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1.
气溶胶与气候   总被引:34,自引:8,他引:26  
气溶胶粒子对气候系统的辐射平衡有重要影响。气溶胶对气候的影响可分为两大方面,即直接影响和间接影响。直接影响指大气中的气溶胶粒子吸收和散射太阳辐射和地面射出长波辐射从而影响地-气辐射收支。模式计算表明,人类活动引起大气气溶胶增加倾向于使地球表面降温,工业化以来,气溶胶增加引起的地面变冷趋势可部分抵销温室气体增加引起的地表温度上升。气溶胶对气候的间接影响是指气溶胶浓度变化会影响云的形成,而云的变化反过来对气候有巨大影响,这方面至今还没有定量结果。    相似文献   

2.
东亚干旱半干旱区(简称为“东亚旱区”)是全球干旱带的重要组成部分,该区域水资源短缺,沙尘暴频发,沙尘气溶胶对大气辐射收支和云微物理过程的影响不可忽视。本文回顾了近年来东亚旱区气溶胶及云相关科学问题的研究进展,重点讨论了气溶胶、云特性以及气溶胶-云相互作用问题。东亚旱区大气中的气溶胶以沙尘为主,且春季多于其他季节;同时,该区域云水资源丰富,且以高云为主,夏季云量显著偏多。沙尘气溶胶可直接影响辐射收支对大气产生加热作用,并通过间接和半直接效应对云微物理过程和降水产生影响。由于云微物理观测资料稀缺,加之模式参数化方案的不准确,导致东亚旱区沙尘气溶胶-云相互作用仍存在较大的不确定,减小气溶胶、云所带来的不确定性是未来气候变化研究中亟需解决的科学问题。  相似文献   

3.
云层与气溶胶对大气吸收太阳辐射的影响   总被引:3,自引:4,他引:3  
胡丽琴  刘长盛 《高原气象》2001,20(3):264-270
云通过辐射过程对地气系统的能量平衡起着特别显著的调节作用 ,是影响天气、气候以及全球变化的重要因子。近年来 ,有云大气对太阳短波辐射的“异常吸收”又成为云—辐射研究中的一个争论热点。有云大气的短波吸收受到多种因素的影响 ,关于这方面的研究还不够充分。本文通过计算 ,从理论上探讨了若干因素的组合对大气吸收的综合影响。在计算中 ,同时考虑了不同太阳辐射波段、不同太阳入射天顶角、不同云顶高度以及不同下垫面的影响 ,并考虑了包含大气分子、气溶胶和云滴的吸收与散射 ,以及在近红外波段大气自身的热辐射等过程 ,阐明了云与气溶胶在不同波段对大气吸收太阳辐射的影响。  相似文献   

4.
大气气溶胶变化对农业影响的研究进展   总被引:1,自引:0,他引:1  
随着工业化和城市化的迅速发展,大气气溶胶含量和种类明显增加,它们通过直接吸收和反射太阳辐射以及改变其它辐射强迫因子(云、臭氧)的大小间接影响地气系统的能量收支,从而影响气候。气溶胶变化对气候的影响已有较多的研究,而对植被(农业)的影响是一个相对较新的研究领域,文章简要概述了大气气溶胶辐射强迫效应和大气气溶胶对农业的影响研究现状及国内外主要研究成果,并对气溶胶监测方法及模式评估方面可能存在的问题作了简单的分析。  相似文献   

5.
综合考虑无云天气条件下,气溶胶和大气中各种吸收气体对太阳辐射的影响,建立了一个气溶胶大气的短波加热率模式,研究了兰州冬季气溶胶的短波加热效应。计算结果表明:气溶胶吸收太阳辐射而加热大气的作用是显著的。在上述工作的基础上,建立了一个完全闭合的混合层发展模式,利用数值方法探讨了气溶胶的辐射效应对混合层发展的影响。计算发现大气中气溶胶的增加会抑制混合层的发展,使混合层内的平均位温减小。  相似文献   

