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921.
梅雨暴雨中高低空急流与西南涡的活动   总被引:5,自引:1,他引:5  
利用MM5中尺度模式对1991年7月5日00时-6日12时的降水进行了数值模拟。通过对每3h一次模拟结果的诊断分析,发现高空急流的走向与西南涡的活动关系密切,当我国东部位于西北风急流时,西南低涡稳定少动;位于西风急流时,西南涡快速东移;位于西南风急流时,西南涡加强,移速减慢。暴雨活动与西南涡的东移一致。最初暴雨区稳定少动,之后暴雨区快速东移,后期暴雨区缓慢移动。湿位涡对西南涡的斜压性加大有重要的贡献。在西南涡斜压性未建立之前以及冷锋附近,雨区可位于低层西南风急流左侧的任何位置,当低涡的斜压性加大,出现暖空气的作用时,暴雨区均出现在西南风急流的左前方。  相似文献   
922.
利用ARCGIS对天津市西青区的高精度地理信息数据、排水设施和排水方式进行预处理,以西青区下垫面和明渠河道的水流运动为模拟对象,建立天津市西青区中小河流暴雨洪涝仿真模型。以区内14条二级河道的水位变化作为模型的动态侧边界条件,针对2016年7月20日的大暴雨过程,设计了4个模拟方案,对河道高水位及暴雨造成的洪涝淹没过程进行评估,并将模拟结果与实际调查内涝灾情进行对比,结果表明,模型可以较客观地反映暴雨和河道水位变化对城镇造成的内涝灾害情况。  相似文献   
923.
本文利用2002年的ETM+图像和该地区1:25万DEM数据,采用计算机图像处理和目视解译相结合的方法,辅以野外实测数据、历史资料进行综合分析,对该地区河道的演变特征和新构造进行详细解译。基本查清了新近系以来该地区河道的发展演变历程,岷江和青衣江都存在很大幅度的河道迁移现象,综合研究发现,河道迁移与该地区新构造运动密切相关。  相似文献   
924.
This paper presents a three-dimensional (3-D) numerical model to simulate morphological changes in alluvial channels due to bank erosion. A method for the simulation of bank erosion is established. This is incorporated into a 3-D mathematical model for turbulent flow and non-uniform, non-equilibrium sediment transport. This model is applied to simulate morphological changes in the Shishou bend of the middle Yangtze River in China, where serious bank erosions occurred during the last two decades. The double-layer sediment structure of the riverbank on the middle Yangtze River is taken into account in the bank erosion module. Both cohesive and non-cohesive bank material in the different layers are considered. The bank erosion module also includes other factors affecting the rate of bank erosion, such as the longitudinal length of failed bank, the thickness of each layer in the double-layer structure, and the erosion-resisting effect of cohesive material from the top layer of failed bank. A locally-adaptive grid system is proposed to efficiently simulate the lateral migration of alluvial channel due to bank erosion. The predictive capability of the 3-D model is examined by laboratory data. Simulated processes of bank erosion agree with field observations in the Shishou bend during the period of October 1996–October 1998, and the bank erosion module plays a significant role in simulating morphological changes of the study reach. In addition, the equivalent channel-forming discharge, which is defined as a constant discharge that can create the same amount of bank erosion in an alluvial channel as that created by natural runoff processes during the same period of time, is proposed to improve calculation efficiency for feasibility studies.  相似文献   
925.
This paper provides comprehensive evidence that sediment routing around pools is a key mechanism for pool‐riffle maintenance in sinuous upland gravel‐bed streams. The findings suggest that pools do not require a reversal in energy for them to scour out any accumulated sediments, if little or no sediments are fed into them. A combination of clast tracing using passive integrated transponder (PIT) tagging and bedload traps (positioned along the thalweg on the upstream riffle, pool entrance, pool exit and downstream riffle) are used to provide information on clast pathways and sediment sorting through a single pool‐riffle unit. Computational fluid dynamics (CFD) is also used to explore hydraulic variability and flow pathways. Clast tracing results provide a strong indication that clasts are not fed through pools, rather they are transported across point bar surfaces, or around bar edges (depending upon previous clast position, clast size, and event magnitude). Spatial variations in bedload transport were found throughout the pool‐riffle unit. The pool entrance bedload trap was often found to be empty, when the others had filled, further supporting the notion that little or no sediment was fed into the pool. The pool exit slope trap would occasionally fill with sediment, thought to be sourced from the eroding outer bank. CFD results demonstrate higher pool shear stresses (τ ≈ 140 N m–2) in a localized zone adjacent to an eroding outer bank, compared to the upstream and downstream riffles (τ ≈ 60 N m–2) at flows of 6 · 2 m3 s–1 (≈ 60% of the bankfull discharge) and above. There was marginal evidence for near‐bed velocity reversal. Near‐bed streamlines, produced from velocity vectors indicate that flow paths are diverted over the bar top rather than being fed through the thalweg. Some streamlines appear to brush the outer edge of the pool for the 4 · 9 m3 s–1 to 7 · 8 m3 s–1 (between 50 and 80% of the bankfull discharge) simulations, however complete avoidance was found for discharges greater than this. Copyright © 2013 John Wiley & Sons, Ltd.  相似文献   
926.
