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Volume 11, Issue 1
Global Existence of Supersonic Flow Past a Curved Convex Wedge

Shuxing Chen

J. Part. Diff. Eq., 11 (1998), pp. 73-82.

Published online: 1998-11

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  • Abstract
In this paper we discuss the supersonic flow past a curved convex wedge. Our conclusion is that if the vertex angle of the wedge is less than a critical angle, the shock attached the head of the wedge is weak, and if the wedge is formed by a smooth convex curve, monotonically increasing, then the global solution of such a boundary value problem exists.
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@Article{JPDE-11-73, author = {}, title = {Global Existence of Supersonic Flow Past a Curved Convex Wedge}, journal = {Journal of Partial Differential Equations}, year = {1998}, volume = {11}, number = {1}, pages = {73--82}, abstract = { In this paper we discuss the supersonic flow past a curved convex wedge. Our conclusion is that if the vertex angle of the wedge is less than a critical angle, the shock attached the head of the wedge is weak, and if the wedge is formed by a smooth convex curve, monotonically increasing, then the global solution of such a boundary value problem exists.}, issn = {2079-732X}, doi = {https://doi.org/}, url = {http://global-sci.org/intro/article_detail/jpde/5556.html} }
TY - JOUR T1 - Global Existence of Supersonic Flow Past a Curved Convex Wedge JO - Journal of Partial Differential Equations VL - 1 SP - 73 EP - 82 PY - 1998 DA - 1998/11 SN - 11 DO - http://doi.org/ UR - https://global-sci.org/intro/article_detail/jpde/5556.html KW - Global existence KW - supersonic flow KW - quasilinear hyperbolic system AB - In this paper we discuss the supersonic flow past a curved convex wedge. Our conclusion is that if the vertex angle of the wedge is less than a critical angle, the shock attached the head of the wedge is weak, and if the wedge is formed by a smooth convex curve, monotonically increasing, then the global solution of such a boundary value problem exists.
Shuxing Chen . (2019). Global Existence of Supersonic Flow Past a Curved Convex Wedge. Journal of Partial Differential Equations. 11 (1). 73-82. doi:
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