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1.
刘超  雷启云  余思汗  杨顺  王银 《地震学报》2021,43(1):113-123
本文首先介绍了无人机摄影测量技术获取数字高程模型(digital elevation model,缩写为DEM)和地貌数据(正射影像)的作业流程,对比分析了三种不同质量密集点云生成的DEM在水平位置和高程上的差异;然后以1709年中卫南M7?大地震的主体地表破裂带为例,提取其上地震断层的垂直位错量和水平位移量。研究结果显示:高质量密集点云生成的DEM分辨率可达厘米级,且处理时间不需太长,其水平位置和高程与另外两种质量密集点云生成的DEM差异均小于0.100 m;基于高质量密集点云可生成6.33 cm/pix分辨率的DEM,提取1709年中卫南地震地表破裂带上地震断层的垂直位错量为(0.704±0.293) m,水平位移量为5.1 m,与前人的研究结果相吻合,因此可以代表该地震的同震位移,这表明无人机摄影测量技术能够获取地震地表破裂带典型场点的高分辨率地形地貌数据,并基于生成的DEM可进一步提取地震断层的定量参数。   相似文献   

2.
数字高程模型是重要的地理空间数据,可以提供丰富的地形信息.为了获得时效性好、分辨率高的数字高程模型,本文以南京市为实验区域,利用德国宇航局TerraSAR-X卫星同一轨道上的两幅StripMap模式SAR影像对,主从影像时间间隔只有66天,空间分辨率为3 m.采用InSAR技术,通过迭代的方法来提高获取DEM的分辨率,并结合JAXA/EORC提供的AW3D30数字表面模型与迭代后的DEM进行融合来解决阴影等问题,最终获取了南京地区的高精度数字高程模型.将实验结果分别与90 m分辨率的SRTM、30 m分辨率的ASTER GDEM、30 m分辨率的AW3D30进行相互对比分析.结果表明,相比三种常用的DEM而言,本文获取的DEM能够更精确的获取地面的细节信息,特别是对于分布稀疏的大型单体建筑物,能够很好的恢复其三维信息,但是对于建筑物分布较为密集的区域,由于传感器视线受阻,不能观测建筑物的全貌,阴影分布较多,导致此类区域的DEM结果不理想,还需进一步深入研究,提高精度及可靠性.  相似文献   

3.
汶川地震后,震中地区地表形态遭到很大破坏.在该地区开展科学研究急需高精度数字高程模型支持,重建震区数字高程模型十分必要.本文以高精度重建该地区数字高程模型为目标,综合ALOS PRISM获取的三轨立体像对、ALOS PALSAR雷达影像和欧空局发布的汶川地震ENVISAT雷达影像等资料,采用光学遥感立体测图技术、InSAR技术,并融合已有全球数字高程模型,研究建立覆盖此地区15m分辨率的数字高程模型.在利用中国地壳运动监测网络和陆态网络工程项目实测的GPS数据进行高程精度分析后表明:ALOS PRISM DEM精度优于10 m(95%置信度);ALOS PALSAR DEM精度优于10 m(95%置信度),而ENVSAT ASAR DEM在平原、丘陵地区精度优于20 m(95%置信度).研究证明:ALOS PRISM能进行高精度的地形测量,ALOS PALSAR在山区仍可获得高精度数字高程模型,ENVISAT ASAR在平原地区的精度较高.因此融合光学、雷达遥感技术完全满足获取高精度、高分辨率震区数字高程模型的需要,这为在困难地区建立高精度数字高程模型提供了一个很好的途径.  相似文献   

4.
柔洁  沈军 《内陆地震》2004,18(3):276-280
遥感技术应用于地震研究中的一个重要方面是利用遥感图像的宏观性解译地震活动的构造背景。该项目主要利用遥感及GIS地理信息软件合成数字遥感图像并利用数字高程模型DEM生成三维地貌影像图,与城市房屋等数字图层叠加,建立与地理图层相连的属性数据库,实现断层与地面建筑关系的实时查询,并对用于构造背景的三维立体模型的显示、可视化飞行技术进行初步研究,以期在城市活断层研究中得到应用。  相似文献   

