首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >Improving the sectional Model for Simulating Aerosol Interactions and Chemistry (MOSAIC) aerosols of the Weather Research and Forecasting-Chemistry (WRF-Chem) model with the revised Gridpoint Statistical Interpolation system and multi-wavelength aerosol optical measurements: the dust aerosol observation campaign at Kashi, near the Taklimakan Desert, northwestern China
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Improving the sectional Model for Simulating Aerosol Interactions and Chemistry (MOSAIC) aerosols of the Weather Research and Forecasting-Chemistry (WRF-Chem) model with the revised Gridpoint Statistical Interpolation system and multi-wavelength aerosol optical measurements: the dust aerosol observation campaign at Kashi, near the Taklimakan Desert, northwestern China

机译:改进天气研究和预测 - 化学(WRF-Chem)模型模拟气溶胶相互作用和化学(马赛克)气溶胶的截面模型及多波长气溶胶光学测量:喀什尘埃气溶胶观察活动 ,靠近中国西北地区的塔克拉玛坎沙漠

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The Gridpoint Statistical Interpolation data assimilation (DA) system was developed for the four size bin sectional Model for Simulating Aerosol Interactions and Chemistry (MOSAIC) aerosol mechanism in the Weather Research and Forecasting-Chemistry (WRF-Chem) model. The forward and tangent linear operators for the aerosol optical depth (AOD) analysis were derived from WRF-Chem aerosol optical code. We applied three-dimensional variational DA to assimilate the multi-wavelength AOD, ambient aerosol scattering coefficient, and aerosol absorption coefficient, measured by the sun–sky photometer, nephelometer, and aethalometer, respectively. These measurements were undertaken during a dust observation field campaign at Kashi in northwestern China in April?2019. The results showed that the DA analyses decreased the model aerosols' low biases; however, it had some deficiencies. Assimilating the surface particle concentration increased the coarse particles in the dust episodes, but AOD and the coefficients for aerosol scattering and absorption were still lower than those observed. Assimilating aerosol scattering coefficient separately from AOD improved the two optical quantities. However, it caused an overestimation of the particle concentrations at the surface. Assimilating the aerosol absorption coefficient yielded the highest positive bias in the surface particle concentration, aerosol scattering coefficient, and AOD. The positive biases in the DA analysis were caused by the forward operator underestimating aerosol mass scattering and absorption efficiency. As compensation, the DA system increased particle concentrations excessively to fit the observed optical values. The best overall improvements were obtained from the simultaneous assimilation of the surface particle concentration and AOD. The assimilation did not substantially change the aerosol chemical fractions. After DA, the clear-sky aerosol radiative forcing at Kashi was ? 10.4?W?m ?2 at the top of the atmosphere, which was 55?% higher than the radiative forcing value before DA.
机译:GridPoint统计插值数据同化(DA)系统是为模拟气溶胶相互作用和化学(马赛克)气溶胶机制的四个尺寸的箱体截面模型,在天气研究和预测 - 化学(WRF-Chem)模型中进行了四大箱截面模型。用于气溶胶光学深度(AOD)分析的前向和切线线性操作员来自WRF-Chem气溶胶光学代码。我们应用了三维变分DA,以吸收由太阳天空光度计,浊度计和体液仪测量的多波长AOD,环境气溶胶散射系数和气溶胶吸收系数。在2019年4月在中​​国西北部的喀什尘埃观察场运动期间进行了这些测量。结果表明,DA分析降低了模型气溶胶的低偏差;但是,它有一些缺陷。同化表面颗粒浓度增加了灰尘事件中的粗颗粒,但AOD和气溶胶散射和吸收系数仍然低于观察到的气溶胶散射和吸收系数。将气溶胶散射系数与AOD分开同时改善了两种光学量。然而,它导致表面颗粒浓度高估。吸收气溶胶吸收系数在表面颗粒浓度,气溶胶散射系数和AOD中产生最高的正偏压。 DA分析中的正偏差是由低于气溶胶质量散射和吸收效率的前向操作者引起的。作为补偿,DA系统过度增加粒子浓度以符合观察到的光学值。从表面粒子浓度和AOD的同时同化获得了最佳的整体改进。同化并未大大改变气溶胶化学级分。在Da之后,喀什透明天空气溶胶辐射强迫? 10.4?在大气层的顶部,比DA之前的辐射强制值高55Ω%。

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