A free boundary value problem for the full Euler system and 2-D transonic shock in a large variable nozzle

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Abstract

In this paper, we establish the existence and uniqueness of a transonic shock solution to the full steady compressible Euler system in a class of de Laval nozzles with a large straight divergent part when a given variable exit pressure lies in a suitable range. Thus, for this class of nozzles, we have solved the transonic shock problem posed by Courant-Friedrichs in Section 147 of [5]. By introducing a new elaborate iteration scheme, we are able to solve this boundary value problem for a coupled elliptic-hyperbolic system with a free boundary without some stringent requirements in the previous studies. One of the key ingredients in this approach is to solve a boundary value problem for a first order linear system with nonlocal terms and a free parameter. © International Press 2009.

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Li, J., Xin, Z., & Yin, H. (2009). A free boundary value problem for the full Euler system and 2-D transonic shock in a large variable nozzle. Mathematical Research Letters, 16(5), 777–796. https://doi.org/10.4310/MRL.2009.v16.n5.a3

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