo, Shaohong5.Changes of temporal trends and spatial patterns of nitrate-nitrogen in the farmland groundwater resulting from water-saving irrigation in the Hetao Irrigation District of China.World Environmental and Water Resources Congress 2010: Challenges of Change , 2010-05-16 to 2010-05-20.
[7] Qu, Zhongyi; Huang, Guanhua; Yang, Jingyu.EVALUATION OF REGIONAL PEDO-TRANSFER FUNCTIONS BASED ON THE BP NEURAL NETWORKS.2nd IFIP International Conference on Computer and Computing Technologies in Agriculture, 2008-10-18 to 2008-10-20.
[8] Xu Xu; GUANHUA HUANG*; ZHONGYI QU.EFFECT OF WATER-SAVING PRACTICES ON GROUNDWATER DYNAMICS IN SEMI-ARID REGION OF CHINA: A CASE STUDY OF JIEFANGZHA IRRIGATION SCHEME, HETAO IRRIGATION DISTRICT.CIGR - International Conference of Agricultural Engineering, Brazil, 2008-08-31 to 2008-09-04.
[9] 屈忠義,黃冠華等, 河套灌區(qū)解放閘灌域土壤水分特性曲線的分形特征研究,中國農(nóng)業(yè)工程學(xué)會農(nóng)業(yè)水土工程專業(yè)委員會學(xué)術(shù)研討會論文集,2008年8月,341-347, 2008-07-01.
[10] 胡淑玲; 屈忠義*; 楊靖宇,內(nèi)蒙古河套灌區(qū)區(qū)域土壤轉(zhuǎn)換函數(shù)的推求與應(yīng)用評價, 中國農(nóng)業(yè)工程學(xué)會農(nóng)業(yè)水土工程專業(yè)委員會學(xué)術(shù)研討會論文集,2008.08,549-553 ,農(nóng)業(yè)水土工程專業(yè)委員會學(xué)術(shù)會議, 中國, 2008-06-28至2008-06-30
[11] Qu Zhongyi; Chen Yaxin.An applied research of artificial neural Co-kriging on spatial variability of salinity in the frozen earth.International Conference on Effective Utilization of Agricultural Soil and Water Resources and Protection of Environment/4th Annual Academic Conference of Chinese-Society-of-Agricultural-Soil-and-Water-Engineering, 2006-08-16 to 2006-08-18.
[12] 屈忠義,陳亞新,史海濱,魏占民. 人工神經(jīng)網(wǎng)絡(luò)在凍土空間變異與條件模擬中的應(yīng)用[C]. 第七屆全國數(shù)學(xué)地質(zhì)與地學(xué)信息學(xué)術(shù)會議論文摘要匯編. 2004:61.
[13] 屈忠義,陳亞新,史海濱等,凍土水鹽時空變異研究中的一種新方法探索—人工神經(jīng)Kriging法的初步應(yīng)用研究,2003年西北農(nóng)林科技大學(xué)國際會議論文。
[14] 屈忠義,陳亞新,史海濱. 新興學(xué)科在區(qū)域水環(huán)境研究中的應(yīng)用與展望[C]. 中國水利學(xué)會2002學(xué)術(shù)年會論文集. 2002:399-402.