Search for dissertations about: "rigid body vibrations"
Showing result 1 - 5 of 10 swedish dissertations containing the words rigid body vibrations.
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1. Prediction of engine component loads using previous measurements
Abstract : Internal combustion engines are used in many applications. The same engine type may have different components mounted to it depending upon its use. These engine mounted components need to be designed against fatigue in order to withstand the engine vibrations. Measured engine vibrations are commonly used as input data for fatigue estimation. READ MORE
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2. Vibrations, damping and power dissipation in Car Tyres
Abstract : Traffic is a major source of green house gases. The transport field stands for 32 % of the energy consumption and 28 % of the total CO2 emissions, where road transports alone causes 84 % of these figures. READ MORE
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3. Ride Comfort Optimization of Buses
Abstract : As the design of buses is constantly improving, passengers are becoming more fastidious and the demand for a more comfortable travelling environment is constantly increasing. The main objective of this thesis is to contribute to the understanding of how the design of buses affects the ride comfort characteristics. READ MORE
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4. Modelling the vibrations on a rolling tyre and their relation to exterior and interior noise
Abstract : For most modern cars at normal driving speeds, tyre/road interaction is a major source tothe exterior as well as interior vehicle noise. The interaction between a tyre and a roadsurface generates tyre structure vibrations, leading to sound radiation into the surroundingair, and to dynamic forces acting on the wheel hub. READ MORE
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5. ON THE WAKE STRUCTURES OF FLOW AROUND DEFORMING AND VIBRATING BODIES
Abstract : This thesis concerns the study of Fluid-Structure interaction phenomena among deforming and (non-deforming) vibrating objects under unsteady fluid fl ow exposures. This multi-physical phenomenon is widely encountered in real-life situations and therefore it is of significant importance to understand the underlying physics. READ MORE