1,606 research outputs found

    Theoretical study of VTOL tilt-nacelle axisymmetric inlet geometries

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    A systematic theoretical study of VTOL tilt-nacelle inlet design parameters is reported. The parameters considered are internal-lip contraction ratio, internal-lip major-to-minor axis ratio, diffuser-exit-area to throat-area ratio, maximum diffuser wall angle and shape. Each of the inlets was analyzed at the same given flow condition of free-stream velocity, angle between the free stream and centerline of the inlet, and diffuser-exit Mach number. The effects of these geometric parameters on surface static-pressure distribution, peak surface Mach number, diffusion velocity ratio, and tendency for the inlet flow to separate are presented

    Spaser Action, Loss Compensation, and Stability in Plasmonic Systems with Gain

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    We demonstrate that the conditions of spaser generation and the full loss compensation in a resonant plasmonic-gain medium (metamaterial) are identical. Consequently, attempting the full compensation or overcompensation of losses by gain will lead to instability and a transition to a spaser state. This will limit (clamp) the inversion and lead to the limitation on the maximum loss compensation achievable. The criterion of the loss overcompensation, leading to the instability and spasing, is given in a analytical and universal (independent from system's geometry) form.Comment: 4 pages, 1 figur

    Surface plasmon lifetime in metal nanoshells

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    The lifetime of localized surface plasmon plays an important role in many aspects of plasmonics and its applications. In small metal nanostructures, the dominant mechanism restricting plasmon lifetime is size-dependent Landau damping. We performed quantum-mechanical calculations of Landau damping for the bright surface plasmon mode in a metal nanoshell. In contrast to the conventional model based on the electron surface scattering, we found that the damping rate decreases as the nanoshell thickness is reduced. The origin of this behavior is traced to the spatial distribution of plasmon local field inside the metal shell. We also found that, due to interference of electron scattering amplitudes from nanoshell's two metal surfaces, the damping rate exhibits pronounced quantum beats with changing shell thickness.Comment: 9 pages, 4 Figure

    Prediction of Laminar and Turbulent Boundary Layer Flow Separation in V/STOL Engine Inlets

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    A description is presented of the development of the boundary layer on the lip and diffuser surface of a subsonic inlet at arbitrary operating conditions of mass flow rate, free stream velocity and incidence angle. Both laminar separation on the lip and turbulent separation in the diffuser are discussed. The agreement of the theoretical results with model experimental data illustrates the capability of the theory to predict separation. The effects of throat Mach number, inlet size, and surface roughness on boundary layer development and separation are illustrated

    An efficient user-oriented method for calculating compressible flow in an about three-dimensional inlets

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    A panel method is used to calculate incompressible flow about arbitrary three-dimensional inlets with or without centerbodies for four fundamental flow conditions: unit onset flows parallel to each of the coordinate axes plus static operation. The computing time is scarcely longer than for a single solution. A linear superposition of these solutions quite rigorously gives incompressible flow about the inlet for any angle of attack, angle of yaw, and mass flow rate. Compressibility is accounted for by applying a well-proven correction to the incompressible flow. Since the computing times for the combination and the compressibility correction are small, flows at a large number of inlet operating conditions are obtained rather cheaply. Geometric input is aided by an automatic generating program. A number of graphical output features are provided to aid the user, including surface streamline tracing and automatic generation of curves of curves of constant pressure, Mach number, and flow inclination at selected inlet cross sections. The inlet method and use of the program are described. Illustrative results are presented

    Evaluating an Interface for Cross-Modal Collaborative Information Seeking

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    Reflections on the Research Methods Used in an Investigation of Cross-modal Collaborative Information Seeking

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    The Hidden Nuclear Spectrum of the Luminous IRAS Source FSC10214++4724

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    Optical spectropolarimetry of the luminous IRAS source FSC10214++4724 (z=2.286=2.286) reveals that the strong (\twid17\%) linear polarization detected by Lawrence \etal\/ is shared by both the narrow UV emission lines and the underlying continuum. This observation and the brightness of the source rule out synchrotron emission and dichroic extinction by dust as the polarizing mechanism, leaving scattering as the only plausible cause of the polarized emission. The narrowness of the lines requires that the scatterers be dust grains or cool (<1.6×<1.6\times104^4~K) electrons. We can recover the spectrum that is incident on the scattering medium provided we make some reasonable assumptions regarding the source geometry. The scattered UV spectrum has a power law index α\alpha~ of −1.2±0.6-1.2 \pm 0.6 (FΜ∝ΜαF_\nu\propto\nu^\alpha), steeper than what would be expected from a young burst of star formation, but similar to many AGN.Comment: 10 pages, with figure, uuencoded postscript Institute for Advanced Study number AST 94/1

    Musical Haptic Wearables for Synchronisation of Visually-impaired Performers: a Co-design Approach

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    The emergence of new technologies is providing opportunities to develop novel solutions that facilitate the integration of visually-impaired people in different activities of our daily life, including collective music making. This paper presents a study conducted with visually-impaired music performers, which involved a participatory approach to the design of accessible technologies for musical communication in group playing. We report on three workshops that were conducted together with members of an established ensemble of solely visually-impaired musicians. The first workshop focused on the identification of the participants’ needs during the activity of playing in groups and how technology could satisfy such needs. The second and third workshops investigated, respectively, the activities of choir singing and instrument playing in ensemble, focusing on the key issue of synchronisation that was identified in the first workshop. The workshops involved prototypes of musical haptic wearables, which were co-designed and evaluated by the participants. Overall, results indicate that wireless tactile communication represents a promising avenue to cater effectively to the needs of visually-impaired performers

    EXPLORING THE STAGES OF INFORMATION SEEKING IN A CROSS-MODAL CONTEXT

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    Previous studies of users with visual impairments access to the web have focused on human-web interaction. This study explores the under investigated area of cross-modal collaborative information seeking (CCIS), that is, the challenges and opportunities that exist in supporting visually impaired (VI) users to take an effective part in collaborative web search tasks with sighted peers. We conducted an observational study to investigate the process with fourteen pairs of VI and sighted users in co-located and distributed settings. The study examined the effects of cross-modal collaborative interaction on the stages of the individual Information Seeking (IS) process. The findings showed that the different stages of the process were performed individually most of the time; however it was observed that some collaboration took place in the results exploration and management stages. The accessibility challenges faced by VI users affected their individual and collaborative interaction and also enforced certain points of collaboration. The paper concludes with some recommendations towards improving the accessibility of cross-modal collaborative search.Peer Reviewe
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