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Research of Pore Structure with Large Area Using Improved Octree Algorithm

机译:改进的Octree算法研究大面积孔隙结构

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This paper presents a development of the algorithm for combination of block-merge algorithm and octree algorithm. The memory insufficiency problem, which is caused by heaps of temporary variables when researching pore structure by octree algorithm, has been effectively solved. The pore structure information of cellular metallic material with large area has been extracted, which provides an important method for the study on the relationship between the structure of porous metal material and function. By applying this method to store more data with less memory, an effective and accurate result is achieved. This work would represent a significant advance for research of pore structure using improved octree algorithm.
机译:本文提出了一种将块合并算法和八叉树算法相结合的算法的发展。有效解决了由八叉树算法研究孔结构时由临时变量堆积引起的内存不足问题。提取了大面积多孔金属材料的孔结构信息,为研究多孔金属材料的结构与功能之间的关系提供了重要的手段。通过应用此方法以更少的内存存储更多的数据,可以实现有效而准确的结果。这项工作将代表使用改进的八叉树算法进行孔结构研究的重大进展。

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