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Numerical Analysis on Combustion Process of Simplified Composite Solid Propellant Based on BDP Multi-Flames Model

机译:基于BDP多火焰模型的简化复合固体推进剂燃烧过程数值分析。

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摘要

Being against with the heterogeneous structure of composite solid propellant in meso-scale, this paper, first, introduces the idea of heterogeneous propellant unit”, second, applies multi-steps chemical reaction dynamics mechanism based on the BDP theoretic combustion model, finally, establishes the combustion-flow government equations of sandwich propellant model. Throughout numerical analysis, the effect and reasons about the variation of flame structure, burning surface geometry profile as well as burning rate with different ambient pressure and propellant stoichiometric (HTPB width) are discussed. Comparing with some other literatures, the computational results prove that the model is valid. The simulation result about the combustion process of sandwich propellant model is capable to capture meso-structure of combustion flames and offer the information about the combustion field in detail. The results can be used to verify or improve theoretic combustion model, and then offers a meaningful numerical model and research technique to investigate the macro combustion performance of heterogeneous propellant from meso-scale.
机译:针对中型复合固体推进剂的异质结构,本文首先介绍了“异质推进剂单元的思想”,其次,基于BDP理论燃烧模型,应用了多步化学反应动力学机制,最后建立了夹心推进剂模型的燃烧流控制方程。通过数值分析,讨论了在不同环境压力和推进剂化学计量比(HTPB宽度)下,火焰结构,燃烧表面几何形状轮廓以及燃烧速率变化的影响和原因。与其他一些文献比较,计算结果证明该模型是有效的。三明治推进剂模型燃烧过程的仿真结果能够捕获燃烧火焰的细观结构,并提供有关燃烧场的详细信息。研究结果可用于验证或改进理论燃烧模型,然后提供有意义的数值模型和研究技术,从中尺度研究非均质推进剂的宏观燃烧性能。

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