author_facet He, Qing
Li, Jin
Kong, Tingting
Xie, Mingliang
He, Qing
Li, Jin
Kong, Tingting
Xie, Mingliang
author He, Qing
Li, Jin
Kong, Tingting
Xie, Mingliang
spellingShingle He, Qing
Li, Jin
Kong, Tingting
Xie, Mingliang
Thermal Science
A bimodal temom model for particle Brownian coagulation in the continuum-slip regime
Renewable Energy, Sustainability and the Environment
author_sort he, qing
spelling He, Qing Li, Jin Kong, Tingting Xie, Mingliang 0354-9836 2334-7163 National Library of Serbia Renewable Energy, Sustainability and the Environment http://dx.doi.org/10.2298/tsci1603927h <jats:p>In this paper, a bimodal Taylor-series expansion moment of method is proposed to deal with Brownian coagulation in the continuum-slip regime, where the non-linear terms in the Cunningham correction factor is approximated by Taylor-series expansion technology. The results show that both the number concentration and volume fraction decrease with time in the smaller mode due to the intra and inter coagulation, and the asymptotic behavior of the larger mode is as same as that in the continuum regime.</jats:p> A bimodal temom model for particle Brownian coagulation in the continuum-slip regime Thermal Science
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title A bimodal temom model for particle Brownian coagulation in the continuum-slip regime
title_unstemmed A bimodal temom model for particle Brownian coagulation in the continuum-slip regime
title_full A bimodal temom model for particle Brownian coagulation in the continuum-slip regime
title_fullStr A bimodal temom model for particle Brownian coagulation in the continuum-slip regime
title_full_unstemmed A bimodal temom model for particle Brownian coagulation in the continuum-slip regime
title_short A bimodal temom model for particle Brownian coagulation in the continuum-slip regime
title_sort a bimodal temom model for particle brownian coagulation in the continuum-slip regime
topic Renewable Energy, Sustainability and the Environment
url http://dx.doi.org/10.2298/tsci1603927h
publishDate 2016
physical 927-932
description <jats:p>In this paper, a bimodal Taylor-series expansion moment of method is proposed to deal with Brownian coagulation in the continuum-slip regime, where the non-linear terms in the Cunningham correction factor is approximated by Taylor-series expansion technology. The results show that both the number concentration and volume fraction decrease with time in the smaller mode due to the intra and inter coagulation, and the asymptotic behavior of the larger mode is as same as that in the continuum regime.</jats:p>
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author He, Qing, Li, Jin, Kong, Tingting, Xie, Mingliang
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description <jats:p>In this paper, a bimodal Taylor-series expansion moment of method is proposed to deal with Brownian coagulation in the continuum-slip regime, where the non-linear terms in the Cunningham correction factor is approximated by Taylor-series expansion technology. The results show that both the number concentration and volume fraction decrease with time in the smaller mode due to the intra and inter coagulation, and the asymptotic behavior of the larger mode is as same as that in the continuum regime.</jats:p>
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imprint_str_mv National Library of Serbia, 2016
institution DE-Ch1, DE-L229, DE-D275, DE-Bn3, DE-Brt1, DE-Zwi2, DE-D161, DE-Gla1, DE-Zi4, DE-15, DE-Pl11, DE-Rs1, DE-105, DE-14
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spelling He, Qing Li, Jin Kong, Tingting Xie, Mingliang 0354-9836 2334-7163 National Library of Serbia Renewable Energy, Sustainability and the Environment http://dx.doi.org/10.2298/tsci1603927h <jats:p>In this paper, a bimodal Taylor-series expansion moment of method is proposed to deal with Brownian coagulation in the continuum-slip regime, where the non-linear terms in the Cunningham correction factor is approximated by Taylor-series expansion technology. The results show that both the number concentration and volume fraction decrease with time in the smaller mode due to the intra and inter coagulation, and the asymptotic behavior of the larger mode is as same as that in the continuum regime.</jats:p> A bimodal temom model for particle Brownian coagulation in the continuum-slip regime Thermal Science
spellingShingle He, Qing, Li, Jin, Kong, Tingting, Xie, Mingliang, Thermal Science, A bimodal temom model for particle Brownian coagulation in the continuum-slip regime, Renewable Energy, Sustainability and the Environment
title A bimodal temom model for particle Brownian coagulation in the continuum-slip regime
title_full A bimodal temom model for particle Brownian coagulation in the continuum-slip regime
title_fullStr A bimodal temom model for particle Brownian coagulation in the continuum-slip regime
title_full_unstemmed A bimodal temom model for particle Brownian coagulation in the continuum-slip regime
title_short A bimodal temom model for particle Brownian coagulation in the continuum-slip regime
title_sort a bimodal temom model for particle brownian coagulation in the continuum-slip regime
title_unstemmed A bimodal temom model for particle Brownian coagulation in the continuum-slip regime
topic Renewable Energy, Sustainability and the Environment
url http://dx.doi.org/10.2298/tsci1603927h