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Spatial heterogeneity in spectral variability of aerosol optical depth and its implications to aerosol radiative forcing in the Tropical Indian Ocean and in the Indian Ocean Sector of Southern Ocean

机译:热带印度洋和南洋印度洋地区气溶胶光学深度光谱变异性的空间异质性及其对气溶胶辐射强迫的影响

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The aerosol optical depths (AODs) in the wavelength range 380-875 nm and black carbon (BC) mass concentrations were estimated over the tropical Indian Ocean and in the Indian Ocean sector of Southern Ocean, between 14 degrees N and 53 degrees S, during December 2011-February 2012, onboard the Ocean Research Vessel (ORV) Sagar Nidhi. The data were analysed to understand the spectral variability, micro-physical characteristics of aerosols and the associated radiative forcing. Concurrent MODIS-derived chlorophyll a (Chl-a) and sea-surface temperature (SST) provided ancillary data used to understand the variability of biomass in association with fronts and the possible role of phytoplankton as a source of aerosols. AODs and their spectral dependencies were distinctly different north and south of the Inter-Tropical Convergence Zone (ITCZ). North of 11 degrees S (the northern limit of ITCZ), the spectral distribution of AOD followed Angstrom turbidity formule (Junge power law function), while it deviated from such a distribution south of 16 degrees S (southern boundary of ITCZ). At the southern limit of the ITCZ and beyond, the spectral variation of AOD showed a peak around 440 nm, the amplitude of which was highest at similar to 43 degrees S, the axis of the subtropical front (STF) with the highest Chl-a concentration (0.35 mu g l(-1)) in the region. To understand the role of Chl-a in increasing AOD at 440 nm, AOD at this wavelength was estimated using Optical properties of Aerosols and Clouds (OPAC) model. The anomalies between the measured and model-estimated (difference between the measured and estimated AOD values at 440 nm) AOD(440) were correlated with Chl-a concentrations. A very high and significant association with coefficient of determination (R-2=0.80) indicates the contribution of Chl-a as a source of aerosols in this part of the ocean. On the basis of the measured aerosol properties, the study area was divided into three zones; Zone 1 comprising of the area between 10 degrees N and 11 degrees S; Zone 2 from 16 degrees S to 53 degrees S; and Zone 3 from 52 degrees S to 24 degrees S during the return leg. BC mass concentration was in the range 520 ng m(-3) to 2535 ng m(-3) in Zone 1, while it was extremely low in the other zones (ranging from 49.3 to 264.4 ng m(-3) in Zone 2 and from 61.6 ng m(-3) to 303.3 ng m(-3) in Zone 3). The atmospheric direct-short wave radiative forcing (DRSF), estimated using a radiative transfer model (Santa Barbara DISORT Atmospheric Radiative Transfer - SBDART), was in the range 4.72-27.62 wm(-2) north of 16 degrees S, and 4.80-6.25 wm(-2) south of 16 degrees S. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在热带印度洋和南大洋印度洋扇形区中,在北纬14度到53度之间,估计了380-875 nm波长范围内的气溶胶光学深度(AOD)和黑碳(BC)质量浓度。 2011年12月至2012年2月,在Sagar Nidhi海洋研究船(ORV)上。对数据进行了分析,以了解气溶胶的光谱变异性,微物理特征以及相关的辐射强迫。并发的MODIS衍生叶绿素a(Chl-a)和海面温度(SST)提供了辅助数据,用于了解生物量与锋面相关的可变性以及浮游植物作为气溶胶来源的可能作用。在热带间汇聚区(ITCZ)的北部和南部,AOD及其光谱依赖性明显不同。在11度S以北(ITCZ的北边界)以北,AOD的光谱分布遵循埃斯特浊度公式(Junge幂律函数),而在16度S以南(ITCZ的南边界)以南时偏离了这种分布。在ITCZ的南端及更高处,AOD的光谱变化显示出一个峰值,位于440 nm附近,其振幅在类似于43度S处最高,亚热带锋面(STF)的轴Chl-a最高。浓度(0.35μgl(-1))在该区域。为了了解Chl-a在增加440 nm的AOD中的作用,使用气溶胶和云的光学特性(OPAC)模型估算了该波长下的AOD。测量值和模型估计值之间的异常(在440 nm处的测量值和估计值之间的差异)AOD(440)与Chl-a浓度相关。与测定系数的极高且显着的关联(R-2 = 0.80)表明Chl-a作为海洋这部分气溶胶来源的贡献。根据测得的气溶胶特性,将研究区域分为三个区域。区域1包括介于10度N和11度S之间的区域;区域2从16°S到53°S;在回程期间,区域3从52度S到24度S。区域1中的BC质量浓度在520 ng m(-3)至2535 ng m(-3)范围内,而在其他区域中则极低(区域2中的49.3至264.4 ng m(-3)范围内) 3区的61.6 ng m(-3)至303.3 ng m(-3))。使用辐射传输模型(Santa Barbara DISORT大气辐射传输-SBDART)估算的大气直接短波辐射强迫(DRSF)处于16度S以北的4.72-27.62 wm(-2)和4.80- 2015年Elsevier Ltd.位于南纬16度以南6.25 wm(-2)。保留所有权利。

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