5.
起伏地形下天文辐射分布式估算模型   总被引:21,自引:1,他引:20       下载免费PDF全文
基于数字高程模型(DEM),建立了起伏地形下天文辐射分布式估算模型.模型全面考虑了地形因子对天文辐射的影响,只需DEM数据作为输入项,适用于遥感图像处理、地理信息系统等数据处理平台.以1km×1km分辨率的DEM数据作为地形的综合反映,计算了我国全年各月天文辐射的空间分布.结果表明:我国年天文辐射总量有明显的纬向分布特点,随着纬度的降低,年天文辐射总量由北向南增加;由于受坡向、坡度和地形遮蔽因子影响,山区天文辐射表现出非地带性分布特征.本文所提供的我国天文辐射数据产品,可作为基础地理数据供相关研究应用.  相似文献   

6.
同震地表破裂带的空间展布及形变特征是地球深部断层活动在地表的直观地貌表现,不但记录着地震破裂和断层运动的信息,还反映了区域应力和地壳运动状况.因此,开展震后地震地表破裂带调查对于了解发震断层的构造活动尤为重要.高精度地形观测技术可以获取前所未有的高时空分辨率的地球表面特征,为辨别历史地震地表破裂遗迹、提取地表同震位移、活动构造地质填图等提供高质量数据.文中选取富蕴1931年地震地表破裂带作为研究区,利用SfM(Structural from Motion)摄影测量技术生成分辨率为1 m的数字高程模型(DEM),详细识别地表破裂并测量冲沟的右旋位移.基于地表破裂的几何及构造地貌特征,将富蕴地震地表破裂带由北向南分为S1、S2、S3、S44段,其间以挤压隆起或拉分盆地相连接.沿破裂带共获得194组最新冲沟的右旋水平位移,得到1931年同震位移的平均值为(5.06±0.13)m.同震位移局部缺失或突变的区域与几何阶区的位置也有良好的对应关系.以上结果填补了对富蕴地震地表破裂精细形态研究的空白,也进一步展示高分辨率的地形数据在活动构造研究中良好的应用价值.  相似文献   

7.
嫦娥一号激光测距数据及全月球DEM模型   总被引:6,自引:0,他引:6       下载免费PDF全文
激光高度计是搭载在CE-1上的主要载荷之一, 用于月球表面的地形测量. 2007年11月28日02点22分, 激光高度计成功获得第一个探测数据, 截止到2008年12月4日, 总共获取了约912万个探测数据, 数据覆盖全月面. 我们利用这些探测数据制作了空间分辨率为3 km的全月DEM模型, 月表地形地貌特征反映明显, 地形细节表达层次分明、清晰可辨. DEM模型的平面定位精度为445 m (1σ), 高程测量精度为60 m (1σ). 根据这一DEM模型, 测得月球表面最大高差为19.807 km, 最高点位于Engel’gardt撞击坑东缘(158.656°W, 5.441°N, +10.629 km), 最低点位于Antoniadi撞击坑底部(172.413°W, 70.368°S, -9.178 km). 通过比较, CE-1的激光高度计DEM模型, 在精度和分辨率上明显优于美国ULCN2005, 与日本SELENE激光高度计DEM模型相当, 测量到的最高点与SELEN结果相似, 但CE-1数据新发现了比SELEN结果更低的最低点.  相似文献   

8.
移动摄影测量技术SfM(Structure from Motion)的发展使活动构造研究中快速获得野外中小区域内高精度DEM数据更便捷,DEM数据精度是目前活动构造与测量领域较关注的问题。本文通过对比非RTK模式无人机摄影测量并结合地面控制点(GCPs)生成的SfM DEM数据与基于RTK移动摄影测量技术获取的RTK-SfM DEM数据差异,重点分析搭载RTK模块的移动摄影测量技术获取的DEM数据在垂向上的精度。数据采集、处理与对比结果表明:在添加地面控制点后的非RTK模式无人机摄影测量生成的DEM数据中,除测量区域边缘照片较少而产生畸变外,大部分地区畸变率较小;基于移动RTK技术摄影测量获取的高程数据畸变率更小,且与非RTK模式无人机摄影结合地面控制点生成的高程数据存在约0.85 m的系统高程误差,减去该误差后,点云对比结果表明二者95%以上的点垂向误差均<0.05 m;搭载RTK模块的移动摄影测量技术获取的DEM数据在垂向上具有更高的精度,且节省了时间与人工成本。  相似文献   

