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Efficient Visualization Method and Implementation of Reservoir Model Based on WPF

机译:基于WPF的高效可视化方法和储层模型的实现

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In view of the slow speed and poor effect of real-time rendering of large-scale reservoir geological grid model, a new grid model hidden algorithm is proposed by analyzing the Eclipse reservoir grid model storage format, grid model representation, and cell sorting rule, which optimizes the original grid data and improves the rendering speed of reservoir grid model. The algorithm in this paper eliminates hidden points and faces according to the topological relationship of the grid, and finally, only the visible point and face data are extracted as the final visual input data. Through the realization of 3D visualization software of reservoir geological model and well trajectory, the correctness and efficiency of the hidden algorithm are verified. In the software, firstly, the number of display grids is effectively reduced by preprocessing, and the 3D graphics technology of WPF and helix is adopted to realize the high-efficiency display of reservoir grids. The comparison test of different scale reservoir models shows that the method can reduce the point and surface data by more than 85% and shows that the speed optimization effect is significant. The 3D display function realizes the interactive functions such as roaming, zooming, and viewpoint switching of the reservoir model, truly reveals again the geological environment and borehole information of underground drilling, which is helpful for drilling interpretation and decision-making, provides a reasonable drilling tracking geological target drilling scheme for the drilling process, and realizes the seamless connection of geological engineering integration.
机译:鉴于慢速度和大规模储层的地质网格模型的实时渲染的效果差的,一个新的网格模型隐藏算法是通过分析在Eclipse储层网格模型存储格式提出,网格模型表示和细胞分选规则,这优化了原始网格数据,并提高储层网格模型的渲染速度。在本文中消除隐藏点和面根据网格的拓扑关系,最后,仅可见点和面部数据被提取作为最终视觉输入数据的算法。通过实现油藏地质模型和井眼轨迹,正确性和隐藏算法效率的3D可视化软件的验证。在软件中,首先,显示网格的数量被有效地通过预处理降低,WPF的3D图形技术和螺旋采用实现储层网格的高效率的显示。的不同规模的油藏模型表明,该方法可以由多于85%降低点和表面数据和显示了对比试验,该速度优化效果是显著。 3D显示功能实现互动功能,如漫游,缩放和油藏模型的视点切换,真正再次揭示了地质环境和地下钻孔,这是钻解释和决策有用的钻孔信息,提供合理的钻探跟踪地质目标钻井方案为钻井过程中,实现了地质工程一体化的无缝连接。

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