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991.
亚洲夏季风区中尺度地形降水结构及分布特征 总被引:4,自引:0,他引:4
采用高分辨率TRMM、AIRS卫星实测资料, 从气候态的降水微物理过程角度分析了亚洲夏季风期间中尺度山脉对不同性质降水垂直结构和水平分布的影响。研究表明, 中尺度山脉迎风、背风坡均以层云降水为主, 层云降水强度在迎风坡强于背风坡; 对流降水在迎风坡主要为浅对流, 背风坡主要为深对流, 对流降水强度在背风坡强于迎风坡。沿西南季风推进方向依次经过的中尺度山脉, 其两侧发生降水像素个数、 降水微物理特征等差异逐渐减小, 其中, 对流降水迎风坡向背风坡转变明显, 而层云降水背风坡向迎风坡转变明显。大气稳定度与对流降水在迎风、背风坡的分布相一致。另外, 对中尺度地形降水的研究为区域气候模式模拟高精度地形降水分布提供了实测依据。 相似文献
992.
暴雨模拟中多普勒雷达径向速度变分同化的应用 总被引:1,自引:0,他引:1
针对2008年6月广东地区的一次强降雨过程,利用WRF中尺度数值模式及其三维变分同化系统(WRF-3DVAR),进行了多普勒雷达径向速度变分同化对暴雨过程模拟效果影响研究。结果表明:WRF-3DVAR能够有效地同化多普勒雷达径向速度,同化后的主要影响在于改进了初始动力场,使得初始场包含有更详尽的中尺度特征信息,进而显著提高模式对广东局地暴雨过程的模拟效果。在高分辨率中尺度数值模式中有效地利用多普勒天气雷达资料,是提高中尺度降雨预报的关键。 相似文献
993.
郑州市两次不同背景下特大暴雨诊断分析 总被引:1,自引:1,他引:0
利用NCEP资料,根据降水实况分布及各物理量分层平面分布,每隔6 h对特大暴雨中心区所在经、纬向带各物理量场作经、纬向垂直剖面图,结合高空观测图对郑州市两次特大暴雨发生的大环流形势场、触发特大暴雨发生的各物理量场进行诊断分析。结果表明:1)连续性特大暴雨区出现在低空急流轴的前方,一方面是由于低空急流前方水平辐合较强,另一方面低空急流对暖湿空气的输送,使大气不稳定度加强;局地短时性特大暴雨过程主要是冷空气侵入使冷暖湿空气团在郑州上空交汇,其对流不稳定能量释放所致。2)辐合线对暖湿空气的抬升运动起到动力加强作用,是触发中尺度雨团的根源,也是特大暴雨产生的根源。3)连续性暴雨发生、发展时,高空的反气旋起主导作用;局地短时性暴雨发生时,中低空的气旋辐合起主导作用。4)短时性特大暴雨天气,前期有较强的不稳定层结;连续性暴雨天气刚发生时,其前期存在较强的不稳定层结,在暴雨连续发生过程中不一定有强不稳定层结。5)连续性暴雨需要较强的水汽输送带,局地短时性暴雨不要求有明显的水汽输送。 相似文献
994.
近48a台北市气温的小波分析 总被引:3,自引:1,他引:2
利用Morlet小波分析了1961—2008年台北市年平均气温序列的小波变化特征,揭示了气温变化的多时间尺度结构,结果表明:台北市年平均气温存在多时间尺度的周期变化特征,有3个明显的特征时间尺度,分别是4 a、6-8 a和14-16 a;除14-16 a的时间尺度在整个研究时段都很明显外,其他尺度的周期阶段性都较强;以14-16 a的特征时间尺度为主周期;台北市的气温变化还表现出突变的特点;近48 a来,台北市年平均气温的气候倾向率为0.3℃/10 a,气温升高的趋势十分明显;未来2年气温在总趋势上升的前提下将处在一个偏冷期。 相似文献
995.
Parameterization of Sheared Convective Entrainment in the First-Order Jump Model: Evaluation Through Large-Eddy Simulation 总被引:2,自引:0,他引:2
In this note, two different approaches are used to estimate the entrainment-flux to surface-flux ratio for a sheared convective
boundary layer (CBL); both are derived under the framework of the first-order jump model (FOM). That suggested by Sun and
Wang (SW approach) has the advantage that there is no empirical constant included, though the dynamics are described in an
implicit manner. The second, which was proposed by Kim et al. and Pino et al. (KP approach), explicitly characterizes the
dynamics of the sheared entrainment, but uncertainties are induced through the empirical constants. Their performances in
parameterizing the CBL growth rate are compared and discussed, and a new value of the parameter A
3 in the KP approach is suggested. Large-eddy simulation (LES) data are employed to test both approaches: simulations are conducted
for the CBL growing under varying conditions of surface roughness, free-atmospheric stratification, and wind shear, and data
used when the turbulence is in steady state. The predicted entrainment rates in each case are tested against the LES data.