6.
气溶胶间接效应通过对云的作用来影响气候,其过程复杂且不确定性较大。本研究利用美国国家大气研究中心(NCAR)的公共大气模式CAM5.1,通过改变模式中硫酸盐气溶胶转化为云凝结核数浓度的数量,设计了硫酸盐气溶胶间接效应的敏感性试验,通过与控制试验对比来研究其间接效应对中国东部地区冬季云、降水和季风强度的影响。结果表明:在东亚地区云凝结核形成过程中,硫酸盐气溶胶占绝对的主导地位。硫酸盐气溶胶间接效应导致中国东部地区冬季云凝结核和云滴数浓度显著增加,海洋和陆地低层的云滴有效半径减小和总云液水路径的增加,导致了云反照率的增加。引起的负辐射强迫使地表和大气降温,海平面气压升高,增加的海陆气压梯度导致中国南方地区东亚冬季风增强,总降水率减少。硫酸盐气溶胶间接效应可能不是东亚冬季风在20世纪80年代中期年际变率减弱的原因。  相似文献   

7.
气溶胶大气对太阳辐射的吸收   总被引:15,自引:5,他引:15  
尹宏  韩志刚 《气象学报》1989,47(1):118-123
大气气溶胶对大气吸收太阳辐射的影响有许多人研究过。目前计算大气吸收太阳辐射的数值模式多数仍忽略大气气溶胶的作用。大气气溶胶一方面本身吸收太阳辐射;一方面对太阳辐射多次散射,使阳光在大气中传输更长的路程,增加了吸收物质对太阳辐射的吸收。计算表明:大气气溶胶对大气吸收太阳辐射的作用是显著而不能忽略的。  相似文献   

8.
《浙江气象》2014,(2):45-45
正森林向大气中排放大量挥发性有机物。森林排放的挥发性有机物的可凝结氧化产物能形成二次有机气溶胶,后者能通过散射太阳辐射和充当云凝结核来影响地球的辐射平衡。但我们对源于生物的挥发性有机物与它们向气溶胶颗粒的转化之间联系的认识仍然有限。  相似文献   

9.
本文讨论了国家气候中心第二代大气环流模式BCC_AGCM2.0.1和加拿大气溶胶理化模式CAM所组成的耦合模式系统对5种典型气溶胶(硫酸盐、黑碳、有机碳、沙尘和海盐)和气候要素的模拟效果。结果表明,耦合系统对5种典型气溶胶的模拟总体上比较合理,尤其是对硫酸盐、沙尘和海盐的模拟比BCC_AGCM2.0.1原有的月平均气溶胶资料有很大的改进。耦合系统模拟的全球平均气候态参量与观测/再分析资料比较一致,在总云量、陆地表面温度和降水等方面要略优于原月平均气溶胶资料的模拟结果。耦合系统对沙尘和海盐气溶胶模拟的改进使得撒哈拉沙漠和南半球中纬度海洋大气顶净太阳辐射的模拟也有所改进,而这将直接影响地表温度尤其是陆地表面温度。而不同气溶胶方案在赤道海洋上引起的云反馈不仅引起辐射的改变,还将对降水产生明显影响。  相似文献   

10.
中国西北地区大气气溶胶散射光学厚度分析   总被引:8,自引:12,他引:8  
李刚  季国良 《高原气象》2001,20(3):283-290
提出一种利用地方气象台站测得的地表宽谱 ( 0 .3~ 4 μm)逐日太阳辐射日总量资料 (包括太阳总辐射和漫射太阳辐射 )来估算晴空无云天气条件下背景大气中大气气溶胶散射光学厚度的方法 ,这主要是基于地表的太阳总辐射和漫射太阳辐射对大气气溶胶散射光学特性的敏感性。该方法建立在观测数据和模式计算结果相互比较的基础上 ,而不需要知道某地相关的云、臭氧或水汽的探空资料。利用此方法 ,我们使用来自我国西北干旱地区 6个地方气象台站 (兰州、敦煌、民勤、格尔木、乌鲁木齐、喀什 ) 1986— 1992年的逐日太阳总辐射和漫射太阳辐射日总量资料 ,得到了大气气溶胶散射光学厚度在年际和月际间的时空变化特征  相似文献   

