934 resultados para Oil, Gas, and Energy


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Previous work has shown that high-temperature short-term spike thermal annealing of hydrogenated amorphous silicon (a-Si:H) photovoltaic thermal (PVT) systems results in higher electrical energy output. The relationship between temperature and performance of a-Si:H PVT is not simple as high temperatures during thermal annealing improves the immediate electrical performance following an anneal, but during the anneal it creates a marked drop in electrical performance. In addition, the power generation of a-Si:H PVT depends on both the environmental conditions and the Staebler-Wronski Effect kinetics. In order to improve the performance of a-Si:H PVT systems further, this paper reports on the effect of various dispatch strategies on system electrical performance. Utilizing experimental results from thermal annealing, an annealing model simulation for a-Si:Hbased PVT was developed and applied to different cities in the U.S. to investigate potential geographic effects on the dispatch optimization of the overall electrical PVT systems performance and annual electrical yield. The results showed that spike thermal annealing once per day maximized the improved electrical energy generation. In the outdoor operating condition this ideal behavior deteriorates and optimization rules are required to be implemented.

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As transformações recentes das relações sociais e econômicas incrementados pelo dinamismo do comércio internacional, sua crescente complexidade e as recémdescobertas reservas petrolíferas na camada pré-sal, aliadas ao fenômeno da globalização, contribuem para o processo de internacionalização do Direito. Esse cenário tem demandado, ainda, novos instrumentos de solução dos conflitos e de controle social, exigindo dos magistrados brasileiros maior expertise no julgamento das demandas contemporâneas. Diante desse cenário, é necessário construir alternativas que realmente busquem modificar as estruturas vigentes na teoria, na práxis e no ensino do Direito. Assim, o objetivo geral desta pesquisa é contribuir para a eficiência da prestação jurisdicional dos magistrados, seja no âmbito estadual ou federal, que atuam no Estado do Rio de Janeiro e Espírito Santo, diante dos novos desafios que terão em face do comércio internacional e do pré-sal. Com a finalidade de alcançar seu escopo, a pesquisa, no Capítulo 1, trata dos conceitos, princípios e metodologia para atingir o objetivo geral da pesquisa. O Capítulo 2 ocupa-se da abordagem das disciplinas relevantes para uma eficiente prestação jurisdicional do pré-sal e do comércio internacional. Em seguida, o Capítulo 3 trata de analisar o conteúdo das disciplinas ministradas nas Escolas de Magistratura Estadual do Rio de Janeiro e Federal da 2ª Região, bem como as provas para ingresso à carreira da magistratura federal e estadual do Rio de Janeiro e Espírito Santo, no que tange à existência de disciplinas como Direito do Petróleo, Gás e Energia, Direito Econômico, Direito Internacional Público e Privado, Exploração & Produção, Direito do Mar, Direito Marítimo, Direito da Navegação Marítima, Direito Portuário, Direito Aduaneiro e Direito Ambiental. Por fim, serão feitas algumas considerações e apresentadas as referências da pesquisa.

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O objetivo desta dissertação é verificar a aderência de atividades desenvolvidas por uma empresa prestadora de serviços de base tecnológica, atuante na área de petróleo, gás e energia, a Pipeway Engenharia Limitada , aos conceitos teóricos do Paradigma Novas Empresas Internacionais - NEI (RENNIE,1993; MCDOUGALL et. Al., 1994) durante seu processo de internacionalização. Trata-se de um estudo que assume, para o autor, uma relevância significativa, já que a compreensão do processo de internacionalização da empresa analisada, considerada de porte pequeno, permitirá que suas atividades profissionais venham a ser desenvolvidas com melhor compreensão das necessidades, exigências e soluções que esse tipo de empresa requer para a sua internacionalização. Para atingir o objetivo proposto, a metodologia utilizada foi o estudo de caso único em função, assim definido, por um lado, pelo fato de não existir no Brasil uma quantidade importante de empresas com características semelhantes à estudada e, por outro, por ser um método que se aplica, quando se deseja ter respostas a questões, tais como: “como” e “por que”, permitindo a compreensão de fenômenos individuais. Para compreender melhor a evolução do setor de serviços nos mercados internacionais foi necessário fazer um estudo sucinto, baseado em análises documental e bibliográfica, para determinar a evolução e importância do mesmo como fator gerador de riqueza, inovação e sustentação do desenvolvimento empresarial. Considerando que a empresa analisada foca seu trabalho no segmento de petróleo e gás, para melhor compreensão desse segmento econômico, foi realizada análise tanto de âmbito nacional como internacional, de sua atual conformação e situação, pois, diferentemente de outros segmentos internacionais, as empresas que neles desenvolvem suas atividades se deparam com mercados mais abertos e globalizados e essas características têm impacto significativo na empresa analisada. A junção da primeira com a segunda análise permitiu avaliar o grau de competitividade e demais parâmetros a que a empresa estudada teve que atender para ser considerada ou não um Novo Empreendimento Internacional. Posteriormente, com os preceitos metodológicos de estudo de caso, acrescidos dos dados obtidos na pesquisa documental e entrevistas com a alta gerência da empresa, foi efetuado um relato historiográfico da evolução do processo de internacionalização da empresa, destacando os eventos e fatos que possibilitaram verificar a aderência, ou não, aos pressupostos do paradigma NEI. Por fim, foi investigada a evolução internacional da empresa à luz dos critérios de análise, diretamente relacionados com princípios do Paradigma NEI, o que permitiu no capitulo seguinte, vinculado às conclusões em forma empírica, que o processo de internacionalização da Pipeway responde na sua totalidade às características do Paradigma NEI. Um exemplo é a data de início da internacionalização e relação entre as receitas de exportação e faturamento total. Também são apresentadas sugestões para o desenvolvimento de pesquisas futuras, aprimoramento dos programas governamentais de apoio ao processo de internacionalização de Pequenas Empresas e desempenho profissional do autor

