A geographically weighted model of the regression between grain production and typical factors for the Yellow River Delta

文献类型: 外文期刊

第一作者: Tong, Xueqin

作者: Tong, Xueqin

作者机构:

关键词: Yellow River Delta;Grain production;Geographically weighted regression model

期刊名称:MATHEMATICAL AND COMPUTER MODELLING ( 影响因子:1.366; 五年影响因子:1.602 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: The study of grain production is one of the crucial areas for grain security. In this paper, the quantile results for grain production reveal that the first-quantile county units include Kenli country, Lijin country, Hekou District and Dongying District. The second-quantile, the third-quantile and the fourth-quantile country units include five country units each. Moreover, a model of geographically weighted regression (GWR) between grain production and typical factors was used to explore the spatial adjacency relationship among them; grain production was regarded as the dependent variable, and some typical factors, namely the grain sowing area, the efficient irrigation area, and agriculture machinery, were thought of as the independent variable based on 19 county level areas of the Yellow River Delta in 2007. The GWR was established for predicting the grain production at the county level, the grain production of 14 random counties was regarded as the training data, and the grain production in Changyi country, Huimin country, Gaoqing country, Bincheng District and Lijin country was regarded as the test data. The GWR results showed that no underprediction and overprediction of values for the grain production arose in the study. The adjustment R~2 value of the grain production in the GWR model is 0.988, standardized values of the residuals including five country units are positive, the predicted value and the observed value for the grain production of 19 county units showed a good fit, and the established GWR model can be used to carry out the prediction of grain production in Yellow River Delta.

分类号: O14

  • 相关文献

[1]The annual emissions of sulfur gases from different tidal flats in the Yellow River Delta, China. Li Xinhua,Zhu Zhenlin,Sun Zhigao,Guo Honghai. 2015

[2]Soil-water interacting use patterns driven by Ziziphus jujuba on the Chenier Island in the Yellow River Delta, China. Zhu, Jinfang,Lu, Zhaohua,Zhu, Jinfang,Liu, Jingtao,Lu, Zhaohua,Xia, Jiangbao,Sun, Jingkuan,Zhao, Yanyun,Shao, Hongbo,Shao, Hongbo.

[3]Investigating marsh sediment dynamics and its driving factors in Yellow River delta for wetland restoration. Lu, Qingshui,Kang, Lingyan,Shao, Hongbo,Bi, Xiaoli,Shi, Ping,Shao, Hongbo,Chen, Qiao,Kang, Lingyan,Zhao, Zhiping.

[4]Temporal-spatial variation of evapotranspiration in the Yellow River Delta based on an integrated remote sensing model. Li, He,Chen, Zhongxin,Jiang, Zhiwei,Sun, Liang,Liu, Ke,Liu, Bin,Li, He,Chen, Zhongxin,Jiang, Zhiwei,Sun, Liang,Liu, Ke,Liu, Bin. 2015

[5]Formation of Plant Communities of the Newly Created Wetland in Modern Yellow River Delta. Xiang, Jun,Wu, Geng,Wu, Yongquan,Han, Peng,Li, Maoteng,Yu, Longjiang,Xiang, Jun,Wang, Qingfang. 2010

[6]Suitable gibberellic acid treatment for double-purpose rice (Oryza sativa L.) varieties at different harvest times. Dong, Chenfei,Xu, Nengxiang,Ding, Chenglong,Gu, Hongru,Zhang, Wenjie,Li, Xianglin,Dong, Chenfei,Xu, Nengxiang,Ding, Chenglong,Gu, Hongru,Zhang, Wenjie,Li, Xianglin.

[7]Assessing the fluctuation characteristics of grain output in China. Liu, Yu,Gao, Bingbo,Pan, Yuchun,Liu, Yu,Gao, Bingbo,Pan, Yuchun.

[8]Extreme meteorological disaster effects on grain production in Jilin Province, China. Xu Lei,Zhang Qiao,Zhang Jing,Zhao Liang,Sun Wei,Jin Yun-xiang. 2017

[9]Cropping system innovation for coping with climatic warming in China. Deng, Aixing,Zhang, Weijian,Chen, Changqing,Feng, Jinfei,Chen, Jin. 2017

[10]Modelling impact of agro-drought on grain production in China. Qin, Zhihao,Tang, Huajun,Li, Wenjuan,Qin, Zhihao,Zhao, Shuhe,Zhang, Hao,Wang, Qiang. 2014

[11]Large-scale farming operations are win-win for grain production, soil carbon storage and mitigation of greenhouse gases. Zhu, Yongchang,Waqas, Muhammad Ahmed,Li, Yu'e,Wilkes, Andreas,Qin, Xiaobo,Gao, Qingzhu,Wan, Yunfan,Hasbagan, Ganjurjav,Zou, Xiaoxia,Jiang, Defeng. 2018

[12]Spatial-Temporal Changes in Grain Production, Consumption and Driving Mechanism in China. Xu Shi-wei,Wu Jian-zhai,Li Zhi-qiang,Li Zhe-min,Kong Fan-tao,Song Wei. 2013

[13]Integrative impacts of soil tillage on crop yield, N use efficiency and greenhouse gas emission in wheat-corn cropping system. Latifmanesh, H.,Zheng, C. Y.,Song, Z. W.,Deng, A. X.,Zhang, B. M.,Zhang, W. J.,Huang, J. L.,Li, L.,Chen, Z. J.,Zheng, Y. T.. 2016

[14]Ecosystem Services and Ecological Restoration in the Northern Shaanxi Loess Plateau, China, in Relation to Climate Fluctuation and Investments in Natural Capital. Wei, Hejie,Fan, Weiguo,Wang, Xuechao,Lu, Nachuan,Dong, Xiaobin,Wei, Hejie,Fan, Weiguo,Wang, Xuechao,Lu, Nachuan,Dong, Xiaobin,Ding, Zhenyu,Weng, Boqi,Xing, Kaixiong,Ulgiati, Sergio,Dong, Xiaobin. 2017

[15]Risk Assessment of Typhoon Catastrophe for Grain Production in the South-eastern Coastal Areas of China. Xu, Lei. 2014

[16]Spatial explorations of land use change and grain production in China. Verburg, PH,Chen, YQ,Veldkamp, TA.

作者其他论文 更多>>