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首页> 外文期刊>Journal of Aerosol Science >A Brownian dynamics simulation method for analyzing particle behavior in nonuniform and alternating electric fields
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A Brownian dynamics simulation method for analyzing particle behavior in nonuniform and alternating electric fields

机译:用于分析非均匀和交变电场中颗粒行为的布朗动力学模拟方法

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A new iterative Brownian dynamics simulation (BDS) method for analyzing the diffusive behavior of particles in an alternating electric field is proposed and tested in comparison with several previous techniques,including the most widely used BDS method developed by Ermak.To evaluate the proposed method with other schemes,particle trajectories in constant,AC,nonuniform DC in DMA,and quadrupole electric fields were obtained from each algorithm with various integration time steps.It is shown that the proposed BDS method is much more accurate at predicting the mean and variance of particle position for most cases.With respect to algorithm efficiency,the new scheme is about 5-50 times more efficient than the conventional BDS method for high-frequency AC electric fields.The simulation results for a particle beam generated in a quadrupole electric field show that the selection of a suitable algorithm and the proper size of time step are important for calculating system properties related to the diffusive motion of particles.In addition,a correction to the stochastic term is suggested and its effect investigated.
机译:提出了一种新的迭代布朗动力学模拟(BDS)方法,用于分析交变电场中粒子的扩散行为,并与包括Ermak开发的最广泛使用的BDS方法在内的几种先前技术进行了比较。通过不同积分时间步长的每种算法,分别获得了其他方案,常数,AC,DMA中非均匀DC的粒子轨迹以及四极电场。结果表明,所提出的BDS方法在预测粒子均值和方差方面更加准确就算法效率而言,新方案的效率是传统BDS方法在高频交流电场下的效率的约5-50倍。在四极电场中产生的粒子束的仿真结果表明:选择合适的算法和适当的时间步长对于计算与t相关的系统属性很重要此外,还提出了对随机项的修正,并研究了其影响。

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