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Coupling micro and meso-scale combustion models of AP/HTPB propellants

机译:AP / HTPB推进剂的微观和中尺度燃烧模型耦合

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摘要

Combustion simulations at the micro and meso-scales are coupled to give a more theoretically based and accurate description of AP (ammonium perchlorate)/HTPB (hydroxyl-terminated polybutadiene) composite propellant combustion. One and two-dimensional micro-scale combustion models of AP and AP/ HTPB, which include detailed kinetics and species transport, are utilized to define semi-global kinetics for a meso-scale propellant combustion model capable of representing the complex morphology of an actual propellant. The AP/HTPB flame structure predicted with the micro-scale models is separated into four flames. Each flame is represented with a single reaction, thus a new four-step kinetic mechanism is implemented into the meso-scale model. Physical and kinetic parameters are determined with the micro-scale models. The meso-scale model is calibrated and validated with the micro-scale models to ensure the correct flame structure, as a function of pressure and AP particle sizes, is recreated with the four-step mechanism. The primary focus of this work is to outline the methodology used to couple the two numerical scales. Results of the meso-scale model are compared with the previous empirically-parameterized meso-scale model results and experimental data. Predictions are within 10% of experimental values for a range of AP/HTPB propellants.
机译:结合了微观和中尺度的燃烧模拟,可以对AP(高氯酸铵)/ HTPB(羟基封端的聚丁二烯)复合推进剂的燃烧进行理论上更准确的描述。 AP和AP / HTPB的一维和二维微尺度燃烧模型(包括详细的动力学和物质传输)用于定义能够代表实际复杂形态的中尺度推进剂燃烧模型的半全局动力学推进剂。用微尺度模型预测的AP / HTPB火焰结构分为四个火焰。每个火焰用一个反应表示,因此在介观模型中实现了新的四步动力学机制。物理和动力学参数由微型模型确定。用微尺度模型对中尺度模型进行校准和验证,以确保通过四步机制重建正确的火焰结构,作为压力和AP颗粒尺寸的函数。这项工作的主要重点是概述用于耦合两个数字量表的方法。将中尺度模型的结果与先前的经验参数化的中尺度模型结果和实验数据进行比较。对于一系列AP / HTPB推进剂,预测值在实验值的10%以内。

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