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61.
Using surface charts at 0330GMT, the movement of the monsoon trough during the months June to September 1990 at two fixed
longitudes, namely 79°E and 85°E, is studied. The probability distribution of trough position shows that the median, mean
and mode occur at progressively more northern latitudes, especially at 85°E, with a pronounced mode that is close to the northern-most
limit reached by the trough. A spectral analysis of the fluctuating latitudinal position of the trough is carried out using
FFT and the Maximum Entropy Method (MEM). Both methods show significant peaks around 7.5 and 2.6 days, and a less significant
one around 40–50 days. The two peaks at the shorter period are more prominent at the eastern longitude. MEM shows an additional
peak around 15 days. A study of the weather systems that occurred during the season shows them to have a duration around 3
days and an interval between systems of around 9 days, suggesting a possible correlation with the dominant short periods observed
in the spectrum of trough position. 相似文献
62.
在2019年台风“利奇马”台风暖区、台风与西风槽相互作用区及西风槽影响区分别挑选4个极端强降水中心,利用各站连续观测分钟雨滴谱资料和分钟降水资料,分析了不同站点和不同降水时段的雨滴尺度谱、雨滴速度谱、雨滴尺度—时间谱和雨滴速度—时间谱特征,研究了雨滴谱特征随时间的变化。结果表明:4个降水中心的雨滴尺度—时间谱和雨滴速度—时间谱存在明显差异,而过程的统计谱特征差异不明显;过程中不同区域的站点、同一站点不同的降水时段,雨滴尺度谱和雨滴速度谱主要为双峰型,尺度谱双峰中各站对应1.2 mm直径峰的位置一致,处于较小尺度峰的位置不一致;在较大雨强时,雨滴尺度谱上会出现单峰和三峰的情况,但比例较少;1.2 mm雨滴的高浓度区域与地面降水强度有非常好的对应关系,在1.2 mm雨滴的高浓度区域形成的过程中,地面降水逐渐增强,随着1.2 mm雨滴的高浓度区域逐渐瓦解,地面降水逐渐减弱,直至出现间歇。 相似文献
63.
64.
Through analysis we found that some mesoscale anomalous regions (101–102 km) of meteorological parameters such as the special drought areas, unusual warm areas, the largest snowfall center, low
pressure area together with the epicenter area of M
S=6.2 Zhangbei earthquake on January 10, 1998 are located at the same area, i.e. there appears the “Five areas corresponding”
phenomenon. Meanwhile, three times of low pressure evolution are generated and develop in the earthquake area in five days
after the occurrence of the earthquake. The abnormal variation of the lower limit of frozen soil layer shows indirectly that
unusual warm in earthquake areas are related to the upward thermal conduction from the deeper layer of earth surface. 相似文献
65.
吉林晚石炭世要期石头口门裂陷槽位于长春东50km。该裂陷槽以海底火山沉积--硅质岩沉积为主。早期以含锰结核的碎屑岩和泥岩、硅质岩为主,并有少量的凝灰碉和玄武岩;中期以海底火山喷发的高钠质细碧岩、角地为主,并伴有规模不大的蛇纹岩;晚期以硅质岩、长石杂砂岩、泥岩、生物碎屑灰岩为主,在生物碎屑灰岩中首次发现Fusulina lanceolata F.sp.、Pseudostaffella khotune 相似文献
66.
圆梁山隧道毛坝向斜段典型岩溶现象及发育分布特征 总被引:11,自引:0,他引:11
圆梁山隧道毛坝向斜段核部及两翼的可溶地层中发衣分布有大量的典型岩溶现象,本文详尽讨论了岩溶洼地,槽谷,巨型组合槽谷和地下溶洞等大型岩溶形态的基本特征,形成机制,受控因素,并进一步认识到其发育分布主要受控于岩性和构造因素。 相似文献
67.
中国东北区二叠纪和早三叠世地层 总被引:4,自引:1,他引:4
本文运用裂陷槽理论,提出了早二叠世地层发育于大石寨、大河深和庙岭三个裂陷槽中。晚二叠一早三叠世则以陆相凹陷沉积为特征,发育于兴安岭、张广才岭及完这山三个凹陷内。 相似文献
68.
69.
通过对 1999年秋季一次突发性降水过程高空急流的分析 ,发现急流入口区南侧辐散 ,其低层辐合上升 ,当低层有印缅槽活动的时候 ,对流加强 ,印缅槽发展 ;急流入口区北侧辐合 ,其低层辐散下沉 ,有向南的非地转风 相似文献
70.
The responses of sea surface temperature (SST) in the western equatorial Pacific warm pool to the west erly wind bursts (WWBs) play an important role in the relationship between WWB and ENSO. By using da ta collected from eight buoys of TOGA (Tropical Ocean-Global Atmosphere)-COARE (Coupled Ocean-Atmosphere Response Experiment), the heat balances of the upper ocean in the western equatorial Pacific around 0°. 156°E during two WWB events were calculated according to Stevenson and Niiler's (1983) method. In both events, SST increased before and after the WWBs, while decreased within the WWBs. The SST amplitudes approximated to l℃. Although sometimes the horizontal heat advections may become the biggest term in the heat balance, the variation of SST was dominated by the surface heat flux. On the other aspect, some different features of the two events are also revealed. The two cases have different variation of mixed layer depth. The depth of mixed layer is almost double in the first case (35 m to 70 m), which is caused by Ekman convergence, while only 10m increments due to entrainment in the second one. There are also differences in the currents structure. The different variations of thermal and currents struc ture in the mixing layers accounted for the different variation of the heat balance during the two events, es pecially the advection and residue terms. The seasonal variation of SST in this area is also investigated sim ply. The first WWB event happened just during the seasonal transition. So we considered that it is a normal season transition rather than a so-called anomaly. That also suggested that the seasonal distinction of the WWB is worthy of more attention in the researches of its relationship to ENSO. 相似文献