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气候变化对具有季节依赖性水资源权的水资源分配的影响。

Climate change effects on water allocations with season dependent water rights.

机构信息

Department of Watershed Sciences, Utah State University, 5210 Old Main Hill, NR 210, Logan, UT 84322, United States.

Department of Watershed Sciences, Utah State University, 5210 Old Main Hill, NR 210, Logan, UT 84322, United States.

出版信息

Sci Total Environ. 2016 Nov 15;571:943-54. doi: 10.1016/j.scitotenv.2016.07.081. Epub 2016 Jul 20.

Abstract

Appropriative water rights allocate surface water to competing users based on seniority. Often water rights vary seasonally with spring runoff, irrigation schedules, or other non-uniform supply and demand. Downscaled monthly Coupled Model Intercomparison Project multi-model, multi-emissions scenario hydroclimate data evaluate water allocation reliability and variability with anticipated hydroclimate change. California's Tuolumne watershed is a study basin, chosen because water rights are well-defined, simple, and include competing environmental, agricultural, and urban water uses representative of most basins. We assume that dedicated environmental flows receive first priority when mandated by federal law like the Endangered Species Act or hydropower relicensing, followed by senior agricultural water rights, and finally junior urban water rights. Environmental flows vary by water year and include April pulse flows, and senior agricultural water rights are 68% larger during historical spring runoff from April through June. Results show that senior water right holders receive the largest climate-driven reductions in allocated water when peak streamflow shifts from snowmelt-dominated spring runoff to mixed snowmelt- and rainfall-dominated winter runoff. Junior water right holders have higher uncertainty from inter-annual variability. These findings challenge conventional wisdom that water shortages are absorbed by junior water users and suggest that aquatic ecosystems may be disproportionally impaired by hydroclimate change, even when environmental flows receive priority.

摘要

专用水资源权利根据优先权将地表水分配给竞争用户。通常,水资源权利会随着春季径流量、灌溉计划或其他非均匀的供需情况而季节性变化。经过缩微处理的每月耦合模型比较计划多模型、多排放情景水文气候数据评估了与预期水文气候变化相关的水资源分配可靠性和可变性。加利福尼亚的图奥勒米流域是一个研究流域,之所以选择它是因为水资源权利定义明确、简单,并且包括了具有代表性的大多数流域的竞争性环境、农业和城市用水。我们假设,在像濒危物种法案或水电再许可等联邦法律要求下,专用环境流量将优先获得满足,其次是优先农业水资源权利,最后是初级城市水资源权利。环境流量随水文年而变化,包括 4 月脉冲流量,并且在历史春季径流量(从 4 月到 6 月)中,高级农业水资源权利增加了 68%。结果表明,当峰值流量从以融雪为主的春季径流转变为以融雪和降雨为主的冬季径流时,高级水资源权利持有者在分配水资源方面受到的最大气候驱动减少。初级水资源权利持有者的不确定性更高,因为存在年际变化。这些发现挑战了传统观点,即水资源短缺由初级用水者吸收,并表明即使环境流量获得优先权,水生生态系统也可能因水文气候变化而受到不成比例的损害。

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