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Retrievals of aerosol optical depth and Angstrom exponent from ground-based Sun-photometer data of Singapore

机译:从新加坡的地面太阳光度计数据检索气溶胶光学深度和埃指数

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The role of aerosols in climate and climate change is one of the factors that is least understood at the present. Aerosols' direct interaction with solar radiation is a well understood mechanism that affects Earth's net radiative forcing. However, quantifying its magnitude is more problematic because of the temporal and spatial variability of aerosol particles. To enhance our understanding of the radiative effects of aerosols on the global climate, Singapore has joined the AERONET (Aerosol Robotic Network) worldwide network by contributing ground-based direct Sun measurements performed by means of a multiwavelength Sun-photometer instrument. Data are collected on an hourly basis, then are uploaded to be fully screened and quality assured by AERONET. We use a one year data record (level 1.5/2.0) of measured columnar atmospheric optical depth, spanning from November 2006 to October 2007, to study the monthly and seasonal variability of the aerosol optical depth and the Angstrom exponent. We performed independent retrievals of these parameters (aerosol optical depth and Angstrom exponent) by using the photometer's six available bands covering the near-UV to near-IR (380-1080 nm). As a validation, our independent retrievals were compared with AERONET 1.5/2.0 level direct Sun product.
机译:气溶胶在气候和气候变化中的作用是目前鲜为人知的因素之一。气溶胶与太阳辐射的直接相互作用是一种众所周知的影响地球净辐射强迫的机制。但是,由于气溶胶颗粒随时间和空间的变化,量化其量级会带来更多问题。为了增强我们对气溶胶对全球气候辐射影响的理解,新加坡加入了AERONET(气溶胶机器人网络)的全球网络,通过使用多波长太阳光度计进行地面直接太阳测量。每小时收集一次数据,然后上传以进行全面筛选,并由AERONET保证质量。我们使用从2006年11月到2007年10月的一年测量的柱状大气光学深度的数据记录(1.5 / 2.0级)来研究气溶胶光学深度和埃指数的月度和季节变化。我们通过使用光度计的六个可用波段(覆盖从近紫外线到近红外(380-1080 nm))对这些参数(气溶胶光学深度和埃指数)进行了独立检索。作为验证,我们将我们的独立检索结果与AERONET 1.5 / 2.0级直接Sun产品进行了比较。

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