9.
九寨沟7.0级地震诱发的地质灾害具有高位滑坡远程灾害的特点,传统地质灾害排查手段无法有效解决隐患的早期识别问题。本文采用机载激光雷达测量技术,快速获取九寨沟地震核心景区的激光点云数据。通过构建高精度数字高程模型(DEM)、数字正射影像图(DOM),建立三维地质灾害解译场景,利用数字地形分析、地形形态学分析和计算机图像识别等技术,综合开展九寨沟高位远程区域内隐蔽性强、随机性大的地质灾害隐患早期识别与分析。应用实践表明,机载激光雷达测量技术可以提高九寨沟地震灾区地质灾害隐患的早期识别能力,对进一步提高综合防灾减灾能力提供了一些可借鉴的思路。  相似文献   

10.
高精度、高分辨率的地形地貌数据是活动构造定量研究的重要基础数据。传统研究方法中,通过航卫片或遥感影像解译只能获取二维平面特征,中等分辨率DEM(5~10m网格单元)只适用于大尺度三维地貌特征的提取。激光雷达测量(Light Detection and Ranging,Li DAR)技术可直接对地貌进行高精度、全方位的三维地表形态测量,为活动构造研究提供了精细的地貌形态数据,有助于深化对断裂带地表破裂过程和断裂活动特性的理解。文中选取青藏高原东北缘香山-天景山断裂带西段的景泰小红山断裂中一段断错地貌明显的断裂段作为研究对象,基于高精度Li DAR数据生成了景泰小红山断裂0. 3m高分辨率的数字高程模型(DEM),沿断裂带详细识别并测量了地貌标志(冲沟、山脊和阶地)的断错位移,获得了地貌标志的82个水平位移和62个垂直位移,并分析了不同方向上的位移丛集特征。结果显示,沿断裂的水平与垂直位移均可识别出5个丛集,其中最小丛集可能指示最新一次地震的同震位移,而其它位移丛集则反映了断裂带多次地震活动累积的结果。通过对多个断错标志的水平和垂直位移合成的滑动矢量进行分析,可以看出该断层段的运动习性具有分段不均匀特征,不同段落的倾滑矢量有一定的差异。  相似文献   

11.
藏南宁金抗沙西麓断裂晚第四纪活动特征   总被引:4,自引:0,他引:4       下载免费PDF全文
宁金抗沙西麓断裂位于亚东-谷露裂谷系南部.本文利用15 m分辨率的ETM 遥感影像和20 m分辨率的数字高程模型,结合野外地质考察,重点研究了该断裂的详细结构和晚第四纪以来的活动习性.依据与热隆盆地的关系,该断裂主要分为三段,热隆盆地以北为北段,热隆盆地边界断裂为中段,热隆盆地以南为南段.该断裂在强烈正断的同时兼具有左旋走滑运动,自中更新世以来,主要有三期活动,活动开始时间分别为384 ka1、08 ka和34 ka,累积水平活动速率分别为4.8 mm/a5、.5 mm/a和6.4 mm/a.断裂自中更新中期以来的垂直断错速率为1 mm/a.  相似文献   

