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Research on Pathways to Enhance Water-Saving Efficiency in Small-Scale Farmland Water Conservancy Projects
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Small-scale farmland water conservancy projects are crucial infrastructure for ensuring agricultural production and enhancing water resource utilization efficiency, with their water-saving benefits directly linked to national food security and sustainable agricultural development. This study focuses on small-scale farmland water conservancy projects in China, identifying issues such as aging facilities, outdated technology, and management deficiencies through field research and data analysis. Targeted pathways for enhancing water-saving efficiency are proposed from three dimensions: engineering technology optimization, management mechanism innovation, and policy support. Research indicates that by promoting efficient water-saving technologies, establishing a diversified management model, and improving policy incentive mechanisms, the irrigation water utilization coefficient of small-scale farmland water conservancy projects can be increased by 0.1–0.15, and water consumption per unit area of farmland can be reduced by 15–20%. The findings provide theoretical references and practical guidance for the quality improvement and water-saving enhancement of small-scale farmland water conservancy projects in China.
Title: Research on Pathways to Enhance Water-Saving Efficiency in Small-Scale Farmland Water Conservancy Projects
Description:
Small-scale farmland water conservancy projects are crucial infrastructure for ensuring agricultural production and enhancing water resource utilization efficiency, with their water-saving benefits directly linked to national food security and sustainable agricultural development.
This study focuses on small-scale farmland water conservancy projects in China, identifying issues such as aging facilities, outdated technology, and management deficiencies through field research and data analysis.
Targeted pathways for enhancing water-saving efficiency are proposed from three dimensions: engineering technology optimization, management mechanism innovation, and policy support.
Research indicates that by promoting efficient water-saving technologies, establishing a diversified management model, and improving policy incentive mechanisms, the irrigation water utilization coefficient of small-scale farmland water conservancy projects can be increased by 0.
1–0.
15, and water consumption per unit area of farmland can be reduced by 15–20%.
The findings provide theoretical references and practical guidance for the quality improvement and water-saving enhancement of small-scale farmland water conservancy projects in China.
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