15 resultados para Size and weight regulations.

em Doria (National Library of Finland DSpace Services) - National Library of Finland, Finland


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Selostus: Häkin koon ja häkissä olevien näköesteiden vaikutus tarhattujen hopeakettujen makuuhyllyn käyttöön

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Selostus: Ryhmäkoon ja varhaisen käsittelyn vaikutus tarhattujen sinikettujen hyvinvointiin

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Selostus: Ryhmäkoon ja käytössä olevan tilan vaikutus tarhattujen hopeakettupentujen hyvinvointiin

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Gas-liquid mass transfer is an important issue in the design and operation of many chemical unit operations. Despite its importance, the evaluation of gas-liquid mass transfer is not straightforward due to the complex nature of the phenomena involved. In this thesis gas-liquid mass transfer was evaluated in three different gas-liquid reactors in a traditional way by measuring the volumetric mass transfer coefficient (kLa). The studied reactors were a bubble column with a T-junction two-phase nozzle for gas dispersion, an industrial scale bubble column reactor for the oxidation of tetrahydroanthrahydroquinone and a concurrent downflow structured bed.The main drawback of this approach is that the obtained correlations give only the average volumetric mass transfer coefficient, which is dependent on average conditions. Moreover, the obtained correlations are valid only for the studied geometry and for the chemical system used in the measurements. In principle, a more fundamental approach is to estimate the interfacial area available for mass transfer from bubble size distributions obtained by solution of population balance equations. This approach has been used in this thesis by developing a population balance model for a bubble column together with phenomenological models for bubble breakage and coalescence. The parameters of the bubble breakage rate and coalescence rate models were estimated by comparing the measured and calculated bubble sizes. The coalescence models always have at least one experimental parameter. This is because the bubble coalescence depends on liquid composition in a way which is difficult to evaluate using known physical properties. The coalescence properties of some model solutions were evaluated by measuring the time that a bubble rests at the free liquid-gas interface before coalescing (the so-calledpersistence time or rest time). The measured persistence times range from 10 msup to 15 s depending on the solution. The coalescence was never found to be instantaneous. The bubble oscillates up and down at the interface at least a coupleof times before coalescence takes place. The measured persistence times were compared to coalescence times obtained by parameter fitting using measured bubble size distributions in a bubble column and a bubble column population balance model. For short persistence times, the persistence and coalescence times are in good agreement. For longer persistence times, however, the persistence times are at least an order of magnitude longer than the corresponding coalescence times from parameter fitting. This discrepancy may be attributed to the uncertainties concerning the estimation of energy dissipation rates, collision rates and mechanisms and contact times of the bubbles.

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Obesity is one of the key challenges to health care system worldwide and its prevalence is estimated to rise to pandemic proportions. Numerous adverse health effects follow with increasing body weight, including increased risk of hypertension, diabetes, hypercholesterolemia, musculoskeletal pain and cancer. Current evidence suggests that obesity is associated with altered cerebral reward circuit functioning and decreased inhibitory control over appetitive food cues. Furthermore, obesity causes adverse shifts in metabolism and loss of structural integrity within the brain. Prior cross-sectional studies do not allow delineating which of these cerebral changes are recoverable after weight loss. We compared morbidly obese subjects with healthy controls to unravel brain changes associated with obesity. Bariatric surgery was used as an intervention to study which cerebral changes are recoverable after weight loss. In Study I we employed functional magnetic resonance imaging (fMRI) to detect the brain basis of volitional appetite control and its alterations in obesity. In Studies II-III we used diffusion tensor imaging (DTI) and voxel-based morphometry (VBM) to quantify the effects of obesity and the effects of weight loss on structural integrity of the brain. In study IV we used positron emission tomography (PET) with [18F]-FDG in fasting state and during euglycemic hyperinsulinemia to quantify effects of obesity and weight loss on brain glucose uptake. The fMRI experiment revealed that a fronto-parietal network is involved in volitional appetite control. Obese subjects had lower medial frontal and dorsal striatal brain activity during cognitive appetite control and increased functional connectivity within the appetite control circuit. Obese subjects had initially lower grey matter and white matter densities than healthy controls in VBM analysis and loss of integrity in white matter tracts as measured by DTI. They also had initially elevated glucose metabolism under insulin stimulation but not in fasting state. After the weight loss following bariatric surgery, obese individuals’ brain volumes recovered and the insulin-induced increase in glucose metabolism was attenuated. In conclusion, obesity is associated with altered brain function, coupled with loss of structural integrity and elevated glucose metabolism, which are likely signs of adverse health effects to the brain. These changes are reversed by weight loss after bariatric surgery, implicating that weight loss has a causal role on these adverse cerebral changes. Altogether these findings suggest that weight loss also promotes brain health.Key words: brain, obesity, bariatric surgery, appetite control, structural magnetic resonance

