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Original Articles

A New Moment Method for Solving the Coagulation Equation for Particles in Brownian Motion

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Pages 705-713 | Received 22 Nov 2007, Accepted 27 May 2008, Published online: 22 Aug 2008
 

Abstract

A new numerical approach for solving coagulation equation, TEMOM model, is first presented. In this model, the closure of the moment equations is approached using the Taylor-series expansion technique. Through constructing a system of three first-order ordinary differential equations, the most important indexes for describing aerosol dynamics, including particle number density, particle mass and geometric standard deviation, are easily obtained. This approach has no prior requirement for particle size spectrum, and the limitation existing in the log-normal distribution theory automatically disappears. This new approach is tested by comparing it with known accurate solutions both in the free molecular and the continuum regime. The results show that this new approach can be used to solve the particle general dynamic equation undergoing Brownian coagulation with sufficient accuracy, while less computational cost is needed.

Acknowledgments

We would like to acknowledge the financial supported by the Major Program of the National Natural Science Foundation of China (Grant No. 10632070).

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