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首页> 外文期刊>Proceedings of the Indian Academy of Sciences. Earth and Planetary Sciences >Study of total column atmospheric aerosol optical depth, ozone and precipitable water content over Bay of Bengal during BOBMEX-99
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Study of total column atmospheric aerosol optical depth, ozone and precipitable water content over Bay of Bengal during BOBMEX-99

机译:BOBMEX-99期间孟加拉湾总气柱大气气溶胶光学深度,臭氧和可沉淀水含量的研究

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摘要

The spatial and temporal variations in aerosols and precursor gases over oceanic regions have special importance in the estimation of radiative forcing parameters and thereby in the refinement of general circulation models. Extensive observations of the columnar aerosol optical depth (AOD), total column ozone (TCO) and precipitable water content (PWC) have been carried out using the on-line, multi-band solar radiometers onboard ORV Sagar Kanya (Cruise # SK 147B) over Bay of Bengal during 11th-28th August 1999. Aerosol optical and physical properties (optical depth and angstrom parameter) have been estimated at six wavelengths covering from UV to NIR (380-1020 mn) while TCO and PWC have been determined using the UV band around 300 nm and NIR band around 940 nm. respectively. Added, concurrent meteorological and satellite observations during this field phase of BOBMEX-99 have been utilized to investigate spectral-temporal variations of AOD, TCO and PWC in marine environment. The results indicate lower AODs (around 0.4 at characteristic wavelength of 500 nm) and size distributions with abundance of coarse-mode particles as compared to those aerosols of typical land origin. An interesting result that is found in the present study is the significant reduction in AOD at all wavelengths from initial to later part of observation period due to cloud-scavenging and rain-washout effects as well as signature of coastal aerosol loading. The clear-sky daytime diurnal variation of TCO shows gradual increase during post-sunrise hours, broad maximum during afternoon hours and gradual decrease during pre-sunset hours, which is considered to be due to photochemical reactions. The diurnal variation curve of PWC showed maximum (~ 4cm) during morning hours and gradual decrease (~ 3.5cm) towards evening hours, which are found to be greater as compared to typical values over land. Another interesting feature observed is that although the PWC values are very high, there was no proportionate or appreciable enhancement in AOD -a feature that can be utilized to infer composition of aerosols over the study region.
机译:海洋区域气溶胶和前体气体的时空变化对辐射强迫参数的估计并由此对一般环流模型的完善具有特别重要的意义。使用ORV Sagar Kanya上的在线多波段太阳辐射计(巡航编号SK 147B)对柱状气溶胶光学深度(AOD),总柱状臭氧(TCO)和可沉淀水含量(PWC)进行了广泛的观测。 1999年8月11日至28日在孟加拉湾上空。气溶胶的光学和物理特性(光学深度和埃参数)在从UV到NIR(380-1020 mn)的六个波长处进行了估算,而TCO和PWC已通过UV确定300 nm附近的NIR波段和940 nm附近的NIR波段。分别。此外,在BOBMEX-99的这一野外阶段,还同时进行了气象和卫星观测,以研究海洋环境中AOD,TCO和PWC的频谱时变。结果表明,与典型陆源气溶胶相比,AOD值较低(在500 nm的特征波长下约为0.4)和尺寸分布以及大量的粗模式颗粒。在本研究中发现的一个有趣的结果是,由于云清除和雨水冲刷作用以及沿海气溶胶负荷的特征,从观测期的开始到后期,所有波长的AOD都显着降低。 TCO的白天白天昼夜变化显示出日出后的时间逐渐增加,下午时分的最大值最大,日落前的时间逐渐减少,这被认为是光化学反应引起的。 PWC的日变化曲线在早晨时段最大(〜4cm),而在傍晚时段逐渐减小(〜3.5cm),与陆地上的典型值相比更大。观察到的另一个有趣的特征是,尽管PWC值非常高,但AOD却没有成比例的或可观的增强-可用于推断研究区域内气溶胶成分的特征。

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