994 resultados para VVER-440 reactors


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Keski-Uudenmaan joukkoliikenteen palvelutaso –selvitys on jatkoa Uudenmaan ELY-keskuksen esiselvitykselle joukkoliikenteen palvelutason määrittämisestä Uudenmaan ELYn alueella, 29/2010. Esiselvityksen mukaisesti Uudenmaan ELYn alueen joukkoliikenteen palvelutason määrittelytyö jaettiin toteutettavaksi seitsemässä seutulippualueisiin perustuvassa kokonaisuudessa. Määrittelytyöstä valmistui seitsemän raporttia, joista tämä Keski-Uuttamaata koskeva on yksi. Selvitys on osa prosessia, jossa ELY-keskus yhteistyössä kuntien, toimivaltaisten viranomaisten, maakunnan liittojen ja liikenteenharjoittajatahojen kanssa valmisteli Uudenmaan ELY-keskuksen joukkoliikennelain mukaista päätöstä joukkoliikenteen palvelutason vahvistamisesta. ELY-keskus vahvisti selvityksen mukaisen tavoitteellisen palvelutason vuosiksi 2012 – 2016 päätöksellään joulukuussa 2011. Selvityksessä on kuvattu joukkoliikenteen nykyinen sekä tavoitteellinen, vuoteen 2016 ulottuva palvelutaso. Kuvaus on tehty pääsääntöisesti yhteysvälitarkasteluna. Valitut yhteysvälit on luokiteltu liikenteen määrällisten ja laadullisten tekijöiden perusteella kuuteen luokkaan: kilpailutaso, houkutteleva taso, keskitaso, peruspalvelutaso, minimitaso ja lakisääteinen taso. Tärkeimpinä luokittelutekijöinä käytettiin liikennöintiaikaa ja vuoromäärää. Luokittelussa on sovellettu Liikenneviraston ohjetta 15/2011.

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The purpose of this study was to establish normal reference electrocardiographic (ECG) values for standard limb lead II in Saanen goats. For this, were used 19 healthy adult female Saanen goats. And for reference values for the ECG parameters, were used 95% confidence level. The overall P, Q, R, S and T durations (seconds) were 0.03±0.01, 0.02±0.005, 0.03±0.014, 0.03±0.011, 0.06±0.014 respectively, and the reference values were 0.01-0.04, 0.01-0.02, 0.01-0.06, 0.02-0.04 and 0.04-0.08 respectively. The amplitudes (milivolts) of these waveforms were 0.1±0.031, 0.06±0.023, 0.44±0.312, 0.39±0.434, 0.26±0.164 (T negative) and 0.15±0.071 (T positive), respectively. The reference values were 0.05-0.15, 0.05-0.1, 0.05-1.2, 0.05-1.1 and -0.2-0.7 respectively. The PR and QT interval, the QRS complex and the ST segment durations (seconds) were 0.08±0.018, 0.26±0.03, 0.05±0.008, 0.15±0.041 respectively. The reference values were 0.06-0.12, 0.2-0.32, 0.04-0.07 and 0.11-0.26, respectively. It was possible to observe differences in ECG of Saanen goats regarding the amplitude and duration of the constituents when compared to the results of other breeds. Therefore it is necessary to conduct further studies to allow comparisons, detect and diagnose cardiac arrhythmias and help the development of therapies.

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A fim de avaliar o efeito do suplemento mineral aniônico sobre parâmetros sanguíneos, urinários e incidência de hipocalcemia e retenção de placenta, dezoito vacas de aptidão leiteira com grau de sangue 7/8 Holandesa preta e branca, com 440-620 kg e 5-10 anos, foram divididas com delineamento em blocos em função da ordem de parto em dois grupos: controle (BCAD=46,38mEq/kg de MS) e tratamento (com adição de suplemento mineral aniônico e BCAD = -249,28mEq/kg de MS). Foram monitorados níveis de cálcio total e pH na urina e soro sanguíneo; TCO2, pCO2, HCO3, excesso de base, cálcio ionizado, Na, K, Se no sangue; escore de condição corporal, hematócrito e hemoglobina. Os dados sanguíneos, urinários e ECC foram submetidos ao Proc Means do SAS (2000) com análise de variância a 5% e teste de Tukey e a incidência de retenção de placenta analisada por Mann-Whitney (P<0,07) e a concentração sérica de Se por teste t de Student (P<0,05), ambos pelo GraphPad Prism 5.0. O suplemento mineral aniônico diminuiu os valores de TCO2, pCO2, HCO3 e EB no sangue com menor perda de peso, mas a variação de pH e cálcio foi restrita ao tempo. O suplemento mineral aniônico não provocou leve acidose metabólica desejada e, consequentemente, não preveniu a hipocalcemia. Contudo, por apresentar Se em sua composição, proporcionou maior concentração deste micronutriente no soro e contribuiu para menor retenção de placenta.

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1818/10/06 (Numéro 440).

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The fuel element of LMFBR consists of a bundle of rods wrapped with an helical wire as spacer, surrounded by an hexagonal duct. In the present work, a semi-empirical model is developed to calculate bundle average and subchannel based friction factors and flow redistribution. The obtained results were compared to experimental data and they were considered satisfactory for wide range of geometrical parameters.

