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Collision dynamics of large water clusters

机译:大型水团的碰撞动力学

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Classical trajectory calculations of (H2O)(n)+(H2O)(n) collisions are carried out for n=125 and n = 1000. We investigate energy redistribution and fragmentation behavior for relative collision velocities up to 3000 ms(-1), impact parameters up to 4 nm, and initial cluster temperatures of 160 and 300 K. Three main scattering channels are identified; coalescence, stretching separation, and shattering collisions. For small impact parameters, low collision velocities produce coalesced clusters while high velocities yield shattering behavior. Large impact parameters combined with high velocities result in stretching separation collisions. A decreased internal temperature influences the dynamics by increasing the stability of the collision complex. The results for (H2O)(125) and (H2O)(1000) are comparable, although the smaller size allows individual molecules to have a larger influence on the overall behavior. We find good agreement between the cluster simulations and experimental data for water drops in the micrometer range concerning the transition between coalescence and stretching separation, which shows that the clusters in some respects resemble "macroscopic" objects. (C) 1998 American Institute of Physics. [References: 33]
机译:对(n)125和n = 1000进行(H2O)(n)+(H2O)(n)碰撞的经典轨迹计算。我们研究了高达3000 ms(-1)的相对碰撞速度的能量重新分布和破碎行为。冲击参数最高达4 nm,初始团簇温度分别为160和300K。合并,拉伸分离和破碎的碰撞。对于较小的冲击参数,低的碰撞速度会产生聚结的簇,而高的速度会产生破碎行为。较大的冲击参数和较高的速度会导致拉伸分离碰撞。降低的内部温度通过增加碰撞复合物的稳定性来影响动力学。 (H2O)(125)和(H2O)(1000)的结果是可比较的,尽管较小的尺寸允许单个分子对整体行为产生较大的影响。我们发现,在微米范围内的水滴的聚类模拟与实验数据之间关于聚结和拉伸分离之间的过渡具有良好的一致性,这表明聚类在某些方面类似于“宏观”物体。 (C)1998美国物理研究所。 [参考:33]

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