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Simple Surface-Tracking Methods for Grain Burnback Analysis

机译:简单的表面跟踪方法进行晶粒回火分析

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摘要

Practical surface-tracking methods are successfully developed to simulate the evolution of the grain geometry, which is dynamically regressing during the combustion of the solid propellant. Three methods, namely the front-tracking, emanating-ray, and least-distance methods, are proposed. The front-tracking method is based on the Lagrangian approach, whereas both the emanating-ray and the least-distance methods are formulated from the Eulerian viewpoint. Three two-dimensional test cases have been examined to compare the programming complexity, simulation accuracy, and computational efficiency of the proposed methods. It is found that the least-distance method performs superior to the other two methods in many numerical respects. The least-distance method is implemented on the tetrahedron grid system to track the outwardly regressing surface of a three-dimensional cubical propellant. Comparison between the predicted erosive volume and burning surface area with the theoretical results yields satisfactory agreement A grain design similar to one of the Falcon Launch Ⅴ cases has been employed to demonstrate the usefulness of the proposed methodology in application to a practical three-dimensional grain burnback analysis.
机译:成功开发了实用的表面跟踪方法来模拟晶粒几何形状的演变,该变化在固体推进剂燃烧过程中会动态回归。提出了三种方法,即前跟踪,放射线和最小距离方法。前跟踪方法基于拉格朗日方法,而发散射线方法和最小距离方法都是从欧拉观点出发制定的。已经研究了三个二维测试用例,以比较所提出方法的编程复杂性,仿真准确性和计算效率。发现在许多数值方面,最小距离方法的性能优于其他两种方法。在四面体网格系统上实现了最小距离方法,以跟踪三维立方推进剂的向外退回表面。预测的侵蚀量和燃烧表面积与理论结果的比较得出令人满意的一致性。采用类似于Falcon LaunchⅤ案例之一的晶粒设计,证明了所提出的方法在实际的三维晶粒回火中的应用。分析。

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  • 来源
    《Journal of propulsion and power》 |2015年第5期|1436-1444|共9页
  • 作者单位

    National Kaohsiung Marine University, Kaohsiung City 80543, Taiwan, Republic of China;

    Ⅰ-Shou University, Kaohsiung City 84001, Taiwan, Republic of China;

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  • 正文语种 eng
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