Development of mathematical model of dust meter, high-accuracy invariant schemes

Authors

  • Александр Владимирович Вовна State Higher Educational Establishment «Donetsk National Technical University» Artema str., 58, Donetsk, Ukraine, 83001, Ukraine https://orcid.org/0000-0003-4433-7097
  • Дмитрий Григорьевич Корниенко National Technical University of Ukraine «Igor Sikorsky Kyiv Polytechnic Institute» Peremogy ave., 37, Kyiv, Ukraine, 03056, Ukraine
  • Владислав Филиппович Примиский Ltd "Avtoekopribor" Mezhigorskaya str., 82-A, Kyiv, Ukraine, 04080, Ukraine https://orcid.org/0000-0001-7220-1635

DOI:

https://doi.org/10.15587/2313-8416.2016.78148

Keywords:

concentration, dust, dispersion, distribution function, meter, model accuracy, invariant schema

Abstract

The model of the interaction between optical radiation with the polydisperse dust environment has been developed. The model helped to obtain the characteristic of spectral attenuation of optical radiation by polydisperse dust aerosol. For the measurement results correction it is proposed to use dual-beam method, which allows to recover the distribution function. The use of various structural and circuit design: invariant, two-channel, two-stroke, design elements usage allows to change the technical, metrological characteristics of dust meters over a wide measurement range, reducing the basic reduced error of measurement from 5% to 1%

Author Biographies

Александр Владимирович Вовна, State Higher Educational Establishment «Donetsk National Technical University» Artema str., 58, Donetsk, Ukraine, 83001

Doctor of Technical Sciences, Associate Professor, Professor

Department of Electronic Technique 

Дмитрий Григорьевич Корниенко, National Technical University of Ukraine «Igor Sikorsky Kyiv Polytechnic Institute» Peremogy ave., 37, Kyiv, Ukraine, 03056

Department of scientific, analytical and ecological devices and systems

Владислав Филиппович Примиский, Ltd "Avtoekopribor" Mezhigorskaya str., 82-A, Kyiv, Ukraine, 04080

PhD, Senior Researcher

References

Eckhoff, R. K. (2003). Dust explosions in the process industries – identification, assessment and control of dust hazards. Gulf Professional Publishing, 719.

Vovna, A. V., Zori, A. A., Korenev, V. D., Hlamov, M. G. (2012). Metody i sredstva analiticheskogo izmerenija koncentracii gazovyh komponent i pyli v rudnichnoj atmosfere ugol'nyh shaht. Doneck: GVUZ «DonNTU», 260.

Vovna, O. V. (2016). Optoelektronni vymirjuval'ni systemy koncentracii' metanu ta pylu v rudnychnij atmosferi shaht. Pokrovs'k (Krasnoarmijs'k): DVNZ «DonNTU», 336.

Klimenko, A. P. (1987). Metody i pribory dlja izmerenija koncentracii pyli. Moscow: Himija, 208.

Romanchenko, S. B., Ishhuk, I. G. (2007). Sovremennye metody analiza formy i dispersnogo sostava ugol'noj pyli. Nauch. soobshh. NNC-GP IGD im. A. A. Skochinskogo. Moscow, 333, 270–286.

Voroshilov, Ja. S., Anisimov, A. A., Sedel'nikov, V. E. (2007). Stendovye ispytanija stacionarnogo datchika kontrolja zapylennosti vozduha v gornyh vyrabotkah i proizvodstvennyh pomeshhenijah predprijatij ugol'noj promyshlennosti. Gornyj informacionno-analiticheskij bjulleten'. Otdel'nyj vypusk «Ajerologija», 7, 290–291.

Lisaj, O. N. (2009). Issledovanie sostava pyli i povedenija chastic pyli v vozdushnoj srede. Gornyj informacionno-analiticheskij bjulleten', 1, 191–194.

Romanchenko, S. B. (2007). Opticheskie pylemery s infrakrasnymi izmeritel'nymi golovkami. Gornyj informacionno-analiticheskij bjulleten'. Otdel'nyj vypusk «Ajerologija», 7, 265–272.

Arhipov, V. A., Sheremet'eva, U. M. (2007). Ajerozol'nye sistemy i ih vlijanie na zhiznedejatel'nost'. Tomsk: Izd-vo TGPU, 136.

