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      长江经济带农业分层需水测算及预测

      Estimation and Forecasting of Stratified Agricultural Water Demand in the Yangtze River Economic Belt

      • 摘要: 基于马斯洛需求层次理论,构建了适用于长江经济带的农业需水分层预测模型,将农业用水划分为保障粮食安全的刚性需水与服务高附加值农业发展的弹性需水。利用2000—2023年长江经济带12省市农业用水数据,对模型合理性进行验证,并以2030年为预测水平年,分析不同省市农业需水变化趋势。结果表明,2030年长江经济带流域范围内农业刚性需水预计为956.5亿 m³,弹性需水为2417.2亿 m³,约为刚性需水的2.5倍。农业用水整体呈现“东部下降、西部相对稳定、结构分化显著”的时空特征,在保障粮食安全的前提下,农业用水仍具有较大的结构调控潜力。部分省份刚性需水预测误差偏大,主要受自然条件改善及粮食安全政策调整等因素影响,反映出农业需水需求的阶段性与不确定性特征。研究结果可为长江经济带农业用水精细化管理与流域协同调控提供科学依据。

         

        Abstract: Based on Maslow’s hierarchy of needs theory, a stratified agricultural water demand forecasting model applicable to the Yangtze River Economic Belt was developed, in which agricultural water use was classified into rigid demand for ensuring basic food security and elastic demand supporting high value-added agricultural production. Agricultural water use data from 12 provinces and municipalities in the Yangtze River Economic Belt during 2000–2023 were used to verify the rationality of the model, and agricultural water demand trends for each region were projected with 2030 as the target year. The results indicate that total rigid agricultural water demand within the basin is expected to reach 95.65 billion m³ in 2030, while elastic demand is projected to be 241.72 billion m³, approximately 2.5 times the rigid demand. Agricultural water use exhibits pronounced spatiotemporal heterogeneity, characterized by declining demand in eastern regions, relatively stable demand in western regions, and increasing structural differentiation. These patterns suggest substantial potential for structural regulation of agricultural water use under the constraint of food security. Relatively large prediction errors in rigid demand are observed in several provinces, mainly due to strong influences from improvements in natural conditions and adjustments in food security policies, reflecting the stage-specific and uncertain nature of agricultural water demand. The findings provide a scientific basis for refined agricultural water management and coordinated basin-wide regulation in the Yangtze River Economic Belt.

         

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