982 resultados para Equipment Work Simulator


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Os equipamentos de medição utilizados nos hospitais têm uma função muito importante na deteção e diagnóstico de doenças como é o caso da pressão arterial. Entre esses equipamentos encontram-se os esfigmomanómetros digitais portáteis que são em muitos casos os primeiros a serem utilizados e a fornecerem um primeiro diagnóstico da pressão arterial do doente como é no caso das urgências hospitalares. Para que os diagnósticos prescritos pelos profissionais de saúde - médicos e enfermeiros seja o mais correto é necessário conhecer as condições de trabalho em que se encontram os esfigmomanómetros digitais existentes nas unidades de saúde. Sendo os esfigmomanómetros digitais equipamentos com uma importância relevante na vida do ser humano, estes deveriam fazer parte da lista de equipamentos que estão englobados na metrologia legal, situação que neste momento ainda não foi concretizada e cada hospital toma a decisão espontânea se efetua a calibração ou verificação internamente dos seus esfigmomanómetros digitais. Pretende-se com este trabalho dar a conhecer o estado ao nível dos erros de alguns esfigmomanómetros digitais existentes nos hospitais envolvidos no trabalho e desenvolver um procedimento de verificação interna dos mesmos com auxílio de um manómetro analógico calibrado e um estetoscópio duplo – método de medição auscultatório - e comparar esses resultados com a utilização de um simulador – método de medição oscilométrico.

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Este documento apresenta uma avaliação sobre o uso dos simuladores fisiológicos como padrão para avaliação metrológica dos esfigmomanómetros automáticos na estimação da pressão sanguínea pelo método não invasivo (PNI). O presente estudo procurou avaliar o enquadramento destes equipamentos com os procedimentos das normas e recomendações usadas para apreciação metrológica dos esfigmomanómetros digitais. No contexto da prática metrológica existente determinou-se a existência de uma oportunidade de melhoria nos processos relacionados. O trabalho procurou obter resposta a diversas questões, relacionando a medição da pressão pelo método não invasivo, com o uso dos simuladores fisiológicos, o contexto em que estes podem ser usados, as formas de simulação, as medições e os resultados, procurando a perspetiva metrológica como enquadramento. As recomendações existentes [1] [2] [3] [4] [5] [6] [7] [8], são muito claras nos procedimentos, validação e nos desvios permitidos para os monitores da tensão arterial (MTA), equipamento que permite a avaliação dos parâmetros fisiológicos do paciente, no entanto, quando se pretende avançar para outro domínio, como o do uso dos simuladores, em particular para a simulação da PNI, não existem recomendações ou normas tão claras, e não existe sobretudo um padrão de referência que imite a natureza dinâmica que caracteriza a pressão sanguínea. O trabalho procurou ainda estabelecer a ligação entre o método clássico de auscultação (o principio de determinação da PS), a técnica digital de medição e os simuladores, para uma melhor compreensão do que é a pressão sanguínea, e como relacionar a problemática da simulação e a de um padrão de referência. Neste trabalho estão ainda presentes abordagens a diversos tópicos, como as validações clínicas, acessórios, ou a metrologia e que influenciam no final os equipamentos e o contexto que se pretende avaliar. Os diversos equipamentos testados procuraram conter amostras diversificadas, quer para os MTA de uso profissional ou doméstico, assim como para os simuladores. A avaliação dos simuladores foi realizada contra um grupo de MTAs. Foi testada a influência na medição, causada pela mudança de acessórios, ou seja, nos resultados, merecendo consideração pela perspetiva metrológica. No resumo dos testes e do estudo sobre este tema, verificou-se que esta tipologia de equipamentos pode contribuir como complemento do processo de calibração típico (estático). Não constitui por si só um método alternativo, mas permitiu estimar possíveis limites de erro e desvio padrão a partir da observação dos resultados práticos, limites esses inferiores aos processos de validação clínica. Atendendo às particularidades, estimou-se como desvio aceitável um erro mais desvio padrão de 5 + 3 mmHg para o processo de simulação. Contudo considera-se ainda importante os testes adicionais em que o simulador permite, ao verificar as medidas de segurança implementadas no equipamento e a condição dos acessórios, que como verificado afetam os resultados. No entanto nem todos os simuladores se mostram adequados a este processo pelo que a qualidade da seleção do equipamento para este fim pode eventualmente reduzir ainda mais os possíveis limites.

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A Work Project, presented as part of the requirements for the Award of a Masters Degree in Management from the NOVA – School of Business and Economics

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Throughout recent years, there has been an increase in the population size, as well as a fast economic growth, which has led to an increase of the energy demand that comes mainly from fossil fuels. In order to reduce the ecological footprint, governments have implemented sustainable measures and it is expected that by 2035 the energy produced from renewable energy sources, such as wind and solar would be responsible for one-third of the energy produced globally. However, since the energy produced from renewable sources is governed by the availability of the respective primary energy source there is often a mismatch between production and demand, which could be solved by adding flexibility on the demand side through demand response (DR). DR programs influence the end-user electricity usage by changing its cost along the time. Under this scenario the user needs to estimate the energy demand and on-site production in advance to plan its energy demand according to the energy price. This work focuses on the development of an agent-based electrical simulator, capable of: (a) estimating the energy demand and on-site generation with a 1-min time resolution for a 24-h period, (b) calculating the energy price for a given scenario, (c) making suggestions on how to maximize the usage of renewable energy produced on-site and to lower the electricity costs by rescheduling the use of certain appliances. The results show that this simulator allows reducing the energy bill by 11% and almost doubling the use of renewable energy produced on-site.

