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利用全隐欧拉格式和全球热层-电离层-中间层-电动力学环流耦合模式(TIME GCM) ,本文分析了非线性重力波在向上传播过程中对OH气辉廓线的影响,结果表明,当较小垂直 尺度重力波经过OH气辉发射层时,对其峰值分布有明显的影响,有时会出现双峰现象,说明 非线性重力波传播是引起气辉双峰分布的一个直接原因;重力波在中层顶区域的破碎 在OH气辉分布均有不同程度的表现,这不仅可以解释一些实际的观测,同时也对利用OH气辉 观测分析重力波传播特性有明显的指示意义. 相似文献
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中高层大气风速反演需要精确的确定法布里-帕罗干涉仪(Fabry-Perot Interferometer,FPI)干涉条纹的圆心和半径.本文针对FPI非闭合式干涉环条纹,提出了新的条纹圆心和半径确定方法:首先对所得到的条纹强度分布进行噪声去除预处理:包括均值滤波和自适应滤波;然后初步确定圆心,以该圆心为中心作n条射线得到n条干涉环剖线,利用高斯函数拟合得到干涉环峰值位置,再利用所得峰值位置进行圆拟合得到新的圆心和半径;最后以新的圆心为初始圆心重复上述计算过程直到圆心坐标收敛.利用上述方法对FPI仿真数据进行处理,并用于中高层大气风速反演,得到风速值为96.9537 m/s(对应实际风速值约100 m/s)和7.528.2 m/s (对应实际风速值约10 m/s),将其与理论实际值进行比较,得到反演绝对误差分别为-2.977 m/s和-2.465 m/s,相对误差分别为-2.98%和-24.67%,表明上述方法满足中高层大气风速(一般为每秒几十米到几百米)的反演精度要求,初步论证了圆心和半径确定方法的可行性. 相似文献
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分析了影响中国台风的气候特征,结果表明:5-11月是影响台风活跃季节,7-9月为集中期;1951—2004年影响台风的频数变化呈减少趋势,1970年代后期明显减少,近十年是影响台风频数最少的时期;近50余年影响台风中超强台风的频数减少显著;台风生成的源地有明显的年代际变化,1960年代-1970年代生成台风位置偏东、偏南,1980年代以后转为偏北、偏西。同时分析了影响台风与北太平洋海温及东亚夏季风环流的关系,认为北太平洋海温的年代际和年际变化与影响台风关系密切;影响台风偏多年和偏少年,其环流形势截然不同。 相似文献
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中国台风降水的气候特征 总被引:17,自引:5,他引:12
对中国台风降水的时空分布特征进行研究,发现台风降水分布在中国中东部广大地区,台风降水量自东南沿海向西北内陆逐渐减少.台风降水最大值出现在台湾岛的中东部地区和海南岛的个别地区,年平均台风降水量大于700 mm,最小值出现在内蒙古、山西、陕西、四川的部分地区,年平均台风降水量不足10 mm.台风降水一般出现在4~12月,峰值出现在8月.1957~2004年期间台风降水呈下降趋势.台风降水的异常主要由于亚洲地区大气环流和赤道中东太平洋沃克环流的异常变化所引起.进一步分析发现,台风降水在中国大部分地区为减少趋势,且这种趋势在台湾岛、海南岛、东南沿海部分地区和东北南部较显著.台风暴雨是我国东南沿海及部分内陆地区的极端强降水事件之一,这些地区的暴雨和大暴雨很大程度上是台风带来的. 相似文献
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Influences of Tropical Cyclones on China During 1965-2004 总被引:2,自引:0,他引:2
Using the Joint Typhoon Warning Center (JTWC) and China Meteorological Administration (CMA) tropical cyclone track datasets, variations in frequency and intensity of the affecting-China tropical cyclones (ACTCs) are studied for the period of 1965-2004. First, the differences between the two tropical cyclone datasets are examined. The annual frequencies of tropical cyclones in the western North Pacific basin are reasonably consistent to each other, while the intensity records are less reliable. The annual numbers of ACTCs based on different datasets are close to each other with similar interdecadal and interannual variations. However, the maximum intensity and the annual frequency of ACTCs for strong categories show great dependence on datasets. Tropical cyclone impacts on China show the same variations as the annual number of ACTCs and also show dependence on datasets. Differences in tropical cyclone impacts on China are mainly caused by datasets used. The annual frequency of ACTCs, especially the length of lifetime of ones that make landfall, and the intensity estimates all have effects on the value of impacts on China. 相似文献
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云顶高度是紫外后向散射反演臭氧总量算法的莺要参数.利用模拟计算,对云顶高度误差引起的与臭氧反演相关的误差,即内插误差,云上臭氧误差以及云下臭氧误差进行了分析比较,结果表明:相对内插误差,云上臭氧误差和云下臭氧误差比较大,且两者不能抵消,反而总是相互叠加在一起.当假设的云顶高度比真实值高,两种误差相加使得反演值比真实值偏高;若假设的云顶高度比真实值低,两种误差相加使得反演值比真实值偏低.在本文假设条件成立的基础上,臭氧反演误差在10%~-20%之间分布.对2003年7月30日低纬地区的EPTOMS(Earth Probe Total Ozone Mapping Spectrometer)云天实测资料反演的结果与理论计算的结果相一致. 相似文献
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CLIMATIC CHARACTERISTICS OF TYPHOON PRECIPITATION OVER CHINA 总被引:2,自引:0,他引:2
The spatio-temporal characteristics of typhoon precipitation over China are analyzed in this
study. The results show that typhoon precipitation covers most of central-eastern China. Typhoon
precipitation gradually decreases from the southeastern coastal regions to the northwestern mainland. The
maximum annual typhoon precipitation exceeds 700 mm in central-eastern Taiwan and part of Hainan,
while the minimum annual typhoon precipitation occurs in parts of Inner Mongolia, Shanxi, Shaanxi and
Sichuan, with values less than 10 mm. Generally, typhoons produce precipitation over China during April
– December with a peak in August. The annual typhoon precipitation time series for observation stations
are examined for long-term trends. The results show that decreasing trends exist in most of the stations
from 1957 to 2004 and are statistically significant in parts of Taiwan, Hainan, coastal Southeast China and
southern Northeast China. The anomaly of typhoon precipitation mainly results from that of the general
circulation over Asia and the Walker Cell circulation over the equatorial central and eastern Pacific.
Typhoon torrential rain is one of the extreme rainfall events in the southeastern coastal regions and parts of
central mainland. In these regions, torrential rains are mostly caused by typhoons. 相似文献