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Tämän diplomityön tavoitteena on ollut suunnitella uusi öljyntorjunnassa käytettävä puomiankkuri. Nykyisin käytössä olevat ankkurit ovat painavia, paljon tilaa vieviä, jäykkiä rakenteeltaan ja hankalia käyttää. Työn tavoitteena on ollut suunnitella rakenne, jossa muotoilun avulla pyritään korvaamaan ankkurin painoa ja saavuttaa hyvä tunkeutuminen eri pohjalaaduissa. Ankkurin suunnitteluun kuuluu merkittävänä osana materiaalinvalintaprosessi, jonka perusteella materiaaliksi valittiin kulutusteräs. Kulutusteräksen korkea lujuus ja hyvä kulumiskestävyys mahdollistavat ohuemman materiaalin käytön rakenteessa, jonka seurauksena rakenteen painoa saatiin vähennettyä merkittävästi. Ankkurin rakenteen suunnittelussa käytettiin hyväksi nykyisiä ankkurin rakenteita, joiden pohjalta hahmoteltiin eri variaatioita ankkureista. Suunnittelutyössä käytettiin hyväksi tyypillisiä ankkurirakenteita hyvien puolien kannalta, joita pyrittiin toteuttamaan uudessa ankkuri- rakenteessa. Ankkurin suunnittelu toteutettiin järjestelmällisen suunnittelun avulla, jossa ensin laadittiin ankkurille vaatimuslista. Tämän jälkeen laadittiin ankkurille toimintorakenne ja jakaminen osatoimintoihin. Ankkurin rakenteista toteutettiin kaksi eri versiota: sisävesillä ja merialueilla käytettävät ankkurit, joille laadittiin mitoitus. Työssä suunnitellun terävän tunkeutumisosan ja optimaalisen tunkeutumiskulman avulla ankkureiden painoa saatiin huomattavasti alhaisemmaksi, jonka seurauksena ankkurille saatiin kevyempi rakenne ja materiaalikustannukset pienenivät merkittävästi. Uusien ankkurien rakenne on pienemmän koon ja painon ansiosta käyttäjäystävällisempi.

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Tämän diplomityön tavoitteena on ollut suunnitella uusi öljyntorjunnassa käytettävä puomiankkuri. Nykyisin käytössä olevat ankkurit ovat painavia, paljon tilaa vieviä, jäykkiä rakenteeltaan ja hankalia käyttää. Työn tavoitteena on ollut suunnitella rakenne, jossa muotoilun avulla pyritään korvaamaan ankkurin painoa ja saavuttaa hyvä tunkeutuminen eri pohjalaaduissa. Ankkurin suunnitteluun kuuluu merkittävänä osana materiaalinvalintaprosessi, jonka perusteella materiaaliksi valittiin kulutusteräs. Kulutusteräksen korkea lujuus ja hyvä kulumiskestävyys mahdollistavat ohuemman materiaalin käytön rakenteessa, jonka seurauksena rakenteen painoa saatiin vähennettyä merkittävästi. Ankkurin rakenteen suunnittelussa käytettiin hyväksi nykyisiä ankkurin rakenteita, joiden pohjalta hahmoteltiin eri variaatioita ankkureista. Suunnittelutyössä käytettiin hyväksi tyypillisiä ankkurirakenteita hyvien puolien kannalta, joita pyrittiin toteuttamaan uudessa ankkuri- rakenteessa. Ankkurin suunnittelu toteutettiin järjestelmällisen suunnittelun avulla, jossa ensin laadittiin ankkurille vaatimuslista. Tämän jälkeen laadittiin ankkurille toimintorakenne ja jakaminen osatoimintoihin. Ankkurin rakenteista toteutettiin kaksi eri versiota: sisävesillä ja merialueilla käytettävät ankkurit, joille laadittiin mitoitus. Työssä suunnitellun terävän tunkeutumisosan ja optimaalisen tunkeutumiskulman avulla ankkureiden painoa saatiin huomattavasti alhaisemmaksi, jonka seurauksena ankkurille saatiin kevyempi rakenne ja materiaalikustannukset pienenivät merkittävästi. Uusien ankkurien rakenne on pienemmän koon ja painon ansiosta käyttäjäystävällisempi.