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A high demand exists to increase the efficiency of present airport ground facilities and the co-ordination of traffic and services. The Traffic Office plays a crucial role in managing the airport. The main tasks of the Traffic Office is management of equipment, services, and ressources based on the flight schedule and resolving conflicts arising from deviations from the schedule. A new tool will support information exchange between Traffic Office and other facilities on the airport.

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The simulation and development work that has been undertaken to produce a signal equaliser used to improve the data rates from oil well logging instruments is presented. The instruments are lowered into the drill bore hole suspended by a cable which has poor electrical characteristics. The equaliser described in the paper corrects for the distortions that occur from the cable (dispersion and attenuation) with the result that the instrument can send data at 100 K.bits/second down its own suspension cable of 12 Km in length. The use of simulation techniques and tools were invaluable in generating a model for the distortions and proved to be a useful tool when site testing was not available.

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The misuse of personal protective equipment (PPE) during pesticide application was investigated among smallholders in Colombia. The integrative agent-centered (IAC) framework and a logistic regression approach were adopted. The results suggest that the descriptive social norm was significantly influencing PPE use. The following were also important: (1) having experienced pesticide-related health problems; (2) age; (3) the share of pesticide application carried out; and (4) the perception of PPE hindering work. Interestingly, the influence of these factors differed for different pieces of PPE. Since conformity to the social norm is a source of rigidity in the system, behavioral change may take the form of a discontinuous transition. In conclusion, five suggestions for triggering a transition towards more sustainable PPE use are formulated: (1) diversifying targets/tools; (2) addressing structural aspects; (3) sustaining interventions in the long-term; (4) targeting farmers’ learning-by-experience; and (5) targeting PPE use on a collective level.

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The construction field is dynamic and dominated by complex, ill-defined problems for which myriad possible solutions exist. Teaching students to solve construction-related problems requires an understanding of the nature of these complex problems as well as the implementation of effective instructional strategies to address them. Traditional approaches to teaching construction planning and management have long been criticized for presenting students primarily with well-defined problems - an approach inconsistent with the challenges encountered in the industry. However, growing evidence suggests that employing innovative teaching approaches, such as interactive simulation games, offers more active, hands-on and problem-based learning opportunities for students to synthesize and test acquired knowledge more closely aligned with real-life construction scenarios. Simulation games have demonstrated educational value in increasing student problem solving skills and motivation through critical attributes such as interaction and feedback-supported active learning. Nevertheless, broad acceptance of simulation games in construction engineering education remains limited. While recognizing benefits, research focused on the role of simulation games in educational settings lacks a unified approach to developing, implementing and evaluating these games. To address this gap, this paper provides an overview of the challenges associated with evaluating the effectiveness of simulation games in construction education that still impede their wide adoption. An overview of the current status, as well as the results from recently implemented Virtual Construction Simulator (VCS) game at Penn State provide lessons learned, and are intended to guide future efforts in developing interactive simulation games to reach their full potential.

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Students in the architecture, engineering, and construction disciplines are often challenged with visualizing and understanding the complex spatial and temporal relationships involved in designing and constructing three-dimensional (3D) structures. An evolving body of research traces the use of educational computer simulations to enhance student learning experiences through testing real-world scenarios and the development of student decision-making skills. Ongoing research at Pennsylvania State University aims to improve engineering education in construction through interactive construction project learning applications in an immersive virtual reality environment. This paper describes the first- and second-generation development of the Virtual Construction Simulator (VCS), a tool that enables students to simultaneously create and review construction schedules through 3D model interaction. The educational value and utility of VCS was assessed through surveys, focus group interviews, and a student exercise conducted in a construction management class. Results revealed VCS is a valuable and effective four-dimensional (4D) model creation and schedule review application that fosters collaborative work and greater student task focus. This paper concludes with a discussion of the findings and the future development steps of the VCS educational simulation

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An overview of stencil work in American in the second half of the nineteenth century, which shows and discusses stencil plates, stencil-making equipment, catalogues and other ephemera, and patents. The article additionally identifies some of the prominent individuals and companies who produced the work, and locates references to stencils in contemporary literature, including in the writing of Mark Twain.

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A student in the Welding Department at the New York Trade School is pictured working. Notice the sparks that are being emitted from the equipment. Black and white photograph.

