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161.
利用常规观测资料、区域自动站资料、柳州多普勒雷达资料以及ERA5再分析资料对2020年6月24日(“6·24”过程)和7月9日(“7·9”过程)广西柳州元宝山地区先后出现的突发性局地大暴雨过程进行了分析, 探讨这两次过程的触发因子。结果表明: 在低层偏南暖湿气流持续输送的前提下, 元宝山脉动力抬升进一步增强了山脉附近垂直上升运动; 白天大量积聚的能量导致热力条件非常不稳定, 地面中尺度辐合线及局地地形形成的中尺度辐合中心和大尺度环流的配合致使对流系统先在元宝山脉南侧触发起来, “列车效应”以及高效率、低质心的降雨系统使得小时雨强和累积雨量极大; 两次过程与850 hPa西南气流风速脉动密切相关, 高温高湿的暖湿气流在元宝山地区强烈辐合为暴雨增幅提供了有利条件, 有利于强降水在柳州北部地区维持; “6·24”过程近地层有弱冷空气侵入, 低层水汽饱和、中高层有干冷空气卷入; “7·9”过程近地层没有冷空气侵入, 湿层深厚, 整层为高温高湿的环境。  相似文献   
162.
以NCEP资料为初始场和侧边界条件,利用WRF模式对东、西天山地形对2015年12月9—12日大暴雪影响进行敏感性试验,从降水强度和分布等方面对比分析模拟结果,探讨地形在暴雪过程中的作用,对成因进行初步研究分析,结果表明:(1)此次强降雪发生是高空西南急流抽吸、低层风切变及风速辐合、偏北风与地形强迫抬升、地面冷锋移动缓慢等共同造成的。(2)此次暴雪天气过程,地形对强降雪的落区、强度影响很大,东、西天山高度与强降雪强度正相关,东、西天山高度降低、强降雪落区沿环流方向移动。(3)地形动力强迫整体上增强次级环流圈。近地面上升速度中心出现在迎风坡山脚至山腰区域,并向两侧递减,与此次大暴雪中心落区以及乌鲁木齐附近测站降雪量分布吻合,东、西天山地形高度降低50%,近地面上升速度中心值减少30%。地形强迫东、西天山峡谷近地面生成辐合中心和辐合线,辐合中心强度与地形高度正相关。(4)地形强迫抬升有加强水汽辐合汇聚的作用,东、西天山地形高度降低50%,水汽通量与水汽通量散度减少30%。  相似文献   
163.
Bathymetry data from Sognefjord, Norway, have been included in a terrain model, and their influence on the geoid has been calculated. The test area, located in the western part of Norway, was chosen due to its deep fjords and high mountains. Inclusion of bathymetry data in the terrain model altered the computed gravimetric geoid by as much as a few decimeters. The effect was detectable to a distance of more than 100 km. All calculated geoids, both with and without bathymetry data in the terrain model, fit the geoidal heights determined by available Global Positioning System (GPS) and levelling heights at the sub-decimetre level. Contrary to expectations, the accuracy in geoid prediction was reduced when using bathymetric data. The geoid changes were largest over the fjord where no GPS points were located. Different methods on the same area [isostatic and Residual Terrain Model (RTM)-terrain reductions] showed differences of approximately 1 m. Rigorous distinction between quasigeoid and geoid was found to be essential in this kind of area. Received: 12 May 1997 / Accepted 7 May 1998  相似文献   
164.
A three-level model system for the prediction of local flows in mountainous terrain is described. The system is based upon an operational weather prediction model with a horizontal grid spacing of about 10 km. The large-scale flow is transformed to a more detailed terrain, first by a mesoscale model with grid spacing of about 1 km, and then by a local-scale model with a grid spacing of about 0.2 km. The weather prediction model is hydrostatic, while the two other models are non-hydrostatic. As a case study the model system has been applied to estimate wind and turbulence over Várnes airport, Norway, where data on turbulent flight conditions were provided near the runway. The actual case was chosen due to previous experiences, which indicate that south-easterly winds may cause severe turbulence in a region close to the airport. Local terrain induced turbulence seems to be the main reason for these effects. The predicted local flow in the actual region is characterized by narrow secondary vortices along the flow, and large turbulent intensity associated with these vortices. A similar pattern is indicated by the sparse observations, although there seems to be a difference in mean wind direction between data and predictions. Due to fairly coarse data for sea surface temperature, errors could be induced in the turbulence damping via the Richardson number. An adjustment for this data problem improved the predictions.  相似文献   
165.
