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New conservation laws of helically symmetric, plane and rotationally symmetric viscous and inviscid flows

机译:螺旋对称,平面和旋转对称的粘性和无粘性流的新守恒定律

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摘要

Helically invariant reductions due to a reduced set of independent variables(t, r, ξ)withξ = az+ b emerging from a cylindrical coordinate system of viscous and inviscid time-dependent fluid flow equations, with all three velocity components generally non-zero, are considered in primitive variables and in the vorticity formulation. Full sets of equations are derived. Local conservation laws of helically invariant systems are systematically sought through the direct construction method. Various new sets of conservation laws for both inviscid and viscous flows, including families that involve arbitrary functions, are derived. For both Euler and Navier-Stokes flows, infinite sets of vorticity-related conservation laws are derived. In particular, for Euler flows, we obtain a family of conserved quantities that generalize helicity. The special case of two-component flows, with zero velocity component in the invariant direction, is additionally considered, and special conserved quantities that hold for such flows are computed. In particular, it is shown that the well-known infinite set of generalized enstrophy conservation laws that holds for plane flows also holds for the general two-component helically invariant flows and for axisymmetric two-component flows.
机译:由于粘性和不依赖时间的流体流动方程的圆柱坐标系中出现的独立变量(t,r,ξ)的集合减少而导致的螺旋不变性减小,其中ξ= az + b,所有三个速度分量通常都不为零在原始变量和涡度公式中考虑。导出全套方程。螺旋不变系统的局部守恒律是通过直接构造方法系统地寻求的。得出了各种新的关于粘性流体和粘性流体的守恒定律,包括涉及任意功能的家庭。对于Euler流和Navier-Stokes流,都导出了与涡度相关的守恒律的无穷集合。特别地,对于欧拉流,我们获得了一系列守恒的广义螺旋度。此外,还考虑了在恒定方向上速度分量为零的两成分流的特殊情况,并计算了对于此类流保持的特殊守恒量。特别地,表明了适用于平面流的众所周知的无限广义广义熵守恒定律也适用于一般的两分量螺旋不变流和轴对称二分量流。

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