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首页> 外文期刊>Atmosphere >Mass Deposition Fluxes of Asian Dust to the Bohai Sea and Yellow Sea from Geostationary Satellite MTSAT: A Case Study
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Mass Deposition Fluxes of Asian Dust to the Bohai Sea and Yellow Sea from Geostationary Satellite MTSAT: A Case Study

机译:地球静止卫星MTSAT对亚洲粉尘向渤海和黄海的大量沉积通量:一个案例研究

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Windblown dust aerosol plays an important role in marine ecosystems once they are deposited and dissolved. At present, methods for estimating the deposition flux are mainly limited to direct measurements or model outputs. Additionally, satellite remote sensing was often used to estimate the integral dust column concentration (DCC). In this paper, an algorithm is developed to estimate the mass deposition fluxes of Asian dust by satellite. The dust aerosol is identified firstly and then the DCC is derived based on the relationships between the pre-calculated lookup table (LUT) and observations from Japanese geostationary Multi-functional Transport Satellites (MTSAT). The LUT is built on the dust cloud and surface parameters by a radiation transfer model Streamer. The average change rate of deposition is derived, which shows an exponential decay dependence on transport time along the pathway. Thus, the deposition flux is acquired via integrating the hourly deposition. This simple algorithm is applied to a dust storm that occurred in the Bohai Sea and Yellow Sea from 1 to 3 March 2008. Results indicate that the properties of the dust cloud over the study area changed rapidly and the mass deposition flux is estimated to be 2.59 Mt.
机译:一旦风吹尘埃气溶胶沉积并溶解,它们便会在海洋生态系统中发挥重要作用。目前,用于估计沉积通量的方法主要限于直接测量或模型输出。另外,卫星遥感技术常被用来估算总的尘埃柱浓度(DCC)。本文提出了一种通过卫星估算亚洲尘埃的质量沉积通量的算法。首先识别粉尘气溶胶,然后根据预先计算的查找表(LUT)与日本对地静止多功能运输卫星(MTSAT)的观测值之间的关系得出DCC。 LUT通过辐射传输模型Streamer建立在尘埃云和表面参数的基础上。得出沉积物的平均变化率,它显示出沿路径传输时间的指数衰减依赖性。因此,通过对每小时的沉积进行积分来获取沉积通量。该简单算法适用于2008年3月1日至3日发生在渤海和黄海的沙尘暴。结果表明,研究区域内尘埃云的特性变化迅速,质量沉降通量估计为2.59。公吨。

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