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The drought risk of maize in the farming-pastoral ecotone in Northern China based on physical vulnerability assessment

机译:基于物理脆弱性评估的中国北方农牧交错带玉米干旱风险

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摘要

Climate change is affecting every aspect of human activities, especially the agriculture. In China, extreme drought events caused by climate change have posed a great threat to food safety. In this work we aimed to study the drought risk of maize in the farming-pastoral ecotone in Northern China based on physical vulnerability assessment. The physical vulnerability curve was constructed from the relationship between drought hazard intensity index and yield loss rate. The risk assessment of agricultural drought was conducted from the drought hazard intensity index and physical vulnerability curve. The probability distribution of drought hazard intensity index decreased from south-west to north-east and increased from south-east to north-west along the rainfall isoline. The physical vulnerability curve had a reduction effect in three parts of the farming-pastoral ecotone in Northern China, which helped to reduce drought hazard vulnerability on spring maize. The risk of yield loss ratio calculated based on physical vulnerability curve was lower compared with the drought hazard intensity index, which suggested that the capacity of spring maize to resist and adapt to drought is increasing. In conclusion, the farming-pastoral ecotone in Northern China is greatly sensitive to climate change and has a high probability of severe drought hazard. Risk assessment of physical vulnerability can help better understand the physical vulnerability to agricultural drought and can also promote measurements to adapt to climate change.
机译:气候变化正在影响人类活动的各个方面,尤其是农业。在中国,由气候变化引起的极端干旱事件对食品安全构成了巨大威胁。在这项工作中,我们旨在基于物理脆弱性评估来研究中国北方农牧交错带中玉米的干旱风险。根据干旱灾害强度指数与单产损失率之间的关系,建立了物理脆弱性曲线。从干旱灾害强度指数和物理脆弱性曲线对农业干旱进行风险评估。干旱灾害强度指数的概率分布沿西南到东北,从西南到西北,沿着降雨等值线增加。物理脆弱性曲线对中国北方农牧交错带的三个部分具有减缓作用,这有助于减少春玉米的干旱危害脆弱性。与干旱灾害强度指数相比,根据物理脆弱性曲线计算的单产损失率风险要低,这说明春玉米的抗旱能力和抗旱能力正在增强。总之,中国北方的农牧交错带对气候变化非常敏感,极有可能发生严重的干旱灾害。对自然脆弱性的风险评估可以帮助人们更好地了解对农业干旱的自然脆弱性,还可以促进针对气候变化的测量。

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