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Negative energy standing wave instability in the presence of flow

机译:流量存在下的负能量驻波不稳定性

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We study standing waves on the surface of a tangential discontinuity in an incompressible plasma. The plasma is moving with constant velocity at one side of the discontinuity, while it is at rest at the other side. The moving plasma is ideal and the plasma at rest is viscous. We only consider the long wavelength limit where the viscous Reynolds number is large. A standing wave is a superposition of a forward and a backward wave. When the flow speed is between the critical speed and the Kelvin-Helmholtz threshold the backward wave is a negative energy wave, while the forward wave is always a positive energy wave. We show that viscosity causes the standing wave to grow. Its increment is equal to the difference between the negative energy wave increment and the positive energy wave decrement.
机译:我们研究了不可压缩等离子体中切向不连续性的静态波。 等离子体在不连续的一侧具有恒定速度,而在另一侧静止。 移动等离子体是理想的,静止的等离子体是粘性的。 我们只考虑粘性雷诺数大的长波长限制。 常设波是向前和向后波的叠加。 当流量速度在临界速度和Kelvin-Helmholtz阈值之间时,向后波是负能波,而前向波总是是正能量波。 我们表明粘度导致常设波生长。 其增量等于负能量波增量与正能波减量之间的差异。

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