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Direct Numerical Simulation of Boron Particle Agglomeration in Combustion of Boron-Containing Solid Propellants

机译:含硼固体推进剂燃烧中硼粒子团聚的直接数值模拟

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摘要

The available experimental data on boron particles agglomeration during combustion of boron-containing solid propellants and a mechanism of the boron particles agglomeration are discussed. The model and the method of direct numerical simulation of the boron particles agglomeration have been suggested and developed. The calculation consists of two stages: the first stage is a simulation of a heterogeneous structure of solid propellant; the second stage is a calculation of a behavior of each boron particle, taking into account its interaction with other particles and with flow of gaseous combustion products of solid propellant. A mechanism of the adhesive bonds between the boron particles is suggested and the criterion of conglomerate detachment from the burning surface has been determined. The dependence of the strength of the adhesive bonds between the boron particles on the propellant burning rate and pressure is analyzed. The calculations of the boron particles agglomeration, which demonstrates the effect of the strength of adhesive bonds between boron particles on the intensity of agglomeration, have been carried out.
机译:讨论了含硼固体推进剂燃烧过程中硼颗粒团聚的可用实验数据以及硼颗粒团聚的机理。提出并开发了硼颗粒团聚的直接数值模拟模型和方法。该计算包括两个阶段:第一阶段是对固体推进剂异质结构的模拟;第二阶段是计算每个硼粒子的行为,并考虑到它与其他粒子的相互作用以及固体推进剂的气态燃烧产物的流动。提出了硼颗粒之间的粘结机制,并确定了团块从燃烧表面脱离的标准。分析了硼颗粒之间的粘结强度对推进剂燃烧速率和压力的依赖性。进行了硼颗粒附聚的计算,该计算证明了硼颗粒之间的粘结强度对附聚强度的影响。

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