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Tytuł artykułu

Measurement methods of size and charge of charged aerosol particles

Identyfikatory
Warianty tytułu
Konferencja
"Modelling of Multiphase Flows in Thermo-Chemical Systems. Advanced Measurement Techniques" / sympozjum [5th; September 2nd - 4th, 2005; Stawiska near Gdansk, Poland]
Języki publikacji
EN
Abstrakty
EN
Charged aerosol particles arc used in many industrial processes, for example in chemical industries, agriculture, medicine, environment protection. In the applications in which aerosol particles are used it is very important to control their size and charge. A review of measurement methods for the size and charge of aerosol particles determination is presented in the paper. The methods of measurement of the size and charge of aerosol particles can be divided into two groups: contact methods and con-tactless methods. A separate group of methods for aerosol investigation comprises the devices for measurement of particles velocity, i.e. PIV {Particle Image Velocimetry), LDA (Laser Doppler Anemometry), PDA (Particic Dynamics Analysis). These methods can be helpful to define the size and charge of measured aerosol.
Rocznik
Tom
Strony
181--192
Opis fizyczny
Bibliogr. 23 poz.
Twórcy
autor
  • Institute of Fluid Flow Machinery of Polish Academy of Sciences, Fiszera 14, 80-952, Gdańsk Polad
autor
  • Institute of Fluid Flow Machinery of Polish Academy of Sciences, Fiszera 14, 80-952 Gdansk, Poland
Bibliografia
  • [1] Wells P.V., Gerke R.H., An oscillation method for measuring the size of ultramicroscopic particles, J. Am. Chem. Soc. 1919, 41, 312-329.
  • [2] Bayvel L., Orzechowski Z., Liquid atomization, Taylor & Francis 1993.
  • [3] Jaworek A., Wybrane zagadnienia diagnostyki naelektryzowanych aerozoli, Zeszyty Naukowe IMP PAN, 414/1352/93 (in Polish).
  • [4] Sem G.J., Daley P.S., Performance evaluation of a new piezoelectric aerosol sensor, Workshop of Aerosol Measurement, Florida 1979, 673-686.
  • [5] Wicks M., Dukler A., Proceedings of ASME Heat Transfer Conference, Vol. V, Chicago 1966, 39.
  • [6] Durkiewicz B., Adamkiewicz A., Kowalski J., Pomiar średnic kropel wody oraz określenie ich rozkładu w przepływie powietrza mgłowego, Zeszyty Naukowe Wyższej Szkoły Marynarki Wojennej 1980, 21, Nr 4/67 (in Polish).
  • [7] Jaworek A., Krupa A., Sonda kulowa do pomiaru ładunku naelektryzowanych kropli lub cząstek pyłu, Pomiary, Automatyka, Kontrola 1992, 38, 9, 201-203 (in Polish).
  • [8] Jaworek A., Krupa A., Charge detector for airborne particles, J. Electrostatics 1990, 25, 2, 185-199.
  • [9] Lackowski M., PhD thesis (in Polish).
  • [10] Laser Aerosol Particle Size Spectrometer, Topas, Dresden, Germany.
  • [11] Malvern Instruments Ltd., Malvern, Worcestershire, England.
  • [12] Swithenbank J., Beer J.M., Taylor D.S., Abbot D., McCreath G.C., A laser diagnostic technigue for the measurement of droplet and particle size distribution, Prog. Astron. Aeron. 1977, 53, 422-451.
  • [13] Katayama M., Murata Y., Simple apparatus for measurement of size and charge of particle in AC electric field, IEEE Ind. Appl. Soc. Annual Meeting, Rome, 8-12 October 2000.
  • [14] Lackowski M., Adamiak K., Jaworek A., Krupa A., Electrostatic charging of particulates by ionic current in alternating electric field, Powder Technol. 2003, 135-136, 243-249.
  • [15] Millikan R.A., A new modification of the cloud method of determinig the elementary electric charge and the most probable value of that charge, Philos. Mag. J. Sci. 1910, 19, 110, 209-28.
  • [16] Rohmann H., Methode zur Messung der Grosse von Schwebeteilchen, Z. Phys. 1923, 17, 4/5, 253-65.
  • [17] Gillespie T., Langstroth G.O., An instrument for determining the electric charge distribution in aerosols, Can. J. Chem. 1952, 30,1056-68.
  • [18] Gajewski J.B., Szaynok A., Charge measurement of dust particles in motion, J. Electrostatics 1984, 15, 81-92.
  • [19] Laser Doppler Anemometry, Dantec, Electronik, Skonvlunde, Denmark.
  • [20] Mizeraczyk J., Kocik M., Dekowski J., Dors M., Podliński J., Ohkubo T., Kanazawa S., Kawasaki T., Measurements of the velocity field of the flue gas flow in an electrostatic precipitator model using PIV method, J. Electrostatics 2001, 51-52.
  • [21] Laser Doppler Anemometry, Dantec, Electronik, Skonvlunde, Denmark.
  • [22] Particle Dynamic Analyzer, Dantec, Electronik, Skonvlunde, Denmark.
  • [23] Bachalo W.D., Houser M.J., Development of the Phase/Doppler Spray Analyser for Liquid Drop Size and Velocity, Proc. AIIA/SAE/ASME 20th Joint Propulsion Conference, Cincinnati 1984.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPP1-0076-0047
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