数字农科院2.0

Water consumption in summer maize and winter wheat cropping system based on SEBAL model in Huang-Huai-Hai Plain, China

文献类型: 外文期刊

作者: Yang Jian-ying;Huo Zhi-guo;Mei Xu-rong;Yan Chang-rong;Liu Qin;Ju Hui;Zhao Feng-hua

作者机构:

关键词: ETa;winter wheat;summer maize;SEBAL;crop information;Huang-Huai-Hai Plain

期刊名称: JOURNAL OF INTEGRATIVE AGRICULTURE

ISSN: 2095-3119

年卷期: 2015 年 14 卷 10 期

页码:

收录情况: SCI

摘要: Crop consumptive water use is recognized as a key element to understand regional water management performance. This study documents an attempt to apply a regional evapotranspiration model (SEBAL) and crop information for assessment of regional crop (summer maize and winter wheat) actual evapotranspiration (ETa) in Huang-Huai-Hai (3H) Plain, China. The average seasonal ETa of summer maize and winter wheat were 354.8 and 521.5 mm respectively in 3H Plain. A high-ETa belt of summer maize occurs in piedmont plain, while a low ETa area was found in the hill-irrigable land and dry land area. For winter wheat, a high-ETa area was located in the middle part of 3H Plain, including low plain-hydropenia irrigable land and dry land, hill-irrigable land and dry land, and basin-irrigable land and dry land. Spatial analysis demonstrated a linear relationship between crop ETa, normalized difference vegetation index (NDVI), and the land surface temperature (LST). A stronger relationship between ETa and NDVI was found in the metaphase and last phase than other crop growing phase, as indicated by higher correlation coefficient values. Additionally, higher correlation coefficients were detected between ETa and LST than that between ETa and NDVI, and this significant relationship ran through the entire crop growing season. ETa in the summer maize growing season showed a significant relationship with longitude, while ETa in the winter wheat growing season showed a significant relationship with latitude. The results of this study will serve as baseline information for water resources management of 3H Plain.

分类号:

  • 相关文献

[1]Evaluation of CropSyst model embedded in BioMa platform in simulating the yield of winter wheat in North China. Huang Qing,Liu Hang,Wu Wenbin,Chen Zhongxin. 2016

[2]Assessing vulnerability and adaptive capacity to potential drought for winter-wheat under the RCP 8.5 scenario in the Huang-Huai-Hai Plain. Li, Yingchun,Huang, Huanping,Ju, Hui,Lin, Erda,Xiong, Wei,Han, Xue,Xu, Jianwen,Cao, Yang,Hu, Wei,Xiong, Wei,Wang, Heran,Peng, Zhengping,Wang, Yanqun.

[3]Assessing crop yield and crop water productivity and optimizing irrigation scheduling of winter wheat and summer maize in the Haihe plain using SWAT model. Sun, Chen,Sun, Chen,Ren, Li.

[4]Effect of brackish water irrigation and straw mulching on soil salinity and crop yields under monsoonal climatic conditions. Pang, Huan-Cheng,Li, Yu-Yi,Liang, Ye-Sen,Yang, Jin-Song. 2010

[5]Strategies to Reduce Crop Water Footprint in Intensive Wheat-Maize Rotations in North China Plain. Di Zhang,Dongxiao Li,Haoran Li,Hongguang Wang,Jinna Liu,Hui Ju,William D. Batchelor,Ruiqi Li,Yanming Li. 2022

[6]Assessment of the AquaCrop Model under different irrigation scenarios in the North China Plain. Sana Zeeshan Shirazi,Xurong Mei,Buchun Liu,Yuan Liu. 2021

[7]Assessing the impact of climate change in the wheat–maize cropping system across the Huang–Huai–Hai Plain under future climate scenarios. Shirazi S.Z.,Mei X.,Liu B.,Liu Y.. 2022

[8]Assessment of the AquaCrop Model under different irrigation scenarios in the North China Plain. Sana Zeeshan Shirazi,Xurong Mei,Buchun Liu,Yuan Liu. 2021

[9]Long-Term Inorganic Plus Organic Fertilization I.ncreases Yield And Yield S tability Of Winter Wheat. Chen, H, Deng, AX, Zhang, WJ, Li, W, Qi, YQ, Yang, TM, Zheng, CY, Cao, CF, Chen, F. 2018

[10]Evaluation of two end-member-based models for regional land surface evapotranspiration estimation from MODIS data. Tang, Ronglin,Li, Zhao-Liang,Li, Zhao-Liang.

[11]Spatial-scale effect on the SEBAL model for evapotranspiration estimation using remote sensing data. Tang, Ronglin,Tang, Ronglin,Chen, Kun-Shan,Li, Zhao-Liang,Li, Zhao-Liang,Jia, Yuanyuan,Li, Chuanrong,Sun, Xiaomin.

[12]Temperature and Precipitation Suitability Evaluation for the Winter Wheat and Summer Maize Cropping System in the Huang-Huai-Hai Plain of China. Qiu Jian-jun,Li Hu,Nguyen Thanh Tuan,Verdoodt, Ann,Van Ranst, Eric. 2011

[13]Exploring New Spectral Bands And V.egetation Indices For Estimating N itrogen Nutrition Index Of Summer Maize. Duan, Aiwang,Liu, Zugui,Gong, Zhihong,Ata-Ul-Karim, Syed Tahir,Qin, Anzhen,Chen, Zhifang,Zhao, Ben,Zhao, Ben,Zhang, Jiyang,Liu, Zhandong,Ning, Dongfeng,Xiao, Junfu. 2018

[14]Determination Of Critical Nitrogen Concentration A.nd Dilution Curve Based O n Leaf Area Index For Summer Maize. Ning, Dongfeng,Wang, Xiaolong,Ata-Ul-Karim, Syed Tahir,Lian, Yanhao,Zhang, Weiqiang,Liu, Zugui,Xiao, Junfu,Qin, Anzhen,Liu, Zhandong,Duan, Aiwang,Zhao, Ben,Zhao, Ben. 2018

[15]Impact of climate warming on drought characteristics of summer maize in North China Plain for 1961-2010. Hu, Yanan,Li, Zhengguo,Liu, Yingjie. 2014

[16]Effects of climate change and cultivar on summer maize phenology. Chen, F.,Wang, Zh.,Chen, J.,Li, Y.,Wang, Zh.,Li, C.,Zhang, L.. 2016

[17]Development Of A Critical Nitrogen D.ilution Curve Based On L eaf Dry Matter For Summer Maize. Qin, Anzhen,Ning, Dongfeng,Xiao, Junfu,Zhao, Ben,Zhao, Ben,Duan, Aiwang,Ata-Ul-Karim, Syed Tahir,Liu, Zhandong,Nan, Jiqin,Liu, Zugui. 2017

[18]Influence of the Fertilizer Placement on the Nutrient Uptake of Summer Maize Early Growth. Wang He,Bai Youlu,Yang Liping,Lu Yanli,Wang Lei. 2012

[19]Development of a critical nitrogen dilution curve based on leaf dry matter for summer maize. Zhao, Ben,Liu, Zhandong,Ning, Dongfeng,Xiao, Junfu,Liu, Zugui,Qin, Anzhen,Nan, Jiqin,Duan, Aiwang,Ata-Ul-Karim, Syed Tahir.

[20]Straw Mulching Enhanced The Photosynthetic C.apacity Of Field Maize B y Increasing The Leaf N Use Efficiency. Zhang, YQ, Wang, JD, Gong, SH, Xu, D, Mo, Y. 2019

作者其他论文 更多>>