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OVSYANNIKOV VORTEX IN RELATIVISTIC HYDRODYNAMICS

机译:OVSYANNIKOV涡在相对论水动力学中的作用

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摘要

The exact solution of the Euler equations of relativistic hydrodynamics of an compressible fluida relativistic analog of the Ovsyannikov vortex (singular vortex) in the classical gas dynamicswas found and investigated. A theorem was proved which shows that the factor system can be represented as a union of a noninvariant subsystem for the function defining the deviation of the velocity vector from the meridian and an invariant subsystem for the function defining thermodynamic parameters, the Lorentz factor, and the radial component of the velocity vector. Compatibility conditions of the overdetermined noninvariant system were obtained. The stationary solution was studied in detail. It was proved that the invariant subsystem reduces to an implicit differential equation. The branching manifold of the solutions of this equations was studied, and many singular points were found. It is proved that there exist two flow regimes, i.e., the solutions describing the vortex source of a relativistic gas, was proved. One of these solutions is defined only at a finite distance from the source, and the other is an analog of supersonic gas flow from the surface of a sphere.
机译:找到并研究了可压缩流体相对论流体力学的欧拉方程的精确解,并研究了经典气体动力学中的Ovsyannikov涡旋(奇异涡旋)的相对论性。证明了一个定理,该定理表明因子系统可以表示为用于定义速度向量与子午线偏差的函数的不变子系统的联合,以及用于定义热力学参数,洛伦兹因子和函数的不变子系统的联合。速度矢量的径向分量。获得了超定不变系统的相容条件。对固定解进行了详细研究。证明了不变子系统归结为一个隐式微分方程。研究了该方程解的分支流形,并发现了许多奇异点。证明存在两种流动形式,即,证明了描述相对论气体涡旋源的解。这些解决方案中的一种仅在距源极有限的距离处定义,另一种是从球体表面超音速气流的模拟。

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