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A New Approach Based on Plane and Circular Fitting to Survey the Axial Shape and Assess the Inclination of Ancient Chinese Pagodas

机译:一种基于平面和圆拟合的方法来测量中国古代宝塔的轴向形状和倾斜度

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摘要

This paper presents a practical new approach for determining the geometric shape of an ancient pagoda structure and its axial shape along its height. Because of ancient Chinese pagodas' unique characteristics (multiple eaves, Dougong, and vague edges), it is difficult to select appropriate measurement points. Moreover, the plane size of most ancient Chinese pagodas decreases from the bottom to the top floor. Considering these characteristics, we employed an electronic total station to monitor more than three measurement points of each wall facade of each pagoda floor, fitted plane equations using 3-D coordinates of the monitored measurement points and the least square method, calculated the corner points coordinates of each floor or cross section selected, fitted a circumscribed circle of each floor using the corner point coordinates and spatial axial equations based on the central coordinates, and performed an inclination evaluation of the ancient Chinese pagoda. This approach is practical and can be widely used in other high-rise polygonal buildings that have different plane sizes for each floor.
机译:本文提出了一种实用的新方法,用于确定古代宝塔结构的几何形状及其沿高度的轴向形状。由于中国古代宝塔的独特特征(多个屋檐,斗拱和模糊边缘),很难选择合适的测量点。而且,大多数古代中国宝塔的平面尺寸从下到上逐渐减小。考虑到这些特征,我们使用了一个电子全站仪来监视每个宝塔层的每个墙立面的三个以上测量点,使用所监视的测量点的3-D坐标和最小二乘法拟合平面方程,并计算角点坐标在选定的每个楼层或横截面中,使用角点坐标和基于中心坐标的空间轴向方程式拟合每个楼层的外接圆,并对古代中国宝塔进行倾斜度评估。这种方法是实用的,可以广泛用于其他每层都有不同平面尺寸的高层多边形建筑物。

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