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Mathematical and numerical analysis of electrospraying electrodynamics

Thesis (MEng)--Stellenbosch University, 2014.

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Main Author: Pieterse, Cornelius Louwrens
Other Authors: Perold, Willem
Format: Thesis
Language:en_ZA
Published: Stellenbosch : Stellenbosch University 2014
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access_status_str Open Access
author Pieterse, Cornelius Louwrens
author2 Perold, Willem
author_browse Perold, Willem
Pieterse, Cornelius Louwrens
author_facet Perold, Willem
Pieterse, Cornelius Louwrens
author_sort Pieterse, Cornelius Louwrens
collection Thesis
dc_rights_str_mv Stellenbosch University
description Thesis (MEng)--Stellenbosch University, 2014.
format Thesis
id oai:scholar.sun.ac.za:10019.1/95529
institution Stellenbosch University (South Africa)
language en_ZA
last_indexed 2026-06-10T12:46:16.958Z
license_str Other — see source repository
provenance_str_mv Harvested via OAI-PMH from SUNScholar — Stellenbosch University Repository
publishDate 2014
publishDateRange 2014
publishDateSort 2014
publisher Stellenbosch : Stellenbosch University
publisherStr Stellenbosch : Stellenbosch University
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source_str SUNScholar — Stellenbosch University Repository
spelling oai:scholar.sun.ac.za:10019.1/95529 Mathematical and numerical analysis of electrospraying electrodynamics Wiskundige en numeriese analiese van elektrosproei elektrodinamika Pieterse, Cornelius Louwrens Perold, Willem Papka, Paul Stellenbosch University. Faculty of Engineering. Dept. of Electrical and Electronic Engineering. Electrodynamics Electrospraying geometries Corona discharge threshold Theses -- Electronic engineering Dissertations -- Electronic engineering Surface tension Corona (Electricity) UCTD Thesis (MEng)--Stellenbosch University, 2014. ENGLISH ABSTRACT: The electrodynamics of arbitrary, point-to-plane electrospraying geometries, were investigated in this research both analytically and numerically. Electrospraying is the process during which particles of sizes in the nanometre range are simultaneously generated and charged by means of an applied electrostatic field. A high electrostatic potential is applied to a conductive capillary needle, which overcomes the force exerted by the liquid surface tension. One of the primary limitations of this process are corona discharges. The effect of corona discharges have not been studied quantitatively, even though it is frequently reported in the electrospraying literature. The main objective of this research was to understand the corona discharge thresholds associated with electrospraying. Previously, only one theoretical, and two empirical investigations studied this phenomenon, over a time period of approximately forty years. It was clear that by better understanding these thresholds, electrospraying could be applied much more effectively. A corona discharge threshold model is proposed, using either a numerical or analytical model for the calculation of polarization fields. When compared with the experimental results of other researchers, both these two models have average relative percentage errors of approximately 15%. These are the first models proposed in the literature for the calculation of electrospraying corona thresholds. A new method to determine surface tension using electrospraying is described theoretically. In addition to this method, the calculation of corona discharge thresholds have various applications. For example, the dynamics of electrostatic ion thrusters are much better described, powder production by means of electrospraying can be optimised, and pattern generation using pulsed electrospraying cone-jets can be optimised as well. AFRIKAANSE OPSOMMING: Die elektrodinamika van arbitrêre, punt-tot-vlak elektrosproei geometrieë was beide analities en numeries ondersoek in hierdie tesis. Dit is die proses waartydens nanodeeltjies gelyktydig gegenereer en elektrostaties gelaai word. Deur 'n hoë elektriese potensiaal aan te lê tot 'n geleidende kapillêr, is dit moontlik om die krag van die oppervlakte spanning te oorkom. Een van die primêre beperkings van elektrosproei is corona ontladings. Die effek van corona ontladings was nog nie kwantitatief bestudeer nie, selfs al word dit dikwels rapporteer in die elektrosproei literatuur. Die primêre doel van hierdie navorsing was om die corona ontlading drempels te verstaan wat geassosieer word met elektrosproei. In die verlede was daar nog net een teoretiese, en twee empiriese ondersoeke gewees wat hierdie verskynsel bestuur het, oor 'n tydperk van ongeveer veertig jaar. Dit was duidelik dat deur 'n beter begrip te hê van hierdie elektrosproei drempels, kan hierdie proses baie meer doeltreffend toegepas word. In hierdie tesis word 'n corona ontlading drempel model voorgestel, wat gebruik maak van 'n analitiese of numeriese model om die polarisasie velde te bereken. Wanneer vergelyk met die resultate van ander navorsers, het beide die modelle 'n gemiddelde relatiewe persentasie fout van ongeveer 15%. Hierdie is die eerste modelle wat voorgestel word vir die berekening van corona ontlading drempels. Deur gebruik te maak van elektrosproei, word 'n nuwe metode ook voorgestel om die oppervlakte spanning te bereken. In byvoeging tot hierdie, het die berekening van corona ontlading drempels vele ander toepassings. As 'n voorbeeld, die dinamika van elektrostatiese ioon stuwers word beter beskryf, en poeier produksie deur middel van elektrosproei kan optimeer word. 2014-08-06T09:52:14Z 2014-08-06T09:52:14Z 2014-12 Thesis http://hdl.handle.net/10019.1/95529 en_ZA Stellenbosch University viii, 89 pages : illustrations application/pdf application/pdf Stellenbosch : Stellenbosch University
spellingShingle Electrodynamics
Electrospraying geometries
Corona discharge threshold
Theses -- Electronic engineering
Dissertations -- Electronic engineering
Surface tension
Corona (Electricity)
UCTD
Pieterse, Cornelius Louwrens
Mathematical and numerical analysis of electrospraying electrodynamics
title Mathematical and numerical analysis of electrospraying electrodynamics
title_full Mathematical and numerical analysis of electrospraying electrodynamics
title_fullStr Mathematical and numerical analysis of electrospraying electrodynamics
title_full_unstemmed Mathematical and numerical analysis of electrospraying electrodynamics
title_short Mathematical and numerical analysis of electrospraying electrodynamics
title_sort mathematical and numerical analysis of electrospraying electrodynamics
topic Electrodynamics
Electrospraying geometries
Corona discharge threshold
Theses -- Electronic engineering
Dissertations -- Electronic engineering
Surface tension
Corona (Electricity)
UCTD
url http://hdl.handle.net/10019.1/95529
work_keys_str_mv AT pietersecorneliuslouwrens mathematicalandnumericalanalysisofelectrosprayingelectrodynamics
AT pietersecorneliuslouwrens wiskundigeennumerieseanaliesevanelektrosproeielektrodinamika