Surface shortwave cloud radiative effect of Cumulus (Cu) and Stratocumulus-Cumulus (Sc-Cu) cloud types in the Caribbean area (Camagüey Cuba, 2010-2016)

IF 1 4区 地球科学 Q4 METEOROLOGY & ATMOSPHERIC SCIENCES Atmosfera Pub Date : 2021-06-30 DOI:10.20937/atm.52858
B. B. González, J. Santana, V. Cachorro, C. Toledano, J. Antuna-Marrero, René Estevan Arredondo, Á. Frutos
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Abstract

The effects of cumulus clouds (Cu) and the combination of stratocumulus-cumulus clouds (Sc-Cu) on the solar radiation at the earth’s surface were evaluated at Camagüey (Cuba) for a 6-year period (from June 2010 to May 2016). Two methods to calculate the cloud radiative effect (CRE) were employed. The first method (CREm) uses solar irradiances in cloudy conditions from actinometric observations, where cloud information was also reported by visual observation. In the second method (CRE0) surface solar irradiances were estimated for both cloudy and clear sky conditions using a 1-D radiative transfer model, and cloud optical depth (COD) retrieved from an AERONET sun-photometer as the main input. A temporal correspondence criterion between COD retrievals and actinometric observations was performed in order to classify COD of each cloud type. After the application of this criterion, the COD belonging to the optically thin clouds was removed. Finally, 255 and 732 COD observations for Cu and Sc-Cu respectively, were found. Results show statistically significant difference at the 95% confidence level between CRE calculated for Sc-Cu and Cu, using the both methods. Mean values of CREm and CRE0 for Cu (Sc-Cu) were −442 W/m2 (−390 W/m2) and −460 W/m2 (−417 W/m2), respectively. CRE0 shows a linear relation with ln(COD), with stronger correlation at lower solar zenith angle. The shortwave cloud effect efficiency (CEE) for the two cloud types sharply decreases with the increase of the COD up to the value of 20. For larger COD, the CEE is less sensitive to the increase of COD.
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加勒比地区积云(Cu)和平流层积云(Sc-Cu)类型的表面短波云辐射效应(Camagüey Cuba,2010-2016)
在Camagüey(古巴)评估了积云(Cu)和层积云-积云组合(Sc-Cu)对地球表面太阳辐射的影响,为期6年(2010年6月至2016年5月)。采用了两种计算云辐射效应的方法。第一种方法(CREm)使用来自辐射测量观测的多云条件下的太阳辐射,其中云信息也通过视觉观测报告。在第二种方法(CRE0)中,使用一维辐射传输模型和从AERONET太阳光度计检索的云光学深度(COD)作为主要输入,对多云和晴朗天空条件下的表面太阳辐射进行了估计。为了对每种云类型的COD进行分类,在COD反演和辐射测量观测之间执行了时间对应标准。在应用该标准之后,属于光学薄云的COD被去除。最后,对Cu和Sc-Cu分别进行了255次和732次COD观测。结果显示,在95%置信水平下,使用两种方法计算的Sc-Cu和Cu的CRE之间存在统计学显著差异。Cu(Sc-Cu)的CREm和CRE0的平均值分别为−442 W/m2(−390 W/m2)和−460 W/m2(–417 W/m2)。CRE0与ln(COD)呈线性关系,在太阳天顶角较低时相关性较强。两种云类型的短波云效应效率(CEE)随着COD的增加而急剧下降,最高可达20。对于较大的COD,CEE对COD的增加不太敏感。
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来源期刊
Atmosfera
Atmosfera 地学-气象与大气科学
CiteScore
2.20
自引率
0.00%
发文量
46
审稿时长
6 months
期刊介绍: ATMÓSFERA seeks contributions on theoretical, basic, empirical and applied research in all the areas of atmospheric sciences, with emphasis on meteorology, climatology, aeronomy, physics, chemistry, and aerobiology. Interdisciplinary contributions are also accepted; especially those related with oceanography, hydrology, climate variability and change, ecology, forestry, glaciology, agriculture, environmental pollution, and other topics related to economy and society as they are affected by atmospheric hazards.
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