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In this study,the fifth-generation Pennsylvania State University-National Center for Atmospheric Research (PSU-NCAR) Mesoscale Model (MM5) is used to simulate Typhoon Mindulle (2004) at high resolution (3-km grid size).The data from measurements show that in the upper atmosphere the existence of an upper jet is important to the transition cyclone.When Mindulle moved to the area of the upper jet entrance,where high-altitude divergence existed, the pumping of the high-altitude divergence would enhance the vertical motion and low-level cyclone convergence. The enhanced vertical motion was confirmed by the simulation results and indicated that the existence of upper divergence enhanced the vertical motion which was favorable for the maintenance of Typhoon Mindulle.The process of extratropical transition (ET) and re-intensification always accompanies the process of cold air invasion. This process enhances the baroclinicity of the atmosphere and the formation of front at high altitudes, which converts baroclinic potential energy into kinetic energy and strengthens the cyclone vortex.The distributions of equivalent potential temperature (θe) and temperature anomalies show that the warm-core of the typhoon at the tropopause aids the re-intensification of the system. As the typhoon reenters the ocean, latent heat flux (LHF) increases in the north and west and the strong reflectivity and vertical motion occur in the east and southeast,and the west.With the re-intensification of the typhoon the wind field evolves from an oval to a circle at the lower atmosphere, the area coverage by high winds increases, and the distribution of the tangential wind shows an asymmetric pattern. 相似文献
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Stable carbon isotopes of soil organic matter from 12 sites in the southern Chinese Loess Plateau are reviewed to examine spatial and temporal patterns of C3 and C4 plants in the arid to semiarid monsoonal region during three key periods - last glacial maximum, mid-Holocene, and modern. We have tentatively corrected the effects of atmospheric CO2 concentrations and precipitation amounts on the δ13C endmembers for C3 plants to reconstruct the relative proportion of C4 plants because the δ13C values of C3 plants are variable under different CO2 and climate conditions. The results indicate that C4 grasses increase from northwest to southeast spatially, which is consistent with present-day increasing precipitation and temperature patterns. This suggests that for a monsoon-dominant arid to semiarid region, such as the Loess Plateau, warm-season rainfall is a primary factor limiting C4 plants growth, and thus C4 grasses have been outcompeted by C3 grasses/shrubs under cold-dry climate conditions. However, temporal fluctuations in atmospheric CO2 concentration may also affect plant growth through altering water-use efficiency (WUE). Enhanced drought caused by decreased WUE due to low atmospheric CO2 concentrations during glacial periods, combined with a cold-dry climate, leads to a decline in C4 grasses, canceling out any advantages gained from lowered atmospheric CO2 concentrations. To reconstruct accurately the abundance of C3 and C4 plants in an ecosystem and explore their controlling factors, process-based vegetation models integrating CO2 and climatic parameters interactive with plant physiology are necessary. 相似文献
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Plant macrofossils from 38 packrat middens spanning the last ~ 33,000 cal yr BP record vegetation between ~ 650 and 900 m elevation along the eastern escarpment of the Sierra San Pedro Mártir, northern Baja California. The middens span most of the Holocene, with a gap between ~ 4600 and 1800 cal yr BP, but coverage in the Pleistocene is uneven with a larger hiatus between 23,100 and 14,400 cal yr BP. The midden flora is relatively stable from the Pleistocene to Holocene. Exceptions include Pinus californiarum, Juniperus californica and other chaparral elements that were most abundant > 23,100 cal yr BP and declined after 14,400 cal yr BP. Despite being near the chaparral/woodland-desertscrub ecotone during glacial times, the midden assemblages reflect none of the climatic reversals evident in the glacial or marine record, and this is corroborated by a nearby semi-continuous pollen stratigraphy from lake sediments. Regular appearance of C4 grasses and summer-flowering annuals since 13,600 cal yr BP indicates occurrence of summer rainfall equivalent to modern (JAS average of ~ 80–90 mm). This casts doubt on the claim, based on temperature proxies from marine sediments in the Guaymas Basin, that monsoonal development in the northern Gulf and Arizona was delayed until after 6200 cal yr BP. 相似文献
