Modeling Processes of Emergence and Growth of Fractal Structures and Chamber Defects of Thermal Power Units. Part 2

T. V. Ryzhova, D. Bukharov, S. Arakelyan
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Abstract

The paper describes further development of model studies with the purpose to draw analogies of the occurrence  of possible inhomogeneities and defects of the fractal type on the surface of various objects under the action of laser radiation for different conditions and schemes of a laser simulation experiment in comparison with real processes in the chambers of thermal machines due to the contacts of the working substances with their surface. The subject of this consideration is related to the fact that in laser schemes one can relatively easily and in a controlled manner to study their topology in various modifications (in the range of 0D–3D structures formed on surfaces of various geometric shapes of the fractal type). This provides great opportunities for studying various frequently occurring undesirable random defects and inhomogeneities of  complex configuration with the development of unexpected processes in the dynamic modes of operation of various types of power units in their actual operation. This is determined by geometric analysis within the framework of the correspondding non-linear models with different  non-linear fractal images. In this aspect, we have used two models to consider the development of emerging fractal fractured structures: first, diffusion propagation/growth of cracks of different geometry with a set of local segments and fragments in different directions; secondly, with diffusely limited aggregation of their distribution (Diffusion-Limited Aggregation – DLA) using the formalism of cellular automata in percolation approximation for different algorithms for the formation of fractal structures. We present only the final results of calculations without details of their procedure, which is sufficient for a visual and qualitative determination of the process of growth of fracturing and defects. In this case, the final goal of consideration is to study the emergence of possible and controllable local areas / collectors, starting from surface structures, and their association with real objects on the surface of chambers with a working substance in power systems. The possible practical significance of such modeling and analysis is discussed to forecast their working conditions.
火电机组分形结构及腔室缺陷产生与发展的建模过程第2部分
本文描述了模型研究的进一步发展,目的是将在不同条件和方案的激光模拟实验中,在激光辐射作用下,各种物体表面可能出现的不均匀性和分形型缺陷与热机腔室中由于工作物质与其表面接触而产生的实际过程进行比较。这种考虑的主题与这样一个事实有关,即在激光方案中,人们可以相对容易地以可控的方式研究其各种修改的拓扑结构(在分形类型的各种几何形状的表面上形成的0D-3D结构范围内)。这为研究各种类型的动力机组在实际运行中动态运行模式中出现的意外过程而经常出现的各种不良随机缺陷和复杂构型的不均匀性提供了很大的机会。这是通过不同的非线性分形图像在相应的非线性模型框架内的几何分析确定的。在这方面,我们使用了两个模型来考虑新兴的分形断裂结构的发展:第一,不同几何形状的裂纹的扩散扩展/扩展,具有一组不同方向的局部片段和碎片;其次,用扩散有限聚集的方式对其分布(Diffusion-Limited aggregation - DLA)进行分析,利用元胞自动机的形式在渗流近似中对不同的算法进行分形结构的形成。我们只给出了计算的最终结果,而没有给出计算过程的细节,这足以直观和定性地确定裂缝和缺陷的生长过程。在这种情况下,考虑的最终目标是研究可能的和可控的局部区域/集热器的出现,从表面结构开始,以及它们与电力系统中具有工作物质的腔室表面上的实际物体的关联。讨论了这种建模和分析对预测其工作状态可能具有的现实意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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