909 resultados para Poços de petroleo - Perfuração


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With the high oil price variability, the petroleum and the reservoir engineers are usually face to face on how they can evaluate the well performance and productivity. They can improve high productivity from the well construction to the secondary recoveries, but they have never tried a measurement in the drilling operations about the lower productivity index. As a rule, frequently the drilling operations hear from the reservoir engineering and geology that, if there is a formation damage, probably some drilling operations practices were not done properly or the good practice in petroleum engineering or mud engineering were not observed. The study in this working search is an attempt of how to measure a formation damage just from the project drilling to the drilling operations, with datum from the fields in Brazilian northeast and putting into practice a Simulator developed from the modeling on the theory offered by different experts and sources in formation damage

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Stimulation operations have with main objective restore or improve the productivity or injectivity rate in wells. Acidizing is one of the most important operations of well stimulation, consist in inject acid solutions in the formation under fracture formation pressure. Acidizing have like main purpose remove near wellbore damage, caused by drilling or workover operations, can be use in sandstones and in carbonate formations. A critical step in acidizing operation is the control of acid-formation reaction. The high kinetic rate of this reaction, promotes the consumed of the acid in region near well, causing that the acid treatment not achive the desired distance. In this way, the damage zone can not be bypassed. The main objective of this work was obtain stable systems resistant to the different conditions found in field application, evaluate the kinetic of calcite dissolution in microemulsion systems and simulate the injection of this systems by performing experiments in plugs. The systems were obtained from two non ionic surfactants, Unitol L90 and Renex 110, with sec-butanol and n-butanol like cosurfactants. The oily component of the microemlsion was xilene and kerosene. The acqueous component was a solution of HCl 15-26,1%. The results shown that the microemulsion systems obtained were stable to temperature until 100ºC, high calcium concentrations, salinity until 35000 ppm and HCl concentrations until 25%. The time for calcite dissolution in microemulsion media was 14 times slower than in aqueous HCl 15%. The simulation in plugs showed that microemulsion systems promote a distributed flux and promoted longer channels. The permeability enhancement was between 177 - 890%. The results showed that the microemulsion systems obtained have potential to be applied in matrix acidizing

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The study of complex systems has become a prestigious area of science, although relatively young . Its importance was demonstrated by the diversity of applications that several studies have already provided to various fields such as biology , economics and Climatology . In physics , the approach of complex systems is creating paradigms that influence markedly the new methods , bringing to Statistical Physics problems macroscopic level no longer restricted to classical studies such as those of thermodynamics . The present work aims to make a comparison and verification of statistical data on clusters of profiles Sonic ( DT ) , Gamma Ray ( GR ) , induction ( ILD ) , neutron ( NPHI ) and density ( RHOB ) to be physical measured quantities during exploratory drilling of fundamental importance to locate , identify and characterize oil reservoirs . Software were used : Statistica , Matlab R2006a , Origin 6.1 and Fortran for comparison and verification of the data profiles of oil wells ceded the field Namorado School by ANP ( National Petroleum Agency ) . It was possible to demonstrate the importance of the DFA method and that it proved quite satisfactory in that work, coming to the conclusion that the data H ( Hurst exponent ) produce spatial data with greater congestion . Therefore , we find that it is possible to find spatial pattern using the Hurst coefficient . The profiles of 56 wells have confirmed the existence of spatial patterns of Hurst exponents , ie parameter B. The profile does not directly assessed catalogs verification of geological lithology , but reveals a non-random spatial distribution

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Cementing operation is one of the most important stages in the oil well drilling processes and has main function to form hydraulic seal between the various permeable zones traversed by the well. However, several problems may occur with the cement sheath, either during primary cementing or during the well production period. Cements low resistance can cause fissures in the cement sheath and compromise the mechanical integrity of the annular, resulting in contamination of groundwater and producing zones. Several researches show that biomass ash, in particular, those generated by the sugarcane industry have pozzolanic activity and can be added in the composition of the cementing slurries in diverse applications, providing improvements in mechanical properties, revenue and cement durability. Due to the importance of a low cost additive that increases the mechanical properties in a well cementing operations, this study aimed to potentiate the use of sugarcane bagasse ash as pozzolanic material, evaluate the mechanisms of action of this one on cement pastes properties and apply this material in systems slurries aimed to cementing a well with 800 m depth and geothermal gradient of 1.7 °F/100 ft, as much primary cementing operations as squeeze. To do this, the ash beneficiation methods were realized through the processes of grinding, sifting and reburning (calcination) and then characterization by X-ray fluorescence, XRD, TG / DTG, specific surface area, particle size distribution by laser diffraction and mass specific. Moreover, the ash pozzolanic activity added to the cement at concentrations of 0%, 20% and 40% BWOC was evaluated by pozzolanic activity index with lime and with Portland cement. The evaluation of the pozzolanic activity by XRD, TG / DTG and compressive strength confirmed the ash reactivity and indicated that the addition of 20% in the composition of cement slurries produces improvement 34% in the mechanical properties of the slurry cured. Cement slurries properties evaluated by rheological measurements, fluid loss, free fluid, slurry sedimentation, thickening time and sonic strength (UCA) were satisfactory and showed the viability of using the sugarcane ash in cement slurries composition for well cementing

