564 resultados para Hollow flanges


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A miniaturised gas analyser is described and evaluated based on the use of a substrate-integrated hollow waveguide (iHWG) coupled to a microsized near-infrared spectrophotometer comprising a linear variable filter and an array of InGaAs detectors. This gas sensing system was applied to analyse surrogate samples of natural fuel gas containing methane, ethane, propane and butane, quantified by using multivariate regression models based on partial least square (PLS) algorithms and Savitzky-Golay 1(st) derivative data preprocessing. The external validation of the obtained models reveals root mean square errors of prediction of 0.37, 0.36, 0.67 and 0.37% (v/v), for methane, ethane, propane and butane, respectively. The developed sensing system provides particularly rapid response times upon composition changes of the gaseous sample (approximately 2 s) due the minute volume of the iHWG-based measurement cell. The sensing system developed in this study is fully portable with a hand-held sized analyser footprint, and thus ideally suited for field analysis. Last but not least, the obtained results corroborate the potential of NIR-iHWG analysers for monitoring the quality of natural gas and petrochemical gaseous products.

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An enantioselective liquid chromatographic method using two-phase hollow fiber liquid-phase microextraction (HF-LPME-HPLC) was developed for the determination of isradipine (ISR) enantiomers and its main metabolite (pyridine derivative of isradipine, PDI) in microsomal fractions isolated from rat liver. The analytes were extracted from 1 mL of microsomal medium using a two-phase HF-LPME procedure with hexyl acetate as the acceptor phase, 30 min of extraction, and sample agitation at 1,500 rpm. For the first time, ISR enantiomers and PDI were resolved. For this separation, a ChiralpakA (R) AD column with hexane/2-propanol/ethanol (94:04:02, v/v/v) as the mobile phase at a flow rate of 1.5 mL min(-1) was used. The column was kept at 23 A +/- 2 A degrees C. The drug and metabolite detection was performed at 325 nm and the internal standard oxybutynin was detected at 225 nm. The recoveries were 23% for PDI and 19% for each ISR enantiomer. The method presented quantification limits (LOQ) of 50 ng mL(-1) and was linear over the concentration range of 50-5,000 and 50-2,500 ng mL(-1) for PDI and each ISR enantiomer, respectively. The validated method was employed to an in vitro biotransformation study of ISR using rat liver microsomal fraction showing that (+)-(S)-ISR is preferentially biotransformed.

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A three-phase hollow-fiber liquid-phase microextraction method for the analysis of rosiglitazone and its metabolites N-desmethyl rosiglitazone and p-hydroxy rosiglitazone in microsomal preparations is described for the first time. The drug and metabolites HPLC determination was carried out using an X-Terra RP-18 column, at 22 degrees C. The mobile phase was composed of water, acetonitrile and acetic acid (85:15:0.5, v/v/v) and the detection was performed at 245 nm. The hollow-fiber liquid-phase microextraction procedure was optimized using multifactorial experiments and the following optimal condition was established: sample agitation at 1750 rpm, extraction for 30 min, hydrochloric acid 0.01 mol/L as acceptor phase, 1-octanol as organic phase, and donor phase pH adjustment to 8.0. The recovery rates, obtained by using 1 mL of microsomal preparation, were 47-70%. The method presented LOQs of 50 ng/mL and it was linear over the concentration range of 50-6000 ng/mL, with correlation coefficients (r) higher than 0.9960, for all analytes. The validated method was employed to study the in vitro biotransformation of rosiglitazone using rat liver microsomal fraction.

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We describe the classical and quantum two-dimensional nonlinear dynamics of large blue-detuned evanescent-wave guiding cold atoms in hollow fiber. We show that chaotic dynamics exists for classic dynamics, when the intensity of the beam is periodically modulated. The two-dimensional distributions of atoms in (x,y) plane are simulated. We show that the atoms will accumulate on several annular regions when the system enters a regime of global chaos. Our simulation shows that, when the atomic flux is very small, a similar distribution will be obtained if we detect the atomic distribution once each the modulation period and integrate the signals. For quantum dynamics, quantum collapses, and revivals appear. For periodically modulated optical potential, the variance of atomic position will be suppressed compared to the no modulation case. The atomic angular momentum will influence the evolution of wave function in two-dimensional quantum system of hollow fiber.

