...
首页> 外文期刊>Journal of hydrometeorology >Validation of a Pattern Scaling Approach for Determining the Maximum Available Renewable Freshwater Resource
【24h】

Validation of a Pattern Scaling Approach for Determining the Maximum Available Renewable Freshwater Resource

机译:确定最大可用可再生淡水资源的模式定标方法的验证

获取原文
获取原文并翻译 | 示例
           

摘要

A pattern scaling approach allows projection of regional climate changes under a wide range of emission scenarios. A basic assumption of this approach is that the spatial response pattern to global warming(scaling pattern) is the same for all emission scenarios. Precipitation minus evapotranspiration (PME) over land can be considered to be a measure of the maximum available renewable freshwater resource, and estimation of PME is fundamentally important for the assessment of water resources. The authors assessed the basic assumption of pattern scaling for PME by the use of five global climate models. A significant scenario dependency (SD) of the scaling pattern of PME was found over some regions. This SD of the scaling pattern of PME was mainly due to the SD and the nonlinear response of large-scale atmospheric and oceanic changes.When the SD of the scaling pattern of PME is significant in a target area, projections of the impact of climate change need to carefully take into consideration the SD. Although the SD of the anthropogenic aerosol scaling patterns tended to induce SDs of precipitation and evapotranspiration scaling patterns, the SDs of precipitation and evapotranspiration tended to cancel each other out. As a result, the SD of the PME scaling pattern tended to be insignificant over most regions where the SD of anthropogenic aerosol scaling patterns were significant. The authors could not find large impacts of land use change on PME scaling pattern, but the former may influence the latter on different time scales or spatial scales.
机译:模式缩放方法可以预测各种排放情景下的区域气候变化。此方法的基本假设是,对于所有排放情景,对全球变暖的空间响应模式(缩放模式)都是相同的。陆地上的降水量减去蒸散量(PME)可以看作是最大的可再生淡水资源的量度,PME的估算对于水资源评估至关重要。作者使用五个全球气候模型评估了PME模式缩放的基本假设。在某些地区发现了PME缩放模式的重要场景依赖性(SD)。 PME缩放模式的SD主要原因是SD和大尺度大气和海洋变化的非线性响应。当PME缩放模式的SD在目标区域显着时,气候变化影响的预测需要仔细考虑SD。尽管人为气溶胶积垢模式的SD倾向于诱发降水和蒸散量缩放模式的SD,但降水量和蒸散量的SD倾向于相互抵消。结果,在大多数人为气溶胶缩放比例模式显着的区域上,PME缩放比例模式的SD趋于无关紧要。作者无法发现土地利用变化对PME尺度格局的巨大影响,但前者可能在不同的时间尺度或空间尺度上影响后者。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号