Van De Hulst, H. C. (1951). Light Scattering by Small Particles. N.Y.: J. Wiley, 470.

Dejrmendzhan, D. (1971). Rassejanie jelektromagnitnogo izluchenija sfericheskimi polidispersnymi chasticami. Moscow: Mir, 303.

Bloh, A. G. (1984). Teploobmen v topkah parovyh kotlov. Leningrad: Jenergoatomizdat, 240.

Kaftanova, Ju. V. (1998). Rekurrentnye otnoshenija dlja reshenij differencial'nyh uravnenij vtorogo porjadka. Kharkov: IC «Tiger», 48.

Petruhin, P. M. et. al.; Petruhin, P. M. (Ed.) (1981). Bor'ba s ugol'noj i porodnoj pyl'ju v shahtah. Moscow: Nedra, 271.

Produkcija predprijatija «CREE»: SID vysokoj jarkosti. MSC Technologies. Available at: http://www.cree.com/~/media/Files/Cree/LED%20Components%20and%20Modules/HB/Data%20Sheets/C503B%20BAS%20BAN%20BCS%20BCN%20GAS%20GAN%20GCS%20GCN%201094.pdf

Tehnicheskaja dokumentacija na fotodiod serii BPW21R. Vishay Semiconductors. Available at: http://www.vishay.com/docs/81519/bpw21r.pdf

Solomichev, R. I., Vovna, O. V., Zori, A. A. (2014). Rozrobka dvopromenevogo vymirjuvacha koncentracii' ta dyspersnosti vugil'nogo pylu z kompensacijeju temperaturnogo drejfu. Visn. Vinnyc'kogo politehnichnogo instytutu, 5 (116), 36–41.

Solomichev, R. I., Vovna, A. V., Zori, A. A. (2015). Povyshenie tochnosti optiko-absorbcionnogo izmeritelja koncentracii ugol'noj pyli. Nauk. pr. Donec'k. nac. tehn. un-tu. Ser. Obchisljuval'na tehnіka ta avtomatizacіja, 1 (28), 171–180.

Maksimenko, Ju. N., Mazan, E. G., Timin, A. K. (2010). Perenosnoj opticheskij pylemer VOG – 2. Visnyk NTUU “KPI”. Serija PRYLADOBUDUVANNJa, 40, 81–86.

FGUP «SPO «Analitpribor» – proizvodstvo gazoanalizatorov. Available at: http://www.analitpribor-smolensk.ru/

SICK. Available at: https://www.sick.com/de/en/search?text=product

Avtoekoprilad. Available at: http://www.aep.kiev.ua/index.php

Kornijenko, D. G. (2016). Patent Ukrai'ny na korysnu model' № 104604, G01N 15/00. Sposib vymirjuvannja koncentracii' radioaktyvnogo pylu u vykydah kotloagregativ. № u201507367; declareted: 22.07.2015, published: 10.02.2016, bjul. № 3.

Prymis'kyj, V. P., Porjev, V. A., Kornijenko, D. G. (2016). Patent Ukrai'ny na korysnu model' № 109425, G01N 15/02. Sposib vymirjuvannja koncentracii' pylu u dymovyh: toksychnyh i radioaktyvnyh gazah promyslovyh pidpryjemstv. № u201601772; declareted: 25.02.2016, published: 25.08.2016, bjul. № 16.

Prymis'kyj, V. P. (2016). Patent Ukrai'ny na korysnu model' № 108435,G01N 15/02. Optychnyj pylomir. № u201601798; declareted: 11.07.2016, published: 11.07.2016, bjul. № 13.

Prymis'kyj, V. P., Porjev, V. A., Kornijenko, D. G. (2016). Zajavka na vynahid № 109800 G01N 15/02. Sposib vymirjuvannja koncentracii' pylu u dymovyh gazah. № u201601775; declareted: 25.02.2016; published: 12.09.2016, bjul. № 17.

Prymis'kyj, V. P. (2016). Patent Ukrai'ny na korysnu model' № 107345,G01N 21/53. Optychnyj vymirjuvach pylu. № u201601799; declareted: 25.02.2016, published: 25.05.2016, bjul. № 10.

Published

2016-09-29

Issue

Section

Technical Sciences