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An analysis of generated fractal and measured rough surfaces

机译:分析生成的分形和测量的粗糙表面

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This work studies the fractal dimensions of rough surfaces as calculated by several existing methods on measured and generated surface profiles. Two methods for generating rough surfaces are used in this work. The first one is to reconstruct the rough surface through the inverse Fourier transform based on a prescribed Power Spectrum Density (PSD) and the other one is using the Weierstrass-Mandelbrot (W-M) function. The fractal dimension values of all the rough surfaces are calculated by four different methods, namely, (1) the box-counting method, (2) the roughness-length method, (3) the power spectral density method and (4) the variogram method. Then the results from these four methods are compared. Since fractal surfaces are always clarified either as self-similar (the scaling ratio is the same in all directions) or as self-affine (scaling ratio varies in prescribed fashion over scales), it can be found that the fractal dimension values are not the same after analyzing the generated self-similar rough surfaces by these two methods. The fractal dimension values for real rough surfaces, as well as other parameters, are also calculated by four different methods. The analysis indicates that real rough surfaces are not easily represented as perfect fractals as researchers and engineers often assume.
机译:这项工作研究了粗糙表面的分形维数,该维数是通过几种现有方法在测量和生成的表面轮廓上计算得出的。在这项工作中使用了两种生成粗糙表面的方法。第一个是基于规定的功率谱密度(PSD)通过傅里叶逆变换来重建粗糙表面,另一个是使用Weierstrass-Mandelbrot(W-M)函数。所有粗糙表面的分形维数值是通过四种不同的方法来计算的,即(1)盒计数法,(2)粗糙度-长度法,(3)功率谱密度法和(4)变异函数法方法。然后比较这四种方法的结果。由于分形表面总是以自相似(在所有方向上的缩放比例均相同)或以自仿射(缩放比例在比例尺上以规定的方式变化)澄清,因此可以发现分形维数值不是用这两种方法分析生成的自相似粗糙表面后,结果相同。实际粗糙表面的分形维值以及其他参数也可以通过四种不同的方法来计算。分析表明,真实的粗糙表面不像研究人员和工程师经常假设的那样容易地表示为完美的分形。

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