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Many challenges have been presented in petroleum industry. One of them is the preventing of fluids influx during drilling and cementing. Gas migration can occur as result of pressure imbalance inside the well when well pressure becomes lower than gas zone pressure and in cementing operation this occurs during cement slurry transition period (solid to fluid). In this work it was developed a methodology to evaluate gas migration during drilling and cementing operations. It was considered gel strength concept and through experimental tests determined gas migration initial time. A mechanistic model was developed to obtain equation that evaluates bubble displacement through the fluid while it gels. Being a time-dependant behavior, dynamic rheological measurements were made to evaluate viscosity along the time. For drilling fluids analyzed it was verified that it is desirable fast and non-progressive gelation in order to reduce gas migration without affect operational window (difference between pore and fracture pressure). For cement slurries analyzed, the most appropriate is that remains fluid for more time below critical gel strength, maintaining hydrostatic pressure above gas zone pressure, and after that gels quickly, reducing gas migration. The model developed simulates previously operational conditions and allow changes in operational and fluids design to obtain a safer condition for well construction

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As atividades de exploração e produção de petróleo e gás no Brasil têm se tornado mais intensas ao longo desta última década, apresentando uma tendência de avanço em direção a ambientes de maior profundidade, onde se localizam grande parte das reservas de óleo já comprovadas. Os processos de exploração e produção de petróleo e gás apresentam muitas etapas com considerável potencial gerador de impactos ao meio ambiente, entre elas, a perfuração de poços exploratórios marítimos, objeto do presente estudo. Este estudo originou-se do Projeto MAPEM – Monitoramento Ambiental em Atividades de Perfuração Exploratória Marítima (Águas Profundas), do qual foram utilizados os dados analisados nesta dissertação. O monitoramento foi realizado visando avaliar os efeitos da perfuração do poço Eagle, localizado em talude continental, região norte da Bacia de Campos, Brasil, próximo ao limite entre os estados do Rio de Janeiro e Espírito Santo, a 902 metros de profundidade. Foram coletadas amostras de sedimentos superficiais na região de entorno da atividade, em 48 estações de monitoramento e 6 estações de controle, durante os cruzeiros oceanográficos realizados um mês antes, um mês após e um ano após a perfuração. As análises dos sedimentos geraram informações sobre sua composição granulométrica, mineralógica (argilominerais e carbonato de cálcio) e química (hidrocarbonetos e metais), e foram comparadas em sua variação espacial (área de monitoramento/estações de controle) e temporal (3 cruzeiros oceanográficos). A variação temporal foi abordada de três maneiras distintas, onde o Cruzeiro I representou o background da área, a variação do Cruzeiro I para o II representou o impacto sobre a área de monitoramento e na variação do Cruzeiro II para o III, buscou-se evidências de recuperação da área monitorada com tendência de retorno às suas características iniciais O background da área definiu os níveis médios de todas variáveis analisadas, identificando, além de teores naturais para alguns dos componentes dos sedimentos, sinais de contaminação de origem antrópica, principalmente de As, Pb e hidrocarbonetos petrogênicos (n-alcanos) e pirogênicos (aromáticos). Na perfuração do poço Eagle foi utilizado fluido de base aquosa (FBA) e fluido de base sintética (FBS), dos quais se buscou identificar as áreas de influência e as alterações causadas nos sedimentos. Identificou-se a ocorrência de um fluxo gravitacional de massa, no período entre o Cruzeiro I e a perfuração, restrito ao cânion submarino que cruza a área de monitoramento, do qual também foi avaliada a influência sobre a composição dos sedimentos. A influência do FBA (indicada pelos teores de bário) estendeu-se por uma grande área, apresentando maiores concentrações nas estações próximas do poço. A área de influência do FBS (indicada pelos n-alcanos entre C14 e C22) apresentou distribuição mais restrita, em duas manchas, uma a norte e outra a oeste do poço. Além dos n-alcanos, foi identificado aumento dos teores de bário, UCM (mistura complexa não resolvida), fluoreno e acenaftaleno. O fluxo gravitacional de massa causou elevações na proporção de areia das estações do cânion submarino e redução do carbono orgânico. Efetivamente pode se concluir que a atividade de perfuração exerceu influência significativa nas propriedades químicas dos sedimentos, contudo, de improvável efeito tóxico sobre a biota. Pode-se concluir também que ocorreu recuperação da área, após o período de um ano, por redução das concentrações médias de algumas variáveis e sinais de reposição de n-alcanos naturais, porém não foi possível a identificação de degradação do material sintético utilizado no FBS.

