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The gradient of potential vorticity, quaternions and an orthonormal frame for fluid particles

机译:流体粒子的潜在涡度,四元数和正交框架的梯度

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The gradient of potential vorticity (PV) is an important quantity because of the way PV (denoted as q) tends to accumulate locally in the oceans and atmospheres. Recent analysis has shown that the vector quantity B = ?q ?θ for the three-dimensional incompressible rotating Euler equations evolves according to the same stretching equation as for the vorticity and the magnetic field in magnetohydrodynamics. For example, it allows various analogies, such as stretching dynamics, helicity, superhelicity and cross helicity. In addition, using quaternionic analysis, the dynamics of the B-vector naturally allow the construction of an orthonormal frame attached to fluid particles; this is designated as a quaternion frame. The alignment dynamics of this frame are particularly relevant to the three-axis rotations that particles undergo as they traverse regions of a flow when the PV gradient ? q is large.
机译:潜在涡度(PV)的梯度非常重要,因为PV(表示为q)倾向于在海洋和大气中局部积累。最近的分析表明,三维不可压缩的旋转欧拉方程的矢量量B =?q?θ是根据与磁流体力学中的涡度和磁场相同的拉伸方程演化的。例如,它允许进行各种类比,例如拉伸动力学,螺旋度,超螺旋度和交叉螺旋度。另外,使用四元离子分析,B向量的动力学自然地允许构建附着于流体粒子的正交框架。这被指定为四元数框架。当PV梯度φ穿过粒子流时,该框架的对齐动力学与粒子经历的三轴旋转特别相关。 q大。

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