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Remote Sensing Discriminating Technology of Geohazard, Loess Platean, in the Baoji Ctiy, Shaanxi Province

机译:陕西宝鸡黄土高原地质灾害遥感判别技术

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Lying in the southwest side of Loess plateau, Baoji City locates in the intersection part of three structural units, that is, Qinling tectonic zone, Helan-Liupan tectonic zone and North China block. Wei River graben runs through the region. which is one of the known areas where active neotectonic movements is intense, avalanche, landslide and debris flow take place frequently. RS and GIS spatial analysis, 3D visualization of high-special interpretation of remote sensing and fieldwork geological survey are mostly used in the article. Form the role of RS, GIS and 3D Technique in landslide study, interpretability, causative condition that influence landslide identification, accuracy assessment and RS data source selection et. al. The author chose SPOT-5 multi-band remote sensing data as information source, via projection transformation, geometric rectification, information fusion, ortho-rectification, digital mosaic and image enhancement, got the color composite image whose spatial resolution is 2.5m, registered it with corresponding scale map, geological map and DEM data, analyzed the overlay of remote sensing image and DEM data, greatly improved the interpretability and precision of geohazards by using the realistic scenes offered by 3D image visualization, and passed the special interpretation of remote sensing.In the article, the remote sensing identified technique for avalanche, landslide and debris flow in this area are emphasized.The remote sensing discriminatory mark of avalanche, landslide and debris flow in fieldwork are defined, the geohazards (avalanche, landslide and debris flow)are interpreted in detail, the remote sensing image features of types of the geohazards are concluded, six points that influence the interpretation of remote sensing in this area should be worthy of attention and the solution for the interpretation that are wrong or missing detection are put forward. The accuracy evaluation of interpretation of remote sensing is based on the remote sensing data sources and accuracy of interpretation made by the professional. Through fieldwork geological survey, it is proved that the accuracy of interpretation reaches 73.93%. It is made sure that the geohazard sites (avalanche, landslide and debris flow)of interpretation reach 731 in this area, including 678 sites of avalanche, 29 sites of landslide and 24 sites of debris flow. According to regional geography and geo-environmental characteristics, the avalanche, landslide and debris flow Geohazards are mainly controlled by landforms, neotectonics and lithology in the region. All the information offers the basic data for the risk assessment and accuracy evaluation of geohazards.
机译:宝鸡市位于黄土高原西南侧,位于秦岭构造带,贺兰-六盘构造带和华北地块三个构造单元的交汇处。渭河grab流贯穿该地区。该地区是活跃的新构造运动激烈的地区之一,雪崩,滑坡和泥石流频繁发生。本文主要使用RS和GIS空间分析,对遥感的特殊解释和野外地质调查进行3D可视化。形成RS,GIS和3D技术在滑坡研究中的作用,可解释性,影响滑坡识别的成因条件,准确性评估和RS数据源选择等。等作者选择了SPOT-5多波段遥感数据作为信息源,通过投影变换,几何校正,信息融合,正射校正,数字镶嵌和图像增强,得到了空间分辨率为2.5m的彩色合成图像,并进行了配准。结合相应的比例尺图,地质图和DEM数据,分析了遥感图像和DEM数据的叠加,利用3D图像可视化提供的真实场景,大大提高了地质灾害的解释性和精度,并通过了遥感的特殊解释。本文重点介绍了该地区雪崩,滑坡和泥石流的遥感识别技术。定义了野外作业中雪崩,滑坡和泥石流的遥感判别标志,确定了雪崩,滑坡和泥石流的地质灾害。详细解释,得出了各种地质灾害类型的遥感影像特征,其中六点是在这一领域,遥感解释应引起人们的重视,并提出了错误或遗漏的解释方法。遥感口译的准确性评估是基于遥感数据源和专业人员的口译准确性。通过野外地质调查,证明了解释的准确性达到了73.93%。确保该区域解释的地质灾害位点(雪崩,滑坡和泥石流)达到731个,包括678个雪崩点,29个滑坡点和24个泥石流点。根据区域地理和地球环境特征,雪崩,滑坡和泥石流地质灾害主要受该地区的地貌,新构造和岩性控制。所有信息为地质灾害的风险评估和准确性评估提供了基础数据。

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