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Através do banco de dados referente a granulometria (cascalho, areia, silte e argila), carbonato biogênico, carbono orgânico total (COT) e argilo-minerais (caulinita, esmectita, ilita e gibsita) do projeto MAPEM- Monitoramento Ambiental em Atividades de Perfuração Exploratória Marítima (Águas Rasas), foi realizado este estudo visando avaliar os efeitos da perfuração dos poços BO-022H e BO-023H, localizados em talude continental superior, região sul da Bacia de Campos, Brasil, a 50 km da cidade de Cabo Frio, a 250m de profundidade. A promissora atividade de exploração e produção de petróleo e gás no Brasil tem exigido estudos detalhados do ambiente marinho, estes por sua vez deverão considerar desde a técnica de perfuração até a minuciosa alteração causada no substrato sedimentar. Nesta perspectiva foram coletadas amostras de sedimentos superficiais na região no em torno da área perfurada. Durante o cruzeiro I foram coletadas 48 amostras, no cruzeiro II, três meses após a perfuração, foram coletadas 61 amostras e no cruzeiro III, 22 meses após a perfuração, foram coletadas 54 amostras. Paralelamente foram amostradas 6 estações de controle. A preocupação é compreender quais são as alterações ambientas causadas pela perfuração, para isso as análises dos sedimentos geraram informações sobre a composição granulométrica, o teor carbonato biogênico e carbono orgânico total, e, composição mineralógica (argilo-minerais). Essas variáveis comparadas à variação espacial (área de monitoramento/estações de referência) e temporal (3 cruzeiros oceanográficos) permitiram compreender como o substrato sedimentar marinho reagiu a atividade de perfuração. Com o background da área, para os três cruzeiros oceanográficos, definiu-se os níveis médios das variáveis analisadas, identificando sinais de contaminação pela atividade de perfuração. Estes resultados demostram que a atividade de perfuração não promoveu alterações significativa nas propriedades sedimentares, que a variação dos valores de backgrounds, do cruzeiro II para o cruzeiro III, permaneceram muito próximo daqueles do cruzeiro I. Entre os argilo-minerais, a esmectita e a ilita , aumentaram, porém no cruzeiro III, os valores sofrem redução ficando muito próximo daqueles do cruzeiro I.

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Este trabalho tem como objetivo abordar as estruturas de financiamento de sondas de perfuração de poços de petróleo, tendo sido duas opções selecionadas para serem discutidas: o uso de empréstimos bancários e o uso de Project Bonds. O trabalho sugere uma estrutura híbrida de financiamento que tem sido usada no Brasil desde 2010 para sondas de perfuração de poços de petróleo, mas de forma não planejada, sem uma análise mais robusta dos fatores que podem interferir na escolha de uma opção em detrimento da outra. Se por um lado as restrições ao financiamento bancário de longo prazo estão aumentando, principalmente devido à adoção das regras da Basiléia III, logo isso tende a diminuir a preferência dos bancos por financiamentos de longo prazo. Por outro lado, o investidor institucional tem buscado diversificar seus investimentos de longo prazo, principalmente após a diminuição das taxas de juros nos países desenvolvidos (Europa e América do Norte). O momento atual é favorável para a discussão desta temática, portanto, o trabalho analisa de forma crítica o cenário e as opções mais utilizadas de financiamento e sugere uma alternativa de financiamento das sondas usadas na perfuração de poços para exploração de petróleo. Para tanto, foi realizado um estudo de caso, onde foi feita uma simulação de financiamento de uma sonda de perfuração do tipo drillship usando duas estruturas de financiamento: a primeira foi um empréstimo bancário via Project Finance e a segunda foi um empréstimo bancário via Project Finance pelo período de construção e um Project Bond após o período de construção pelo prazo remanescente. Em seguida foi feita uma análise quantitativa de algumas variáveis (taxa Treasury e risco de crédito da Petrobrás) que podem impactar as duas opções de estrutura de financiamento com o objetivo de fazer inferências sobre quais considerações os indivíduos tomadores de decisão do mercado, tais como o banco e o investidor institucional, precisam analisar antes de contratar a construção de uma sonda. Esta análise contribuirá para aumentar a previsibilidade na escolha da alternativa de financiamento de forma a proporcionar ao empreendedor a opção de financiamento mais barata antecipadamente e para que ele não precise esperar o período de construção acabar para optar em continuar no empréstimo bancário ou emitir um Project Bond. Se o empreendedor souber como essas duas variáveis se comportam durante o período de construção, poderá optar pela alternativa de financiamento mais barata no momento da estruturação do empréstimo inicial, economizando dinheiro devido ao fato de o período de empréstimo ser menor (o empréstimo seria apenas pelo período de construção) e, consequentemente, teria taxas de juros menores, quanto pelos custos adicionais cobrados em duplicidade (durante a estruturação do empréstimo e depois durante a emissão do Project Bond) que poderiam ser cobrados considerando a operação como um todo.

