Araştırma Makalesi

The Mathematical Modeling of the Charging and Deposition of Aerosol Particles in a Corona Field

Cilt: 4 Sayı: 2 30 Aralık 2021
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The Mathematical Modeling of the Charging and Deposition of Aerosol Particles in a Corona Field

Öz

In this study, we derive some mathematical expressions that allow us to determine the proportion of charged aerosol particles in the corona, as well as analyzed the conditions of deposition of charged particles uniformly distributed in the space between the discharge and collecting electrodes. The numerical implementation of this method confirms its acceptable accuracy compared to known methods in the literature. The obtained results indicate that, under suitable conditions, use of a corona field can be an alternative technique for cleaning and refining impure aerosol mixtures for desired purposes.

Anahtar Kelimeler

Kaynakça

  1. [1] Masuda S and Washizu M. 1979 Corona charging of a spherical particle having an extremly high resistivity.Charge Storage, Charge Transport and Electrostatics, with their Applications ed Wada et al (Amsterdam:Elsevier),p35
  2. [2] Fujishima H, Tomimatsu K, Matsumoto Y, Yakyu T and Nakayama Y,1988 Electrostatic presipitator with new energization system. Tech.Rev.Mitsubishi Heavy Indust.(25),pp.115-20
  3. [3] Kirsh A A and Zagnit’ko A V, 1990 Field charging of fine aerosol particle by uinipolar ions. Aerosol Sci.Technol.,(12),p.465
  4. [4] Adamiak K.1994 Simulation of corona in wire-dust electrostatic presipitator by means of the boundary element method. IEEE Trans.Indust. Appl.(30),pp.381-6
  5. [5] Lu C and Hungsung H, 1998 A sectional model to predict performance of a plate-wire electrostatic presipitator for collecting polydisperse particles. J.Aerosol Sci.,(29),pp.295-308
  6. [6] Aliyev (Alisoy), H. Z. Koksal M., Aksoy I. and Yakinci M. E. 1998 Charging and discharging of particles on the low potential electrode under bipolar corona condition J. Phys.D: Appl. Phys. (31), pp. 1723-27
  7. [7] C.A.P. Zevenhoven, Unipolar field charging of particles: effects of particle conductivity and rotation, J. Electrostatics 46 (1999)
  8. [8] Zhuang Y, Kim J Y, Lee G T and Biswas P. 2000 Experimental and theoretical studies of ultra-fine particle behavior in electrostatic presipitators. J. Electrostatics,(48),pp.245-60

Ayrıntılar

Birincil Dil

İngilizce

Konular

Mühendislik

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

30 Aralık 2021

Gönderilme Tarihi

10 Aralık 2021

Kabul Tarihi

22 Aralık 2021

Yayımlandığı Sayı

Yıl 2021 Cilt: 4 Sayı: 2

Kaynak Göster

APA
Alisoy, G., Öntürk, N., & Alisoy, H. (2021). The Mathematical Modeling of the Charging and Deposition of Aerosol Particles in a Corona Field. European Journal of Engineering and Applied Sciences, 4(2), 57-60. https://doi.org/10.55581/ejeas.1035282
AMA
1.Alisoy G, Öntürk N, Alisoy H. The Mathematical Modeling of the Charging and Deposition of Aerosol Particles in a Corona Field. EJEAS. 2021;4(2):57-60. doi:10.55581/ejeas.1035282
Chicago
Alisoy, Gülizar, Nurşen Öntürk, ve Hafiz Alisoy. 2021. “The Mathematical Modeling of the Charging and Deposition of Aerosol Particles in a Corona Field”. European Journal of Engineering and Applied Sciences 4 (2): 57-60. https://doi.org/10.55581/ejeas.1035282.
EndNote
Alisoy G, Öntürk N, Alisoy H (01 Aralık 2021) The Mathematical Modeling of the Charging and Deposition of Aerosol Particles in a Corona Field. European Journal of Engineering and Applied Sciences 4 2 57–60.
IEEE
[1]G. Alisoy, N. Öntürk, ve H. Alisoy, “The Mathematical Modeling of the Charging and Deposition of Aerosol Particles in a Corona Field”, EJEAS, c. 4, sy 2, ss. 57–60, Ara. 2021, doi: 10.55581/ejeas.1035282.
ISNAD
Alisoy, Gülizar - Öntürk, Nurşen - Alisoy, Hafiz. “The Mathematical Modeling of the Charging and Deposition of Aerosol Particles in a Corona Field”. European Journal of Engineering and Applied Sciences 4/2 (01 Aralık 2021): 57-60. https://doi.org/10.55581/ejeas.1035282.
JAMA
1.Alisoy G, Öntürk N, Alisoy H. The Mathematical Modeling of the Charging and Deposition of Aerosol Particles in a Corona Field. EJEAS. 2021;4:57–60.
MLA
Alisoy, Gülizar, vd. “The Mathematical Modeling of the Charging and Deposition of Aerosol Particles in a Corona Field”. European Journal of Engineering and Applied Sciences, c. 4, sy 2, Aralık 2021, ss. 57-60, doi:10.55581/ejeas.1035282.
Vancouver
1.Gülizar Alisoy, Nurşen Öntürk, Hafiz Alisoy. The Mathematical Modeling of the Charging and Deposition of Aerosol Particles in a Corona Field. EJEAS. 01 Aralık 2021;4(2):57-60. doi:10.55581/ejeas.1035282

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