高温非平衡原子-原子碰撞能量转移

Xiaorui Zhao, Xuefei Xu, Haitao Xu
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摘要

分子与另一分子碰撞后,分子内部振动能量的变化对分子内能分布的演变起着至关重要的作用,这也是气体向平衡弛豫的限制过程。在这里,我们研究了硅藻在硅藻-硅藻碰撞过程中平移运动和振动运动之间的能量转移,这是涉及分子间能量和分子内能量转移的最简单情况。我们感兴趣的是气体平移温度较高时的情况,在这种情况下,碰撞后振动能量在广泛分离的能级上发生变化的概率很大。用(textit{ab initio}势能对 N+N$_2$ 系统进行的准经典轨迹模拟数据表明,过渡概率对碰撞能量的依赖具有 "激活-饱和 "行为,可以用一个简单的模型来描述。该模型允许明确评估振动状态到状态的转变速率系数,由此可通过主方程方法求解从任何初始条件开始的振动能量分布演变。以模拟高超音速气流中强冲击后的气体为例,展示了 N+N$_2$ 系统中的振动能量弛豫,结果与现有数据非常吻合。
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High-Temperature Non-Equilibrium Atom-Diatom Collisional Energy Transfer
The change of the vibrational energy within a molecule after collisions with another molecule plays an essential role in the evolution of molecular internal energy distributions, which is also the limiting process in the relaxation of the gas towards equilibrium. Here we investigate the energy transfer between the translational motion and the vibrational motion of the diatom during the atom-diatom collision, the simplest case involving the transfer between inter-molecular and intra-molecular energies. We are interested in the situation when the translational temperature of the gas is high, in which case there are significant probabilities for the vibrational energy to change over widely separated energy levels after a collision. Data from quasi-classical trajectory simulations of the N+N$_2$ system with \textit{ab initio} potential energies suggest that the transition probability dependence on the collisional energy possesses an ``activation-saturation'' behavior and can be described by a simple model. The model allows for explicit evaluation of the vibrational state-to-state transition rate coefficients, from which the evolution of the vibrational energy distribution from any initial conditions can be solved by the master equation approach. An example of the vibrational energy relaxation in the N+N$_2$ system mimicking the gas behind strong shocks in a hypersonic flow is shown and the results are in good agreement with available data.
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