The results show that the SW approach describes the evolution of the sheared CBL quite well, and the KP approach also reproduces
the growth of the CBL reasonably, so long as the value of A
3 is modified to 0.6. 相似文献
996.
We estimated the turbulent kinetic energy (TKE) dissipation rate for thirty-two 1-h intervals of unstable stratification covering the stability range 0.12 ≤ −z/L ≤ 43 (z/L is the ratio of instrument height to the Obukhov length), by fitting Kolmogorov’s inertial subrange spectrum to streamwise
spectra observed over a desert flat. Estimated values are compatible with the existence of local equilibrium, in that the
TKE dissipation rate approximately equalled the sum of shear and buoyant production rates. Only in the neutral limit was the
turbulent transport term in the TKE budget measured to be small. 相似文献
997.
Based on the NCEP/NCAR reanalysis data for the period of 1948--2004 and the monthly rainfall
data at 160 stations in China from 1951 to 2004, the relationships among the land-ocean temperature
anomaly difference in the mid-lower troposphere in spring (April--May), the mei-yu rainfall in the
Yangtze River-Huaihe River basin, and the activities of the South China Sea summer monsoon (SCSSM) are
analyzed by using correlation and composite analyses. Results show that a significant positive correlation
exists between mei-yu rainfall and air temperature in the middle latitudes above the western Pacific,
while a significant negative correlation is located to the southwest of the Baikal Lake. When the
land-ocean thermal anomaly difference is stronger in spring, the western Pacific subtropical high (WPSH)
will be weaker and retreat eastward in summer (June--July), and the SCSSM will be stronger and advance
further north, resulting in deficient moisture along the mei-yu front and below-normal precipitation in
the mid and lower reaches of the Yangtze River, and vice versa for the weaker difference case. The
effects and relative importance of the land and ocean anomalous heating on monsoon variability is also
compared. It is found that the land and ocean thermal anomalies are both closely related to the summer
circulation and mei-yu rainfall and SCSSM intensity, whereas the land heating anomaly is more important
than ocean heating in changing the land-ocean thermal contrast and hence the summer monsoon intensity. 相似文献
998.
This study investigates the statistical linkage between summer rainfall in China and the
preceding spring Eurasian snow water equivalent (SWE), using the datasets of summer rainfall
observations from 513 stations, satellite-observed snow water equivalent, and atmospheric circulation
variables in the NCEP/NCAR re-analysis during the period from 1979 to 2004. The first two coupled
modes are identified by using the singular value decomposition (SVD) method. The leading SVD mode of
the spring SWE variability shows a coherent negative anomaly in most of Eurasia with the opposite
anomaly in some small areas of the Tibetan Plateau and East Asia. The mode displays strong interannual
variability, superposed on an interdecadal variation that occurred in the late 1980s, with persistent
negative phases in 1979--1987 and frequent positive phases afterwards. When the leading mode is in its
positive phase, it corresponds to less SWE in spring throughout most of Eurasia. Meanwhile, excessive
SWE in some small areas of the Tibetan Plateau and East Asia, summer rainfall in South and Southeast
China tends to be increased, whereas it would be decreased in the up-reaches of the Yellow River. In
recent two decades, the decreased spring SWE in Eurasia may be one of reasons for severe droughts in
North and Northeast China and much more significant rainfall events in South and Southeast China. The
second SVD mode of the spring SWE variability shows opposite spatial variations in western and eastern
Eurasia, while most of the Tibetan Plateau and East Asia are in phase. This mode significantly correlates
with the succeeding summer rainfall in North and Northeast China, that is, less spring SWE in western
Eurasia and excessive SWE in eastern Eurasia and the Tibetan Plateau tend to be associated with decreased
summer rainfall in North and Northeast China. 相似文献
999.
On the Association between Spring Arctic Sea Ice Concentration and Chinese Summer Rainfall: A Further Study 总被引:9,自引:0,他引:9
In our previous study,a statistical linkage between the spring Arctic sea ice concentration(SIC)and the succeeding Chinese summer rainfall during the period 1968–2005 was identified.This linkage is demonstrated by the leading singular value decomposition(SVD)that accounts for 19%of the co-variance.Both spring SIC and Chinese summer rainfall exhibit a coherent interannual variability and two apparent interdecadal variations that occurred in the late 1970s and the early 1990s.The combined impacts of both spri... 相似文献
1000.
By examining the second leading mode(EOF2)of the summer rainfall in China during 1958–2001 and associated circulations,the authors found that this prominent mode was a dipole pattern with rainfall decreasing to the north of the Yangtze River and increasing to the south.This reverse relationship of the rainfalls to the north and to the south of the Yangtze River was related with the meridional circulations within East Asia and the neighboring region,excited by SST in the South China Sea-northwestern Pacific.... 相似文献