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首页> 外文期刊>Ecology and Society: a journal of integrative science for resilience and sustainability >Robustness, vulnerability, and adaptive capacity in small-scale social-ecological systems: The Pumpa Irrigation System in Nepal
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Robustness, vulnerability, and adaptive capacity in small-scale social-ecological systems: The Pumpa Irrigation System in Nepal

机译:小型社会生态系统中的鲁棒性,脆弱性和适应能力:尼泊尔的Pumpa灌溉系统

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Change in freshwater availability is arguably one of the most pressing issues associated with global change. Agriculture, which uses roughly 70% of the total global freshwater supply, figures prominently among sectors that may be adversely affected by global change. Of specific concern are small-scale agricultural systems that make up nearly 90% of all farming systems and generate 40% of agricultural output worldwide. These systems are experiencing a range of novel shocks, including increased variability in precipitation and competing demands for water and labor that challenge their capacity to maintain agricultural output. This paper employs a robustness-vulnerability trade-off framework to explore the capacity of these small-scale systems to cope with novel shocks and directed change. Motivated by the Pumpa Irrigation System in Nepal, we develop and analyze a simple model of rice-paddy irrigation and use it to demonstrate how institutional arrangements may, in becoming very well tuned to cope with specific shocks and manage particular human interactions associated with irrigated agriculture, generate vulnerabilities to novel shocks. This characterization of robustness-vulnerability trade-off relationships is then used to inform policy options to improve the capacity of small-scale irrigation systems to adapt to changes in freshwater availability.
机译:淡水供应的变化可以说是与全球变化有关的最紧迫的问题之一。农业占全球淡水供应总量的70%,在可能受到全球变化不利影响的行业中占有重要地位。特别令人关注的是小型农业系统,该系统占所有农业系统的近90%,占全球农业产出的40%。这些系统正在遭受一系列新的冲击,包括降水变化的增加以及对水和劳动力的竞争需求,这些挑战挑战了它们维持农业产出的能力。本文采用了健壮性/脆弱性折衷框架,以探索这些小型系统应对新颖冲击和定向变化的能力。在尼泊尔的Pumpa灌溉系统的推动下,我们开发并分析了稻米灌溉的简单模型,并用它来说明如何很好地调整制度安排以应对特定的冲击并管理与灌溉农业有关的特殊人类互动,产生新的冲击的脆弱性。健壮性-脆弱性折衷关系的这种表征随后被用于告知政策选择,以提高小型灌溉系统适应淡水供应量变化的能力。

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