UMPC ? Unidade M?vel de Pesquisa Cient?fica: um sistema desenvolvido para aferi??es em tempo real das propriedades f?sico-qu?micas de fluidos de perfura??o

Detalhes bibliográficos
Autor(a) principal: Magalh?es Filho, S?rgio da Cruz
Data de Publicação: 2015
Tipo de documento: Dissertação
Idioma: por
Título da fonte: Biblioteca Digital de Teses e Dissertações da UFRRJ
Texto Completo: https://tede.ufrrj.br/jspui/handle/jspui/2848
Resumo: During the last decade, the drilling process has been experiencing considerable technological advances and has achieved deeper wells, better productivity, safety and flexibility during drilling operations. A symbol of modern drilling is the directional drilling, which usually have a better cost/benefit ratio when compared to conventional wells (purely vertical). To drill directionally, a conglomerate of science and state of the art technologies is necessary, starting from new metal design and ending on automated torque control system and steering. However, it is known from the first drilled well that, from a certain depth, the use of drilling fluids is essential to the viability of the whole process. The drilling fluids have the primary function to cool and lubricate the system under high friction, perform cleaning of the well in relation to cuttings generated by drilling, apply pressure on the rock formation to control the invasion of the fluids contained in it and give structural stability. Despite its notorious importance, the technologies used to quantify and control the physicochemical properties of such fluids have not changed over the past fifty years. Viscosity, density, electrical stability, concentration of water in oil and concentration of total solids suspended are properties that are directly related to the operation of the well. Even with the most modern drilling apparatus at disposal, if the properties of the fluid are not adequate, it can harm the entire operation. Thus, this work has proposed and constructed an automated system to remotely measure in real time the physicochemical properties of drilling fluids. The results has shown that it is possible to perform such measurements in such fluids, validated by the direct comparison between real time data and data acquired in standard bench devices. The system built has mobility, automatic control of operational variables, remote access to all information and is capable to determine in real time apparent viscosity, density, electrical stability, electrical conductivity, concentration of water in oil and concentration and size distribution of solids suspended. The system was tested in laboratory environment and it is ready to proceed to field trials.
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spelling Scheid, Cl?udia M?riam023.546.317-58Cal?ada, Lu?s Am?rico082.908.822-82Scheid, Cl?udia M?riamNeves, Marcelo AzevedoAlmeida, Heraldo Lu?s Silveira de035.179.417-43http://lattes.cnpq.br/8192100748931041Magalh?es Filho, S?rgio da Cruz2019-08-29T18:42:18Z2015-08-31MAGALH?ES FILHO, S?rgio da Cruz. UMPC - Unidade M?vel de Pesquisa Cient?fica: um sistema desenvolvido para aferi??es em tempo real das propriedades f?sico-qu?micas de fluidos de perfura??o. 2015. 140 f. Disserta??o (Mestrado em Engenharia Qu?mica, Tecnologia Qu?mica). Instituto de Tecnologia, Departamento de Engenharia Qu?mica, Universidade Federal Rural do Rio de Janeiro, Serop?dica, RJ, 2015.https://tede.ufrrj.br/jspui/handle/jspui/2848During the last decade, the drilling process has been experiencing considerable technological advances and has achieved deeper wells, better productivity, safety and flexibility during drilling operations. A symbol of modern drilling is the directional drilling, which usually have a better cost/benefit ratio when compared to conventional wells (purely vertical). To drill directionally, a conglomerate of science and state of the art technologies is necessary, starting from new metal design and ending on automated torque control system and steering. However, it is known from the first drilled well that, from a certain depth, the use of drilling fluids is essential to the viability of the whole process. The drilling fluids have the primary function to cool and lubricate the system under high friction, perform cleaning of the well in relation to cuttings generated by drilling, apply pressure on the rock formation to control the invasion of the fluids contained in it and give structural stability. Despite its notorious importance, the technologies used to quantify and control the physicochemical properties of such fluids have not changed over the past fifty years. Viscosity, density, electrical stability, concentration of water in oil and concentration of total solids suspended are properties that are directly related to the operation of the well. Even with the most modern drilling apparatus at disposal, if the properties of the fluid are not adequate, it can harm the entire operation. Thus, this work has proposed and constructed an automated system to remotely measure in real time the physicochemical properties of drilling fluids. The results has shown that it is possible to