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Fouling in process apparatuses



dc.contributor.advisorDostál Martin
dc.contributor.authorKumar Gautam Rahul
dc.date.accessioned2018-01-25T21:40:04Z
dc.date.available2018-01-25T21:40:04Z
dc.date.issued2018-01-12
dc.identifierKOS-695600327705
dc.identifier.urihttp://hdl.handle.net/10467/74090
dc.description.abstractThis resesrch work contain the brief discription of fouling, types of fouling and the mechanism by which it create on the surface of heat exchangers. Mainly the thesis work focus on the fouling in food process industries and how fouling affect the thermal and hydronic properties for that exchanger. This extra layer on the surface of exchanger may reduce the effectiveness of the heat exchanger by reducing the heat transfer and increasing the pressure drop of the given apparatus. With the affect of which the pumping power is increased and finally leads to affect the economy of the whole process. It also include the considerable model for calculate the fouling impact on the apparatus of heating material. In which the rate of deposition and removal consider to be a main governing parameter and the whole work focus on that model which minimise that overall mass deposition rate. Based on one experimantal result of calcium carbonate fouling which may cause the crystallization and particle fouling a model was developed to predict the fouling. By result of which the dependency of fouling resistance change with time has obtained. Sometimes it is not easy to differentiate the type of fouling as it could be a complex phenomena of nucleation which is also considered in this work. This research consist already did experimental result of some previous work which suggest the right way to remove the fouling layer for different types of fouling. According to given papers which method is suitable for cleaning selected type of fouling are the very important considerable fact which govern the overall industrial processes. For example for the cleaning of food process apparatus, chemical cleaning is not preferable while on other hand we can use it to remove crude oil industry fouling layer. At the end the aim of this thesis is to developed the new apporach towards fouling by developing the new methods to reduce it. Other than these usind additives, coating materials, design consideration etc are the other method to clean the fouling surface. With the help of the new methods we can create the most efficient model with keeping in regard all parameters.cze
dc.description.abstractThis resesrch work contain the brief discription of fouling, types of fouling and the mechanism by which it create on the surface of heat exchangers. Mainly the thesis work focus on the fouling in food process industries and how fouling affect the thermal and hydronic properties for that exchanger. This extra layer on the surface of exchanger may reduce the effectiveness of the heat exchanger by reducing the heat transfer and increasing the pressure drop of the given apparatus. With the affect of which the pumping power is increased and finally leads to affect the economy of the whole process. It also include the considerable model for calculate the fouling impact on the apparatus of heating material. In which the rate of deposition and removal consider to be a main governing parameter and the whole work focus on that model which minimise that overall mass deposition rate. Based on one experimantal result of calcium carbonate fouling which may cause the crystallization and particle fouling a model was developed to predict the fouling. By result of which the dependency of fouling resistance change with time obtained. Sometimes it is not easy to differentiate the type of fouling as it could be a complex phenomena of nucleation which is also considered in this work. This research consist already did experimental result of some previous work which suggest the right way to remove the fouling layer for different types of fouling. In all provide resources mothodsAccording to given papers which method is suitable for cleaning selected type of fouling are the very important considerable fact which govern the overall industrial processes. For example for the cleaning of food process apparatus, chemical cleaning is not preferable while on other hand we can use it to remove crude oil industry fouling layer. At the end the aim of this thesis is to developed the new apporach towards fouling by developing the new methods to reduce it. Other than these usind additives, coating materials, design consideration etc are the other method to clean the fouling surface. With the help of the new methods we can create the most efficient model with keeping in regard all parameters.eng
dc.language.isoENG
dc.publisherČeské vysoké učení technické v Praze. Vypočetní a informační centrum.cze
dc.publisherCzech Technical University in Prague. Computing and Information Centre.eng
dc.rightsA university thesis is a work protected by the Copyright Act. Extracts, copies and transcripts of the thesis are allowed for personal use only and at one?s own expense. The use of thesis should be in compliance with the Copyright Act http://www.mkcr.cz/assets/autorske-pravo/01-3982006.pdf and the citation ethics http://knihovny.cvut.cz/vychova/vskp.htmleng
dc.rightsVysokoškolská závěrečná práce je dílo chráněné autorským zákonem. Je možné pořizovat z něj na své náklady a pro svoji osobní potřebu výpisy, opisy a rozmnoženiny. Jeho využití musí být v souladu s autorským zákonem http://www.mkcr.cz/assets/autorske-pravo/01-3982006.pdf a citační etikou http://knihovny.cvut.cz/vychova/vskp.htmlcze
dc.subjectFouling,Fouling Thickness,Heat Duty,Overall Heat Transfer Coefficient,Rate of Deposition,Rate of Removal,Pressure Drop,Pumping Power,Pump Efficiency,Effectiveness,Number of Transfer Units,Heat Capacity,Fouling Resistance,Fouling Factor,Log Mean Temperature Difference,Fanninf Friction Factor,Effective Areacze
dc.subjectFouling,Fouling thickness,Overall heat transfer coefficient,rate of deposition,rate of removal,heat duty,foulant,pressure drop,effectiveness,number of transfer units,heat capacity,pumping power,fouling resistance,fouling factor,log mean temperature difference,pump efficiency,fanning friction factor,Effective areaeng
dc.titleFouling in process apparatusescze
dc.titleFouling in process apparatuseseng
dc.typediplomová prácecze
dc.typemaster thesiseng
dc.date.accepted
dc.contributor.refereeŠtancl Jaromír
theses.degree.disciplineProcesní technikacze
theses.degree.grantorústav procesní a zpracovatelské technikycze
theses.degree.programmeStrojní inženýrstvícze


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