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Fuzzy Performance between Surface Fitting and Energy Distribution in Turbulence Runner

机译:湍流转轮表面拟合与能量分布之间的模糊性能

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摘要

Because the application of surface fitting algorithms exerts a considerable fuzzy influence on the mathematical features of kinetic energy distribution, their relation mechanism in different external conditional parameters must be quantitatively analyzed. Through determining the kinetic energy value of each selected representative position coordinate point by calculating kinetic energy parameters, several typical algorithms of complicated surface fitting are applied for constructing microkinetic energy distribution surface models in the objective turbulence runner with those obtained kinetic energy values. On the base of calculating the newly proposed mathematical features, we construct fuzzy evaluation data sequence and present a new three-dimensional fuzzy quantitative evaluation method; then the value change tendencies of kinetic energy distribution surface features can be clearly quantified, and the fuzzy performance mechanism discipline between the performance results of surface fitting algorithms, the spatial features of turbulence kinetic energy distribution surface, and their respective environmental parameter conditions can be quantitatively analyzed in detail, which results in the acquirement of final conclusions concerning the inherent turbulence kinetic energy distribution performance mechanism and its mathematical relation. A further turbulence energy quantitative study can be ensured.
机译:由于曲面拟合算法的应用对动能分布的数学特征产生了相当大的模糊影响,因此必须定量分析它们在不同外部条件参数中的关系机制。通过计算动能参数确定每个选定代表位置坐标点的动能值,运用几种复杂的表面拟合典型算法,用获得的动能值,在目标湍流流道中建立了微动能分布表面模型。在计算新提出的数学特征的基础上,构造了模糊评价数据序列,提出了一种新的三维模糊定量评价方法。然后可以清晰地量化动能分布表面特征的值变化趋势,并且可以量化表面拟合算法的性能结果,湍流动能分布表面的空间特征及其各自的环境参数条件之间的模糊性能机制。详细分析,得出关于固有湍流动能分布性能机理及其数学关系的最终结论。可以确保进一步的湍流能量定量研究。

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