perform such measurements in such fluids, validated by the direct comparison between real time data and data acquired in standard bench devices. The system built has mobility, automatic control of operational variables, remote access to all information and is capable to determine in real time apparent viscosity, density, electrical stability, electrical conductivity, concentration of water in oil and concentration and size distribution of solids suspended. The system was tested in laboratory environment and it is ready to proceed to field trials.Na ?ltima d?cada, os processos de perfura??o t?m experimentado um avan?o tecnol?gico significativo, permitindo que se alcan?assem maiores profundidades, maiores produtividades e n?o obstante uma maior seguran?a operacional com maior flexibilidade nas opera??es de perfura??o. Um s?mbolo da perfura??o moderna s?o os po?os direcionais, que agregam uma rela??o custo/benef?cio, na maioria dos casos, melhor do que os po?os convencionais (puramente vertical). Para se perfurar direcionalmente, um conglomerado de ci?ncias e tecnologias de ponta ? necess?rio, desde o desenvolvimento de novos metais at? sistemas automatizados de controle de torque e dire??o. No entanto, ? sabido desde os primeiros po?os perfurados que a partir de determinada profundidade o uso de fluidos de perfura??o ? imperativo para a viabilidade do processo inteiro. Os fluidos de perfura??o possuem a primordial fun??o de resfriar e lubrificar o sistema sob elevado atrito, executar a limpeza do po?o em rela??o aos cascalhos gerados pela perfura??o, exercer press?o sobre a forma??o rochosa para controle da invas?o dos fluidos contidos nas rochas, dar estabilidade estrutural ao po?o, dentre outras. Apesar de not?ria import?ncia, a tecnologia empregada para a aferi??o e controle das propriedades de tais fluidos permanece a mesma h? cinquenta anos. A viscosidade, a densidade, a estabilidade el?trica, a concentra??o de ?gua em ?leo e a concentra??o de s?lidos totais em suspens?o s?o propriedades que est?o diretamente ligadas ?s quest?es operacionais do po?o. Ainda que se tenha o que h? de mais moderno para se perfurar, um controle inadequado das propriedades f?sico-qu?micas do fluido de perfura??o pode comprometer a seguran?a e a viabilidade do processo inteiro. Neste sentido, este trabalho prop?s e construiu um sistema automatizado para aferi??o remota das propriedades f?sico-qu?micas de fluidos de perfura??o outrora citados. Os resultados demonstraram que a automa??o de tais medidas ? poss?vel, validadas a partir da compara??o direta entre medidas aferidas em tempo real e aquelas aferidas em instrumentos de bancada utilizados nos principais po?os de perfura??o. O sistema constru?do possui mobilidade, controle autom?tico das vari?veis operacionais, acesso remoto ?s informa??es e determina em tempo real viscosidade aparente, densidade, estabilidade el?trica, condutividade el?trica, teor de ?gua em ?leo, concentra??o de s?lidos e tamanhos e contagem de part?culas em suspens?o. O sistema foi testado em ambientes laboratoriais e est? pronto para prosseguir para testes em campo.Submitted by Jorge Silva (jorgelmsilva@ufrrj.br) on 2019-08-29T18:42:18Z No. of bitstreams: 1 2015 - S?rgio da Cruz Magalh?es Filho.pdf: 54165348 bytes, checksum: 6a451b6bbb20c29acfb951afe45968bb (MD5)Made available in DSpace on 2019-08-29T18:42:18Z (GMT). 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dc.title.por.fl_str_mv UMPC ? Unidade M?vel de Pesquisa Cient?fica: um sistema desenvolvido para aferi??es em tempo real das propriedades f?sico-qu?micas de fluidos de perfura??o
title UMPC ? Unidade M?vel de Pesquisa Cient?fica: um sistema desenvolvido para aferi??es em tempo real das propriedades f?sico-qu?micas de fluidos de perfura??o
spellingShingle UMPC ? Unidade M?vel de Pesquisa Cient?fica: um sistema desenvolvido para aferi??es em tempo real das propriedades f?sico-qu?micas de fluidos de perfura??o
Magalh?es Filho, S?rgio da Cruz
Automa??o
tempo real
perfura??o
fluido de perfura??o
controle
Automation
real time
drilling
drilling fluid
control
Engenharia El?trica
title_short UMPC ? Unidade M?vel de Pesquisa Cient?fica: um sistema desenvolvido para aferi??es em tempo real das propriedades f?sico-qu?micas de fluidos de perfura??o
title_full UMPC ? Unidade M?vel de Pesquisa Cient?fica: um sistema desenvolvido para aferi??es em tempo real das propriedades f?sico-qu?micas de fluidos de perfura??o
title_fullStr UMPC ? Unidade M?vel de Pesquisa Cient?fica: um sistema desenvolvido para aferi??es em tempo real das propriedades f?sico-qu?micas de fluidos de perfura??o
title_full_unstemmed UMPC ? Unidade M?vel de Pesquisa Cient?fica: um sistema desenvolvido para aferi??es em tempo real das propriedades f?sico-qu?micas de fluidos de perfura??o
title_sort UMPC ? Unidade M?vel de Pesquisa Cient?fica: um sistema desenvolvido para aferi??es em tempo real das propriedades f?sico-qu?micas de fluidos de perfura??o
author Magalh?es Filho, S?rgio da Cruz
author_facet Magalh?es Filho, S?rgio da Cruz
author_role author
dc.contributor.advisor1.fl_str_mv Scheid, Cl?udia M?riam
dc.contributor.advisor1ID.fl_str_mv 023.546.317-58
