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首页> 外文期刊>Journal of hydrometeorology >Precipitation, Recycling, and Land Memory: An Integrated Analysis
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Precipitation, Recycling, and Land Memory: An Integrated Analysis

机译:降水,循环利用和土地记忆:综合分析

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摘要

A synthesis of several approaches to quantifying land-atmosphere interactions is presented. These approaches use data from observations or atmospheric reanalyses applied to atmospheric tracer models and stand-alone land surface schemes. None of these approaches relies on the results of general circulation model simulations. A high degree of correlation is found among these independent approaches, and constructed here is a composite assessment of global land-atmosphere feedback strength as a function of season. The composite combines the characteristics of persistence of soil moisture anomalies, strong soil moisture regulation of evaporation rates, and reinforcement of water cycle anomalies through recycling. The regions and seasons that have a strong composite signal predominate in both summer and winter monsoon regions in the period after the rainy season wanes. However, there are exceptions to this pattern, most notably over the Great Plains of North America and the Pampas/Pantanal of South America, where there are signs of land-atmosphere feedback throughout most of the year. Soil moisture memory in many of these regions is long enough to suggest that real-time monitoring and accurate initialization of the land surface in forecast models could lead to improvements in medium-range weather to subseasonal climate forecasts.
机译:提出了几种量化陆地-大气相互作用的方法的综合。这些方法使用来自观测数据或应用于大气示踪剂模型和独立陆面计划的大气再分析数据。这些方法都不依赖于一般循环模型模拟的结果。在这些独立的方法之间发现高度相关,这里构建的是对全球陆地-大气反馈强度随季节变化的综合评估。该复合材料结合了土壤水分异常的持久性,对蒸发速率的强大土壤水分调节能力以及通过循环利用来强化水循环异常的特征。在雨季减弱之后的夏季和冬季季风地区,具有强烈复合信号的地区和季节占主导地位。但是,这种模式也有例外,最显着的是北美大平原和南美南美大草原/潘纳塔尔半岛,在一年中的大部分时间里,都有迹象表明有陆-气反馈。这些区域中许多区域的土壤水分记忆足够长,足以表明在预测模型中对陆地表面进行实时监视和准确初始化可能会导致中程天气向次季节气候预报的改善。

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