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Investigation on spatiotemporal distribution of aerosol optical properties over two oceanic regions surrounding Indian subcontinent during summer monsoon season

机译:夏季季风季节印度次大陆周围海洋地区气溶胶光学性能时空分布调查

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Columnar spectral aerosol optical depths (AODs) and total suspended particulate matter (TSPM) concentrations were collected on board the Oceanographic Research Vessel (ORV) of Sagar Kanya (SK) during 7–21 June 2014 (SK-313) and 31 July–14 August 2015 (SK-323) over the Arabian Sea (AS) and Bay of Bengal (BoB), respectively, for the two successive years during summer monsoon season. AOD measured at 500?nm (AOD~(500)) varied significantly from 0.08 to 0.66 (0.07 to 0.60), with a mean of 0.48?±?0.13 (0.34?±?0.13) over the BoB (AS) during SK-313 (SK-323). It simply implies that aerosol load was higher over BoB, not variability as the standard deviations of AOD over both oceans are identical (0.13). Daily AOD~(500)ranged between 0.15 and 0.60 accounted for 70–75% of the total occurrences over two oceanic regions. Mean ?ngstr?m exponent (α or alpha) and ?ngstr?m turbidity coefficient (β or beta) were found to be 0.43?±?0.17 (0.39?±?0.19) and 0.37?±?0.15 (0.27?±?0.13), respectively, which are higher over the AS during SK-323 (SK-313) that indicate predominance of coarse-relative to fine-mode particles. On the other hand, the spectral curvature and second derivative of alpha (α′) also showed significant contribution of coarse-mode particles over fine during the two campaigns. Further, column aerosol size distribution (CSD) derived from the King’s inversion also exhibited bimodal distribution with a predominant peak observed in the coarse mode (~1.0?μm) compared to the fine mode at a geometric mean radius at ~0.1?μm over two oceans. The observed data showed that the two marine regions are significantly influenced by various types of aerosols with a predominance of mixed type (MT) of aerosols. From the morphological study, it is inferred that the particles are a flake, spherical, irregular, and in flower and aggregated shapes conducted for the TSPM samples collected during SK-323 over the AS. Finally, the Hybrid Single-Particle Lagrangian Integrated Trajectory (HYSPLIT) model is used to study the impact of long-distance transported aerosols and identify their sources.
机译:柱状光谱气溶胶光学深度(AOD)和总悬浮的颗粒物质(TSPM)浓度在2014年6月7日至21日(SK-313)和7月14日第31卷(SK-313)和7月31日2015年8月(SK-323)分别在阿拉伯海(AS)和孟加拉湾(BENGAL),在夏季季季季节连续几年。在500μm(AOD〜(500))下测量的AOD显着不同于0.08至0.66(0.07至0.60),其平均值为0.48≤0.13(0.34Ω±0.13)SK- 313(SK-323)。它简单意味着气溶胶载荷在鲍勃上较高,因为AOD在两个海洋上的标准偏差是相同的(0.13)的不可变异性。每日AOD〜(500)范围在0.15和0.60之间,占两个海洋地区总出现的70-75%。 (α或α或α或α)和α或β或β或β或β或β或β或β或β或β或β)的平均值(α或α或α)为0.43≤0.17.17(0.39≤≤0.19)和0.37?±0.15(0.27?±? 0.13分别在SK-323(SK-313)期间,其在SK-323(SK-313)期间表示粗略相对于微型颗粒的主要颗粒。另一方面,α(α')的光谱曲率和第二衍生物还显示出两次竞选期间粗模式颗粒在良好良好的显着贡献。此外,柱的气溶胶尺寸分布(CSD)衍生自KING的反演,也表现出与粗糙模式(〜1.0≤μm)观察到的双峰分布,与在〜0.1Ωμm的几何平均半径下的微型模式相比海洋。观察到的数据表明,两种海洋区域受各种气溶胶的显着影响,具有气溶胶的混合型(MT)的优势。从形态学研究中,推断颗粒是用于在SK-323上收集的TSPM样品进行的薄片,球形,不规则,以及花朵和聚集形状,其在SK-323上方收集。最后,使用混合单粒子拉格朗日集成轨迹(HYSPLIT)模型来研究长途运输气溶胶的影响并识别它们的来源。

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