11.
Characterization of aerosols is required to reduce uncertainties in satellite retrievals of global aerosols and for modeling the effects of these aerosols on climate.Aerosols in the North China Plain(NCP) are complex,which provides a good opportunity to study key aerosol optical properties for various aerosol types.A cluster analysis of key optical properties obtained from Aerosol Robotic Network(AERONET) data in Beijing and Xianghe during 2001-11 was performed to identify dominant aerosol types and their associated optical properties.Five dominant aerosol types were identified.The results show that the urban/industrial aerosol of moderate absorption was dominant in the region and that this type varied little with season.Urban/industrial aerosol of weak absorption was the next most common type and mainly occurs in summer,followed by that strong aerosols occurring mainly in winter.All were predominantly fine mode particles.Mineral dust(MD) and polluted dust(PD) occurred mainly in spring,followed by winter,and their absorption decreased with wavelength.In addition,aerosol dynamics and optical parameters such as refractive index and asymmetry factor were examined.Results show that the size of coarse mode particles decreased with AOD indicating the domination of external mixing between aerosols.  相似文献   

12.
Atmospheric aerosols influence the earth's radiative balance directly through scattering and absorbing solar radiation, and indirectly through affecting cloud properties. An understanding of aerosol optical properties is fundamental to studies of aerosol effects on climate. Although many such studies have been undertaken, large uncertainties in describing aerosol optical characteristics remain, especially regarding the absorption properties of different aerosols. Aerosol radiative effects are considered as either positive or negative perturbations to the radiation balance, and they include direct, indirect (albedo effect and cloud lifetime effect), and semi-direct effects. The total direct effect of anthropogenic aerosols is negative (cooling), although some components may contribute a positive effect (warming). Both the albedo effect and cloud lifetime effect cool the atmosphere by increasing cloud optical depth and cloud cover, respectively. Absorbing aerosols, such as carbonaceous aerosols and dust, exert a positive forcing at the top of atmosphere and a negative forcing at the surface, and they can directly warm the atmosphere. Internally mixed black carbon aerosols produce a stronger warming effect than externally mixed black carbon particles do. The semi-direct effect of absorbing aerosols could amplify this warming effect. Based on observational (ground-and satellite-based) and simulation studies, this paper reviews current progress in research regarding the optical properties and radiative effects of aerosols and also discusses several important issues to be addressed in future studies.  相似文献   

13.
The authors present a case study investigating the impacts of dust aerosols on surface atmospheric variables and energy budgets in a semi-arid region of China. Enhanced observational meteorological data, radiative fluxes, near-surface heat fluxes, and concentrations of dust aerosols were collected from Tongyu station, one of the reference sites of the International Coordinated Energy and Water Cycle Observations Project (CEOP), during a typical dust storm event in June 2006. A comprehensive analysis of these data show that in this semi-arid area, higher wind velocities and a continuously reduced air pressure were identified during the dust storm period. Dust storm events are usually associated with low relative humidity weather conditions, which result in low latent heat flux values. Dust aerosols suspended in the air decrease the net radiation, mainly by reducing the direct solar radiation reaching the land surface. This reduction in net radiation results in a decrease in soil temperatures at a depth of 2 cm. The combination of increased air temperature and decreased soil temperature strengthens the energy exchange of the atmosphere-earth system, increasing the surface sensible heat flux. After the dust storm event, the atmosphere was dominated by higher pressures and was relatively wet and cold. Net radiation and latent heat flux show an evident increase, while the surface sensible heat flux shows a clear decrease.  相似文献   

