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  • Books
  • Other Sources  (3)
  • Course of study: BSc Physics of the Earth System  (2)
  • Acoustics  (1)
  • 1
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    In:  (Bachelor thesis), Christian-Albrechts-Universität, Kiel, Germany, 55 pp
    Publication Date: 2012-07-06
    Keywords: Course of study: BSc Physics of the Earth System
    Type: Thesis , NonPeerReviewed
    Format: text
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  • 2
    Publication Date: 2019-07-13
    Description: This paper presents the development of a noise prediction model for aircraft Krueger flap devices that are considered as alternatives to leading edge slotted slats. The prediction model decomposes the total Krueger noise into four components, generated by the unsteady flows, respectively, in the cove under the pressure side surface of the Krueger, in the gap between the Krueger trailing edge and the main wing, around the brackets supporting the Krueger device, and around the cavity on the lower side of the main wing. For each noise component, the modeling follows a physics-based approach that aims at capturing the dominant noise-generating features in the flow and developing correlations between the noise and the flow parameters that control the noise generation processes. The far field noise is modeled using each of the four noise component's respective spectral functions, far field directivities, Mach number dependencies, component amplitudes, and other parametric trends. Preliminary validations are carried out by using small scale experimental data, and two applications are discussed; one for conventional aircraft and the other for advanced configurations. The former focuses on the parametric trends of Krueger noise on design parameters, while the latter reveals its importance in relation to other airframe noise components.
    Keywords: Acoustics
    Type: NF1676L-22682 , AIAA/CEAS Aeroacoustics Conference; May 30, 2016 - Jun 01, 2016; Lyon; France
    Format: application/pdf
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  • 3
    Publication Date: 2022-10-24
    Description: On rare occasions, a sudden stratospheric warming (SSW) occurs in the Southern Hemisphere (SH), drastically weakening or even reversing the strong winter polar vortex. During SSW events, circulation changes occur that can have significant effects from the upper stratosphere down to the surface. ECHAM6 model data are used to study these impacts. In the atmosphere-only experiment with a perpetual 2018 conditions setup, 13 SSWs are found in 142 simulated years. Since these events coincide with a negative phase of the southern annular mode (SAM), SAM and temperature indexes are created to better track the downward propagating SSW anomalies. The anomalies in the SAM index also make it possible to divide the SSWs into two groups: those followed by significant, long-lasting effects on the tropospheric circulation and those where this is not the case, although the latter are a minority. As soon as the anomalies reach the surface, a change in the regional climate of the SH can be found. The Antarctic, for example, experiences significantly higher temperatures and pressures than average. This condition shifts the storm tracks on the SH to the north, resulting in significantly drier and warmer conditions than usual in western South Africa and Australia, whereas an increase in precipitation in southern Australia and New Zealand is simulated. Apart from South America, where no significant results were found, ECHAM6 generally simulates SSW effects on nearsurface climate in the SH very well, consistent with literature on observed negative SAM phases or weak vortex years.
    Keywords: Course of study: BSc Physics of the Earth System
    Type: Thesis , NonPeerReviewed
    Format: text
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