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An analysis on the velocity of dust particles in the plate-type electrostatic precipitators used in thermoelectric power plants

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Experimental data collected from different plate-type electrostatic precipitators used in a thermoelectric power plant has been analyzed. The following parameters were considered: the collection efficiency, average migration velocity of dust particles, velocity distribution of the gas in the input and output channels of precipitators. The average migration velocity of dust particles can be estimated using various mathematical models, and the gas velocity can be computed using the velocity distributions from the input channels of the precipitators. The traveling time of dust particles between the electrodes is smaller than the traveling time along the precipitator sections.
Rocznik
Strony
85--102
Opis fizyczny
Bibliogr. 25 poz., tab., rys.
Twórcy
autor
  • Department of Electrical Engineering and Industrial Informatics, Faculty of Engineering Hunedoara, Politehnica University of Timişoara, Revoluţiei str., 5, 331128, Hunedoara, Romania
autor
  • Electrical Engineering Department, Faculty of Electrical and Power Engineering, “Politehnica” University of Timişoara, Bd. Vasile Pârvan, no. 2, 300223, Timişoara, Romania
autor
  • Department of Electrical Engineering and Industrial Informatics, Faculty of Engineering Hunedoara, Politehnica University of Timişoara, Revoluţiei str., 5, 331128, Hunedoara, Romania
  • Department of Electrical Engineering and Industrial Informatics, Faculty of Engineering Hunedoara, Politehnica University of Timişoara, Revoluţiei str., 5, 331128, Hunedoara, Romania
Bibliografia
  • [1] PARKER K.R., Applied Electrostatic Precipitators, Chapman and Hall, London, UK, 1997.
  • [2] PARKER K.R., PLAKS N., Electrostatic Precipitator (ESP) Training Manual, United States Environmental Protection Agency, EPA-600/R-04-072, U.S.A., 2004.
  • [3] POPA G.N., VAIDA V., ABRUDEAN C., DEACONU S.I., POPA I., A Case Study of ESP Electrical Characteristics from a Thermal Power Station, IEEE 44th IAS Annual Meeting, Houston, Texas, U.S.A., October 4–8, 2009, 1–6.
  • [4] LAMI E., MATTACHINI F., SALA R., VIGL H., A Mathematical Model of Electrostatic Section in Wires- -Plate Electrostatic Precipitators, J. Electrostat., 1997, 39, 1–21.
  • [5] LOWLESS P.A., ESPVI 4.0. Electrostatic Precipitator V-I Performance Model-User’s Manual, Center for Aerosol Technology, Research Triangle Institute, Durham, NC, U.S.A., 1996.
  • [6] BRANC M., HORÁK J., OCHODEK T., Fine Particle Emissions from Combustion of Wood and Lignite in Small Furnaces, Environ. Prot. Eng., 37 (2), 2011, 123–132.
  • [7] BOGACKI M., OLENIACZ R., MAZUR M., KAMIŃSKI S., Real-Time Measurement of the Size of Air Particulates, Environ. Prot. Eng., 32 (3), 2006, 69–73.
  • [8] PIEKARSKA K., ZACIERA M., CZARNY A., ZACZYŃSKA E., Application of Short-Term Tests in Assessment of Atmospheric Air Pollution, Environ. Prot. Eng., 37 (2), 2011, 85–98.
  • [9] LÉGER L., MOREAU E., TOUCHARD G., Effect of a DC Corona Electrical Discharge on the Airflow Along a Flat Plate, IEEE T. Ind. Appl., 2002, 38 (6), 1478–1485.
  • [10] DURGA PRASAD N.V.P.R., LAKSHMINARAYANA T., NAROSIMHAM J.R.K., VERMAN T.M., KRISHNAM RAJU C.S.R., Automatic Control and Management of Electrostatic Precipitator, IEEE T. Ind. Appl., 1999, 35 (3), 561–567.
