Investigation of a trifold interaction mechanism of shock, vortex, and dust using a DG method in a two-fluid model framework

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초록

We investigate a trifold interaction mechanism of shock, vortex, and dust by solving the dusty Schardin's problem. A modal discontinuous Galerkin method was developed for solving the two-fluid model of the dusty gases. We focused on larger-scale wave patterns and smaller-scale vortexlets under the addition of dust particles. The dynamics of the shock-vortex interaction in a dusty medium was found substantially different from a pure gas equivalent. The main differences arc the acceleration or deceleration of the shock waves, and attenuation or diminishing of the slip lines. It was also demonstrated how the solid phase with various particulate loadings and particle diameters affects the dynamics of the vortexlets. Two different trends related to the transient formation and attenuation of the main vortex and vortexlets were identified. It was shown that the enstrophy behavior is directly affected by the diameter and particulate loading of particles that are seeded in the domain. (C) 2020 Elsevier B.V. All rights reserved.

키워드

Dusty gas; Two-fluid model; Shock-vortex interaction; Dust-vortexlet interaction; Discontinuous Galerkin; NUMERICAL-SIMULATION; SOUND GENERATION; PARTICLE DISPERSION; SOLID PARTICLES; KINETIC-THEORY; FLOW; WAVE; REFLECTION; TURBULENT; BEHAVIOR
제목
Investigation of a trifold interaction mechanism of shock, vortex, and dust using a DG method in a two-fluid model framework
저자
Ejtehadi, Omid; Rahimi, Amin; Myong, R. S.
DOI
10.1016/j.powtec.2020.07.041
발행일
2020-09
유형
Article
저널명
Powder Technology
권
374
페이지
121 ~ 138