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首页> 外文期刊>Pure and Applied Geophysics >Advantages to Geoscience and Disaster Response from QuakeSim Implementation of Interferometric Radar Maps in a GIS Database System
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Advantages to Geoscience and Disaster Response from QuakeSim Implementation of Interferometric Radar Maps in a GIS Database System

机译:QuakeSim在GIS数据库系统中实现干涉雷达图对QuakeSim的地质科学和灾害响应的优势

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High-resolution maps of earth surface deformation are available in public archives for scientific interpretation, but are primarily available as bulky downloads on the internet. The NASA uninhabited aerial vehicle synthetic aperture radar (UAVSAR) archive of airborne radar interferograms delivers very high resolution images (approximately seven meter pixels) making remote handling of the files that much more pressing. Data exploration requiring data selection and exploratory analysis has been tedious. QuakeSim has implemented an archive of UAVSAR data in a web service and browser system based on GeoServer (http://geoserver.org). This supports a variety of services that supply consistent maps, raster image data and geographic information systems (GIS) objects including standard earthquake faults. Browsing the database is supported by initially displaying GIS-referenced thumbnail images of the radar displacement maps. Access is also provided to image metadata and links for full file downloads. One of the most widely used features is the QuakeSim line-of-sight profile tool, which calculates the radar-observed displacement (from an unwrapped interferogram product) along a line specified through a web browser. Displacement values along a profile are updated to a plot on the screen as the user interactively redefines the endpoints of the line and the sampling density. The profile and also a plot of the ground height are available as CSV (text) files for further examination, without any need to download the full radar file. Additional tools allow the user to select a polygon overlapping the radar displacement image, specify a downsampling rate and extract a modest sized grid of observations for display or for inversion, for example, the QuakeSim simplex inversion tool which estimates a consistent fault geometry and slip model.
机译:高分辨率的地球表面变形图可从公共档案中获得,以进行科学解释,但主要是通过Internet大量下载。美国国家航空航天局(NASA)的无人飞行器合成孔径雷达(UAVSAR)机载雷达干涉图档案可提供非常高分辨率的图像(大约7米像素),从而使文件的远程处理更加迫切。需要数据选择和探索性分析的数据探索是乏味的。 QuakeSim已在基于GeoServer(http://geoserver.org)的Web服务和浏览器系统中实现了UAVSAR数据的存档。它支持各种服务,这些服务提供一致的地图,栅格图像数据和地理信息系统(GIS)对象,包括标准地震断层。通过最初显示雷达位移图的GIS参考缩略图图像来支持浏览数据库。还提供对图像元数据和完整文件下载链接的访问。 QuakeSim视线剖面工具是使用最广泛的功能之一,该工具可以计算沿通过Web浏览器指定的直线(从展开的干涉图产品中)观察到的雷达位移。当用户以交互方式重新定义线的端点和采样密度时,沿轮廓的位移值将更新为屏幕上的图。轮廓和地面高度图可作为CSV(文本)文件提供,以供进一步检查,而无需下载完整的雷达文件。其他工具允许用户选择与雷达位移图像重叠的多边形,指定下采样率并提取适度大小的观测网格以进行显示或反演,例如QuakeSim单工反演工具可估算一致的断层几何形状和滑动模型。

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