Convection effect on sulfuric acid drop formation in atmosphere neighboring to a thermal power plant region

The paper introduces the results of mathematical modeling of sulphurous anhydride condensation on condensation nuclei surface within the stated problem. The design results are given for spring and summer. It was ascertained that sulfuric acid drops are formed with slight changes at different wind sp...

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Main Authors: D. V. Gvozdyakov, V. E. Gubin
Format: Article
Language:Russian
Published: Tomsk Polytechnic University 2009-06-01
Series:Известия Томского политехнического университета: Инжиниринг георесурсов
Subjects:
Online Access:http://izvestiya.tpu.ru/archive/article/view/1153
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author D. V. Gvozdyakov
V. E. Gubin
author_facet D. V. Gvozdyakov
V. E. Gubin
author_sort D. V. Gvozdyakov
collection DOAJ
description The paper introduces the results of mathematical modeling of sulphurous anhydride condensation on condensation nuclei surface within the stated problem. The design results are given for spring and summer. It was ascertained that sulfuric acid drops are formed with slight changes at different wind speed and typical operation parameters of thermal station. The authors estimated the sizes of condensation nuclei. On their surface the drops which are capable of falling on Earth surface are formed. Air mass displacement velocity affects the acid antropogenic impurity dispersion in the air. The obtained values of sulphurous anhydride were compared with the results of calculation by one of famous techniques. The results obtained were approved by checking the difference scheme conservation and solving the test problems.
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spelling doaj.art-879d5b2f95564044a290da2332b6c39b2023-06-02T21:12:48ZrusTomsk Polytechnic UniversityИзвестия Томского политехнического университета: Инжиниринг георесурсов2500-10192413-18302009-06-013234Convection effect on sulfuric acid drop formation in atmosphere neighboring to a thermal power plant regionD. V. GvozdyakovV. E. GubinThe paper introduces the results of mathematical modeling of sulphurous anhydride condensation on condensation nuclei surface within the stated problem. The design results are given for spring and summer. It was ascertained that sulfuric acid drops are formed with slight changes at different wind speed and typical operation parameters of thermal station. The authors estimated the sizes of condensation nuclei. On their surface the drops which are capable of falling on Earth surface are formed. Air mass displacement velocity affects the acid antropogenic impurity dispersion in the air. The obtained values of sulphurous anhydride were compared with the results of calculation by one of famous techniques. The results obtained were approved by checking the difference scheme conservation and solving the test problems.http://izvestiya.tpu.ru/archive/article/view/1153mathematical modelingthermal power plantsmoke gasespollutionsulphurous anhydridecondensation
spellingShingle D. V. Gvozdyakov
V. E. Gubin
Convection effect on sulfuric acid drop formation in atmosphere neighboring to a thermal power plant region
Известия Томского политехнического университета: Инжиниринг георесурсов
mathematical modeling
thermal power plant
smoke gases
pollution
sulphurous anhydride
condensation
title Convection effect on sulfuric acid drop formation in atmosphere neighboring to a thermal power plant region
title_full Convection effect on sulfuric acid drop formation in atmosphere neighboring to a thermal power plant region
title_fullStr Convection effect on sulfuric acid drop formation in atmosphere neighboring to a thermal power plant region
title_full_unstemmed Convection effect on sulfuric acid drop formation in atmosphere neighboring to a thermal power plant region
title_short Convection effect on sulfuric acid drop formation in atmosphere neighboring to a thermal power plant region
title_sort convection effect on sulfuric acid drop formation in atmosphere neighboring to a thermal power plant region
topic mathematical modeling
thermal power plant
smoke gases
pollution
sulphurous anhydride
condensation
url http://izvestiya.tpu.ru/archive/article/view/1153
work_keys_str_mv AT dvgvozdyakov convectioneffectonsulfuricaciddropformationinatmosphereneighboringtoathermalpowerplantregion
AT vegubin convectioneffectonsulfuricaciddropformationinatmosphereneighboringtoathermalpowerplantregion