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One of waste produced on large scale during the well drilling is the gravel drilling. There are techniques for the treatment of the same, but there isn t consensus on what are the best in terms of economic and environmental. One alternative for disposal of this waste and objective of this paper is the incorporation and immobilization of gravel clay matrix to assess their technological properties. The Raw Materials used were characterized by the following techniques: Chemical Analysis by X-ray fluorescence (XRF), mineralogical analysis by X-ray Diffraction (XRD), Grain Size Analysis (FA) and Thermal Analysis by Thermogravimetry (TG) and thermodiferential (DTA). After characterizing, samples were formulated in the following percentages: 0, 5, 10, 15, 25, 50, 75, 100% (weight) of gravel drilling, then the pieces were pressed, dried (110 ° C) and sintered at temperatures of 850, 950 and 1050 ° C. After sintering, samples were tested for water absorption, linear shrinkage, flexural strength, porosity, density, XRD and test color. The results concluded that the incorporation of gravel drilling is a viable possibility for solid masonry bricks and ceramic blocks manufacture at concentrations and firing temperature described here. Residue incorporation reduces an environmental problem, the cost of raw materials for manufacture of ceramic products

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Primary cementing is one of the main operations in well drilling responsible for the mechanical stability and zonal isolation during the production of oil. However, the cement sheath is constantly under mechanical stresses and temperature variations caused by the recovery of heavy oil. In order to minimize fracture and wear of the cement sheath, new admixtures are developed to improve the properties of Portland cement slurries and avoid environmental contamination caused by leaking gas and oil. Polymers with the ability to form polymeric films are candidates to improve the properties of hardened cement slurries, especially their fracture energy. The present study aimed at evaluating the effect of the addition of a chitosan suspension on cement slurries in order to improve the properties of the cement and increase its performance on heavy oil recovery. Chitosan was dissolved in acetic ac id (0.25 M and 2 M) and added to the formulation of the slurries in different concentrations. SEM analyses confirmed the formation of polymeric films in the cementitious matrix. Strength tests showed higher fracture energy compared to slurries without the addition of chitosan. The formation of the polymeric films also reduced the permeability of the slurry. Therefore, chitosan suspensions can be potentially used as cementing admixtures for heavy oil well applications

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Cementing operations are conducted at different times of the well s life and they have high importance, because the functions are fundamental to keep good properties during a long life of the well, such as, maintain the mechanical stability of the well, to promote the isolation hydraulic and support the tubing. In some situations, the rocky zones have low fractures pressures and require the use of lightweight slurries to prevent the hydrostatic pressure in the formation is greater than the pressure of fracture. There are three ways to reduce the density of cement slurries: exterders water additives, microspheres and foamed slurries. The most used extender water additive is sodium bentonite, which is a clay with a good capacity of water absorption and expansion of its volume, the main disadvantage of this additive is the reduction of the strength. Currently, the use of nanoscale particles has received special attention, mainly because they get new functionalities. Following this trend, this paper aims to use a colloidal solution of nano-silica as an exterders water additives for use in oil wells. Slurries were designed with fixed 13lb/gal density and concentration of nano silica 0.1 gpc; 0.4 gpc; 0.7 and 1gpc, the influence of nano-silica was studied at these levels in isolation and combined varying concentrations of CaCl2,. Tests including rheology, stability, strength, thickening time, porosity and permeability. Besides the API tests, microstructural characterizations were performed after 28 days of the slurries, X-ray diffraction (XRD) and scanning electron microscopy (SEM)