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From their early days, Electrical Submergible Pumping (ESP) units have excelled in lifting much greater liquid rates than most of the other types of artificial lift and developed by good performance in wells with high BSW, in onshore and offshore environments. For all artificial lift system, the lifetime and frequency of interventions are of paramount importance, given the high costs of rigs and equipment, plus the losses coming from a halt in production. In search of a better life of the system comes the need to work with the same efficiency and security within the limits of their equipment, this implies the need for periodic adjustments, monitoring and control. How is increasing the prospect of minimizing direct human actions, these adjustments should be made increasingly via automation. The automated system not only provides a longer life, but also greater control over the production of the well. The controller is the brain of most automation systems, it is inserted the logic and strategies in the work process in order to get you to work efficiently. So great is the importance of controlling for any automation system is expected that, with better understanding of ESP system and the development of research, many controllers will be proposed for this method of artificial lift. Once a controller is proposed, it must be tested and validated before they take it as efficient and functional. The use of a producing well or a test well could favor the completion of testing, but with the serious risk that flaws in the design of the controller were to cause damage to oil well equipment, many of them expensive. Given this reality, the main objective of the present work is to present an environment for evaluation of fuzzy controllers for wells equipped with ESP system, using a computer simulator representing a virtual oil well, a software design fuzzy controllers and a PLC. The use of the proposed environment will enable a reduction in time required for testing and adjustments to the controller and evaluated a rapid diagnosis of their efficiency and effectiveness. The control algorithms are implemented in both high-level language, through the controller design software, such as specific language for programming PLCs, Ladder Diagram language.

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In the artificial lift method by Electrical Submersible Pump (ESP), the energy is transmitted for the well´s deep through a flat electric handle, where it is converted into mechanical energy through an engine of sub-surface, which is connected to a centrifugal pump. This transmits energy to the fluid under the pressure form, bringing it to the surface In this method the subsurface equipment is basically divided into: pump, seal and motor. The main function of the seal is the protect the motor, avoiding the motor´s oil be contaminated by oil production and the consequent burning of it. Over time, the seal will be wearing and initiates a contamination of motor oil, causing it to lose its insulating characteristics. This work presents a design of a magnetic sensor capable of detecting contamination of insulating oil used in the artificial lift method of oil-type Electrical Submersible Pump (ESP). The objective of this sensor is to generate alarm signal just the moment when the contamination in the isolated oil is present, enabling the implementation of a predictive maintenance. The prototype was designed to work in harsh conditions to reach a depth of 2000m and temperatures up to 150°C. It was used a simulator software to defined the mechanical and electromagnetic variables. Results of field experiments were performed to validate the prototype. The final results performed in an ESP system with a 62HP motor showed a good reliability and fast response of the prototype.

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The progressing cavity pump artificial lift system, PCP, is a main lift system used in oil production industry. As this artificial lift application grows the knowledge of it s dynamics behavior, the application of automatic control and the developing of equipment selection design specialist systems are more useful. This work presents tools for dynamic analysis, control technics and a specialist system for selecting lift equipments for this artificial lift technology. The PCP artificial lift system consists of a progressing cavity pump installed downhole in the production tubing edge. The pump consists of two parts, a stator and a rotor, and is set in motion by the rotation of the rotor transmitted through a rod string installed in the tubing. The surface equipment generates and transmits the rotation to the rod string. First, is presented the developing of a complete mathematical dynamic model of PCP system. This model is simplified for use in several conditions, including steady state for sizing PCP equipments, like pump, rod string and drive head. This model is used to implement a computer simulator able to help in system analysis and to operates as a well with a controller and allows testing and developing of control algorithms. The next developing applies control technics to PCP system to optimize pumping velocity to achieve productivity and durability of downhole components. The mathematical model is linearized to apply conventional control technics including observability and controllability of the system and develop design rules for PI controller. Stability conditions are stated for operation point of the system. A fuzzy rule-based control system are developed from a PI controller using a inference machine based on Mandami operators. The fuzzy logic is applied to develop a specialist system that selects PCP equipments too. The developed technics to simulate and the linearized model was used in an actual well where a control system is installed. This control system consists of a pump intake pressure sensor, an industrial controller and a variable speed drive. The PI control was applied and fuzzy controller was applied to optimize simulated and actual well operation and the results was compared. The simulated and actual open loop response was compared to validate simulation. A case study was accomplished to validate equipment selection specialist system

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This dissertation aims to assess the representativeness of the manual chilled mirror analyzer (model II Chanscope 13-1200-CN-2) used for the determination of condensed hydrocarbons of natural gas compared to the indirect methods, based on thermodynamic models equation of state. Additionally, it has been implemented in this study a model for calculating the dew point of natural gas. The proposed model is a modification of the equation of state of Peng-Robinson admits that the groups contribution as a strategy to calculate the binary interaction parameters kij (T) temperature dependence. Experimental data of the work of Brown et al. (2007) were used to compare the responses of the dew point of natural gas with thermodynamic models contained in the UniSim process simulator and the methodology implemented in this study. Then two natural gas compositions were studied, the first being a standard gas mixture gravimetrically synthesized and, second, a mixture of processed natural gas. These experimental data were also compared with the results presented by UniSim process simulator and the thermodynamic model implemented. However, data from the manual analysis results indicated significant differences in temperature, these differences were attributed to the formation of dew point of water, as we observed the appearance of moisture on the mirror surface cooling equipment