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Hydrodynamic Analogy to Special Relativity

机译:狭义相对论的流体动力学模拟

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By studying of a slender body moving in a fluid wave-medium, e.g., in air or in shallow water, it was found that the hydrodynamic momentum mass and the total energy of the fluid field can be expressed in forms of and E=mc2, where v is the body moving speed, c is the wave speed and is the hydrodynamic mass at the zero speed. Thus a hydrodynamic analogy to the relativistic particle motion in vacuum can be traced. The velocity dependence of mass and the mass-energy equivalence are universal for any wave medium, which should not be regarded as a consequence of relative Lorentz time-space, but one of the existence of wave in the medium. Its further inference leads to an even more significant physical picture. If the mass particle moves in an unbounded space at a supercritical speed, i.e. , waves are generated and radiated from it, like the Mach waves by the supersonic plane, and the particle itself experiences a resistance as reaction from the wave radiation. By an extension of this analogy, it can be interred from a hydrodynamic superconductive phenomenon that particles or waves can move possibly at a superluminal speed without experiencing any resistance through a tunnel (a bounded space) under certain conditions. Therefore the speed of light is not the limit of our physical world and superluminal phenomena are possible.
机译:通过研究细长体在流体波介质中(例如在空气或浅水中)的运动,发现流体动量质量和流场的总能量可以表示为,且E = mc2,其中v是人体移动速度,c是波速,是零速度时的流体动力质量。因此,可以追踪到类似于真空中相对论粒子运动的流体力学。质量的速度依赖性和质量-能量当量对于任何波动介质都是通用的,不应将其视为相对洛伦兹时空的结果,而应视为介质中波动的存在之一。它的进一步推论导致了更为显着的物理图景。如果质量粒子以超临界速度在无界空间中移动,即会产生超声波并从中辐射出来,就像超音速平面上的马赫波一样,并且粒子本身会受到来自波辐射的反应的阻力。通过类推的扩展,可以从流体动力学超导现象中推断出,在某些条件下,粒子或波可能以超光速运动,而不会通过隧道(有限空间)受到任何阻力。因此,光速不是我们物理世界的极限,并且超光速现象是可能的。

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