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首页> 外文期刊>Journal of atmospheric and solar-terrestrial physics >Effects of changes in atmospheric water vapor content on physical properties of atmospheric aerosols at a coastal station
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Effects of changes in atmospheric water vapor content on physical properties of atmospheric aerosols at a coastal station

机译:大气水蒸气含量变化对沿海车站大气气溶胶物理性质的影响

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摘要

Observational results are presented on the effects of changes in the atmospheric water vapor content (W g cm~(-1)) on spectral optical depth (τ_(pλ)) and the retrieved columnar size distributions of atmospheric aerosols over a natural, coastal environment obtained from simultaneous estimates of these parameters (τ_(pλ) and W) using a ground based multiwavelength solar radiometer. It is found that, during meteorologically calm periods (i.e. in the absence of any significant air mass types), the aerosol optical depths increase with increase in W, with the shorter wavelengths being more sensitive to the changes in W, compared to the near infrared (IR) wavelengths. The aerosol (columnar) size distributions, retrieved from τ_(pλ) as a function of W, are found to change from bimodal for very low values of W to unimodal for higher values of W. The mean radius and mode radii of the retrieved size distributions also increase with increase in W.
机译:观察结果提出了大气水蒸气含量(W G cm〜(-1)的变化对光谱光学深度(τ_(pλ))和自然,沿海环境上的大气气溶胶的柱状尺寸分布的影响。 使用基于基的多波长太阳辐射计从这些参数(τ_(pλ)和w)的同时估计获得。 发现,在气象平静的时期(即,在没有任何显着的空气质量类型)期间,气溶胶光学深度随着W的增加而增加,与近红外线相比,较短的波长对W的变化更敏感 (IR)波长。 从τ_(pλ)作为w的函数检索的气溶胶(柱状)尺寸分布,发现从双峰转换为非常低的W值,对于更高的W值,对于更高的W.的平均半径和模式半径 分布也随着W的增加而增加。

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