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We examined the impact of single-tree selective logging and fuel reduction bums on the abundance of hollow-nesting bird species at a regional scale in southeastern Queensland, Australia. Data were collected on species abundance and habitat structure of dry sclerophyll production forest at 36 sites with known logging and fire histories. Sixteen bird species were recorded with most being resident, territorial, obligate hollow nesters that used hollows that were either small (18 cm diameter). Species densities were typically low, but combinations of two forest management and three habitat structural variables influenced the abundances of eight bird species in different and sometimes conflicting ways. The results suggest that habitat tree management for biodiversity in production forests cannot depend upon habitat structural characteristics alone. Management histories appear to have independent influence (on some bird species) that are distinguishable from their impacts on habitat structure per se. Rather than managing to maximize species abundances to maintain biodiversity, we may be better off managing to avoid extinctions of populations by identifying thresholds of acceptable fluctuations in populations of not only hollow-nesting birds but other forest dependent wildlife relative to scientifically valid forest management and habitat structural surrogates.

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Detection of a circumferential crack in a hollow section beam is investigated using coupled response measurements. The crack section is represented by a local flexibility matrix connecting two undamaged beam segments. This matrix defines the relationship between the displacements and forces across the crack section and is derived by applying fundamental fracture mechanics theory. The suitability of the mode coupling methodology is first demonstrated analytically. Laboratory test results are then presented for circular hollow section beams with artificially generated cracks of varying severity. It is shown that this method has the potential as a damage detection tool for mechanical structures. (C) 2002 Elsevier Science Ltd. All rights reserved.

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Six species of trees located in the dry sclerophyll forests of southeast Queensland were studied to ascertain which was most suitable to be retained as hollow-bearing trees for nesting and denning by arboreal marsupials. Generally for all tree species, the number of entrances to hollows was positively correlated with the diameter at breast height (DBH) and the growth stage, and entrance diameters also increased in trees with a larger DBH. However, there were differences between the species; Corymbia citriodora had few hollows until the individuals were very large while Eucalyptus crebra had low numbers of hollows throughout its entire size range. It was concluded that a mixture of tree species provided a range of hollow sizes and positions that would be suitable for nesting and denning by arboreal marsupials in those forests. There were large differences between tree species in the relationship between tree size and estimated age. Five of the tree species took between 186 and 230 years to begin to produce hollows while E. crebra took up to 324 years. This suggests that tree species other than E. crebra may be the most preferred for retention in areas where hollow-bearing tree densities are lower than the prescribed level. Other data also suggests there are likely to be enough trees in larger size classes that would begin to form hollows within the next 50 years to compensate for an expected loss of hollow-bearing stags during that same period. In terms of forest operation, the retention of six hollow-bearing trees/ha would represent an estimated loss of 7.3-15% wood production. (C) 2003 Elsevier Science B.V. All rights reserved.

