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Future Desertification And Climate Change: The Need For Land-surface System Evaluation Improvement

机译:未来的沙漠化与气候变化:改进地表系统评估的需求

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摘要

In already drought-stressed areas and places with the potential for desertification as a result of greenhouse-induced change, high quality model-derived climate projections are essential for sustainable management. Today's challenge is how to select from the plethora of models and proposed new analyses the tools most likely to be valid for areas already water-stressed and those threatened by future surface moisture reduction. Here, the land-surface skills of models involved in the IPCC Fourth Assessment Report and new techniques of isotopic enrichment of components of evapotranspiration are analyzed. Both are found to have shortcomings. Surprisingly poor reporting of fundamental components of the land-surface system in standard model output was the largest challenge for widely accepted models. We show that very few of a large group (20) of today's climate models report land-surface water and energy budgets correctly in a well-controlled international experiment and that most fail basic conservation tests. Our analysis of a smaller (5) experiment suggests that isotopic techniques employed in arid zone irrigation management may not transition to evaluation and model improvement. Land-surface conditions important for policy are found to be poorly reported which raises questions about equal weighting given by international assessments to all models: good and bad.
机译:在已经干旱胁迫的地区和因温室效应而导致荒漠化的地方,高质量的模型推导气候预测对于可持续管理至关重要。当今的挑战是如何从众多模型中进行选择,并提出新的分析方法,这些工具最有可能对已经缺水的地区以及受到未来地表水分减少威胁的地区有效。在此,分析了气专委第四次评估报告中涉及的模型的地表技巧以及蒸散成分的同位素富集新技术。两者都被发现有缺点。令人惊讶的是,标准模型输出中对地表系统基本组成部分的报告不佳,是被广泛接受的模型面临的最大挑战。我们显示,在一个良好控制的国际实验中,当今大多数气候模式(20个)中,很少有能正确报告陆地表面水和能源预算的,并且大多数没有通过基本的养护测试。我们对一个较小的(5)实验的分析表明,干旱区灌溉管理中使用的同位素技术可能不会过渡到评估和模型改进。人们发现,对政策重要的土地表面条件的报道不多,这引发了国际评估对所有模型(好与坏)给予同等权重的问题。

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