INVESTIGATION OF HYDRODYNAMICS OF VALVE PLATES
DOI:
https://doi.org/10.31073/foodresources2020-15-22Keywords:
valve plate, hydrodynamics, resistance, columnAbstract
Column bubble mass exchangers are widely used in chemical, oil refining and related industries for separation or extraction of components from mixtures of liquid (rectification) and gases (absorption). These methods of separation of substances differ in the complexity of the theoretical description, due to the interaction of phases, their hydrodynamic, heat and mass transfer characteristics, as well as the design features of contact devices. To date, the existing variety of theories and approaches to the description of processes occurring in mass exchangers, do not give precise recommendations and dependencies, but require implementation and refinement, taking into account the specific design features of contact devices. This article contains the results of theoretical and experimental studies of contact devices. Valve plates operating in a cyclic mode are the subject of this article. The dimensions of the valves, their weight, lifting height and height of the drain devices were chosen from the operating conditions of the columns, which are equipped with refineries. For the study, 0.5 m diameter plates equipped with ten valves were designed and manufactured. The base of the plate, valves, receiving and draining devices were made of Article 3. The thickness of the plate is – 0.003 m, valves – 0.0015 m. receiving and draining devices – 0.0005 m. The weight of the usual valve is – 0.025 kg, and the cyclic valve is – 0.032 kg. The developed experimental installation made it possible to study the hydraulic modes of valve plates where a characteristic feature of the developed valve plates is the transfer of kinetic energy of air (steam) coming from the space between the neck and the cylindrical surface of the gas valve. is an essential hydraulic characteristic, as the value of this value depends on the conditions that must be created in the column. As a result, data on the operation of valve plates in hydrodynamic, gas-liquid modes were obtained and the resistance of dry valve plates was determined.
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Cherevashko D., Sukhenko V. (2019). Problemi іntensifіkatsії protsesu distilyatsії pri vikoristannі kontaktnikh pristroїv [Problems of intensification of the distillation process when using contact devices]. Zbіrnik naukovikh prats «Novіtnі tekhnologії» [Collection of scientific works "Latest technologies"]. Іssue 1(8), р. 136-141. [in Ukrainian].
Cherevashko D., Sukhenko V. (2019). Rol piva v suchasnіy ієrarkhії slaboalkogolnikh napoїv [The role of beer in the modern hierarchy of soft drinks]. Zbіrnik naukovikh prats «Novіtnі tekhnologії». [Collection of scientific works "Latest technologies"]. Іssue 2 (9), р. 104-108. [in Ukrainian].
Cherevashko D., Korets L.,Sukhenko V. (2020). Analіzuvannya standartnikh pokaznikіv і rozroblennya balnoї ta reytingovoї otsіnki yakostі piva [Analysis of standard indicators, developmet of a score and rating assessment of beer quality]. Naukovo-tekhnіchniy zhurnal «Standartizatsіya, sertifіkatsіya, yakіst» [Scientific and technical journal "Standardization, certification, quality]. Іssue №1 (119), p. 30-36. [in Ukrainian].
Malezhik I. (1962). Gidravlicheskoe soprotivlenie klapannykh tarelok [Hydraulic resistance of valve discs]. Izvestie VUZov «Pishchevaya tekhnologiya» [News of the universities «Food technology»]. Іssue №2. P.114-119. [in Russian].
Aerov M. (1969). Izuchenie gidravliki i massoperedachi na klapannykh tarelkakh bez perelivnykh ustroystv [Study of hydraulics and mass transfer on valve trays without overflow devices]. Khimiya i tekhnologiya topliv i masel [Chemistry and technology of fuels and oils]. Іssue №1. P. 37-41. [in Russian].
Kochergin N., Kasatkin A., Dytnersky Yu. (1961). Issledovanie gidravliki i massoobmena na klapannykh tarelkakh. [Study of hydraulics and mass transfer on valve discs]. Trudy po khimii i khimicheskoy tekhnologii [Works on chemistry and chemical technology]. Іssue №10. P.860-865. [in Russian].
Maleshik I. (1971) Klapannye tarelki rektifikatsionnykh i absorbtsionnykh apparatov [Valve trays of rectification and absorption apparatuses]. Monogr. M.: TsNIITEI Pishcheprom. 33 p. [in Russian].
Brounshteyn B. (1977). Gidrodinamika massoobmen i teploobmen v dimfernykh sistemakh [Hydrodynamics of mass and heat transfer in dimfer systems]. Monogr. L.: Khimiya. 280 p. [in Russian].
Vaskіn R. (2005). Doslіdzhennya Gіdrodinamіki ta maso peredach na klapannіy tarіltsі zі sferichnimi klapanami [Research of Hydrodynamics and mass of transfers on a valve plate with spherical valves]. Disertatsіya na zdobuttya naukovogo stupenya kandidata tekhnіchnikh nauk [Dissertation on competition of a scientific degree of the candidate of technical sciences]. Sumy. [in Ukrainian].
Ukrainets A., Shiyan P., Buliy Y., Kuts A. (2017). Іnnovatsіyna tekhnologіya rektifіkatsії v rezhimі rozdіlnogo rukhu faz [Innovation technology of rectification in the fashion phase mode movement]. Naukovі pratsі NUKhT [Scientific Works of NUFT]. Volume 23, Issue 5, Part 2, p. 55-62. [in Ukrainian].
Matukhina О., Merzlyakov S., Usachev A. (2019). Opredelenie Polozheniya kontrolnykh tarelok v rektifikatsionnykh kolonnakh [Detecting the positions of control trays in fractionating columns]. Vestnik tekhnologicheskogo universiteta NKhTI KNITU [Bulletin of Technological University NHTI KNITU]. V. 22, № 11, p. 132-136. [in Russian].
Panasyuk S., Kalakhan O. (2017). Analіz protsesu roboti tarіlok rektifіkatsіynikh kolon [Analysis of the process of operation of plates of distillation columns]. Zbіrnik naukovikh statey LNTU «Sіlskogospodarskі mashini» [Collection of scientific articles of LNTU "Agricultural Machinery"]. Issue 36, p. 124-130. [in Ukrainian].
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