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A introdução desta tese começa por realizar um enquadramento do projecto em mão, apresentando a central de energia das ondas em que se encontram os componentes em fibra de vidro a projectar. Esta central usa o princípio de variação de coluna de água, e encontra-se localizada na ilha do Pico, Açores. São de seguida apresentados os objectivos deste trabalho, que consistem na selecção de materiais de fabrico dos componentes, desenvolvimento de uma metodologia para projectar juntas aparafusadas em materiais compósitos, dimensionamento e comparação de duas juntas concorrentes em materiais compósitos: junta solicitada à tracção e junta solicitada ao corte, validação da análise e estudo das causas dos vários tipos de falha destas juntas. A parte I deste trabalho é o resultado da pesquisa bibliográfica efectuada para levar a cabo os objectivos definidos. Assim, começa por se fazer uma descrição dos materiais e processos de fabrico que mais se adequam ao presente projecto, nomeadamente fibra de vidro, resinas, tecidos, impregnação manual, RTM e infusão por vácuo. Daqui resultou que os materiais mais adequados para esta aplicação são fibra de vidro do tipo E e resina polyester devido ao seu baixo custo e larga utilização em aplicações estruturais marinhas. O processo de fabrico mais eficiente é a infusão por vácuo devido á sua vocação para pequenas séries de produção, a poupança que permite em termos de mão-de-obra, a complacência com normas de emissão de voláteis e as boas propriedades das partes produzidas. No capítulo II da parte I são discutidos os tópicos relacionados com juntas em materiais compósitos. Da pesquisa levada a cabo conclui-se que as grandes vantagens das juntas aparafusadas são a sua facilidade de montagem e desmontagem, facilidade de inspecção e capacidade de ligar quaisquer tipos de materiais. Quanto à furação de compósitos é importante referir a necessidade de utilizar ferramentas resistentes e parâmetros de maquinação que minimizem o dano infligido aos laminados. Isto é possível através da selecção de ferramentas com passos baixos que reduzam igualmente a dimensão do seu centro estático responsável pela força axial exercida sobre o laminado - principal factor causador de dano. Devem-se igualmente utilizar baixas velocidades de avanço e elevadas velocidades de rotação. É importante salientar a importância da realização de pré-furação, de utilização de um prato de suporte na superfície de saída do laminado e a existência de ferramentas especialmente concebidas para a furação de compósitos. Para detectar e quantificar o dano existente num furo destacam-se os métodos de inspecção ultrasónica e a radiografia. Quanto aos parâmetros que influenciaram o comportamento de juntas aparafusadas destacam-se os rácios largura/diâmetro, distância ao bordo/diâmetro, espessura/diâmetro, pré-tensão, fricção, sequência de empilhamento e respectivas proporções, dimensão das anilhas e folga entre o parafuso e o furo. A pesquisa efectuada visando metodologias de projecto fiáveis ditou a necessidade de utilizar métodos que permitiram determinar o parafuso mais carregado de uma junta, efectuar o cálculo de tensões no mesmo, e ainda métodos que permitam determinar a primeira falha que ocorre no laminado bem como a falha final no mesmo. O capítulo III da primeira parte descreve os métodos de análise de tensões necessários para as metodologias de projecto utilizadas. Aqui é apresentada a teoria clássica da laminação, um método para determinação do parafuso mais carregado, um método analítico baseado na teoria da elasticidade anisotrópica de um corpo e o método dos elementos finitos. O método para determinar o parafuso mais carregado - análise global - consiste num modelo bidimensional de elementos finitos em que 2 laminados coincidentes são modelados com elementos lineares de casca com 4 nós, sendo a extremidade de um laminado restringida em todos os graus de liberdade e a extremidade oposta do segundo laminado carregada com a carga pretendida. Os laminados são ligados através de elementos mola que simulam os parafusos, sendo a sua constante de rigidez previamente calculada para este fim. O método analítico modela o contacto assumindo uma distribuição de pressão cosinoidal ao longo de metade do furo, e é válido para laminados simétricos e quasi-isotrópicos. O método dos elementos finitos é o que mais factores permite ter em conta, sendo os modelos tridimensionais com um elemento por camada os que melhor modelam o estado de tensões experienciado por uma junta aparafusada em materiais compósitos. O tópico de análise de falha é abordado no capítulo 4 da primeira parte. Aqui são apresentados os resultados do world wide failure exercice que compara vários critérios de falha existentes até 2004, fazendo-se referência a desenvolvimentos recentes que têm ocorrido nesta área. O critério de Puck surge como aquele que permite previsões de falha mais exactas. O critério de falha de Hashin 3D foi o escolhido para o presente trabalho, devido à sua facilidade de implementação num modelo de elementos finitos, à sua capacidade para detectar modos de falha subcríticos e à sua utilização em trabalhos anteriores que apresentaram previsões de falha muito próximas dos dados experimentais. Também neste capítulo se apresentaram os vários tipos de falha de uma junta aparafusada em materiais compósitos, apresentando as causas de cada uma. Por fim, na última secção, apresenta-se o método de dano progressivo que se desenvolveu para prever a primeira falha final do laminado. Este é muito interessante tendo permitido previsões de falha muito próximas dos resultados experimentais em trabalhos anteriores. Este método é iterativo e encontra-se dividido em 3 passos: Análise de tensões, análise de falha utilizando o critério de Hashin 3D e degradação de propriedades, de acordo com o tipo de falha detectada. Para além dos passos referidos, existe ainda um quarto responsável pelo fim da análise que consiste na aferição da existência ou não de falha final e respectivo tipo de falha (por pressão de contacto, por tensão ou por esforços de corte). No capítulo V da primeira parte é apresentado o resultado de uma pesquisa das normas de teste necessárias para obter as propriedades dos materiais requeridas para a aplicação dos métodos descritos neste trabalho. A parte II deste trabalho consiste na aplicação dos métodos apresentados na parte I ao caso concreto em estudo. Os softwares Microsoft Excel, Matlab e ANSYS foram utilizados para este fim. A junta começa por ser dimensionada estimando a espessura necessária do componente e o número e características dos parafusos. De seguida foi feita uma análise global à flange em estudo determinando a força suportada pelo parafuso mais carregado. Após esta análise desenvolveu-se um modelo tridimensional de elementos finitos da zona em que se encontra o parafuso mais carregado, utilizando elementos sólidos lineares e isoparamétricos de 8 nós e uma malha gerada pelo método directo. Aplicou-se a este modelo o algoritmo de dano progressivo descrito na primeira parte. Começou por se incluir explicitamente o parafuso, anilhas, pré-tensão e a modelação dos vários contactos com fricção posteriormente simplificado o modelo restringindo radialmente os nós da porção carregada do furo, excluindo os factores mencionados inicialmente. Procurou-se validar o modelo utilizando o método de cálculo de tensões descrito na primeira parte, desenvolvendo um programa em Matlab para o efeito. Tal não foi possível tendo-se incluído a tentativa realizada em anexo. Para efeitos de dimensionamento, desenvolveu-se um modelo de elementos finitos de duas dimensões da junta em causa, utilizando elementos de casca lineares de quatro nós isoparamétricos com uma espessura unitária. Através da análise de tensões efectuada com este modelo, e utilizando um método combinado programado em linguagem paramétrica, foi possível dimensionar as duas juntas concorrentes pretendidas. Este método combinado consistiu no cálculo de tensões em pontos localizados sobre uma curva característica e utilização de um critério de falha quadrático para cálculo da espessura necessária para a junta. O dimensionamento ditou que a junta solicitada à tensão necessita de pelo menos 127% das camadas e do custo de uma junta solicitada ao corte equivalente.