Digital Tide-Coordinated Shoreline   总被引:4,自引:0,他引:4  
The shoreline is one of the most important features on earth's surface. It is valuable to a diverse user community. But the dynamic nature of the shoreline makes it difficult to be represented in a naturally dynamic style and to be utilized in applications. The officially used shoreline, for example in nautical charts, is the so-called tide-coordinated shoreline. It is also the shoreline that makes the computation of shoreline changes and associated environmental changes meaningful. Mapping of the tide-coordinated shoreline has been very costly. On the other hand, instantaneous shorelines extracted from different data sources may be available. Also, high-resolution satellite and airborne imagery have the capacity of stereo imaging and can be used to extract instantaneous shorelines at a high accuracy and low cost. This article proposes an approach to derivation of digital tidecoordinated shorelines from (a) those instantaneous shorelines and (b) digital coastal surface models and a digital water surface model. Some preliminary study results, analysis, and the potential of the approach are discussed.  相似文献   
166.
邵长亮  闵锦忠 《气象学报》2019,77(2):233-242
为了更加有效地同化地面自动气象站观测资料,针对模式地形与观测站地形存在的高度差异对同化效果的影响,提出了相应的解决方案。在同化系统的位温和露点观测误差中分别引入位温和露点地形代表性误差,在WRF模式中应用集合均方根滤波方法(EnSRF)同化地面自动气象站观测资料,并对2016年一次京津冀暴雨个例进行数值试验。研究结果表明,同化地面资料后,同化阶段的均方根误差、预报阶段的降水TS评分和前13个时次各要素预报均有整体改进。在观测误差中引入地形代表性误差与引入前相比,风场均方根误差得到整体改进;位温和露点的均方根误差在前期表现并不稳定,在后期有所改进;预报阶段前24 h累计降水与后24 h累计降水TS评分在整体上均有所提高。新方案能够减少高度差异对同化效果的影响。   相似文献   
167.
相邻地形对地震动特性的影响分析   总被引:1,自引:0,他引:1  
基于采用透射人工边界的显式动力有限元方法,研究了相邻凸起地形对地震动反应谱特性的影响,分析了相邻凸起之间距离的变化对地形效应的影响。研究结果表明:1)与单一凸起地形对地震动的放大效应相比,相邻地形的存在对地震动反应谱谱比曲线的形状影响不大,但是却对谱比的值具有较大影响,而且其影响程度的大小与地表观测点的位置有关;2)相邻凸起地形的存在对凸起平台段中点地震动高频成分的放大效应具有较大影响,随着相邻凸起之间距离的增大,该影响效应逐渐减弱,多个相邻凸起构成的组合地形对地震动的放大效应逐渐接近单一凸起地形。  相似文献   
168.
王君恒  耿煜 《地球物理学报》2015,58(10):3815-3824
地形改正是重力和电法勘探中用于消除测点周围地形起伏对观测结果影响的技术.由于地形形成自然电位异常的微观机理较为复杂,解析公式难以得到,可以采用最为直观的方法,寻找两者之间的拟合公式.根据研究,在自然电位梯度测量中,地形引起的自然电位异常分为两种:一是异常与地形起伏是镜像关系,这种情况占多数;另一种情况是异常与地形起伏为反镜像关系.多数地形起伏与异常存在线性关系、二次关系和指数关系,以线性关系为主.具体采用哪种拟合关系,可选取典型的地形和自然电位曲线,通过其变化规律进行判断;也可以采取试算的办法,通过改正效果的比较选择合适的拟合公式.本文选择鄂尔多斯盆地作为研究地点,提出了适用于自然电位梯度测量的地形改正方法.通过三种拟合公式改正效果的比较,得出线性拟合公式能更好地描述该测区内相对高差与自然电位改正量之间的关系.地形改正有效地消除了相对高差与自然电位之间的相关性,改正后的自然电位曲线能够较好地反映地下地质信息,自然电位等值线图异常更加突出.自然电位梯度测量中,地形起伏可影响异常形态,特别是起伏地形的面积与目标地质体的面积大小相当时,两者异常有可能难以区分,因此地形改正的研究具有重要的实用性.  相似文献   
169.
