首页> 外文期刊>The Science of the Total Environment >Hedging as an adaptive measure for climate change induced water shortage at the Pong reservoir in the Indus Basin Beas River, India
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Hedging as an adaptive measure for climate change induced water shortage at the Pong reservoir in the Indus Basin Beas River, India

机译:作为印度梧桐盆地河河乒乓球盆地气候变化诱导水资源短缺的自适应措施

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摘要

This study investigated the adaptive capacity of static and dynamic hedging operating policies to shore up the performance, i.e. reliability and vulnerability, in irrigation water supply of Pong reservoir in India, during climate change. The policies were developed using genetic algorithm optimisation and used to force reservoir simulations for different climate change perturbed inflow series, whence derive the performance. For static hedging, the hedging fraction remains constant throughout the year while for dynamic hedging, this fraction varies monthly or seasonally. Results showed that static hedging was effective at tempering the systems vulnerability from its high of = 60% to lower than 25%, while maintaining an acceptable volume-based reliability. Further simulations with dynamic hedging provided only modest improvements in these two indices. The significance of this study is its demonstration of the effectiveness of hedging as a climate change adaptation measure by limiting water shortage impacts. It also demonstrates that simple static hedging can match more complex dynamic hedging policies. (C) 2019 The Authors. Published by Elsevier B.V.
机译:本研究调查了静态和动态对冲操作政策的自适应能力,以沿着印度乒乓储水器的灌溉水供应,在气候变化期间施加静态和动态对冲经营政策。使用遗传算法优化开发了政策,用于强制不同气候变化扰动流入系列的水库模拟,从而导出了性能。对于静态对冲,套期保值部分在整个年度持续恒定,而动态对冲,这种分数每月或季节性变化。结果表明,静态对冲在高于高于25%的高度= 60%的高度升温,静态套期保值是有效的,同时保持可接受的基于体积的可靠性。具有动态对冲的进一步模拟仅提供了这两个指数的适度改进。本研究的重要性是通过限制水资源短缺的影响,证明随着气候变化适应措施的对冲效果。它还展示了简单的静态对冲可以匹配更复杂的动态对冲策略。 (c)2019年作者。由elsevier b.v出版。

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