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Dissertation for obtaining the Master degree in Membrane Engineering

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Otto-von-Guericke-Universität Magdeburg, Fakultät für Maschinenbau, Univ., Dissertation, 2015

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To evaluate the severity of airway pathologies, quantitative dimensioning of airways is of utmost importance. Endoscopic vision gives a projective image and thus no true scaling information can be directly deduced from it. In this article, an approach based on an interferometric setup, a low-coherence laser source and a standard rigid endoscope is presented, and applied to hollow samples measurements. More generally, the use of the low-coherence interferometric setup detailed here could be extended to any other endoscopy-related field of interest, e.g., gastroscopy, arthroscopy and other medical or industrial applications where tri-dimensional topology is required. The setup design with a multiple fibers illumination system is presented. Demonstration of the method ability to operate on biological samples is assessed through measurements on ex vivo pig bronchi.

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The most important features of the proposed spherical gravitational wave detectors are closely linked with their symmetry. Hollow spheres share this property with solid ones, considered in the literature so far, and constitute an interesting alternative for the realization of an omnidirectional gravitational wave detector. In this paper we address the problem of how a hollow elastic sphere interacts with an incoming gravitational wave and find an analytical solution for its normal mode spectrum and response, as well as for its energy absorption cross sections. It appears that this shape can be designed having relatively low resonance frequencies (~ 200 Hz) yet keeping a large cross section, so its frequency range overlaps with the projected large interferometers. We also apply the obtained results to discuss the performance of a hollow sphere as a detector for a variety of gravitational wave signals.