14.
Based on the CALIPSO (Cloud–Aerosol Lidar and Infrared Pathfinder Satellite Observation) Version 4.10 products released on 8 November 2016, the Level 2 (L2) aerosol product over the Tibetan Plateau (TP) is evaluated and the aerosol radiative effect is also estimated in this study. As there are still some missing aerosol data points in the daytime CALIPSO Version 4.10 L2 product, this study re-calculated the aerosol extinction coefficient to explore the aerosol radiative effect over the TP based on the CALIPSO Level 1 (L1) and CloudSat 2B-CLDCLASS-LIDAR products. The energy budget estimation obtained by using the AODs (aerosol optical depths) from calculated aerosol extinction coefficient as an input to a radiative transfer model shows better agreement with the Earth’s Radiant Energy System (CERES) and CloudSat 2B-FLXHR-LIDAR observations than that with the input of AODs from aerosol extinction coefficient from CALIPSO Version 4.10 L2 product. The radiative effect and heating rate of aerosols over the TP are further simulated by using the calculated aerosol extinction coefficient. The dust aerosols may heat the atmosphere by retaining the energy in the layer. The instantaneous heating rate can be as high as 5.5 K day–1 depending on the density of the dust layers. Overall, the dust aerosols significantly affect the radiative energy budget and thermodynamic structure of the air over the TP, mainly by altering the shortwave radiation budget. The significant influence of dust aerosols over the TP on the radiation budget may have important implications for investigating the atmospheric circulation and future regional and global climate.  相似文献   

15.
沙尘气溶胶卫星遥感现状与需要关注的若干问题   总被引:5,自引:2,他引:3  
张鹏  王春姣  陈林  白文广  漆成莉  齐瑾 《气象》2018,44(6):725-736
沙尘暴是全球干旱、半干旱地区特有的一种灾害性天气,所产生的沙尘气溶胶是全球气溶胶系统重要组成部分,对全球环境、天气、气候和生态有复杂的影响。沙尘气溶胶作为一种吸收性气溶胶,对太阳辐射有着较强的吸收,还能通过加热大气、改变大气稳定度、蒸发云滴、减少云量等"半直接方式"影响气候。卫星遥感对沙尘气溶胶的监测具有独特的优势,是全球沙尘研究的重要手段。本文系统整理和介绍了目前常用的可见近红外、热红外、被动微波、紫外和主动激光测量等五类卫星遥感沙尘气溶胶的主要方法,在总结典型遥感仪器和主要产品基础上,讨论了遥感产品的定量精度和地面验证问题,结合辐射传输理论模拟了可见近红外和热红外的卫星观测,探讨了可见近红外遥感的地表反照率影响和热红外高光谱遥感的波段选择问题,最后对未来的一些研究重点进行了展望。  相似文献   

16.
大气气溶胶研究的前沿问题   总被引:60,自引:3,他引:57  
从4个方面对大气气溶胶研究的前沿问题作了总结和分析:气溶胶的基本特征、气溶胶的气候效应、沙尘气溶胶以及气溶胶对健康环境的影响。介绍了当前国际上有关的大气气溶胶研究计划,讨论了未来大气气溶胶研究的主要领域及研究方向。  相似文献   

17.
热带地区大气的热力学状态对台风的发展起着重要作用.本项研究结果表明,东太平洋台风强度与沙尘AOD之间存在一定的负相关.同时,MERRA-2再分析数据和CMIP6的GCM模拟的分析结果,都表明了低层大气中云对沙尘AOD的负响应.沙尘颗粒物的准直接辐射效应可以解释上述响应:沙尘颗粒物吸收太阳辐射,并用此热量促进云层蒸发.理论上,这种气溶胶驱动的汽化作用会影响台风周围空气的焓.根据台风的潜在强度理论,与沙尘相关的台风强度变化,实则是沙尘的准直接辐射效应引起的台风周围空气焓值变化的结果.  相似文献   

18.
The characteristics of atmospheric aerosols in the Golmud desert over the Tibetan (Qinghai-Xizang) Plateau are investigated using the measurements made during the QXPMEX-79.Using spectroscopic observations at the surface and satellite data,the aerosol optical depth is calculated,from which the aerosol size distribution is worked out by means of an inversion method.The effects of vertical distribution of aerosols on irradiance and heating rate profiles are investigated using radiation models in conjunction with the assumption of three idealized aerosol profiles.The effect of aerosols on solar irradiance at the surface is also investigated and the results are compared with the observations.It is shown that the solar irradiance can be reduced by up to 100 W m-2 in the presence of aerosols,and the heating rate can be increased by 1 Kd-1.  相似文献   

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