Now showing items 1-3 of 3

    • Architectural Model to Enable Power System Tradeoff Studies 

      Chryssostomidis, Chryssostomos; Chalfant, Julie; Hanthorn, David; Kirtley, James L., Jr.; Angle, Matthew G. (Massachusetts Institute of Technology. Sea Grant College Program, 2011)
      We continue the development of an overall architectural model for an all-electric ship using a physics-based simulation environment to perform fully-integrated simulation of electrical, hydrodynamic, thermal, and structural ...
    • Conserving Energy with No Watt Left Behind 

      Leeb, Steven B.; Kirtley, James L., Jr. (Massachusetts Institute of Technology. Sea Grant College Program, 2011-04)
      Facilities managers for industrial and commercial sites want to develop detailed electrical consumption profiles of their electrical and electromechanical loads, including expensive physical plant for heating, ventilation, ...
    • Design of the All-Electric Ship: Focus on Integrated Power System Coupled to Hydrodynamics 

      Prempraneerach, P.; Kirtley, James L., Jr.; Chryssostomidis, Chryssostomos; Triantafyllou, Michael S.; Karniadakis, George E. (Massachusetts Institute of Technology. Sea Grant College Program, 2008)
      We present a detailed model of the integrated power system coupled to hydrodynamics that allows us to study global sensitivities in the All-Electric Ship. A novel element of our formulation is the stochastic modeling of ...