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Kaizhi LiJianqiang Yin Liangmin HuangJianlin Zhang Shumin LianCuimei Liu 《Continental Shelf Research》2011,31(9):979-989
The distribution and abundance of thaliaceans were studied in relation to physical and biological variables during summer and winter in the northwest continental shelf of South China Sea. Based on the topography and water mass of the surveyed region, it was divided into three subregions: region I (onshore waters of the east Leizhou Peninsula), region II (onshore waters of the east and southeast Hainan Island) and region III (offshore waters from Leizhou Peninsula to Hainan Island). During summer due to a strong southwest monsoon, a cold eddy and coastal upwelling dominated in regions I and II, respectively, whereas the onshore and offshore waters were vertically mixed during winter due to a strong northeast monsoon. A total of 18 thaliacean species (including 3 subspecies) were collected. The mean species richness was higher in summer compared to winter, with the occurrence of higher values during summer and winter at region II and region III, respectively. The average thaliacean abundance is also higher in summer than in winter, with higher values at region I in summer and no significant difference among three subregions in winter. Doliolum denticulatum and Thalia democratica were the dominant species during summer and winter. The results suggested that the seasonal and spatial distribution of thaliacean richness was considered to be the result of physical factors such as temperature and ocean current in summer and winter. Spatial distribution of thaliacean abundance was affected by chlorophyll a concentration increased by the occurrence of coastal upwelling and cold eddy in summer. Southwest and northeast monsoons are shown to play an important role in shaping the distribution of species richness and abundance of thaliaceans in the northwest continental shelf of South China Sea. 相似文献
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热带气旋“碧利斯”与南海季风相互作用的强水汽特征数值研究 总被引:2,自引:0,他引:2
强热带风暴碧利斯(0604)登陆后其低压环流较长时间地维持,并与南海季风相互作用,造成湖南省东南部发生历史罕见的特大致洪暴雨。文中应用多种常规、非常规细网格观测资料及NECP再分析资料,结合暴雨中尺度数值预报模式AREM对该暴雨过程的强水汽场特征进行了数值模拟和诊断分析,并设计水汽敏感性试验,进一步揭示造成湘东南特大暴雨的水汽通道和水汽来源。结果表明:碧利斯低压环流南侧的西南气流对湘东南暴雨区起到了主要水汽输送作用,且随着碧利斯逆时针旋转,水汽沿着环流中心东侧的强风速带夹卷到环流北侧,并通过增强的东北风源源不断地输送至湘东南。这南北两支主要水汽通道在湘东南长时间交汇,形成了湘东南暴雨区深厚的湿层和强水汽辐合,对碧利斯低压环流较长时间的维持及对湘东南特大暴雨的形成和发展有重要的作用。 相似文献
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一次南支槽背景下地形对贵州水城南部特大暴雨的作用 总被引:1,自引:0,他引:1
利用欧洲中期天气预报中心逐日客观分析资料、常规观测资料、FY2C卫星、雷达和区域加密自动站资料,对2009年6月28日夜间发生在贵州省水城县发耳乡特大暴雨天气进行分析。结果表明,2009年6月28日贵州省水城县发耳乡特大暴雨的发生,有南支槽、中低层切变和强盛的西南暖湿气流等天气条件的有效合理配置;强降水的落区与中-γ尺度云团有很好的对应关系,云团的移动、合并、发展、停滞以及减弱能很好地指示降水的落区及强度;产生于低层辐合区的强对流回波单体在位于水城县西北部的乌蒙山脉(主峰2901m)的阻挡下在发耳乡附近停滞不前,使水城县中部以南地区降水雨团合并加强,这是发耳特大暴雨形成的重要原因;发耳特殊的地形,使得其附近流场发生变化,不仅使地形性垂直上升运动加强、维持,而且也使得水汽不断向云内卷入,延长了暴雨云团在其上空的停留时间;喇叭口地形的收缩作用也加强了迎风坡的辐合上升运动;区域自动站的资料显示,中小尺度天气系统对水城县发耳乡及附近降水雨团的形成和加强起到了重要作用,并对此次特大暴雨的短时临近预报具有指示意义。 相似文献
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The onset of South China Sea summer monsoon in 1998 occurred on May 21st. Using the U.S. National Centers for Environmental Prediction reanalysis data, this paper examines the physical process of the weakening of a subtropical anticyclone in West Pacific during the onset period using the Zwack-Okossi vorticity equation. Results show that during the pre-onset period, the positive vorticity advection in front of an upper tropospheric trough was the most dominant physical mechanism for the increase of the cyclonic vorticity on the 850-hPa layer over the South China Sea and its nearby region. The secondary contribution to the increase of the cyclonic vorticity was the warm-air advection. After the onset, the magnitude of the latent-heat warming term rapidly increased and its effect on the increase of the cyclonic vorticity was about the same as the positive-vorticity advection. The adiabatic term and divergence term contributed negatively to the increase of the cyclonic vorticity most of the time. Thus, the positive vorticity advection is the most important physical mechanism for the weakening of the West Pacific subtropical anticyclone over the South China Sea during the onset period. 相似文献