12.
With the development of photogrammetry technology and the popularity of unmanned aerial vehicles (UAVs)technology in recent years, using UAV photogrammetry technology to rapidly acquire high precision and high resolution topographic and geomorphic data on the fault zone has gradually become an important technical means. This paper first summarizes the basic principle and workflow of a new digital photogrammetry technology, SfM (Structure from Motion), which is simple, efficient and low cost. Using this technology, we conducted aerial image acquisition and data processing for a typical fault landform on the northern of Caka Basin in Qinghai. The digital elevation model (DEM)with 6.1cm/pix resolution is generated and the density of point cloud is as high as 273 points/m2. The coverage area is 0.463km2. Further, the terrain and slope data parallel to the fault direction are extracted by topographic analysis method, and combined with the contour map and the slope diagram generated by the DEM, a fine interpretation and quantitative study of complex multilevel geomorphic surfaces is carried out. Finally, based on the results of sophisticated interpretation of geomorphology, we got the vertical displacements of the T1 terrace to the T3 terrace as (1.01±0.06)m, (1.37±0.13)m and (3.10±0.11)m, and the minimum vertical displacements of the T4 terrace and the T5 terrace as (3.77±0.14)m and (5.46±0.26)m, respectively, through the topographic profile data extracted by DEM. Such vertical displacement parameters are difficult to obtain directly by traditional remote sensing images, which shows the great application prospect of UAV photogrammetry technology in the quantitative study of active tectonics.  相似文献   

13.
Surface elevations represented in MODFLOW head-dependent packages are usually derived from digital elevation models (DEMs) that are available at much high resolution. Conventional grid refinement techniques to simulate the model at DEM resolution increases computational time, input file size, and in many cases are not feasible for regional applications. This research aims at utilizing the increasingly available high resolution DEMs for effective simulation of evapotranspiration (ET) in MODFLOW as an alternative to grid refinement techniques. The source code of the evapotranspiration package is modified by considering for a fixed MODFLOW grid resolution and for different DEM resolutions, the effect of variability in elevation data on ET estimates. Piezometric head at each DEM cell location is corrected by considering the gradient along row and column directions. Applicability of the research is tested for the lower Rio Grande (LRG) Basin in southern New Mexico. The DEM at 10 m resolution is aggregated to resampled DEM grid resolutions which are integer multiples of MODFLOW grid resolution. Cumulative outflows and ET rates are compared at different coarse resolution grids. Results of the analysis conclude that variability in depth-to-groundwater within the MODFLOW cell is a major contributing parameter to ET outflows in shallow groundwater regions. DEM aggregation methods for the LRG Basin have resulted in decreased volumetric outflow due to the formation of a smoothing error, which lowered the position of water table to a level below the extinction depth.  相似文献   

14.
The horizontal accuracy of topographic data represented by digital elevation model (DEM) resolution brings about uncertainties in landscape process modeling with raster GIS. This paper presents a study on the effect of topographic variability on cell-based empirical estimation of soil loss and sediment transport. An original DEM of 10m resolution for a case watershed was re-sampled to three realizations of higher grid sizes for a comparative examination. Equations based on the USLE are applied to the watershed to calculate soil loss from each cell and total sediment transport to streams. The study found that the calculated total soil loss from the watershed decreases with the increasing DEM resolution with a linear correlation as spatial variability is reduced by cell aggregation. The USLE topographic factors (LS) extracted from applied DEMs represent spatial variability, and determine the estimations as shown in the modeling results. The commonly used USGS 30m DEM appears to be able to reflect essential spatial variability and suitable for the empirical estimation. The appropriateness of a DEM resolution is dependent upon specific landscape characteristics, applied model and its parameterization. This work attempts to provide a general framework for the research in the DEM-based empirical modeling.  相似文献   

15.
With the development of the techniques acquiring high-resolution digital terrain data,the digital terrain data acquisition technology has been widespread applied to the geoscience research.A revolutionary,low-cost and simply operative SfM (Structure from Motion) technology will make obtain high-resolution DEM data more convenient for researches on active tectonics.This paper summarizes the basic principles and workflows of SfM technology and processes and selects the Hongshuiba River area along the northern margin of the Qilian Shan to conduct data collection.We use a series of digital pictures to produce a texture with geographic information,in which data resolution is 6.73cm/pix and average density of point cloud is 220.667 point/m2.The coverage area is 0.286km2.Further,in order to compare the accuracy between SfM data and differential GPS (DGPS) data in details,SfM data are vertically shifted and tilt-corrected.After optimizing corrections of SfM data,the absolute value of elevation difference between two data substantially concentrates around 20cm,roughly equivalent to 2-folds of data error only after the elevation error correction.Elevation difference between two data is 10~15cm in 90% confidence interval.The maximum error is about 30cm,but accounts for less than 10%.Along the direction of fault trace,the height of fault scarp extracted from SfM data shows that vertical displacement of the latest tectonic activity in the east bank of Hongshuiba River is about 1m,and some minimum scarps height may be 0.3m.The results show SfM technology with high vertical accuracy can be able to replace differential GPS in high-precision topographic survey.After correcting of SfM data,elevation difference still exists,which may be associated with methods of generating DEM and SfM data accuracy,which in turn is controlled by the number and distribution of Ground Control Points (GCPs),photos density and camera shooting height,but also related to surface features,Fodongmiao-Hongyazi Fault  相似文献   

