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勘探图
相关语句
  exploration map
     This algorithm has been adopted in the oil exploration map processing system for the Shengli oilfield and has been proved to be very efficient.
     这个算法在胜利油田地质科学院的《勘探图件智能化处理系统》中得到实际应用,效果理想。
短句来源
  exploration drawing
     VECTORIZATION OF GEOPHYSICAL EXPLORATION DRAWING
     地质勘探图的矢量化方法研究
短句来源
  “勘探图”译为未确定词的双语例句
     The plentiful,high precision mineral explo-ration maps concerning calculation of reserves can be draw by means of automatic mapping technology of combining C withdatabase the computerization of solidmineral exploration is really realized through the management way of a striking effectfile-stream.
     该系统通过C语言与数据库文件的实时数据处理的自动成图技术,开发了丰富的、满足精度要求的储量计算有关勘探图件,以高效先进的文件流管理方式,成功地实现了固体矿产勘查评价的计算机化。
短句来源
     By means of the variable scale data saved in the model, multi-scale map can be generated according to the requirement. A data structure to encode the model was given.
     该模型保存了勘探图的不同比例尺下的数据,在应用中能根据不同的比例尺要求生成满足要求的图件,同时给出了模型的数据结构。
短句来源
  相似匹配句对
     The S. C.
     C.
短句来源
     N(Z).
     N(Z)的和.
短句来源
     VECTORIZATION OF GEOPHYSICAL EXPLORATION DRAWING
     地质勘探的矢量化方法研究
短句来源
     Development of petroleum exploration oriented mapping system
     油气勘探软件开发
短句来源
     MARINE EXPLORATION
     海上勘探
短句来源
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The paper presents the technical method of GKPX interaction computer assist evaluation system for solid mineral explorationand the function as well as the achievement of every modular system in this system. The plentiful,high precision mineral explo-ration maps concerning calculation of reserves can be draw by means of automatic mapping technology of combining C withdatabase the computerization of solidmineral exploration is really realized through the management way of a striking effectfile-stream.

着重介绍了GKPX交互式固体矿产勘查微机评价系统的主要技术方法和各系统子模块的功能及实现。该系统通过C语言与数据库文件的实时数据处理的自动成图技术,开发了丰富的、满足精度要求的储量计算有关勘探图件,以高效先进的文件流管理方式,成功地实现了固体矿产勘查评价的计算机化。

The vectorization and processing method for geophysical exploration drawing was presented. This method can be used to convert the paper drawings into the vectorization data involving geophysical information. The subdividing method can speed up the fineness of image. The optimization processing for vectorization data can reduce the human errors in consideration of the relativity among the graphic elements. Automatic recognition of partial non-geometry attribution for drawing vectorization can be realized. According...

The vectorization and processing method for geophysical exploration drawing was presented. This method can be used to convert the paper drawings into the vectorization data involving geophysical information. The subdividing method can speed up the fineness of image. The optimization processing for vectorization data can reduce the human errors in consideration of the relativity among the graphic elements. Automatic recognition of partial non-geometry attribution for drawing vectorization can be realized. According to the above methods, a system for vectorizing geophysical exploration drawing was developed and has been broadly used.

根据地质图中的图形元素的特点 ,给出了具有地质属性的工程图矢量化方法 ,从而将地质勘探图纸信息转化为具有地质信息的矢量数据。分块细化方法提高了大幅图纸的细化处理速度 ;数据优化处理从整体上考虑了勘探图素间的相关性 ,减少了矢量化过程中人为造成的误差 ;图形元素的部分非几何属性的自动识别提高了矢量化的自动化程度。这些方法在地质勘探图的矢量化系统中得到实现 ,并已在油田实际工作中应用。

Isograms are playing very important roles in many industries, esp. in the exploration and production of oil. But at present most isograms are made up of rather simple isolines, which cause much inconvenience in its practice. But now after the drawing of the isograms, a particular algorithm can be used to fill different colors into the parts between the isolines to improve the efficiency of the isograms, which can show the tendency of the changing data better and serve people better in the analysis of it. Based...

Isograms are playing very important roles in many industries, esp. in the exploration and production of oil. But at present most isograms are made up of rather simple isolines, which cause much inconvenience in its practice. But now after the drawing of the isograms, a particular algorithm can be used to fill different colors into the parts between the isolines to improve the efficiency of the isograms, which can show the tendency of the changing data better and serve people better in the analysis of it. Based on the result of a long time careful study on the peculiar features presented in the formation of the isoline, this paper proposed a new and practical way, namely a border-scanning algorithm to fill colors into the isograms, and the related theory is also given. This algorithm has been adopted in the oil exploration map processing system for the Shengli oilfield and has been proved to be very efficient.

等值线图在许多工业领域,尤其是在油田的生产开发过程中,起到非常大的作用。但是目前的大部分等值线图是简单的线条,在实际应用中有不便之处。如果在等值线绘制完成后,利用一定的填充算法,将不同的区域以不同的颜色进行区分,就可以明显地体现出数据变化趋势,有利于数据分析,提高了工作效率。文中根据等值线生成过程的具体特征提出了一种区域填充的边界扫描算法,并给出了相应的理论依据。这个算法在胜利油田地质科学院的《勘探图件智能化处理系统》中得到实际应用,效果理想。

 
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