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Sökning: (WFRF:(Tamura M.)) > (2010-2014)

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1.
  • de Lemos, Rogerio, et al. (författare)
  • Software Engineering for Self-Adaptive Systems : A Second Research Roadmap
  • 2013
  • Ingår i: Software Engineering for Self-Adaptive Systems II. - Berlin, Heidelberg : Springer. - 9783642358128 ; , s. 1-32
  • Konferensbidrag (övrigt vetenskapligt/konstnärligt)abstract
    • The goal of this roadmap paper is to summarize the state-of-the-art and identify research challenges when developing, deploying and managing self-adaptive software systems. Instead of dealing with a wide range of topics associated with the field, we focus on four essential topics of self-adaptation: design space for self-adaptive solutions, software engineering processes for self-adaptive systems, from centralized to decentralized control, and practical run-time verification & validation for self-adaptive systems. For each topic, we present an overview, suggest future directions, and focus on selected challenges. This paper complements and extends a previous roadmap on software engineering for self-adaptive systems published in 2009 covering a different set of topics, and reflecting in part on the previous paper. This roadmap is one of the many results of the Dagstuhl Seminar 10431 on Software Engineering for Self-Adaptive Systems, which took place in October 2010.
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  • Hiroto, Takanobu, et al. (författare)
  • Ferromagnetism and re-entrant spin-glass transition in quasicrystal approximants Au-SM-Gd (SM = Si, Ge)
  • 2013
  • Ingår i: Journal of Physics. - IOP Publishing in Bristol, UK : IOP Publishing. - 0953-8984 .- 1361-648X. ; 25:42, s. 426004-
  • Tidskriftsartikel (refereegranskat)abstract
    • Magnetic susceptibility and specific heat measurements on quasicrystalline approximants Au–Si–Gd and Au–Ge–Gd reveal that a ferromagnetic (FM) transition occurs at Tc = 22.5(5) °K for Au–Si–Gd and at Tc = 13(1) °K for Au–Ge–Gd, which are the first examples of ferromagnetism in crystalline approximants. In addition, a re-entrant spin-glass (RSG) transition is observed at TRSG = 3.3 °K for Au–Ge–Gd in contrast to Au–Si–Gd. The different behaviors are understood based on the recent structural models reported by Gebresenbut et al (2013 J. Phys.: Condens. Matter 25 135402). The RSG transition in Au–Ge–Gd is attributed to a random occupation of the center of the Gd12 icosahedron by Gd atoms; a central Gd spin hinders the long-range FM order.
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  • Tamura, Hitoshi, et al. (författare)
  • Spectral form and source term balance of short gravity wind waves
  • 2014
  • Ingår i: Journal Of Geophysical Research - Oceans. - 2169-9275. ; 119:11, s. 7406-7419
  • Tidskriftsartikel (refereegranskat)abstract
    • We investigated the spectral structure and source term balance of short gravity waves, based on in situ observations of wave number spectra retrieved by air-sea interaction spar (ASIS) buoys. The behaviors of wave number spectra up to 10 rad/m (the gravity wave regime) were analyzed for a wide range of wind and wave conditions. The observed wave number spectra showed the spectral power laws described by Toba (1973) and Phillips (1958) in addition to the characteristic nodal point at approximate to 10 rad/m where spectral energy becomes constant over the entire wind speed range. We also improved the third-generation wave model using the nonlinear dissipation term. The wave model reproduced the spectral form in the higher wave number domain. In the equilibrium range, nonlinear transfer played a major role in maintaining equilibrium conditions. On the other hand, in the saturation range, which starts at the upper limit of the equilibrium range, the nonlinear transfer tended to be out of balance with other source terms, and the dissipation term was in balance with wind input.Key Points We investigated the characteristics of short gravity wind waves The observed wave number spectra showed the spectral power laws The nonlinear dissipation term significantly improved the model results.
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  • Resultat 1-7 av 7

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