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一种基于断面剖分的线状道路特征提取方法 被引量:2
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作者 明洋 陈楚江 《中外公路》 北大核心 2015年第6期5-8,共4页
针对既有道路特征精确提取的难题,该文提出了一种基于断面剖分的线状道路特征提取方法。通过引入断面剖分思想,将所采集的密集三维激光点云投影到二维剖分切片中进行处理,简化了特征提取难度。针对不同的特征形态,分别采用基于RANSAC稳... 针对既有道路特征精确提取的难题,该文提出了一种基于断面剖分的线状道路特征提取方法。通过引入断面剖分思想,将所采集的密集三维激光点云投影到二维剖分切片中进行处理,简化了特征提取难度。针对不同的特征形态,分别采用基于RANSAC稳健估计直线拟合求交的方法和基于道路特征点云模板配准的方法来获取道路特征点的精确位置。通过对某公路工程路缘石、护栏等简单和复杂线状道路特征进行试验,验证了该文方法的有效性。 展开更多
关键词 公路改扩建 激光扫描测量 断面剖分 激光点云 线状特征提取
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复式断面渠道的流量计算方法 被引量:9
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作者 齐清兰 张力霆 +3 位作者 李桐栋 薛运田 杨庆瑞 李秀辰 《河北工程技术高等专科学校学报》 2001年第3期8-11,共4页
从理论上讨论了用于复式断面渠道的传统的断面剖分计算法的计算误差 ,并提出了一种新的断面等速剖分法。该方法要求各剖分断面流速相等 ,从而消除了传统的断面剖分法因未考虑各剖分断面之间由于流速梯度而引起的切应力所产生的误差。
关键词 复式断面 流量 断面 计算方法 渠道 等速 误差
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基于微观地形因子的防界线提取算法
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作者 孔月萍 刘大维 +1 位作者 张跃鹏 高黄玮 《计算机工程与应用》 CSCD 北大核心 2017年第6期174-177,192,共5页
防界线作为一种基本的线状地形特征,在军事领域和民用领域都有着广泛的应用前景。现有的提取技术仅考虑防界线的可视域特性,所提取的结果偏差大,不足以支持实际应用。为此,提出一种防界线提取方法,该方法着眼于防界线局部的微观形态特征... 防界线作为一种基本的线状地形特征,在军事领域和民用领域都有着广泛的应用前景。现有的提取技术仅考虑防界线的可视域特性,所提取的结果偏差大,不足以支持实际应用。为此,提出一种防界线提取方法,该方法着眼于防界线局部的微观形态特征,利用滑动窗口分析山体曲面的坡度变化情况,筛选出坡度变化剧烈的特征点并结合其他约束条件形成防界线。实验结果表明,所提取的特征线符合设防要求。 展开更多
关键词 防界线 微观地形因子 断面剖分 坡度突变
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Tectonic Evolution of the North Depression of the South Yellow Sea Basin Since Late Cretaceous 被引量:3
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作者 LI Nan LI Weiran LONG Haiyan 《Journal of Ocean University of China》 SCIE CAS 2016年第6期967-976,共10页
Abstract On the basis of subsidence history analysis and balanced cross-section analysis, the vertical uplift/subsidence history and horizontal extension/compression history of the north depression of the south Yellow... Abstract On the basis of subsidence history analysis and balanced cross-section analysis, the vertical uplift/subsidence history and horizontal extension/compression history of the north depression of the south Yellow Sea basin are quantitatively studied. The results show that the tectonic evolution of the north depression of the south Yellow Sea basin since late Cretaceous can be divided into a rifting phase (late Cretaceous to Paleogene) and a post-rifting phase (Neogene to Quaternary). The rifting phase can be further subdivided into an initial rifting stage (late Cretaceous), an intensive rifting stage (Paleocene), a rifting termination stage (Eocene), and an inversion-uplifting stage (Oligocene). Together, this division shows the characteristics of an episodic-evolved intracontinental rift-depression basin. The deformation of the north depression of the south Yellow Sea basin since late Cretaceous was mainly fault-related. The horizontal extension and tectonic subsidence were controlled by the activity of faults. The differential evolution of faults also caused variations in local uplift/subsidence movements and the regional heterogeneity in extension. The late Cretaceous initial rifting of the north depression of the south Yellow Sea basin is related to the Pacific-Eurasia convergence. From the Paleocene intensive rifting stage to present, the Pacific-Eurasia convergence and India-Eurasia convergence have played important roles in the evolution of this region. 展开更多
关键词 subsidence history balanced cross-section tectonic evolution South Yellow Sea Basin
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A method of reconstructing complex stratigraphic surfaces with multitype fault constraints
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作者 Deng Shi-Wu Jia Yu +1 位作者 Yao Xing-Miao Liu Zhi-Ning 《Applied Geophysics》 SCIE CSCD 2017年第2期195-204,322,共11页
The construction of complex stratigraphic surfaces is widely employed in many fields, such as petroleum exploration, geological modeling, and geological structure analysis. It also serves as an important foundation fo... The construction of complex stratigraphic surfaces is widely employed in many fields, such as petroleum exploration, geological modeling, and geological structure analysis. It also serves as an important foundation for data visualization and visual analysis in these fields. The existing surface construction methods have several deficiencies and face various difficulties, such as the presence of multitype faults and roughness of resulting surfaces. In this paper, a surface modeling method that uses geometric partial differential equations (PDEs) is introduced for the construction of stratigraphic surfaces. It effectively solves the problem of surface roughness caused by the irregularity of stratigraphic data distribution. To cope with the presence of multitype complex faults, a two-way projection algorithm between three- dimensional space and a two-dimensional plane is proposed. Using this algorithm, a unified method based on geometric PDEs is developed for dealing with multitype faults. Moreover, the corresponding geometric PDE is derived, and an algorithm based on an evolutionary solution is developed. The algorithm proposed for constructing spatial surfaces with real data verifies its computational efficiency and its ability to handle irregular data distribution. In particular, it can reconstruct faulty surfaces, especially those with overthrust faults. 展开更多
关键词 Partial differential equation surface reconstruction INTERPOLATION fault MESHING
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