Research on Water Resources Development and Utilization Based on Linear Regression and Multiple Nonlinear Regression

Authors

  • Yijing Chen
  • Genhua Zhang
  • Siyan Xie

DOI:

https://doi.org/10.54097/hset.v44i.7312

Keywords:

Linear regression, indirect substitution method, multiple nonlinear regression.

Abstract

With the further development of industrialization and urbanization, China's water resources will be more severe. In order to study the synergy of the three red line targets, we predicted the total water consumption in 2030 by establishing the total water consumption model and using the linear regression prediction method. It is assumed that the water consumption of 10,000 yuan of industrial added value and the effective utilization coefficient of agricultural irrigation water all reached the red line value in 2030. Next, a multivariate nonlinear regression model of total water consumption is established, and the indirect substitution method is used to obtain the function of the internal relationship among the water consumption of 10,000 yuan GDP, the actual water consumption per mu of cultivated land for irrigation, and the water consumption of 10,000 yuan industrial added value, which includes time variables, and then the sensitivity analysis of the above functions are carried out. The following conclusions are drawn: China's overall water resources development and utilization should adopt the policy of improving the effective utilization coefficient of farmland irrigation water and reducing the industrial added value water consumption of 10,000 yuan as a supplement.

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References

Wang Yongchao, Jiao Shulin, Huang Fuwei. Study on dynamic change of water resources carrying capacity in China based on principal component analysis and entropy [J]. Urban Geography, 2015(10X):182-184.

Li Xianfeng. Discrimination and definition of red line of ecological protection and red line of water resources [J]. Environment and Sustainable Development, 2016, 41(5):133-136.

Xia Yuanping, Jiang Bo, Hong Jiang, et al. Research status and evaluation methods of water resources in China [J]. Southern Agricultural Machinery, 2018(17).

Qi Dianbin. Water resources management should strictly abide by the "three red lines"-An interview with Hu Siyi, Vice Minister of Water Resources [J]. Decision and Information, 2012 (October): 40-42.

Important measures to solve China's water resources problems —— Hu Siyi, Vice Minister of Water Resources, interprets the Opinions of the State Council on Implementing the strictest water resources management system [J]. China Water Conservancy, 2012(7):4-8.

Gao Xiaodong, Geng Leihua, Liu Heng, et al. Reachability analysis of water consumption target of 10,000-yuan industrial added value in the 12th Five-Year Plan [J]. Water Conservancy Economics, 2013, 31(5):1-5.

Wang Yongchao, Jiao Shulin, Huang Fuwei. Study on the dynamic change of water resources carrying capacity in China based on principal component analysis and entropy [J]. Urban Geography, 2015(10X):182-184.

Xu Yongjun. Study on the law of coordinated evolution of regional water use structure and national economy based on system simulation [D]. 2015.

Zhao Liangshi. Study on China's provincial water resources utilization efficiency measurement, convergence mechanism and spatial spillover effect [D]. Liaoning Normal University, 2014.

Ding Ling. Rational evaluation of initial water rights allocation based on fuzzy variable evaluation model [J]. People's Pearl River, 2018.

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Published

13-04-2023