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首页> 外文期刊>Advances in Atmospheric Sciences >Adjoint-based sensitivity analysis of a mesoscale low on the mei-yu front and its implications for adaptive observation
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Adjoint-based sensitivity analysis of a mesoscale low on the mei-yu front and its implications for adaptive observation

机译:基于伴生的梅雨锋中尺度低层敏感性分析及其对适应性观测的意义

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摘要

An adjoint sensitivity analysis of one mesoscale low on the mei-yu Front is presented in this paper. The sensitivity gradient of simulation error dry energy with respect to initial analysis is calculated. And after verifying the ability of a tangent linear and adjoint model to describe small perturbations in the nonlinear model, the sensitivity gradient analysis is implemented in detail. The sensitivity gradient with respect to different physical fields are not uniform in intensity, simulation error is most sensitive to the vapor mixed ratio. The localization and consistency are obvious characters of horizontal distribution of the sensitivity gradient, which is useful for the practical implementation of adaptive observation. The sensitivity region tilts to the northwest with height increasing; the singular vector calculation proves that this tilting characterizes a quick-growing structure, which denotes that using the leading singular vectors to decide the adaptive observation region is proper. When connected with simulation of a mesoscale low on the mei-yu Front, the sensitivity gradient has the following physical characters: the obvious sensitive region is mesoscale, concentrated in the middle-upper troposphere, and locates around the key system; and the sensitivity gradient of different physical fields correlates dynamically.
机译:本文提出了梅雨锋一个中尺度低点的伴随敏感性分析。计算模拟误差干能相对于初始分析的灵敏度梯度。并且在验证了切线线性和伴随模型描述非线性模型中小扰动的能力之后,详细地进行了灵敏度梯度分析。相对于不同物理场的灵敏度梯度强度不一致,模拟误差对蒸汽混合比最敏感。定位和一致性是灵敏度梯度水平分布的明显特征,对于自适应观测的实际实现很有用。灵敏度区域随着高度的增加而向西北倾斜。奇异矢量的计算证明了这种倾斜特征是一种快速增长的结构,这表明使用前导奇异矢量来确定自适应观测区域是合适的。当与梅雨锋中尺度低层的模拟联系起来时,灵敏度梯度具有以下物理特征:明显的敏感区域是中等尺度的,集中在对流层中上部,并位于关键系统周围;不同物理场的灵敏度梯度动态相关。

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