999 resultados para Physical Sciences and Engineering


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Thesis (Master's)--University of Washington, 2016-06

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A vision system is applied to full-field displacements and deformation measurements in solid mechanics. A speckle like pattern is preliminary formed on the surface under investigation. To determine displacements field of one speckle image with respect to a reference speckle image, sub-images, referred to Zones Of Interest (ZOI) are considered. The field is obtained by matching a ZOI in the reference image with the respective ZOI in the moved image. Two image processing techniques are used for implementing the matching procedure: – cross correlation function and minimum mean square error (MMSE) of the ZOI intensity distribution. The two algorithms are compared and the influence of the ZOI size on the accuracy of measurements is studied.

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Creativity is an important graduate capability which needs to be cultivated in engineering students. The evidence suggests that to develop creativity and innovation in students it is necessary to give them significant practice is divergent thinking. This kind of practice is particularly important in disciplines such as the physical sciences and engineering which have traditionally had a heavy emphasis on convergent (rather than divergent) thinking. Accordingly, this paper presents a novel strategy for engendering divergent thinking in engineering students. It is an unconventional approach in which students compose and perform contemporary raps which help them to summarise and reflect on material covered in lectures.

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Numerous reports from several parts of the world have confirmed that on calm clear nights a minimum in air temperature can occur just above ground, at heights of the order of $\frac{1}{2}$ m or less. This phenomenon, first observed by Ramdas & Atmanathan (1932), carries the associated paradox of an apparently unstable layer that sustains itself for several hours, and has not so far been satisfactorily explained. We formulate here a theory that considers energy balance between radiation, conduction and free or forced convection in humid air, with surface temperature, humidity and wind incorporated into an appropriate mathematical model as parameters. A complete numerical solution of the coupled air-soil problem is used to validate an approach that specifies the surface temperature boundary condition through a cooling rate parameter. Utilizing a flux-emissivity scheme for computing radiative transfer, the model is numerically solved for various values of turbulent friction velocity. It is shown that a lifted minimum is predicted by the model for values of ground emissivity not too close to unity, and for sufficiently low surface cooling rates and eddy transport. Agreement with observation for reasonable values of the parameters is demonstrated. A heuristic argument is offered to show that radiation substantially increases the critical Rayleigh number for convection, thus circumventing or weakening Rayleigh-Benard instability. The model highlights the key role played by two parameters generally ignored in explanations of the phenomenon, namely surface emissivity and soil thermal conductivity, and shows that it is unnecessary to invoke the presence of such particulate constituents as haze to produce a lifted minimum.

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Die Diagnose von Fehlern des Zylinderdrucksensors wird anhand eines Ottomotors mit Saugrohreinspritzung (MPI) vorgestellt. Die physikalischen Zusammenhänge und die Einflussgrößen auf das Drehmoment des Motors werden erläutert. Hierzu werden verschiedene Modellansätze vorgestellt sowie eine Variation der Modelleingangsgrößen durchgeführt. Anhand des Verfahrens der analytischen Redundanz werden Residuen abgeleitet und die Empfindlichkeit gegenüber bestimmten Fehlertypen aufgezeigt. Dadurch ist eine Trennung von Fehlern des Zylinderdrucksensors gegenüber motorischen Toleranzen oder nicht zylinderdrucksensorbasierten Fehlern möglich. Handelt es sich bei dem verwendeten Motorkonzept um einen Ottomotor mit quantitätsbasierter Laststeuerung, d.h. mit gleichbleibender Gemischzusammensetzung (i.d.R. Luft-/Kraftstoffverhältnis =1), so kann bei erkanntem Fehler des Zylinderdrucksensors eine weitere Aufteilung nach verschiedenen Fehlertypen erfolgen (z.B. Hysterese, Verstärkungsfehler). Auf diese Weise können Sensortoleranzen wie der Verstärkungsfehler des Zylinderdrucksensors durch eine Adaption korrigiert werden. Die Diagnosefunktion und die Verstärkungsadaption wurde erfolgreich an einem 2,0l-Ottomotor (MPI) ohne externe Abgasrückführung (AGR) und ohne kontinuierliche Nockenwellenverstellung (KNWE) durchgeführt, wobei die erwähnten Einschränkungen in Bezug auf die Betriebsbereiche zu berücksichtigen sind. Anhand der Modellstreuungen und Modellungenauigkeiten sind die Grenzen der Diagnose und der Adaption aufgezeigt worden. Die auf einem Prototypensteuergerät implementierten Algorithmen sind echtzeitfähig, wenngleich für die Zylinderdruck- und Drehzahlauswertung eine hohe Rechenleistung erforderlich ist.

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"Contract no. 210-77-0053."

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