dc.contributor.advisor-co1.fl_str_mv Cal?ada, Lu?s Am?rico
dc.contributor.advisor-co1ID.fl_str_mv 082.908.822-82
dc.contributor.referee1.fl_str_mv Scheid, Cl?udia M?riam
dc.contributor.referee2.fl_str_mv Neves, Marcelo Azevedo
dc.contributor.referee3.fl_str_mv Almeida, Heraldo Lu?s Silveira de
dc.contributor.authorID.fl_str_mv 035.179.417-43
dc.contributor.authorLattes.fl_str_mv http://lattes.cnpq.br/8192100748931041
dc.contributor.author.fl_str_mv Magalh?es Filho, S?rgio da Cruz
contributor_str_mv Scheid, Cl?udia M?riam
Cal?ada, Lu?s Am?rico
Scheid, Cl?udia M?riam
Neves, Marcelo Azevedo
Almeida, Heraldo Lu?s Silveira de
dc.subject.por.fl_str_mv Automa??o
tempo real
perfura??o
fluido de perfura??o
controle
topic Automa??o
tempo real
perfura??o
fluido de perfura??o
controle
Automation
real time
drilling
drilling fluid
control
Engenharia El?trica
dc.subject.eng.fl_str_mv Automation
real time
drilling
drilling fluid
control
dc.subject.cnpq.fl_str_mv Engenharia El?trica
description During the last decade, the drilling process has been experiencing considerable technological advances and has achieved deeper wells, better productivity, safety and flexibility during drilling operations. A symbol of modern drilling is the directional drilling, which usually have a better cost/benefit ratio when compared to conventional wells (purely vertical). To drill directionally, a conglomerate of science and state of the art technologies is necessary, starting from new metal design and ending on automated torque control system and steering. However, it is known from the first drilled well that, from a certain depth, the use of drilling fluids is essential to the viability of the whole process. The drilling fluids have the primary function to cool and lubricate the system under high friction, perform cleaning of the well in relation to cuttings generated by drilling, apply pressure on the rock formation to control the invasion of the fluids contained in it and give structural stability. Despite its notorious importance, the technologies used to quantify and control the physicochemical properties of such fluids have not changed over the past fifty years. Viscosity, density, electrical stability, concentration of water in oil and concentration of total solids suspended are properties that are directly related to the operation of the well. Even with the most modern drilling apparatus at disposal, if the properties of the fluid are not adequate, it can harm the entire operation. Thus, this work has proposed and constructed an automated system to remotely measure in real time the physicochemical properties of drilling fluids. The results has shown that it is possible to perform such measurements in such fluids, validated by the direct comparison between real time data and data acquired in standard bench devices. The system built has mobility, automatic control of operational variables, remote access to all information and is capable to determine in real time apparent viscosity, density, electrical stability, electrical conductivity, concentration of water in oil and concentration and size distribution of solids suspended. The system was tested in laboratory environment and it is ready to proceed to field trials.
publishDate 2015
dc.date.issued.fl_str_mv 2015-08-31
dc.date.accessioned.fl_str_mv 2019-08-29T18:42:18Z
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dc.identifier.citation.fl_str_mv MAGALH?ES FILHO, S?rgio da Cruz. UMPC - Unidade M?vel de Pesquisa Cient?fica: um sistema desenvolvido para aferi??es em tempo real das propriedades f?sico-qu?micas de fluidos de perfura??o. 2015. 140 f. Disserta??o (Mestrado em Engenharia Qu?mica, Tecnologia Qu?mica). Instituto de Tecnologia, Departamento de Engenharia Qu?mica, Universidade Federal Rural do Rio de Janeiro, Serop?dica, RJ, 2015.
dc.identifier.uri.fl_str_mv https://tede.ufrrj.br/jspui/handle/jspui/2848
identifier_str_mv MAGALH?ES FILHO, S?rgio da Cruz. UMPC - Unidade M?vel de Pesquisa Cient?fica: um sistema desenvolvido para aferi??es em tempo real das propriedades f?sico-qu?micas de fluidos de perfura??o. 2015. 140 f. Disserta??o (Mestrado em Engenharia Qu?mica, Tecnologia Qu?mica). Instituto de Tecnologia, Departamento de Engenharia Qu?mica, Universidade Federal Rural do Rio de Janeiro, Serop?dica, RJ, 2015.
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eu_rights_str_mv openAccess
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dc.publisher.none.fl_str_mv Universidade Federal Rural do Rio de Janeiro
dc.publisher.program.fl_str_mv Programa de P?s-Gradua??o em Engenharia Qu?mica
dc.publisher.initials.fl_str_mv UFRRJ
dc.publisher.country.fl_str_mv Brasil
dc.publisher.department.fl_str_mv Instituto de Tecnologia
publisher.none.fl_str_mv Universidade Federal Rural do Rio de Janeiro
dc.source.none.fl_str_mv reponame:Biblioteca Digital de Teses e Dissertações da UFRRJ
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repository.name.fl_str_mv Biblioteca Digital de Teses e Dissertações da UFRRJ - Universidade Federal Rural do Rio de Janeiro (UFRRJ)
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