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Spatial priority conservation areas for water yield ecosystem service under climate changes in Teshio watershed, northernmost Japan

机译:气候变化下日本最北部Teshio流域的水分优先生态系统服务的空间优先保护区

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摘要

Effective information regarding water yield response to climate change provides useful support for decision making in water resources management. By integrating a hydrology model into a systematic conservation model, we developed an approach for modeling impacts of climate change on the water cycles and constructing spatial priority conservation areas for water yield ecosystem services in Teshio watershed located in northernmost Japan. The climate changes were projected to have impacts in increasing surface runoff, lateral flow, groundwater discharge and water yield. Surface runoff especially decreased in April and May and increased in March and September with rising temperature. We then investigated the spatial hotspots of water yields in typical periods (February, April and October, annual average water yield) to determine spatially priority conservation areas for water resources in terms of their different protection targets. The results also indicated that the areas of spatial optimal protection for water yields across different periods dynamically changed from spatial and temporal standpoints. The optimal priority conservation areas were concentrated in the southwest, north and southeast of Teshio watershed through comprehensively taking into account water yields in typical periods. Our results indicated that combination of hydrology and systematic conservation models would improve sustainable management of water resources across the watershed.
机译:关于产量对气候变化的响应的有效信息为水资源管理决策提供了有用的支持。通过将水文模型整合到系统的保护模型中,我们开发了一种方法,可用于模拟气候变化对水循环的影响,并为位于日本最北端的Teshio流域的水生态系统服务构建空间优先保护区。预计气候变化将对地表径流,侧向流量,地下水排放和水产量增加产生影响。随着温度升高,地表径流在4月和5月特别减少,而在3月和9月增加。然后,我们调查了典型时期(2月,4月和10月,年平均水产量)的水产量空间热点,以根据其不同的保护目标确定水资源的空间优先保护区。结果还表明,从空间和时间的观点来看,不同时期水产量的空间最优保护区域动态变化。通过综合考虑典型时期的出水量,最优优先保护区集中在帝王流域的西南,北部和东南部。我们的结果表明,将水文学和系统保护模型相结合将改善流域水资源的可持续管理。

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