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Research has provided no definitive answers on whether PET plastic bottles or aluminum cans are a more environmentally sustainable choice as soda containers. This paper researches the fuel used in recycling each of these materials from Yellowstone National Park to processing locations. The data is used to determine which of these alternatives use less fuel in this process. It was found that plastics use more fuel when transported from Yellowstone National Park to the processing center. Aluminum uses less fuel per ton to transport from Yellowstone to the processing center. The conclusions from this research may have implications on which material would be advised to use in selling soda in Yellowstone National Park.

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An eco-house or zero-energy house is not a new concept- houses with extremely low impact on their surroundings and good use of local resources have been around for centuries. This particular eco-house is designed to offer full modern services and comforts while consuming very low energy and few expensive building materials. Ideally, someone would be able to use this thesis as a blueprint for actual construction.

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Bioenergy and biobased products offer new opportunities for strengthening rural economies, enhancing environmental health, and providing a secure energy future. Realizing these benefits will require the development of many different biobased products and biobased production systems. The biomass feedstocks that will enable such development must be sustainable, widely available across many different regions, and compatible with industry requirements. The purpose of this research is to develop an economic model that will help decision makers identify the optimal size of a forest resource based biofuel production facility. The model must be applicable to decision makers anywhere, though the modeled case analysis will focus on a specific region; the Upper Peninsula (U.P.) of Michigan. This work will illustrate that several factors influence the optimal facility size. Further, this effort will reveal that the location of the facility does affect size. The results of the research show that an optimal facility size can be determined for a given location and are based on variables including forest biomass availability, transportation cost rate, and economy of scale factors. These variables acting alone and interacting together can influence the optimal size and the decision of where to locate the biofuel production facility. Further, adjustments to model variables like biomass resource and storage costs have no effect on facility size, but do affect the unit cost of the biofuel produced.

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The Carrabassett Valley Sanitary District in Carrabassett Valley, Maine has utilized both a forest spray irrigation system and a Snowfluent™ system for the treatment of their wastewater effluent. This study was designed to evaluate potential changes in soil properties after approximately 20 years of treatment in the forested spray irrigation site and three years of treatment in the field Snowfluent™ site. In addition, grass yield and composition were evaluated on the field study sites. After treatment with effluent or Snowfluent™, soils showed an increase in soil exchangeable Ca, Mg, Na, and K, base saturation, and pH. While most constituents were higher in treated soils, available P was lower in treated soils compared to the controls. This difference was attributed to higher rates of P mineralization from soil organic matter due to an irrigation effect of the treatment, depleting available P pools despite the P addition with the treatment. Most of the differences due to treatment were greatest at the surface and diminished with depth. Depth patterns in soil properties mostly reflected the decreasing influence of organic matter and its decomposition products with depth as evidenced by significantly higher total C in the surface compared to lower horizons. There were decreasing concentrations of total N, and exchangeable or extractable Ca, Mg, Na, K, Mn, Zn, and P with depth. In addition, there was decreasing BS with depth, driven primarily by declining exchangeable Ca and Mg. Imgation with Snowfluent™ altered the chemical composition of the grass on the site. All element concentrations were significantly higher in the grass foliage except for Ca. The differences were attributed to the additional nutrients and moisture derived from the Snowfluent™. The use of forest spray imgation and Snowfluent™ as a wastewater treatment strategy appears to work well. The soil and vegetation were able to retain most of the applied nutrients, and do not appear to be moving toward saturation. Vegetation management may be a key tool for managing nutrient accumulation on the grass sites as the system ages.