  • [11] POPA G.N., VAIDA V., DEACONU S.I., SORA I., An Analysis of the Optimal Fields Number of the Plate-Type Electrostatic Precipitators Used in Thermoelectric Power Plant, Optimization of Electrical and Electronic Equipment, IEEE OPTIM 2010, Moeciu-Bran, Braşov, Romania, May 20–22, 2012, 232–239.
  • [12] POPA G.N., Performances Improving Contributions for Some ESPs with Bi-Phasic Systems Gases –Solid Particles, Ph.D. dissertation, Electrotechnical Faculty, Politechnica University, Timişoara, Romania, 2004 (in Romanian).
  • [13] DEUTSCHW., Bewegung und Ledung der Elektricitatstrager in Zylinder Kondensator, Ann. Physik, 68, Leipzig, Germany, 1922, 335–344 (in German).
  • [14] MATTS S., ÖHNFELDT O.P., Efficient Gas Cleaning with the SF Electrostatic Precipitator, Flakten Rev., 6, 1963, 93–110.
  • [15] MACARIE R., Measuring for Establish the Collection Efficiency at Electrical Un-dusting Installation, Energetic Group, No. 1 from Thermoelectric Power Plant Mintia-Deva, Research project 2181-CPPM, S.C. ICPET S.A., Bucharest, Romania, 1996 (in Romanian).
  • [16] GLODEAN N., Operation Behaviour of ESP from Thermoelectric Power Plant Mintia-Deva, research project 3271/86, ICEMENERG, Bucharest, Romania, 1986 (in Romanian).
  • [17] MOȚIU C., Tests to Establish the Un-dusting Parameters of ESPs with Two Sections from Thermoelectric Power Plant Mintia-Deva, Research project ICSIT 2005-CE, ICEMENERG, Bucharest, Ro-mania, 1993 (in Romanian).
  • [18] HERLEA M., Operations Optimization of ESPs from Group No.4, with Three Sections, Research project 7815-2, S.C. ICPET S.A., Bucharest, Romania, 1998 (in Romanian).
  • [19] MACARIE R., Electrical Un-dusting Installation for Group No. 4, from Thermoelectric Power Plant Mintia-Deva, Research project 2131-CPPM, S.C. ICPET S.A., Bucharest, Romania, 1995 (in Romanian).
  • [20] MACARIE R., Measuring for Establish the Collection Efficiency at Electrical Un-dusting Installation, Energetic Group, No.5 from Thermoelectric Power Plant Mintia-Deva, Research project 2161-CPPM, S.C. ICPET S.A., Bucharest, Romania, 1996 (in Romanian).
  • [21] MACARIE R., Electrical Un-dusting Installation for Group No. 6, from Thermoelectric Power Plant Mintia-Deva, Research project 2130-CPPM, S.C. ICPET S.A., Bucharest, Romania, 1995 (in Romanian).
  • [22] HERLEA M., Operations Optimization of ESPs from Group No. 1, with Four Sections, Research project 7815-1, S.C. ICPET S.A., Bucharest, Romania, 1998 (in Romanian).
  • [23] MACARIE R., Measuring for Establish the Collection Efficiency at Electrical Un-dusting Installation, Energetic Group No. 1, IDE 1300000 m3 /h, from Thermoelectric Power Plant Mintia-Deva, Re-search project 2161-CPPM, S.C. ICPET S.A., Bucharest, Romania, 1996 (in Romanian).
  • [24] MACARIE R., Tests to Establish the Un-dusting Parameters IDE 1300000 m3 /h, Energetic Group No. 1 from Thermoelectric Power Plant Mintia-Deva, Research project 2162-CPPM-3, S.C. ICPET S.A., Bucharest, Romania, 1996 (in Romanian).
  • [25] POPA G.N., DEACONU S.I., POPA I., DINIŞ C.M., Experimental Analysis for Plate-Type Electrostatic Precipitators with Three Sections, Optimization of Electrical and Electronic Equipment, IEEE OPTIM 2012, Cheile Grădiştei, Braşov, Romania, May 24–26, 2012, 1274–1279.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-cda40fc7-2538-4222-b2a8-ed04bb3c5f4b
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