Urban flood inundation modeling with a hydrodynamic flow solver is addressed in this paper, focusing on strategies to effectively integrate geospatial data for unstructured mesh generation, building representation and flow resistance parameterization. Data considered include Light Detection and Ranging (LiDAR) terrain height surveys, aerial imagery and vector datasets such as building footprint polygons. First, a unstructured mesh-generation technique we term the building-hole method (BH) is developed whereby building footprint data define interior domain boundaries or mesh holes. A wall boundary condition depicts the impact of buildings on flood hydrodynamics. BH provides an alternative to the more commonly used method of raising terrain heights where buildings coincide with the mesh. We term this the building-block method (BB). Application of BH and BB to a flooding site in Glasgow, Scotland identifies a number of tradeoffs to consider at resolutions ranging from 1 to 5 m. At fine resolution, BH is shown to be similarly accurate but execute faster than BB. And at coarse resolution, BH is shown to preserve the geometry of buildings and maintain better accuracy than BB, but requires a longer run time. Meshes that ignore buildings completely (no-building method or NB) also support surprisingly good flood inundation predictions at coarse resolution compared to BH and BB. NB also supports faster execution times than BH at coarse resolution because the latter uses localized refinements that mandate a greater number of computational cells. However, with mesh refinement, NB converges to a different (and presumably less-accurate) solution compared to BH and BB. Using the same test conditions, Hunter et al. [Hunter NM, Bates PD, Neelz S, Pender G, Villanueva I, Wright NG, Liang D, et al. Benchmarking 2D hydraulic models for urban flood simulations. ICE J Water Manage 2008;161(1):13–30] compared the performance of dynamic-wave and diffusive-wave models and reported that diffusive-wave models under-predicted the longitudinal penetration of the flood zone due to important inertial effects. Here, we find that a relatively coarse-mesh implementation of a dynamic-wave model suffers from the same drawback because of numerical diffusion. This shows that whether diffusion is achieved through the mathematics or numerics, the effect on flood extent is similar. Finally, several methods of distributing resistance parameters (e.g., Manning n) across the Glasgow site were evaluated including methods that utilize aerial imagery-based landcover classification data, MasterMap® landcover classification data and LiDAR-based feature height data (e.g., height of shrubs or hedges). Results show that landcover data is more important than feature height data in this urban site, that shadows in aerial imagery can cause errors in landcover classification which degrade flood predictions, and that aerial imagery offers a more detailed mapping of trees and bushes than MasterMap® which can locally impact depth predictions but has little impact on flood extent.  相似文献   
170.
北大别片麻岩中锆石U—Pb年龄离子探针初步测定   总被引:24,自引:5,他引:19  
陈道公 Delou.  E 《岩石学报》2000,16(2):199-202
对北大别鹿吐石和道士冲二个片麻岩中锆石进行了离子探针U-Pb年龄测定。二个样品13个颗粒的20个有效测定点的年龄表明,鹿吐石片麻岩主要分布在233 ̄394M道士冲片麻岩在307 ̄718Ma之间。道十冲片麻岩年龄的一致性程度要高于鹿叶石,两个样品均无低于220Ma的年龄信息。由于存在年龄的不一致性,这些年龄可能代表了由古老岩浆锆石和三叠纪的超高压变质锆石或者早白垩纪岩浆锆石所代表的混合、增生锆石。H  相似文献   
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