SURFEX v8.1 中用于海上动量和热量湍流的波龄应力参数化 (WASP)

IF 4 3区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY Geoscientific Model Development Pub Date : 2024-01-09 DOI:10.5194/gmd-17-117-2024
M. Bouin, C. Lebeaupin Brossier, S. Malardel, A. Voldoire, C. Sauvage
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引用次数: 0

摘要

摘要为 SURFEX v8.1 地表模式开发了一种广泛适用的海上湍流热通量和动量通量参数化。这种与波浪年龄相关的应力参数化(WASP)既与风速为 60 米/秒-1 时的海上现场观测数据密切吻合,又可以激活波浪增长对风应力的影响。根据目前的技术水平,它的目的尤其在于表示取决于表面风的表面过程的影响。它可以与 SURFEX 地表模式耦合的不同大气模式一起使用,包括 CNRM-CM 气候模式、法国气象局使用的业务(数值天气预报)系统和 Meso-NH 研究模式。该模型设计用于与波浪模型耦合或强制模式,也可用于纯大气配置。它已在几个案例研究中进行了验证和测试,这些案例研究涵盖了已知对表面湍流通量表示敏感的不同表面条件:(i) 海面温度(SST)前沿对弱风低层流的影响,(ii) 地中海强降水事件模拟,已知波浪会影响低层风并使降水位移,(iii) 几个热带气旋,以及 (iv) 35 年的气候运行。它所显示的技能与迄今为止 SURFEX v8.1 中使用的不同参数相当或更好。
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The wave-age-dependent stress parameterisation (WASP) for momentum and heat turbulent fluxes at sea in SURFEX v8.1
Abstract. A widely applicable parameterisation of turbulent heat and momentum fluxes at sea has been developed for the SURFEX v8.1 surface model. This wave-age-dependent stress parameterisation (WASP) combines a close fit to available in situ observations at sea up to wind speed of 60 m s−1 with the possibility of activating the impact of wave growth on the wind stress. It aims in particular at representing the effect of surface processes that depend on the surface wind according to the state of the art. It can be used with the different atmospheric models coupled with the surface model SURFEX, including the CNRM-CM climate model, the operational (numerical weather prediction) systems in use at Météo-France, and the research model Meso-NH. Designed to be used in coupled or forced mode with a wave model, it can also be used in an atmosphere-only configuration. It has been validated and tested in several case studies covering different surface conditions known to be sensitive to the representation of surface turbulent fluxes: (i) the impact of a sea surface temperature (SST) front on low-level flow by weak wind, (ii) the simulation of a Mediterranean heavy precipitating event where waves are known to influence the low-level wind and displace precipitation, (iii) several tropical cyclones, and (iv) a climate run over 35 years. It shows skills comparable to or better than the different parameterisations in use in SURFEX v8.1 so far.
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来源期刊
Geoscientific Model Development
Geoscientific Model Development GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
8.60
自引率
9.80%
发文量
352
审稿时长
6-12 weeks
期刊介绍: Geoscientific Model Development (GMD) is an international scientific journal dedicated to the publication and public discussion of the description, development, and evaluation of numerical models of the Earth system and its components. The following manuscript types can be considered for peer-reviewed publication: * geoscientific model descriptions, from statistical models to box models to GCMs; * development and technical papers, describing developments such as new parameterizations or technical aspects of running models such as the reproducibility of results; * new methods for assessment of models, including work on developing new metrics for assessing model performance and novel ways of comparing model results with observational data; * papers describing new standard experiments for assessing model performance or novel ways of comparing model results with observational data; * model experiment descriptions, including experimental details and project protocols; * full evaluations of previously published models.
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