16.
Abstract

A digital elevation model (DEM) derived from a stereo pair of WorldView-2 (WV-2) images was assessed against ground-truth GPS point datasets. Two assessment methods were used: (a) vertical accuracy assessment and (b) hydrological assessment of surface runoff variables. Three agricultural plots with different topographic slopes were selected to perform a vertical accuracy assessment, followed by a comparative assessment of a set of hydrological variables. The results show an overall vertical accuracy of 0.45 m, confirming the potential of WV-2 stereo images to extract elevation information at high spatial resolution. Concerning plot-scale micro-topographic features, the WV-2 DEM performed better on the plot with rolling slopes (5–10%), extracting variables such as the total length and drainage area of flow paths with relative errors lower than 20%. However, some limitations were detected in the extraction of variables such as terrain slope, drainage points of flow paths and terrain depressions in areas of flatter slopes (<5%).
Editor Z.W. Kundzewicz; Associate editor D. Gerten  相似文献   

17.
The increasing popularity of remote sensing techniques has created numerous options for researchers seeking spatial datasets, especially digital elevation models (DEMs), for geomorphic investigations. This yields an important question regarding what DEM resolution is most appropriate when answering questions of geomorphic significance. The highest possible resolution is not always the best choice for a particular research aim, and DEM resolution should be tailored to fit both the scale of investigation and the simplicity/complexity of modelling processes applied to the dataset. We find that DEM resolution has a significant effect on a simple model of bed load sediment connectivity in the Lockyer Valley, Queensland. We apply a simple bed load transport threshold to catchment DEMs at three different resolutions – 1 m, 5 m, and 25 m. We find that using a 1 m resolution DEM generates numerous disconnections along tributary channel networks that underestimates the sediment contributing area, i.e. effective catchment area (ECA), of seven tributary basins of Lockyer Creek. Utilizing a coarser (lower‐resolution) DEM helps eliminate erroneous disconnections, but can reduce the detail of stream network definition. We find that the 25 m resolution DEM provides the best measure of ECA for comparing sediment connectivity between tributary catchments. The utility of simple models and coarse‐resolution datasets is important for undertaking large, catchment‐scale geomorphic investigations. As catchment‐scale investigations are becoming increasingly entwined with river management and rehabilitation efforts, scientists need not embrace an ‘out with the old’ philosophy. Simple models and coarse‐resolution datasets can help better integrate geomorphic research with management strategies and provide inexpensive and quick first‐order insights into catchment‐scale processes that can help focus future management efforts. Copyright © 2017 John Wiley & Sons, Ltd.  相似文献   

18.
流域水系自动提取的方法和应用   总被引:28,自引:3,他引:28  
李昌峰  冯学智  赵锐 《湖泊科学》2003,15(3):205-212
讨论由栅格数字高程模型(DEM)自动提取流域水系的原理和方法,并以西苕溪中上游流域为研究区进行了河网生成实验. 研究表明:在山地丘陵区和平均地形坡度不小于3°的区域,所生成河网具有很高的可靠性. 为了解决在平均地形坡度小于3°的平坦区域河网生成中产生的虚拟河网与自然水系偏差较大的问题,提出了利用主干河道和平原水系数字化作为约束条件的生成河网的方法,取得了与实际情况比较接近的结果,从而使水文要素的模拟更具有实际意义.  相似文献   

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