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We study the response and cross sections for the absorption of GW energy generated in a Jordan-Brans-Dicke theory by a resonant mass detector shaped as a hollow sphere. As a source of the GW we take a binary system in the Newtonian approximation. For masses of the stars of the order of the solar mass, the emitted GW sweeps a range of frequencies which include the first resonant mode of the detector.

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Thanks to the continuous progress made in recent years, medical imaging has become an important tool in the diagnosis of various pathologies. In particular, magnetic resonance imaging (MRI) permits to obtain images with a remarkably high resolution without the use of ionizing radiation and is consequently widely applied for a broad range of conditions in all parts of the body. Contrast agents are used in MRI to improve tissue discrimination. Different categories of contrast agents are clinically available, the most widely used being gadolinium chelates. One can distinguish between extracellular gadolinium chelates such as Gd-DTPA, and hepatobiliary gadolinium chelates such as Gd-BOPTA. The latter are able to enter hepatocytes from where they are partially excreted into the bile to an extent dependent on the contrast agent and animal species. Due to this property, hepatobiliary contrast agents are particularly interesting for the MRI of the liver. Actually, a change in signal intensity can result from a change in transport functions signaling the presence of impaired hepatocytes, e.g. in the case of focal (like cancer) or diffuse (like cirrhosis) liver diseases. Although the excretion mechanism into the bile is well known, the uptake mechanisms of hepatobiliary contrast agents into hepatocytes are still not completely understood and several hypotheses have been proposed. As a good knowledge of these transport mechanisms is required to allow an efficient diagnosis by MRI of the functional state of the liver, more fundamental research is needed and an efficient MRI compatible in vitro model would be an asset. So far, most data concerning these transport mechanisms have been obtained by MRI with in vivo models or by a method of detection other than MRI with cellular or sub-cellular models. Actually, no in vitro model is currently available for the study and quantification of contrast agents by MRI notably because high cellular densities are needed to allow detection, and no metallic devices can be used inside the magnet room, which is incompatible with most tissue or cell cultures that require controlled temperature and oxygenation. The aim of this thesis is thus to develop an MRI compatible in vitro cellular model to study the transport of hepatobiliary contrast agents, in particular Gd-BOPTA, into hepatocytes directly by MRI. A better understanding of this transport and especially of its modification in case of hepatic disorder could permit in a second step to extrapolate this knowledge to humans and to use the kinetics of hepatobiliary contrast agents as a tool for the diagnosis of hepatic diseases.

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To predict the capacity of the structure or the point which is followed by instability, calculation of the critical crack size is important. Structures usually contain several cracks but not necessarily all of these cracks lead to failure or reach the critical size. So, defining the harmful cracks or the crack size which is the most leading one to failure provides criteria for structure’s capacity at elevated temperature. The scope of this thesis was to calculate fracture parameters like stress intensity factor, the J integral and plastic and ultimate capacity of the structure to estimate critical crack size for this specific structure. Several three dimensional (3D) simulations using finite element method by Ansys program and boundary element method by Frank 3D program were carried out to calculate fracture parameters and results with the aid of laboratory tests (loaddisplacement curve, the J resistance curve and yield or ultimate stress) leaded to extract critical size of the crack. Two types of the fracture which is usually affected by temperature, Elastic and Elasti-Plastic fractures were simulated by performing several linear elastic and nonlinear elastic analyses. Geometry details of the weldment; flank angle and toe radius were also studied independently to estimate the location of crack initiation and simulate stress field in early stages of crack extension in structure. In this work also overview of the structure’s capacity in room temperature (20 ºC) was studied. Comparison of the results in different temperature (20 ºC and -40 ºC) provides a threshold of the structure’s behavior within the defined range.