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Implementation of stable aeroelastic models with the ability to capture the complex features of Multi concept smartblades is a prime step in reducing the uncertainties that come along with blade dynamics. The numerical simulations of fluid structure interaction can thus be used to test a realistic scenarios comprising of full-scale blades at a reasonably low computational cost. A code which was a combination of two advanced numerical models was designed and was run with the help of paralell HPC supercomputer platform. The first model was based on a variation of dimensional reduction technique proposed by Hodges and Yu. This model was the one to record the structural response of heterogenous composite blades. This technique reduces the geometrical complexities of the heterogenous blade section into a stiffness matrix for an equivalent beam. This derived equivalent 1-D strain energy matrix is similar to the actual 3-D strain energy matrix in an asymptotic sense. As this 1-D matrix helps in accurately modeling the blade structure as a 1-D finite element problem, this substantially redues the computational effort and subsequently the computational cost that are required to model the structural dynamics at each step. Second model comprises of implementation of the Blade Element Momentum Theory. In this approach we map all the velocities and the forces with the help of orthogonal matrices that help in capturing the large deformations and the effects of rotations in calculating the aerodynamic forces. This ultimately helps us to take into account the complex flexo torsional deformations. In this thesis we have succesfully tested these computayinal tools developed by MTU’s research team lead by for the aero elastic analysis of wind-turbine blades. The validation in this thesis is majorly based on several experiments done on NREL-5MW blade, as this is widely accepted as a benchmark blade in the wind industry. Along with the use of this innovative model the internal blade structure was also changed to add up to the existing benefits of the already advanced numerical models.

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Purpose – The focus of this research is to find out a meaningful relationship between adopting sustainability practices and some of the characteristics of institutions of higher education (IHE). IHE can be considered as the best place to promote sustainability and develop the culture of sustainability in society. Thus, this research is conducted to help developing sustainability in IHE which have significant direct and indirect impact on society and the environment. Design/methodology/approach – First, the sustainability letter grades were derived from “Greenreportcard.org” which have been produced based on an evaluation of each school in nine main categories including: Administration, Climate Change & Energy, Food & Recycling, etc. In the next step, the characteristics of IHE as explanatory variables were chosen from “The Integrated Postsecondary Education Data System” (IPEDS) and respective database was implemented in STATA Software. Finally, the “ordered-Probit Model” is used through STATA to analyze the impact of some IHE’s factor on adopting sustainability practices on campus. Finding - The results of this analysis indicate that variables related to “Financial support” category are the most influential factors in determining the sustainability status of the university. “The university features” with two significant variables for “Selectivity” and “Top 50 LA” can be classified as the second influential category in this table, although the “Student influence” is also eligible to be ranked as the second important factor. Finally, the “Location feature” of university was determined with the least influential impact on the sustainability of campuses. Originality/value – Understanding the factors which influence adopting sustainability practices in IHE is an important issue to develop more effective sustainability’s methods and policies.

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The effect of feeding 0, 4, 8 and 16% rapeseed oil from 12-42 days of age was studied in broiler chickens on performance, digestibility of nutrients, and development of gastrointestinal tract, protein and energy metabolism. Thirty six female chickens (Ross 208) with initial body weight average 246 g were allocated to the four groups and kept pair-wise in metabolism cages. The chickens were fed similar amounts of metabolisable energy (ME) per day and similar amounts of essential amino acids relative to ME by adjusting with crystalline amino acids. The chickens were subjected to four balance periods each of five days with two 24 h measurements of gas exchange in two open-air-circuit respiration chambers inserted on the second and third day of each period. The addition of rapeseed oil increased the amount of gutfill indicating a reduced rate of passage and causing a hypertrophy of the gastrointestinal tract. There was a positive effect on feed utilisation as well as on digestibility especially of dietary fat together with higher utilisation of protein with addition of rapeseed oil. The partial fat digestibility of rapeseed oil estimated by regression was 91.1% and the partial metabolisability (ME/GE) of the rapeseed oil was estimated to 85% yielding an apparent metabolisable energy value of 34.30 MJ/kg.

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The accurate prediction of storms is vital to the oil and gas sector for the management of their operations. An overview of research exploring the prediction of storms by ensemble prediction systems is presented and its application to the oil and gas sector is discussed. The analysis method used requires larger amounts of data storage and computer processing time than other more conventional analysis methods. To overcome these difficulties eScience techniques have been utilised. These techniques potentially have applications to the oil and gas sector to help incorporate environmental data into their information systems