何芳, 李林, 徐友宁, 柯海玲, 张江华, 乔冈, 刘瑞平, 陈华清. 2015: 矿山遥感编图中的高分辨率遥感数据选择与比例尺计算方法. 地质通报, 34(11): 2037-2046.
    引用本文: 何芳, 李林, 徐友宁, 柯海玲, 张江华, 乔冈, 刘瑞平, 陈华清. 2015: 矿山遥感编图中的高分辨率遥感数据选择与比例尺计算方法. 地质通报, 34(11): 2037-2046.
    HE Fang, LI Ling, XU Youning, KE Hailing, ZHANG Jianghua, QIAO Gang, LIU Ruiping, CHEN Huaqing. 2015: The method of high-resolution remote sensing data selection and scale computing in mine remote sensing map compilation. Geological Bulletin of China, 34(11): 2037-2046.
    Citation: HE Fang, LI Ling, XU Youning, KE Hailing, ZHANG Jianghua, QIAO Gang, LIU Ruiping, CHEN Huaqing. 2015: The method of high-resolution remote sensing data selection and scale computing in mine remote sensing map compilation. Geological Bulletin of China, 34(11): 2037-2046.

    矿山遥感编图中的高分辨率遥感数据选择与比例尺计算方法

    The method of high-resolution remote sensing data selection and scale computing in mine remote sensing map compilation

    • 摘要: 通过对青海调查矿区多种高分辨率卫星数据处理后形成的图像进行解译和编图,掌握了合理选择遥感数据信息源、利用制图软件计算遥感影像图比例尺及编制野外调查和成果解译图的技术方法。得出在选择遥感数据时要考虑不同数据的技术参数、性价比及调查区面积;明确了当图像的出图分辨率确定后,其比例尺与图像的空间分辨率、像素大小、文档大小有直接关系,同时建立了计算遥感图像最佳比例尺和最佳出图比例尺的公式和方法;介绍了利用Photoshop和Mapgis软件,编制矿山野外调查用图和遥感解译成果图件的流程及方法。这些工作的完成对青海矿业开发地质环境效应调查起到了积极的指导作用,也充分体现了高分辨率遥感图像在工作条件艰苦地区的优势作用。

       

      Abstract: Based on interpretation and mapping of the formation of the image after a variety of high-resolution satellite data processing at Qinghai mining survey area, the authors mastered the technical methods for reasonable choice of remote sensing data sources, calculation of remote sensing image scale by using mapping software, and compilation of field survey and result interpretation maps. Some understanding has been obtained: During the choice of remote sensing data, technical parameters of different data, performance-cost ratio and area of the survey district should be taken into account; there exists direct relationship between the scale, the spatial resolution of the image, the size of the pixel and the documents when the map resolution is determined. The authors also established a formula and method for calculating the optimum scale of remote sensing images and best mapping scale and described the processes and methods for preparing graphs and maps of mine field survey results and remote sensing interpretation by using Photoshop and Mapgis software. These results have been playing a positive role in guiding the survey of environmental effects caused by mining development in Qinghai Province and fully embody the advantages of high-resolution remote sensing images in areas of difficult working conditions.

       

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