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Optical Characteristics and Radiative Properties of Aerosols in Harbin, Heilongjiang Province during 2017

机译:2017年黑龙江省哈尔滨哈尔滨气溶胶光学特性及散热性能

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摘要

This study considers aerosol optical properties and direct radiative forcing over Harbin (126.63° E, 45.75° N), the highest latitude city in Northeast China, during 2017. Observations based on the CE-318 sun-photometer show that the annual mean values of the aerosol optical depth (AOD) at 500 nm and the Angstrom exponent (AE) at 440–870 nm over Harbin are respectively 0.26 ± 0.20 and 1.36 ± 0.26. Aerosol loading is the highest in the spring followed by winter, and the lowest loading is in autumn. AE440–870 is the highest in summer, second highest in winter, and lowest in autumn. The Santa Barbara DISORT Atmospheric Radiative Transfer (SBDART) model is used to estimate the shortwave aerosol radiative forcing at the top of the atmosphere, on the Earth′s surface and in the atmosphere, and the annual mean values are -16.36 ± 18.42 Wm-2, -71.01 ± 27.37 Wm-2 and 54.65 ± 30.62 Wm-2, respectively, which indicate that aerosols cause climate effects of cooling the earth-atmosphere system, cooling the earth′s surface and heating the atmosphere. Four main aerosol types in Harbin are classified via AOD and AE. Specifically, clean continental, mixed type, biomass burning and urban industry, and desert dust aerosols accounted for 51%, 38%, 9%, and 2% of the total, respectively. Aerosol radiative forcing varies greatly in different seasons, and the aerosol load and type from different emission sources have an important influence on the seasonal variation of radiative forcing.
机译:本研究考虑了气溶胶光学性质,直接辐射强迫哈尔滨(126.63°E,45.75°N),是2017年东北地区最高的纬度城市。基于CE-318 Sun-Photometer的观察结果表明年平均值在440-870nm上,500nm处的气溶胶光学深度(AOD)在哈尔滨440-870nm处分别为0.26±0.20和1.36±0.26。气溶胶载荷是春季之后的最高,冬季最低的负载是秋季。 AE440-870是夏季最高的最高,冬季最高,秋季最低。 Santa Barbara Sentort大气辐射转移(SBDART)模型用于估算大气层顶部的短波气溶胶辐射,在地球表面和大气中,年均值为-16.36±18.42 WM- 2,-71.01±27.37分别了Wm-2和54.65±30.62了Wm-2,,表明气雾剂原因冷却地球大气系统,冷却地球表面和加热气氛的气候影响。哈尔滨的四种主要气溶胶类型通过AOD和AE分类。具体而言,清洁大陆,混合式,生物量燃烧和城市产业,沙漠粉尘气溶胶分别占总量的51%,38%,9%和2%。气溶胶辐射强制在不同的季节变化很大,而来自不同排放来源的气溶胶载荷和类型对辐射强制的季节变化具有重要影响。

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