We use spherical cap harmonic (SCH) basis functions to analyse and reconstruct the morphology of scanned genus-0 rough surface patches with open edges. We first develop a novel one-to-one conformal mapping algorithm with minimal area distortion for parameterising a surface onto a polar spherical cap with a prescribed half angle. We then show that as a generalisation of the hemispherical harmonic analysis, the SCH analysis provides the most added value for small half angles, i.e., for nominally flat surfaces where the distortion introduced by the parameterisation algorithm is smaller when the surface is projected onto a spherical cap with a small half angle than onto a hemisphere. From the power spectral analysis of the expanded SCH coefficients, we estimate a direction-independent Hurst exponent. We also estimate the wavelengths associated with the orders of the SCH basis functions from the dimensions of the first degree ellipsoidal cap. By windowing the spectral domain, we limit the bandwidth of wavelengths included in a reconstructed surface geometry. This bandlimiting can be used for modifying surfaces, such as for generating finite or discrete element meshes for contact problems. The codes and data developed in this paper are made available under the GNU LGPLv2.1 license.
翻译:我们首先开发了一个新的一对一兼容的映射算法,其区域偏差最小化,用于将表面参数引向一个具有指定半角的极球盖上。然后我们显示,作为半球口音分析的概观,SCH分析为小半角提供了最大的附加值,即,对于表面被投射到一个比一个半球小半角的球顶时,参数化算法所引入的偏差较小的名义平面表面,对表面的偏差最小化为平面。从扩展的 SCH 系数的能量光谱分析中,我们估计了一个离方向独立的赫斯特亮度。我们还从第一个水平的透度分析中估算了与SCH基础函数的顺序相关的波长。我们通过窗口光谱域,我们限制了参数化算法所引入的波长的宽度在表面测量中小于一个小于一个半角的球盖。从扩展的SCH系数的光谱分析中,我们从一个方向估算出一个方向独立的赫斯特亮度值。我们还从第一个水平的透度分析中估算出与SCH基函数的波长值相关的波长值。我们通过将光谱将光谱范围缩小范围限制在重新的地表几几几几何测量中可以用来修改地基质数据。