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71.
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利用贵州省81站1964—2013年秋季(9—11月)雨日数及美国国家环境预报中心/大气研究中心(NCEP/NCAR)再分析资料,借助Morlet小波、合成分析等相关诊断方法,对贵州省秋季雨日数时空特征及其与大气环流的关系进行了分析。结果表明:贵州省秋季雨日数分布由东南部向西北部逐渐增多,一般在30.0~52.3 d。近50年秋季全省平均雨日数为40.5 d,总体呈减少趋势,每10年雨日数减少1.9 d。秋季雨日数突变发生在1987年前后,1964—1987年为偏多时段,1988—2013年为偏少时段,其中1997年以后减少趋势最为明显。近50年贵州秋季雨日序列存在准5 a和2~3 a的振荡周期,其中准5 a振荡最为显著。当贵州秋季雨日异常偏多时,南海上空的水汽通量在贵州地区辐合抬升,来自低纬地区的暖湿空气输送更加活跃,东亚大槽偏强,低纬度地区槽脊略有加深,贵州处于印缅槽前,偏南气流强盛,从而有利于冷、暖空气在贵州地区交汇,形成阴雨天气,造成贵州秋季雨日数异常偏多;反之亦然。 相似文献
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1 INTRODUCTION The typhoon is a destructive weather phenomenon that stands at the top of ten major natural disasters[1]. Typhoon-related damages are the immediate consequences of weather it brings forth, which include heavy rain, strong winds and storm surges (water gain). They cause flash floods, bring down houses and break through dams[1]. Of the research on typhoons for the recent 10 years[2], new advances have been reported on abrupt changes in the motion, structure and intensity of… 相似文献
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We present a microphysical model for the surface layer marine and coastal atmospheric aerosols that is based on long-term observations of size distributions for 0.01–100 µm particles. The fundamental feature of the model is a parameterization of amplitudes and widths for aerosol modes of the aerosol size distribution function (ASDF) as functions of fetch and wind speed. The shape of ASDF and its dependence on meteorological parameters, height above sea level (H), fetch (X), wind speed (U) and relative humidity (RH), are investigated. At present, the model covers the ranges H = 0–25 m, U?=?3–18 km s?1, X?≤?120 km and RH?=?40–98%. The latest version of the Marine Aerosol Extinction Profiles model (MaexPro) is described and applied to the computation and analysis of the spectral profiles of aerosol extinction coefficients α(λ) in the wavelength band λ?=?0.2–12 µm. MaexPro is based on the aforementioned aerosol model assuming spherically shaped aerosol particles and the well-known Mie theory. The spectral profiles of α(λ) calculated by MaexPro are in good agreement with observational data and the numerical results obtained from the Navy Aerosol Model (NAM) and the Advanced Navy Aerosol Model (ANAM). Moreover, MaexPro was found to be an accurate and reliable tool for investigating the optical properties of atmospheric aerosols. 相似文献
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Amino acid nitrogen in atmospheric aerosols: Occurrence,sources and photochemical modification 总被引:2,自引:0,他引:2
The presence of amino acids in atmospheric precipitation and aerosols has been noted for many years, yet relatively little is known about these or other nitrogen containing organic compounds in the atmosphere. Marine and continental rainwater analyses indicate that atmospheric aerosols, and subsequently atmospheric precipitation, may contain substantial levels of free and combined amino acids. The most likely source of amino N in the remote marine atmosphere appears to be the injection of proteinaceous material through the action of bursting bubbles at the sea-air interface or the long range transport from terrestrial sources. The capacity of these substrates to undergo photooxidation and photodegradation in the atmosphere to simpler species, such as ammonium ions, carboxylic acids, and for the S containing amino acids, oxidized forms of sulfur, has received little attention from atmospheric chemists. The photochemistry of covalently bound amino groups, particularly as found in peptides and amino acids, is discussed here with the purpose of summarizing what is known of their occurrence and their possible importance to atmospheric chemistry. 相似文献
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