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One of the great challenges at present time related with the materials area concerns of products and processes for use in petroleum industry, more precisely related to the Pre-salt area. Progresses were reached in the last years allowing the drilling of the salt layer, with the time reduction for drilling and larger success at the end. For the oil wells companies the preponderant factor is the technology, however, in spite of the progress, a series of challenges is still susceptible to solutions and one of them refers to the slurries preparation for cementing in those areas. Inside of this context, this study had for objective to analyze the influence of the salts NaCl, KCl, CaSO4 and MgSO4 in strength and chemical structure of the hydrated products. As methodology, they were prepared and analyzed cement slurries with varied concentrations of these salts that are commonly found in the saline formations. The salts concentrations used in formulations of the slurries were of 5%, 15% and 30%. The slurries were formulated with specific weight of 15,8 lb / gal and the cement used was Class G. Strength tests were accomplished in samples cured by 24 hours and 28 days. Also were realized crystallographic characterization (XRD) and morphologic (SEM). In agreement with the presented results, it is observed that the largest resistance values are attributed to the slurries with concentration of 15%. There was reduction of the strength values of the slurries formulated with concentration of 30%. Through the characterization microstructural it was possible to note the salts influence in the main cement hydrated products

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The oil wells cementing is a critical step during the phase of well drilling, because problems during the operation of slurry pumping and an incomplete filling of the annular space between the metal casing and the formation can cause the slurry loss. Therefore, the slurry adopted in primary cementing an oil well must be properly dosed so that these problems are avoided during its pumping. When you drill a well in a weak rock formation requires even more careful, because should be a limit of hydrostatic pressure exerted during cementation, that does not occur rock collapse. With the objective of performing the cementing of a well whose formation is weak or unconsolidated are employed lighter slurries. Thus, this study used slurries with sodium silicate and nano silica in concentrations of 0,1; 0,4; 0,7 e 1,0 gpc, in which the slurries with nano silica showed the rheological parameters higher concentrations of up to 0.7 gpc and for concentration of 1.0 the slurry with sodium silicate obtained the highest values, remaining above the limits for application in fields, mainly wells with low fracture gradient, because a significant increase in viscosity may result in an increase in pressure pumping in operations of secondary cementations. Furthermore, there was no decrease in strength with increasing concentration of additive. Then, it is possible use of these additives to formulate Lighter slurry

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Chemical admixtures, when properly selected and quantified, play an important role in obtaining adequate slurry systems for quality primary cementing operations. They assure the proper operation of a well and reduce costs attributed to corrective cementing jobs. Controlling the amount lost by filtering through the slurry to permeable areas is one of the most important requirements in an operation, commonly controlled by chemical admixtures, such as carboxymethylcellulose (CMC). However, problems related to temperature, salttolerance and the secundary retarding effect are commonly reported in the literature. According to the scenario described above, the use of an aqueous dispersion of non-ionic poliurethane was proposed to control the filter loss, given its low ionic interaction with the free ions present in the slurries in humid state. Therefore, this study aims at assessing the efficiency of poliurethane to reduce filter loss in different temperature and pressure conditions as well as the synergistic effect with other admixtures. The temperatures and pressures used in laboratory tests simulate the same conditions of oil wells with depths of 500 to 1200 m. The poliurethane showed resistance to thermal degradation and stability in the presence of salts. With the increase in the concentration of the polymer there was a considerable decrease in the volume lost by filtration, and this has been effective even with the increase in temperature

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Deep bed filtration occurs in several industrial and environmental processes like water filtration and soil contamination. In petroleum industry, deep bed filtration occurs near to injection wells during water injection, causing injectivity reduction. It also takes place during well drilling, sand production control, produced water disposal in aquifers, etc. The particle capture in porous media can be caused by different physical mechanisms (size exclusion, electrical forces, bridging, gravity, etc). A statistical model for filtration in porous media is proposed and analytical solutions for suspended and retained particles are derived. The model, which incorporates particle retention probability, is compared with the classical deep bed filtration model allowing a physical interpretation of the filtration coefficients. Comparison of the obtained analytical solutions for the proposed model with the classical model solutions allows concluding that the larger the particle capture probability, the larger the discrepancy between the proposed and the classical models