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首页> 外文期刊>American journal of physics >Irreversibility in an ideal fluid
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Irreversibility in an ideal fluid

机译:理想流体中的不可逆性

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When a real fluid is expelled quickly from a tube, it forms a jet separated from the surrounding fluid by a thin, turbulent layer. On the other hand, when the same fluid is sucked into the tube, it enters from all directions, forming a sink-like flow. We show that, even for the ideal flow described by the time-reversible Euler equation, an experimenter who only controls the pressure in a pump attached to the tube would see jets form in one direction exclusively. The asymmetry between outflow and inflow therefore does not depend on viscous dissipation, but rather on the experimenter’s limited control of initial and boundary conditions. This illustrates, in a rather different context from the usual one of thermal physics, how irreversibility may arise in systems whose microscopic dynamics are fully reversible.
机译:当从管道中快速排出真正的流体时,它会形成一股与周围流体隔开的射流,并由一薄层湍流层隔开。另一方面,当相同的流体被吸入管中时,它会从各个方向进入,形成类似水槽的流动。我们表明,即使对于时间可逆的欧拉方程式描述的理想流量,仅控制连接到管子上的泵中压力的实验人员也只能看到一个方向上的射流。因此,流出与流入之间的不对称性不取决于粘性耗散,而是取决于实验者对初始条件和边界条件的有限控制。这说明在与通常的热物理学大不相同的情况下,微观动力学是完全可逆的系统中如何出现不可逆性。

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