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首页> 外文期刊>Geoscientific Model Development Discussions >The Sectional Stratospheric Sulfate Aerosol module (S3A-v1) within the LMDZ general circulation model: description and evaluation against stratospheric aerosol observations
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The Sectional Stratospheric Sulfate Aerosol module (S3A-v1) within the LMDZ general circulation model: description and evaluation against stratospheric aerosol observations

机译:LMDZ普通循环模型中的平流层硫酸盐气溶胶模块(S3A-v1):对平流层气溶胶观测的描述和评估

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Stratospheric aerosols play an important role in the climate system by affecting the Earth's radiative budget as well as atmospheric chemistry, and the capabilities to simulate them interactively within global models are continuously improving. It is important to represent accurately both aerosol microphysical and atmospheric dynamical processes because together they affect the size distribution and the residence time of the aerosol particles in the stratosphere. The newly developed LMDZ-S3A model presented in this article uses a sectional approach for sulfate particles in the stratosphere and includes the relevant microphysical processes. It allows full interaction between aerosol radiative effects (e.g. radiative heating) and atmospheric dynamics, including e.g. an internally generated quasi-biennial oscillation (QBO) in the stratosphere. Sulfur chemistry is semi-prescribed via climatological lifetimes. LMDZ-S3A reasonably reproduces aerosol observations in periods of low (background) and high (volcanic) stratospheric sulfate loading, but tends to overestimate the number of small particles and to underestimate the number of large particles. Thus, it may serve as a tool to study the climate impacts of volcanic eruptions, as well as the deliberate anthropogenic injection of aerosols into the stratosphere, which has been proposed as a method of geoengineering to abate global warming.
机译:平流层气溶胶通过影响地球的辐射预算以及大气化学,在气候系统中发挥重要作用,并且在全球模型中以交互方式模拟它们的能力正在不断提高。准确地表示气溶胶的微观物理过程和大气动力学过程非常重要,因为它们共同影响了气溶胶颗粒在平流层中的大小分布和停留时间。本文介绍的新开发的LMDZ-S3A模型对平流层中的硫酸盐颗粒采用分段方法,并包括相关的微物理过程。它允许气溶胶辐射效应(例如辐射加热)与大气动力学(包括在平流层内部产生的准两年一次振荡(QBO)。硫化学是根据气候寿命而半规定的。 LMDZ-S3A在低(本底)和高(火山)平流层硫酸盐负荷时期合理地再现了气溶胶观测结果,但往往高估了小颗粒的数量,而又低估了大颗粒的数量。因此,它可以用作研究火山喷发对气候的影响以及向平流层人为注入气溶胶的有意工具,这已被提出作为减轻地球变暖的地球工程方法。

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