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Water Use Efficiency and Productivity of the Irrigation Districts in Southern Alberta

机译:阿尔伯塔省南部灌区的用水效率和生产力

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摘要

The data envelopment analysis (DEA) model was used to estimate the technical efficiency (TE) scores, the Malmquist total factor productivity (TFP) indices, and their implicit input shadow shares for 12 irrigation districts in Southern Alberta using data for the period 2008-12. The main purpose was to establish benchmarks so that future increases in conservation, efficiency and total factor productivity of water use (major goals of Alberta's Water for Life strategy) can be assessed. Results of an input-oriented DEA model indicated that the irrigation districts were, on average, 84.3 technically efficient in their input use, primarily the net water diverted. The output-oriented model indicated that the irrigation districts, alternatively, could expand their total irrigated areas by 58.3 with the current level of input use. Over the period 2008-12, the year-to-year mean Malmquist TFP for the irrigation districts of Southern Alberta was estimated to be 0.98 . Net water diverted was identified as the most important contributing input (76 ) to the TFP change. The second and third contributing factors were pivot irrigation technology (6 ) and precipitation (5 ).
机译:使用 2008-12 年期间的数据,采用数据包络分析 (DEA) 模型估计了阿尔伯塔省南部 12 个灌区的技术效率 (TE) 得分、Malmquist 全要素生产率 (TFP) 指数及其隐含投入影子份额。主要目的是建立基准,以便评估未来在用水的节约、效率和全要素生产力方面的提高(艾伯塔省生命之水战略的主要目标)。以投入为导向的DEA模型的结果表明,灌区在投入使用方面的平均技术效率为84.3%,主要是净转移的水。以产出为导向的模型表明,在目前的投入使用水平下,灌区的总灌溉面积可以扩大58.3%。在2008-12年期间,阿尔伯塔省南部灌区的Malmquist全要素生产率年均值估计为0.98%。净水量转移被认为是全要素生产率变化的最重要贡献投入(76%)。第二和第三个影响因素是枢轴灌溉技术(6%)和降水(5%)。

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