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Today’s electrical machine technology allows increasing the wind turbine output power by an order of magnitude from the technology that existed only ten years ago. However, it is sometimes argued that high-power direct-drive wind turbine generators will prove to be of limited practical importance because of their relatively large size and weight. The limited space for the generator in a wind turbine application together with the growing use of wind energy pose a challenge for the design engineers who are trying to increase torque without making the generator larger. When it comes to high torque density, the limiting factor in every electrical machine is heat, and if the electrical machine parts exceed their maximum allowable continuous operating temperature, even for a short time, they can suffer permanent damage. Therefore, highly efficient thermal design or cooling methods is needed. One of the promising solutions to enhance heat transfer performances of high-power, low-speed electrical machines is the direct cooling of the windings. This doctoral dissertation proposes a rotor-surface-magnet synchronous generator with a fractional slot nonoverlapping stator winding made of hollow conductors, through which liquid coolant can be passed directly during the application of current in order to increase the convective heat transfer capabilities and reduce the generator mass. This doctoral dissertation focuses on the electromagnetic design of a liquid-cooled direct-drive permanent-magnet synchronous generator (LC DD-PMSG) for a directdrive wind turbine application. The analytical calculation of the magnetic field distribution is carried out with the ambition of fast and accurate predicting of the main dimensions of the machine and especially the thickness of the permanent magnets; the generator electromagnetic parameters as well as the design optimization. The focus is on the generator design with a fractional slot non-overlapping winding placed into open stator slots. This is an a priori selection to guarantee easy manufacturing of the LC winding. A thermal analysis of the LC DD-PMSG based on a lumped parameter thermal model takes place with the ambition of evaluating the generator thermal performance. The thermal model was adapted to take into account the uneven copper loss distribution resulting from the skin effect as well as the effect of temperature on the copper winding resistance and the thermophysical properties of the coolant. The developed lumpedparameter thermal model and the analytical calculation of the magnetic field distribution can both be integrated with the presented algorithm to optimize an LC DD-PMSG design. Based on an instrumented small prototype with liquid-cooled tooth-coils, the following targets have been achieved: experimental determination of the performance of the direct liquid cooling of the stator winding and validating the temperatures predicted by an analytical thermal model; proving the feasibility of manufacturing the liquid-cooled tooth-coil winding; moreover, demonstration of the objectives of the project to potential customers.

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Coating and filler pigments have strong influence to the properties of the paper. Filler content can be even over 30 % and pigment content in coating is about 85-95 weight percent. The physical and chemical properties of the pigments are different and the knowledge of these properties is important for optimising of optical and printing properties of the paper. The size and shape of pigment particles can be measured by different analysers which can be based on sedimentation, laser diffraction, changes in electric field etc. In this master's thesis was researched particle properties especially by scanning electron microscope (SEM) and image analysis programs. Research included nine pigments with different particle size and shape. Pigments were analysed by two image analysis programs (INCA Feature and Poikki), Coulter LS230 (laser diffraction) and SediGraph 5100 (sedimentation). The results were compared to perceive the effect of particle shape to the performance of the analysers. Only image analysis programs gave parameters of the particle shape. One part of research was also the sample preparation for SEM. Individual particles should be separated and distinct in ideal sample. Analysing methods gave different results but results from image analysis programs corresponded even to sedimentation or to laser diffraction depending on the particle shape. Detailed analysis of the particle shape required high magnification in SEM, but measured parameters described very well the shape of the particles. Large particles (ecd~1 µm) could be used also in 3D-modelling which enabled the measurement of the thickness of the particles. Scanning electron microscope and image analysis programs were effective and multifunctional tools for particle analyses. Development and experience will devise the usability of analysing method in routine use.