By dating detrital zircon U-Pb ages of deposition sequence in foreland basins, we can analyze the provenance of these zircons and further infer the tectonic history of the mountain belts. This is a new direction of the zircon U-Pb chronology. The precondition of using this method is that we have to have all-around understanding to the U-Pb ages of the rocks of the orogenic belts, while the varied topography, high altitude of the zircon U-Pb ages of the orogenic belts are very rare and uneven. This restricts the application of this method. Modern river deposits contain abundant geologic information of their provenances, so we can probe the zircon U-Pb ages of the geological bodies in the provenances by dating the detrital zircon U-Pb ages of modern rivers' deposits. We collected modern river deposits of 14 main rivers draining from Pamir, South Tian Shan and their convergence zone and conducted detrital zircon U-Pb dating. Combining with the massive bed rock zircon U-Pb ages of the magmatic rocks and the detrital zircon U-Pb ages of the modern fluvial deposit of other authors, we obtained the distribution characteristics of zircon U-Pb ages of different tectonic blocks of Pamir and South Tian Shan. Overlaying on the regional geological map, we pointed out the specific provenance geological bodies of different U-Pb age populations and speculated the existence of some new geological bodies. The results show that different tectonic blocks have different age peaks. The main age peaks of South Tian Shan are 270~289Ma and 428~449Ma, that of North Pamir are 205~224Ma and 448~477Ma, Central Pamir 36~40Ma, and South Pamir 80~82Ma and 102~106Ma. The Pamir syntaxis locates at the west end of the India-Eurasia collision zone. The northern boundary of the Pamir is the Main Pamir Thrust(MPT)and the Pamir Front Thrust(PFT). In the Cenozoic, because of the squeezing action of the India Plate, the Pamir thrust a lot toward the north and the internal terranes of the Pamir strongly uplifted. For the far-field effect of the India-Eurasia collision, the Tian Shan on the north margin of the Tarim Basin also uplifted intensely during this period. Extensive exhumation went along with these upliftings. The material of the exhumation was transported to the foreland basin by rivers, which formed the very thick Cenozoic deposition sequence. These age peaks can be used as characteristic ages to recognize these tectonic blocks. These results lay a solid foundation for tracing the convergence process of Pamir and South Tian Shan in Cenozoic with the help of detrital zircon U-Pb ages of sediments in the foreland basin.  相似文献   
927.
对奎玛流域一次冰雹天气的分析表明,在巴尔喀什湖低槽加强东移的环流背景下,低层水汽辐合、抬升启动和层结不稳定有利于该地区强对流的发生、发展,中尺度强对流云团的形成、发展是产生这次冰雹天气的主要原因。  相似文献   
928.
对1990~2004年的15年间特大暴雨天气过程进行分析研究,探讨低空急流的发生发展规律和急流对广西西风系统特大暴雨的影响。  相似文献   
929.
2003年淮河流域致洪暴雨的环流背景及其与大气热源的关系   总被引:5,自引:14,他引:5  
利用NCAR/NCEP的逐日再分析资料和降水资料,分析了2003年夏季淮河流域致洪暴雨的环流背景及其与大气热源的关系.结果表明,2002-2003年的El Nino事件是本次暴雨的前期背景;南海地区的视热源和视水汽汇异常可能是副高偏南维持的重要原因之一.与2003年夏季相比较,6月21日-7月22日淮河流域为正的异常视热源和视水汽汇,并且二者的高值中心与该时段雨量中心位置基本一致.孟加拉湾地区的异常加热源在其西北侧强迫出的高层反气旋性环流有利于南亚高压在青藏高原、江南、华南地区维持,从而使得淮河流域位于高压北侧高空西风急流入口区南侧的上升运动区,有利于淮河流域强降水发生和维持,形成该流域洪涝.  相似文献   
930.
西江流域致洪暴雨的准双周振荡及大气环流模型   总被引:1,自引:1,他引:1  
为了做好西江流域致洪暴雨的中期预报,采用小波分析、Lanczos滤波器分析了1961—2008年西江流域13次致洪暴雨期间降水与850 hPa风场的低频振荡特征,研究了850 hPa风场的10~30天低频传播对致洪暴雨的影响,并采用合成分析建立了由西风带系统导致的致洪暴雨准双周振荡的大气环流模型。结果表明,致洪暴雨期间降水主要以10~20天的准双周振荡为主,它们多数与西江流域850 hPa风场8~35天振荡的正位相有较好的对应关系。来自西江流域以南逐渐向北传播的低频纬向风或来自30 °N附近逐渐南传并加强的低频纬向风与多数来自西北太平洋向西传播的低频纬向风在西江流域相遇,是导致致洪暴雨具有准双周振荡的可能原因之一。当500 hPa巴尔喀什湖以东的高压脊开始隆起并逐渐东移,我国东北-华北-长江中下游逐渐转为明显的华北低槽控制,华南由青藏高原东部弱的西风槽转为明显的高空槽控制,副高不断加强西伸,同时850 hPa上空来自孟加拉湾穿过中南半岛的西南风不断加强,位于华南急流轴以西弱的气旋性弯曲也不断加强,地面上转为东高西低、等压线经向度明显,西江流域致洪暴雨开始并逐渐达到强盛期。这些特征可作为西江流域致洪暴雨的中期预报提供参考依据。   相似文献   
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