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An experimental investigation is performed in a turbulent flow in a seven wire-wrapped rod bundle, mounted in an open air facility. Static pressure distributions are measured on central and peripheral rods. By using a Preston tube, the wall shear stress profiles are experimentally obtained along the perimeter of the rods. The geometric parameters of the test section are P/D=1.20 and H/D=15. The measuring section is located at L/D=40 from the air inlet. It is observed that the dimensionless static pressure and wall shear stress profiles are nearly independent of the Reynolds number and strongly dependent of the wire-spacer position, with abrupt variations of the parameters in the neighborhood of the wires.

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Fuel elements of PWR type nuclear reactors consist of rod bundles, arranged in a square array, and held by spacer grids. The coolant flows, mainly, axially along the rods. Although such elements are laterally open, experiments are performed in closed type test sections, originating the appearance of subchannels with different geometries. In the present work, utilizing a test section of two bundles of 4x4 pins each, experiments were performed to determine the friction and the grid drag coefficients for the different subchannels and to observe the effect of the grids in the crossflow, in cases of inlet flow maldistribution.

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In nuclear reactors, the occurrence of critical heat flux leads to fuel rod overheating with clad fusion and radioactive products leakage. To predict the effects of such phenomenon, experiments are performed using electrically heated rods to simulate operational and accidental conditions of nuclear fuel rods. In the present work, it is performed a theoretical analysis of the drying and rewetting front propagation during a critical heat flux experiment, starting with the application of an electrical power step from steady state condition. After the occurrence of critical heat flux, the drying front propagation is predicted. After a few seconds, a power cut is considered and the rewetting front behavior is analytically observed. Studies performed with various values of coolant mass flow rate show that this variable has more influence on the drying front velocity than on the rewetting one.

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One of the main problems related to the transport and manipulation of multiphase fluids concerns the existence of characteristic flow patterns and its strong influence on important operation parameters. A good example of this occurs in gas-liquid chemical reactors in which maximum efficiencies can be achieved by maintaining a finely dispersed bubbly flow to maximize the total interfacial area. Thus, the ability to automatically detect flow patterns is of crucial importance, especially for the adequate operation of multiphase systems. This work describes the application of a neural model to process the signals delivered by a direct imaging probe to produce a diagnostic of the corresponding flow pattern. The neural model is constituted of six independent neural modules, each of which trained to detect one of the main horizontal flow patterns, and a last winner-take-all layer responsible for resolving when two or more patterns are simultaneously detected. Experimental signals representing different bubbly, intermittent, annular and stratified flow patterns were used to validate the neural model.

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Microreactors have proven to be versatile tools for process intensification. Over recent decades, they have increasingly been used for product and process development in chemical industries. Enhanced heat and mass transfer in the reactors due to the extremely high surfacearea- to-volume ratio and interfacial area allow chemical processes to be operated at extreme conditions. Safety is improved by the small holdup volume of the reactors and effective control of pressure and temperature. Hydrogen peroxide is a powerful green oxidant that is used in a wide range of industries. Reduction and auto-oxidation of anthraquinones is currently the main process for hydrogen peroxide production. Direct synthesis is a green alternative and has potential for on-site production. However, there are two limitations: safety concerns because of the explosive gas mixture produced and low selectivity of the process. The aim of this thesis was to develop a process for direct synthesis of hydrogen peroxide utilizing microreactor technology. Experimental and numerical approaches were applied for development of the microreactor. Development of a novel microreactor was commenced by studying the hydrodynamics and mass transfer in prototype microreactor plates. The prototypes were designed and fabricated with the assistance of CFD modeling to optimize the shape and size of the microstructure. Empirical correlations for the mass transfer coefficient were derived. The pressure drop in micro T-mixers was investigated experimentally and numerically. Correlations describing the friction factor for different flow regimes were developed and predicted values were in good agreement with experimental results. Experimental studies were conducted to develop a highly active and selective catalyst with a proper form for the microreactor. Pd catalysts supported on activated carbon cloths were prepared by different treatments during the catalyst preparation. A variety of characterization methods were used for catalyst investigation. The surface chemistry of the support and the oxidation state of the metallic phase in the catalyst play important roles in catalyst activity and selectivity for the direct synthesis. The direct synthesis of hydrogen peroxide was investigated in a bench-scale continuous process using the novel microreactor developed. The microreactor was fabricated based on the hydrodynamic and mass transfer studies and provided a high interfacial area and high mass transfer coefficient. The catalysts were prepared under optimum treatment conditions. The direct synthesis was conducted at various conditions. The thesis represents a step towards a commercially viable direct synthesis. The focus is on the two main challenges: mitigating the safety problem by utilization of microprocess technology and improving the selectivity by catalyst development.

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RENSOL (Regional Energy Solutions) project deals with the use of energy efficiency and renewable energy solutions in Kaliningrad Oblast to tackle climate change. Overall objective of the RENSOL work package 1 is to build awareness and knowledge on solutions for energy efficient buildings and street lightning applications. This project report describes available solutions to improve housing energy efficiency.