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INFLUENCE OF THE DISSIPATIVE PROPERTIES OF AQUEOUS FOAM ON THE DYNAMICS OF SHOCK WAVES
Journal of Applied Mechanics and Technical Physics ( IF 0.5 ) Pub Date : 2020-07-01 , DOI: 10.1134/s0021894420040021
R. Kh. Bolotnova , E. F. Gainullina

Shock-wave (SW) propagation in an aqueous foam layer is investigated using new published experimental data with visualization of the dynamics of the volumetric liquid content of the foam under SW impact. A mathematical model has been developed that describes the behavior of the foam as a non-Newtonian fluid taking into account the effective Herschel–Bulkley viscosity, interfacial heat transfer processes according to the Ranz–Marshall model, and realistic equations of state describing the thermodynamic properties of aqueous foam components. The model is numerically implemented in the solver that we developed using the OpenFOAM package. The influence of the behavior of the aqueous foam on the SW evolution is analyzed.

中文翻译:

水性泡沫的耗散特性对冲击波动力学的影响

使用新发表的实验数据研究了冲击波 (SW) 在水性泡沫层中的传播,并可视化了在 SW 冲击下泡沫的体积液体含量的动态。已经开发了一个数学模型,该模型将泡沫作为非牛顿流体的行为描述为考虑到有效 Herschel-Bulkley 粘度、根据 Ranz-Marshall 模型的界面传热过程以及描述热力学性质的实际状态方程水性泡沫成分。该模型在我们使用 OpenFOAM 包开发的求解器中以数值方式实现。分析了水性泡沫的行为对 SW 演化的影响。
更新日期:2020-07-01
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