...
【24h】

Evaluation of the Fractal Properties of Cluster-Cluster Aggregates

机译:簇簇聚集体的分形特性评估

获取原文
获取原文并翻译 | 示例

摘要

While the fractal dimension of cluster-cluster aggregates, D_f, appears to be a well-established property, the fractal prefactor, k_g (also known as structural coefficient), continues to exhibit a large reange of possible values. In the present paper, an attempt is made to clarify this issue which leads to conclusive results concerning the value to adopt for the fractal prefactor of simulated aggregates. Starting from a large population of "free" numerically simulated aggregates (i.e., where no restrictions to aggregate fromation were imposed) the fractal properties obtained were estimated both using morphological concepts as wellas light scattering theories. Furthermore, studies for aggregates having predefined morphological k_g values (anmely, k_g > 2 and ca. 1) were also performed in order to check the viability of these values. The results obtained for the three different populations of aggregates considered were used to infer, through a best-fit analysis, the fractal properties. Our best estimates are k_g approx= 1.27 and D_f approx= 1.82, which are approximately independent of aggregate size and composition. These results are in very god agreement with numerical preications reported by previous authors. However, experimental results systematically indicate k_g > 2. This motivated the present authors to identify possible reasons for these large discrepancies. Present calculations indicate that partial sintering in conjuction with the polydispersity of aggregates (resulting in a cut-off function coefficient, k_p, > 1) contributes to a systematic increase in k_g, possibly justifying the differences between numerical and experimental results.
机译:尽管簇簇聚集体的分形维数D_f似乎是公认的属性,但分形预因子k_g(也称为结构系数)继续表现出较大的可能值范围。在本文中,试图澄清这个问题,导致关于模拟集料的分形因子的取值的结论性结论。从大量的“自由”数值模拟聚集体开始(即没有对聚集体施加任何限制),使用形态学概念以及光散射理论对获得的分形特性进行了估计。此外,还对具有预定形态k_g值(稀有,k_g> 2和约1)的聚集体进行了研究,以检查这些值的可行性。通过最佳拟合分析,从三个不同的聚集体总体中获得的结果用于推断分形性质。我们的最佳估计值是k_g大约= 1.27和D_f大约= 1.82,这大约与聚合大小和组成无关。这些结果与以前的作者报道的数字谓词非常吻合。然而,实验结果系统地表明k_g>2。这促使本作者确定这些大差异的可能原因。目前的计算表明,部分烧结与聚集体的多分散性(导致临界函数系数k_p,> 1)共同导致k_g的系统增加,可能证明了数值结果与实验结果之间的差异。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号